Настройки

Укажите год
-

Небесная энциклопедия

Космические корабли и станции, автоматические КА и методы их проектирования, бортовые комплексы управления, системы и средства жизнеобеспечения, особенности технологии производства ракетно-космических систем

Подробнее
-

Мониторинг СМИ

Мониторинг СМИ и социальных сетей. Сканирование интернета, новостных сайтов, специализированных контентных площадок на базе мессенджеров. Гибкие настройки фильтров и первоначальных источников.

Подробнее

Форма поиска

Поддерживает ввод нескольких поисковых фраз (по одной на строку). При поиске обеспечивает поддержку морфологии русского и английского языка
Ведите корректный номера.
Ведите корректный номера.
Ведите корректный номера.
Ведите корректный номера.
Укажите год
Укажите год

Применить Всего найдено 9620. Отображено 100.
16-01-1999 дата публикации

УСТРОЙСТВО ДЛЯ ОБРАБОТКИ ТЕКСТИЛЬНЫХ МАТЕРИАЛОВ

Номер: RU0000008970U1

Устройство для обработки текстильных материалов, содержащее корпус и расположенные в нем источники оптического излучения и системы петлеобразной проводки ткани и вентиляции, отличающееся тем, что в качестве источников оптического излучения оно содержит дуговые ксеноновые трубчатые лампы. (19) RU (11) (13) 8 970 U1 (51) МПК D06C 7/00 (1995.01) РОССИЙСКОЕ АГЕНТСТВО ПО ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К СВИДЕТЕЛЬСТВУ (21), (22) Заявка: 95100429/20, 12.01.1995 (46) Опубликовано: 16.01.1999 (72) Автор(ы): Побединский В.С., Рыжаков А.В. (73) Патентообладатель(и): Побединский Владимир Семенович R U Адрес для переписки: 153016 Иваново, ул.Маяковского 25-13, Побединскому В.С. (71) Заявитель(и): Побединский Владимир Семенович (54) УСТРОЙСТВО ДЛЯ ОБРАБОТКИ ТЕКСТИЛЬНЫХ МАТЕРИАЛОВ 8 9 7 0 (57) Формула полезной модели Устройство для обработки текстильных материалов, содержащее корпус и расположенные в нем источники оптического излучения и системы петлеобразной проводки ткани и вентиляции, отличающееся тем, что в качестве источников оптического излучения оно содержит дуговые ксеноновые трубчатые лампы. R U 8 9 7 0 U 1 U 1 Ñòðàíèöà: 1 RU 8 970 U1 RU 8 970 U1 RU 8 970 U1 RU 8 970 U1 RU 8 970 U1 RU 8 970 U1 RU 8 970 U1

Подробнее
09-05-2013 дата публикации

MEDICAL DEVICE INCLUDING CORRUGATED BRAID AND ASSOCIATED METHOD

Номер: US20130112070A1
Автор: Mach Ryan
Принадлежит: AGA MEDICAL CORPORATION

Embodiments of the present invention provide medical devices for treating a target site within the body and associated methods for fabricating and delivering medical devices. According to one embodiment, a medical device includes a tubular structure having proximal and distal ends and a side wall extending therebetween. At least a portion of the side wall can have a corrugated surface. The side wall further includes at least one layer of a metallic fabric configured to be compressed and heat set to define the corrugated surface. The tubular structure may comprise an expanded shape, and may be configured to be constrained to a smaller diameter than the expanded shape for delivery within a catheter to a target site and to assume the expanded shape upon release from the catheter. 1. A method for manufacturing a medical device comprising:providing a tubular structure comprising at least one layer of metallic material, the tubular structure having a proximal end, a distal end, and a side wall extending therebetween, the tubular structure having an initial diameter in a non-corrugated configuration;forming the tubular structure such that the side wall defines at least one corrugated surface extending at least partially between the proximal and distal ends, the corrugated surface comprising a plurality of peaks and valleys defining an outer diameter and an inner diameter, respectively, the inner diameter of the valleys being larger than the initial diameter of the tubular structure in the non-corrugated configuration; andheat setting the formed tubular structure in an expanded preset configuration.2. The method according to claim 1 , wherein forming comprises compressing the tubular structure.3. The method according to claim 2 , wherein compressing comprises axially compressing the tubular structure.4. The method according to claim 1 , further comprising braiding the tubular structure from a plurality of metallic strands.5. The method according to claim 4 , wherein forming ...

Подробнее
23-05-2013 дата публикации

SURFACE-WATERPROOFING SHEET FOR MINERAL BOARD USING A MIXED-USE NONWOVEN FABRIC AND A WATERPROOFING COATING LAYER, AND A PRODUCTION METHOD THEREFOR

Номер: US20130129999A1
Принадлежит: LG HAUSYS, LTD.

The present invention relates to a surface-waterproof sheet for inorganic boards including multi-use non-woven fabrics and a waterproof coating layer, and a method of manufacturing the same. The method includes preparing a multi-use non-woven fabric composed of cellulose fibers, glass fibers and organic fibers; preparing a waterproof coating solution containing a powdery acrylic binder, water, an inorganic filler, a water repellent, a pigment and an antimicrobial agent; and coating the waterproof coating solution on the multi-use non-woven fabric, followed by drying the waterproof coating solution, thereby providing surface-waterproof sheet for inorganic boards for buildings, which has improved adhesion to the inorganic board and economic feasibility. 1. A surface-waterproof sheet for inorganic boards , comprising a multi-use non-woven fabric comprising cellulose fibers , glass fibers and organic fibers; anda waterproof coating layer coated on the multi-use non-woven fabric.2. The surface-waterproof sheet according to claim 1 , wherein the non-woven fabric comprises 30˜70 wt % of the cellulose fibers claim 1 , 28˜60 wt % of the glass fibers claim 1 , and 2˜20 wt % of the organic fibers.3. The surface-waterproof sheet according to claim 1 , wherein the cellulose fibers have an average diameter of 5 μm to 100 μm and an average length of 1 mm to 30 mm4. The surface-waterproof sheet according to claim 1 , wherein each of the glass fibers and the organic fibers has an average diameter of 5 μm to 20 μm and an average length of 1 mm to 30 mm5. The surface-waterproof sheet according to claim 1 , wherein the multi-use non-woven fabric is formed as a single layer of the nonwoven fabric having a basis weight of 30 g/mto 100 g/m.6. The surface-waterproof sheet according to claim 1 , wherein the multi-use non-woven fabric has a thickness of 0.25 mm to 0.55 mm7. The surface-waterproof sheet according to claim 1 , wherein the multi-use non-woven fabric further comprises 0.1˜3 wt % ...

Подробнее
25-07-2013 дата публикации

POLYESTER YARN AND A PRODUCTION METHOD THEREFOR

Номер: US20130187367A1
Принадлежит: KOLON INDUSTRIES, INC.

Disclosed is a polyester yarn, wherein a room-temperature strength-elongation index (X) indicating a ratio (T/S) of tensile strength (T) to tensile elongation (S) of the polyester yarn, measured at room temperature, and a primary high-humidity strength-elongation index (X) indicating a ratio (T/S) of tensile strength (T) to tensile elongation (S) of the polyester yarn, measured after heat-treating the polyester yarn under conditions of a temperature of 85° C. and a relative humidity (RH) of 95±5% for 168 hours, are optimized in a predetermined range. 1. A polyester yarn , wherein a room-temperature strength-elongation index (X) indicating a ratio (T/S) of tensile strength (T) to tensile elongation (S) of the polyester yarn , measured at room temperature; and a primary high-humidity strength-elongation index (X) indicating a ratio (T/S) of tensile strength (T) to tensile elongation (S) of the polyester yarn , measured after heat-treating the polyester yarn under conditions of a temperature of 85° C. and a relative humidity of 95±5% for 168 hours , are represented by Calculation Formula 1 below:{'br': None, 'sup': 1', '0, '0.65≦X/X≦0.93\u2003\u2003Calculation Formula 1'}{'sup': 0', '0', '0', '0', '0, 'wherein Xis a room-temperature strength-elongation index indicating a ratio (T/S) of tensile strength (T) to tensile elongation (S) of the polyester yarn, measured at room temperature; and'}{'sup': 1', '1', '1', '1', '1, 'Xis a primary high-humidity strength-elongation index indicating a ratio (T/S) of tensile strength (T) to tensile elongation (S) of the polyester yarn, measured after heat-treating the polyester yarn under conditions of a temperature of 85° C. and a relative humidity of 95±5% for 168 hours.'}2. The polyester yarn of claim 1 , wherein a room-temperature strength-elongation index (X) indicating a ratio (T/S) of tensile strength (T) to tensile elongation (S) of the polyester yarn claim 1 , measured at room temperature; and a secondary high-humidity ...

Подробнее
25-07-2013 дата публикации

Weaving Using Reactive Materials

Номер: US20130189890A1
Автор: Cross Tory M., Dua Bhupesh
Принадлежит: Nike, Inc.

Different weaving materials, apparatuses, and methods are provided for producing woven textiles having different functional and aesthetic characteristics as compared to woven textiles produced using conventional methods. The different weaving materials comprise reactive materials or combined materials produced by an intermittent splicer. The different apparatuses include finishing devices for introducing organically-shaped lateral edges and interior apertures, and three-dimensional effectors for introducing three-dimensional aspects into a product as it is being woven. Weaving methods include simultaneously weaving fine denier panels and coarse denier panels. 1. A method of weaving using reactive materials , the method comprising:weaving an article using the reactive materials; andactivating selective portions of the article.2. The method of claim 1 , wherein the reactive material is a bi-component material.3. The method of claim 1 , wherein the reactive material is comprised of a first substance and a second substance.4. The method of claim 3 , wherein the first substance and the second substance have different properties.5. The method of claim 3 , wherein the first substance has a greater coefficient of stretch than the second substance.6. The method of claim 3 , wherein the first substance forms a sheath around the second substance.7. The method of claim 3 , wherein the first substance and the second substance are interspersed in the reactive material.8. The method of claim 1 , wherein the activating of the reactive material is comprised of applying a chemical claim 1 , water claim 1 , heat claim 1 , ultrasonic energy claim 1 , or light to the article.9. The method of claim 8 , wherein the applying occurs in a first portion of the article and not in a second portion of the article.10. An article woven using reactive materials claim 8 , the article comprisinga first selective portion woven using a first reactive material; anda second selective portion woven using ...

Подробнее
25-07-2013 дата публикации

Three-Dimensional Weaving System

Номер: US20130190917A1
Автор: Bhupesh Dua, Tory M. Cross
Принадлежит: Nike Inc

Different weaving materials, apparatuses, and methods are provided for producing woven textiles having different functional and aesthetic characteristics as compared to woven textiles produced using conventional methods. The different weaving materials comprise reactive materials or combined materials produced by an intermittent splicer. The different apparatuses include finishing devices for introducing organically-shaped lateral edges and interior apertures, and three-dimensional effectors for introducing three-dimensional aspects into a product as it is being woven. Weaving methods include simultaneously weaving fine denier panels and coarse denier panels.

Подробнее
19-09-2013 дата публикации

RETRACTABLE ENERGY ABSORBING WEBBING AND METHOD OF MANUFACTURING SAME

Номер: US20130239377A1
Автор: Russell Timothy M.
Принадлежит: YKK Corporation of America

Energy absorbing webbings that are generally flat and that have a controllable elongation distance are provided. The webbings are comprised of elongation yarns, such as partially oriented yarns (POY), and ground yarns. In certain embodiments, because they are generally flat, the energy absorbing webbings are suitable for use in retractors. Also provided are processes of manufacturing generally flat, energy absorbing webbings. In certain embodiments, the webbings are subjected to heat using first and second set of rollers with various feed ratios. 1. A method of heat treating a webbing , the webbing comprising a plurality of elongation yarns and a plurality of strength member yarns , comprising:(i) feeding the webbing through a first set of rollers at a roll-in speed;(ii) heat treating the webbing to adjust the relative lengths of the plurality of elongation yarns and the plurality of strength member yarns; and(iii) feeding the webbing through a second set of rollers at a roll-out speed,wherein the roll-in speed is different from the roll-out speed and is up to approximately 65% greater than the roll-out speed.2. The method of claim 1 , further comprising providing the webbing claim 1 , wherein the plurality of elongation yarns of the webbing are partially oriented yarns.3. The method of claim 1 , wherein the roll-in speed is approximately 10 yards per minute and the roll-out speed is approximately 8 yards per minute.4. The method of claim 1 , further comprising cutting the webbing to a predetermined length and then positioning the webbing within a retractor.5. The method of claim 1 , wherein after the feeding the webbing through the second set of rollers claim 1 , the elongation yarns are capable of sufficient elongation upon application of a predetermined load to absorb energy associated with a fall event.6. The method of claim 5 , wherein the roll-in speed being greater than the roll-out speed results in a weave-in of the plurality of strength member yarns that is ...

Подробнее
03-10-2013 дата публикации

Wool pile fabric including security fibers and method of manufacturing same

Номер: US20130255325A1
Принадлежит: Deckers Outdoor Corp

A wool pile fabric product including a plurality of wool fibers and at least one security fiber knit with a textile scrim to form a pile fabric having a scrim side and a fiber pile side. The product also includes a facing material that is attached to the scrim side of the wool pile fabric. The security fiber in the product provides a discrete way to identify a genuine product.

Подробнее
03-10-2013 дата публикации

Sheared wool weaving method

Номер: US20130261785A1
Автор: Nathan Crary, Zihao Dong
Принадлежит: Deckers Outdoor Corp

A method of manufacturing an article of footwear includes providing a knitting machine having a processor programmed to cause the knitting machine to knit a wool pile fabric having a plurality of footwear components and simultaneously knitting wool fibers and a scrim to form the wool pile fabric including the footwear components.

Подробнее
27-02-2014 дата публикации

Method of Manufacturing Fabric with Cool Effect

Номер: US20140057049A1
Автор: Lu Jen-Huan
Принадлежит: Grand Textile Co., Ltd.

A method of manufacturing fabric is provided with adding 900 g of a material having a 92 wt % of SiO, 5 wt % of ZnO, and 3 wt % of polypropylene acid sodium and 1,500 g of PU resin to water to mix until a first solution is formed; pouring the first solution into a first foaming tank; agitating the first solution in the first foaming tank to foam; adding a bridging agent and a foaming agent to a second foaming tank to mix with water to foam until a second solution is formed; pouring the first and second solutions into a third tank to mix and form a coating solution; continuously conveying a fabric sheet to a top of a platform; activating squeegees to spread the coating solution on the fabric sheet to form a cooling layer thereon; and performing a dry setting finish on the fabric sheet. 1. A method of manufacturing fabric comprising the steps of:{'sub': '2', 'adding 900 g of a material having a 92 wt % of silicone dioxide (SiO), 5 wt % of zinc oxide (ZnO), and 3 wt % of polypropylene acid sodium and 1,500 g of polyurethane (PU) resin to water to mix until a first solution of 30 liter is formed;'}pouring the first solution into a first foaming tank;agitating the first solution in the first foaming tank to foam;adding a bridging agent and a foaming agent to a second foaming tank to mix with water to foam until a second solution having a volume of 100 liter is formed;pouring the first and second solutions into a third tank to mix and form a coating solution;continuously conveying a fabric sheet to a top of a platform;activating a squeegee to spread the coating solution on the fabric sheet to form a cooling layer; andperforming a dry setting finish on the fabric sheet coated with the cooling layers.2. The method of claim 1 , wherein the bridging agent is PU resin of CAS No: 26680-22-8 claim 1 , and quantity of the added bridging agent is 2-5% of a sum of volume of the first foaming tank and volume of the second foaming tank.3. The method of claim 1 , wherein claim 1 , the ...

Подробнее
27-03-2014 дата публикации

Weaving Method of Three-Dimensional Vamp

Номер: US20140082905A1
Автор: WEN Wen-Tsao

A weaving method of a three-dimensional vamp includes the steps of: weaving yarn by a warp-knitting machine to form a top vamp by a first part needle bar of the warp-knitting machine which is interactively woven with a bottom vamp formed by a second part needle bar of the warp-knitting machine so as to form a tube-shaped fabric; cutting the tube-shaped fabric to form a sock-shaped fabric; disposing the sock-shaped fabric on a shoe last; and heating the sock-shaped fabric to tighten the sock-shaped fabric in order to seal the shoe last and consequently obtain the three-dimensional vamp. The heat shrinkable and irreversible properties of a high shrinkage yarn or hot melt yarn are used to seal the sock-shaped fabric with the shoe last, thereby achieving the substantial physical properties. The turner cost and the fabric flotsam can be reduced by the process of manufacturing the integrally formed vamp. 1. A weaving method of a three-dimensional vamp , comprising the steps of:weaving yarn by a warp-knitting machine to form a top vamp by a first part needle bar of the warp-knitting machine which is interactively woven with a bottom vamp formed by a second part needle bar of the warp-knitting machine so as to form a tube-shaped fabric;cutting the tube-shaped fabric to form a sock-shaped fabric;disposing the sock-shaped fabric on a shoe last; andheating the sock-shaped fabric to tighten the sock-shaped fabric in order to seal the shoe last and consequently obtain the three-dimensional vamp.2. The weaving method of a three-dimensional vamp according to claim 1 , wherein the warp-knitting machine has a crotchet diameter falling within a range from 1.9 centimeters to 2.5 centimeters.3. The weaving method of a three-dimensional vamp according to claim 1 , wherein the heated yarn has an irreversible property.4. The weaving method of a three-dimensional vamp according to claim 1 , wherein the heated sock-shaped fabric seals the shoe last completely.5. The weaving method of a ...

Подробнее
06-01-2022 дата публикации

Sterile knitted fabric and method for manufacturing the same

Номер: US20220002919A1
Автор: CHI FEl KUNG
Принадлежит: Individual

A sterile knitted fabric is provided. The sterile knitted fabric is made by the following steps: First, a plurality of nano far infrared antibacterial yarns and a plurality of bamboo charcoal hollow yarns are provided. Next, the nano far infrared antibacterial yarns are interwoven with the bamboo charcoal hollow yarn by a circular knitting machine to form a grey fabric. Next, the grey fabric is through a scouring process to form a scoured fabric. Next, the scoured fabric is through a setting process. The scoured fabric is moved 25 meters per minute for the setting process.

Подробнее
06-01-2022 дата публикации

Method and apparatus for treating a textile fabric

Номер: US20220002928A1
Принадлежит: Jeanologia SL

A method and an apparatus for desizing and/or shrinking a textile fabric, the textile fabric having a length and a width, the method including moving, lengthwise, the fabric, and wetting the fabric within a first pool of liquid, the first pool of liquid including water; passing the fabric through a chamber, and in the chamber contacting the fabric with at least one heatable roller heated at a treatment temperature; soaking the fabric with a main pool of liquid, the main pool of liquid including water; and treating the fabric with ozone. The apparatus includes a first module for wetting the fabric, a second module with a heatable roller for heating the fabric, a third module for soaking the fabric, and fourth module for treating the fabric with ozone. The second module may optionally be integrated with the first module.

Подробнее
07-01-2016 дата публикации

NATURAL WOOL PILE FABRIC AND METHOD FOR MAKING WOOL PILE FABRIC

Номер: US20160002839A1
Принадлежит:

A method of making a deep pile fabric that closely resembles natural sheepskin fleece. The method includes forming a length of pile fabric having fibers on one side and a scrim on an opposing side, where at least a portion of the fibers are natural wool fibers, and finishing the pile fabric as natural sheepskin by polishing the fiber side of the pile fabric, including guiding the length of pile fabric over at least two polishing rolls, where the two polishing rolls rotate in opposite directions. 1. A method of making a deep pile fabric that closely resembles natural sheepskin fleece , comprising:forming a length of pile fabric having fibers on one side and a scrim on an opposing side, at least a portion of said fibers being natural wool fibers; andfinishing the pile fabric as natural sheepskin by polishing the fiber side of the pile fabric, including guiding the length of pile fabric over at least two polishing rolls, wherein said two polishing rolls rotate in opposite directions.2. The method of claim 1 , wherein each of said two polishing rolls comprises a plurality of blades claim 1 , each blade having a multiplicity of teeth for raking the fiber side of the fabric.3. The method of claim 1 , wherein the wool fibers are treated prior to the forming step by:providing a batch of fibers including sheared wool fibers,applying a mixing solution to the fibers,mixing the wool fibers with applied mixing solution,carding the fibers and forming a web of fibers, andslivering the web.4. The method of claim 1 , further comprising heating at least one of said two polishing rolls.5. The method of claim 4 , wherein said heating step includes heating a surface of said at least one of said two polishing rolls to a temperature of 205° C. to 250° C.6. The method of claim 1 , further comprising applying a conditioning solution to the fiber side of the pile fabric.7. A method of making a deep pile fabric that closely resembles natural sheepskin fleece claim 1 , comprising:forming a ...

Подробнее
13-01-2022 дата публикации

Wet Processing Technique for Producing Terry Fabrics

Номер: US20220010487A1
Автор: Abhishek Gupta
Принадлежит: Trident Ltd

An improved wet processing method for producing improved terry fabrics is provided. Woven fabric is treated based on enzymatic treatment process including de-sizing using optimized dosage of predetermined de-sizing ingredients, washed and bio-washed using optimized dosage of bio-washing ingredients. Enzyme treated fabric is pre-treated and subjected to hot air beat-up process comprising mechanically treating pre-treated fabric with optimized hot air beat-up parameters. Air is blown onto pre-treated fabric from both directions for predetermined duration and at predetermined frequency causing to and fro movement of fabric in tumbling chambers of tumbling machine resulting in an instantaneous impact produced on every pile loop of pre-treated fabric such that fibers rearrange in a path of least resistance to produce relaxed, open and aligned fiber structure in the fabric. Mechanically treated hot air-beaten up fabric is dyed and includes finishing the dyed fabric with softener and subjected to tumbling using optimized finishing parameters.

Подробнее
19-01-2017 дата публикации

DOWN-LIKE COTTON MATERIAL AND METHOD FOR PRODUCING THE SAME

Номер: US20170013901A1
Автор: HIRAKAWA Shoichi
Принадлежит: HIRAKAWA CORPORATION

The present invention provides a novel down-like cotton material which is bulky, light-weight, excellent in washing resistance, heat-retaining property and heat insulation property and provides volume feeling, without odor from animals. 1. A down-like cotton material comprising an axial fiber and a float each composed of a polyester raw yarn , wherein filaments of the axial fiber and the float are united by air entangling in air flow to be entangled , connected and integrated to have a down ball-like mass , wherein the down ball-like mass has a predetermined diameter in an aligned form , and the down ball-like mass is continually aligned at a predetermined interval in a length direction of the axial fiber to form a cotton-like long fiber.2. A down-like cotton material comprising an axial fiber and a float each composed of a polyester raw yarn , wherein filaments of the axial fiber and the float are united by air entangling in air flow to be entangled , connected and integrated to have a down ball-like mass , wherein the diameter of the down ball-like mass in an aligned form is 1.0 to 3.5 cm , and the down ball-like mass is continually aligned at an interval of up to about 10 cm or less in a length direction of the axial fiber to form a cotton-like long fiber.3. A down-like cotton material comprising an axial fiber and a float each composed of a polyester raw yarn , wherein filaments of the axial fiber and the float are united by air entangling in air flow to be entangled , connected and integrated to have a down ball-like mass , wherein the diameter of the down ball-like mass in an aligned form is 1.0 to 3.5 cm , and the down ball-like mass is continually aligned at an interval of up to about 10 cm or less in a length direction of the axial fiber to form a cotton-like long fiber , and a silicone resin is fixed to the cotton-like long fiber to thermally stabilize the shape.4. The down-like cotton material according to claim 1 , wherein the float is selected from a ...

Подробнее
03-02-2022 дата публикации

SYSTEM AND METHOD OF MANUFACTURING SUSPENSION MEMBER

Номер: US20220034006A1
Автор: McGraw Ethan
Принадлежит:

A method of manufacturing a suspension member including providing a first set of yarns and a second set of yarns, combining the first set of yarns and the second set of yarns to form the suspension member, and at least partially bonding a portion of the first set of yarns and the second set of yarns together by heating the suspension member to form a first zone of the suspension member having a first tension. 1. A method of manufacturing a suspension member , the method comprising:providing a first set of yarns and a second set of yarns;combining the first set of yarns and the second set of yarns to form the suspension member; andat least partially bonding a portion of the first set of yarns and the second set of yarns together by heating the suspension member to form a first zone of the suspension member having a first tension.2. The method of claim 1 , wherein bonding the portion of the first set of yarns and the second set of yarns together further forms a second zone of the suspension member having a second tension that is different from the first tension.3. The method of claim 2 , wherein bonding the portion of the first set of yarns and the second set of yarns together includes applying different amounts of heat to the first zone of the suspension member and to the second zone of the suspension member.4. The method of claim 1 , wherein the combining the first set of yarns and the second set of yarns includes feeding the first set of yarns and the second set of yarns through a loom and weaving the second set of yarns through the first set of yarns.5. The method of claim 4 , further comprising tensioning a portion of the first set of yarns before the combining the first set of yarns and the second set of yarns.6. The method of claim 4 , further comprising tensioning a portion of the first set of yarns during the combining the first set of yarns and the second set of yarns.7. The method of claim 1 , wherein bonding the portion of first set of yarns and the second ...

Подробнее
17-01-2019 дата публикации

Medical Fabric

Номер: US20190015192A1
Принадлежит: ASAHI KASEI KABUSHIKI KAISHA

Provided is a medical fabric that is thin, and has both high tear strength and low water permeability. The medical fabric is characterized in that multifilament yarns having a total fineness of 7-80 dtex are disposed in the warp and weft, the single yarn fineness of at least one of the multifilament yarns among the warp and weft is 0.5 dtex or less, the twist factor A of the weft is 50-2,000, the thickness is 10-90 μm, and the water permeability both before and after puncture by a needle is 300 cc/min/cmor less. 1. A medical fabric comprising multifilament yarns with a total fineness of 7 to 80 dtex as warp yarns and weft yarns , wherein the single filament fineness of at least one multifilament yarn among the warp yarns and the weft yarns is 0.5 dtex or less , the twist coefficient A of the weft yarns is 50 to 2000 , the thickness of the medical fabric is 10 to 90 μm , and the water permeability before and after needle puncture of the medical fabric is 300 cc/min/cmor less.2. The medical fabric according to claim 1 , wherein the degree of weft yarn overlap (WW) of the weft yarns is 1.0 to 1.5.3. The medical fabric according to claim 1 , wherein the warp yarn crimp angle of the warp yarns is 20 degrees or smaller.4. The medical fabric according to claim 1 , wherein intra-yarn single filament fineness ratios S for both the warp yarns and the weft yarns are 2 or less.5. The medical fabric according to claim 1 , wherein the warp/weft twist coefficient ratio B between the warp yarns and the weft yarns is 1.5 to 20.6. The medical fabric according to claim 1 , wherein the ratio of a diameter in the horizontal direction (Dh) to a diameter in the vertical direction (Dv) in the weft yarn cross section of the woven fabric is 1.5 Подробнее

17-01-2019 дата публикации

MACHINE FOR MANUFACTURING ARTIFICIAL TURF

Номер: US20190017206A1
Принадлежит: Polytex Sportbelage Produktions-GmbH

A machine for manufacturing artificial turf includes a fiber inserter configured to incorporate artificial turf fiber into an artificial turf backing to form the artificial turf. The artificial turf includes an underside and an artificial turf surface. The machine further includes a coater configured to coat the underside with a colloidal latex coating. The colloidal latex coating has an exposed surface. The machine further includes an applicator configured to welt an exposed surface of the colloidal latex coating with an anti-blistering agent. The machine further includes a heater configured to heat the underside to cure the colloidal latex coating into a solid latex coating. 124-. (canceled)25. A machine for manufacturing artificial turf , wherein the machine comprises:a fiber inserter configured for incorporating artificial turf fiber into an artificial turf backing to form the artificial turf, wherein the artificial turf comprises an underside and an artificial turf surface;a coater configured for coating the underside with a colloidal latex coating, wherein the colloidal latex coating has an exposed surface;an applicator configured for wetting the exposed surface of the colloidal latex coating with an anti-blistering agent, wherein the applicator is configured for spraying, or atomizing, or aerosoling the anti-blistering agent onto the exposed surface; anda heater configured for heating the underside to cure the colloidal latex coating into a solid latex coating.26. The machine of claim 25 , wherein the coater comprises a lick roll or the coater comprises a dispenser configured for dispensing the colloidal latex with a knife over roll applicator for leveling the dispensed colloidal latex.27. The machine of claim 25 , wherein the heater comprises a first heat control element for maintaining a first temperature range across the underside claim 25 , wherein the heater comprises a second heat control element for maintaining a second temperature range across the ...

Подробнее
28-01-2016 дата публикации

Fabric System

Номер: US20160022061A1
Принадлежит: Sheex Inc, Sheex Llc

Bedding material including a first fabric section manufactured from performance fabric and having a first and second side; and, a second fabric section attached to the first side of the first fabric section. Additionally, a third fabric section can be attached to the second side of the first fabric section. The first fabric section can be attached to the second fabric section through a flatlock stitch. The first fabric section can include a first zone and a second zone wherein the first zone contains different performance properties from the second zone and the first zone can have thermal or moisture wicking properties.

Подробнее
28-01-2016 дата публикации

MULTI-MATERIAL INTEGRATED KNIT THERMAL PROTECTION FOR INDUSTRIAL AND VEHICLE APPLICATIONS

Номер: US20160024693A1
Принадлежит:

Knit fabrics having ceramic strands, thermal protective members formed therefrom and to their methods of construction are disclosed. Methods for fabricating thermal protection using multiple materials which may be concurrently knit are also disclosed. This unique capability to knit high temperature ceramic fibers concurrently with a load-relieving process aid, such as an inorganic or organic material (e.g., metal alloy or polymer), both small diameter wires within the knit as well as large diameter wires which provide structural support and allow for the creation of near net-shape performs at production level speed. Additionally, ceramic insulation can also be integrated concurrently to provide increased thermal protection. 1. A multi-component stranded yarn , comprising:a continuous ceramic strand; anda continuous load-relieving process aid strand, wherein the continuous ceramic strand serves the continuous load-relieving process aid strand forming the multi-component stranded yarn.2. The multi-component stranded yarn of claim 1 , wherein the continuous load-relieving process aid strand is a polymeric material.3. The multi-component stranded yarn of claim 1 , wherein the continuous load-relieving process aid strand is a metallic material.4. The multi-component stranded yarn of claim 1 , wherein the continuous ceramic strand is a multifilament material and the continuous load-relieving process aid strand is a monofilament material.5. The multi-component stranded yarn of claim 1 , further comprising:a metal alloy wire which is concurrently knit with the continuous ceramic strand and the continuous load-relieving process aid strand.6. The multi-component stranded yarn of claim 1 , further comprising:an additional fiber component.7. The multi-component stranded yarn of claim 6 , wherein the additional fiber component is selected from the group consisting of: ceramic claim 6 , glass claim 6 , mineral claim 6 , thermoset polymers claim 6 , thermoplastic polymers claim 6 ...

Подробнее
23-01-2020 дата публикации

Phototherapy Anti-Smog Cloth Structure

Номер: US20200022430A1
Автор: Wang Man-Ching
Принадлежит:

A cloth structure includes a first weaving layer, a second weaving layer interwoven with the first weaving layer, an intermediate connecting layer located between the first weaving layer and the second weaving layer, and a sun protection layer applied on the first weaving layer. The cloth structure presents a single-cloth fabric. The sun protection layer covers pores of the first weaving layer and forms a first protection layer to filter the smog. The first weaving layer is formed with inverted V-shaped cloth patterns, so that the first weaving layer forms a second protection layer to filter the smog. The intermediate connecting layer forms a third protection layer to filter the smog. The second weaving layer obstructs the thread openings of the first weaving layer and forms a fourth protection layer to filter the smog. 1. A cloth structure comprising:a first weaving layer;a second weaving layer;an intermediate connecting layer located between the first weaving layer and the second weaving layer; anda sun protection layer mounted on the first weaving layer;wherein:a method for forming the cloth structure comprises a first step of preparing material, a second step of weaving, a third step of shaping cloth, a fourth step of dyeing and finishing, a fifth step of tension-free full-out layering coloring, a sixth step of tension-free and dust-free drying, and a seventh step of shaping and dispersing;the first step includes providing a first texture material polymer, a second texture material polymer and a third texture material polymer;the first texture material polymer is made of polyester fiber nylon and elastic yarn;the second texture material polymer is made of polyester fiber and elastic yarn;the third texture material polymer is made of polyester fiber;the third texture material polymer is processed by fine grinding;the second step includes performing double-sided weaving to weave the first texture material polymer for forming the first weaving layer, to weave the ...

Подробнее
25-01-2018 дата публикации

SYSTEMS AND METHODS FOR WATER REPELLENT TREATMENT OF PROTECTIVE FABRICS, AND PROTECTIVE FABRICS MADE USING SAME

Номер: US20180023234A1
Принадлежит:

According to some aspects, water repellent treatments for fabrics. More particularly, systems and methods for water repellant treatment of protective fabrics for ballistic and other applications, and protective fabrics made using such techniques. 1. A method for treating a fabric , comprising:a. contacting a water repellent compound to a raw fabric; andb. curing the water repellent compound in an infrared module to form a treated fabric.211.-. (canceled)12. The method of claim 1 , wherein the compound is a fluoropolymer.1314.-. (canceled)15. The method of claim 1 , wherein the infrared module is set to a temperature of less than 285 degrees Fahrenheit.16. A method for treating a fabric claim 1 , comprising:contacting a water repellent compound to a raw fabric; andremoving excess water repellent compound before curing the water repellent compound using a vacuum module.17. The method of claim 16 , wherein the vacuum module includes one or more vacuum slots.18. The method of claim 16 , further comprising curing the water repellent compound in an infrared module to form a treated fabric.19. The method of claim 18 , wherein the curing step includes a first pass of the fabric though the infrared module and a second pass of the fabric through the infrared module.20. The method of claims 18 , wherein:the curing step includes a first pass of the fabric though the infrared module and a second pass of the fabric through the infrared module; andthe removing excess water repellent compound step includes a first pass of the fabric though the vacuum module and a second pass of the fabric through the vacuum module.21. The method of claim 16 , wherein the water repellent compound is contacted to the raw fabric using a dip tank.22. The method of claim 16 , wherein the water repellent compound is contacted to the raw fabric using spray techniques.23. The method of claim 16 , wherein the water repellent compound is contacted to the raw fabric using a transfer roll.24. The method of a ...

Подробнее
17-02-2022 дата публикации

NON-COATED BASE FABRIC FOR AIRBAG, AIRBAG, AND MANUFACTURING METHOD OF NON-COATED BASE FABRIC FOR AIRBAG

Номер: US20220049383A1
Автор: Hosaka Taiki
Принадлежит:

A non-coated base fabric for an airbag is made of a polyamide fiber, wherein a CV value of the dynamic air permeability by the ASTM D6476 method is 6.0% or less, a CV value of the air permeability at a differential pressure of 500 Pa by the ASTM D3886 method is 10.0% or less, and a CV value of the air permeability at a differential pressure of 20 KPa is 10.0% or less, which are measured every 20 cm in a weft direction of the base fabric. 14-. (canceled)5. A non-coated base fabric for an airbag made of a polyamide fiber , wherein CV values of air permeability of (A) to (C) measured every 20 cm in a weft direction of the base fabric satisfy:(A) a CV value of dynamic air permeability by the ASTM D6476 method is 6.0% or less,(B) a CV value of air permeability at a differential pressure of 500 Pa by the ASTM D3886 method is 10.0% or less, and(C) a CV value of the air permeability at a differential pressure of 20 KPa according to JIS L 1096 is 10.0% or less.6. The non-coated base fabric for an airbag of claim 5 , wherein a CV value of tensile strength measured every 20 cm in a weft direction of the base fabric is 1.5% or less claim 5 , and a CV value of tear strength is 3.0% or less.7. A method of manufacturing the non-coated base fabric for an airbag of claim 5 , the method comprising:a heat setting step and a step of adjusting the surface temperature of the base fabric before the heat setting step,wherein, after adjusting the surface temperature of the base fabric to 40 to 70° C., the heat setting step is performed.8. An airbag in which the non-coated base fabric for an airbag of is sewn. This disclosure relates to a non-coated base fabric for an airbag, an airbag, and a manufacturing method of the non-coated base fabric for an airbag. More specifically, the disclosure relates to a non-coated base fabric for an airbag having a uniform air permeability in a weft direction of the base fabric, an airbag in which the non-coated base fabric for an airbag is sewn, and a ...

Подробнее
11-02-2016 дата публикации

DEVICE FOR THE THERMAL TREATMENT OF YARNS

Номер: US20160040324A1
Принадлежит:

A device for the thermal treatment of yarns comprising at least one inlet opening and at least one outlet opening for at least one transport means, which transports the yarn through the device, and comprising separating elements at the inlet opening and the outlet opening for thermal shielding, in order to minimise the exchange of media to the environment. The separating elements are configured to have a low bending rigidity and are arranged such that a surface load is applied onto the yarn lying on the transport means, for example a conveyor belt, which is not greater than 0.005 kg*cm. 11345231679101145. Device () for the thermal treatment of yarns () comprising at least one inlet opening () and at least one outlet opening () for at least one transport means () , which transports the yarn () through the device () , and comprising separating elements ( , , , , ) at the inlet opening () and the outlet opening () for thermal shielding in order to minimise the exchange of media to the environment ,characterised in that{'b': 6', '7', '9', '10', '11', '3', '2, 'sup': '−2', 'the separating elements (, , , , ) are configured to have a low bending rigidity and are arranged such that a surface load is applied onto the yarn () lying on the transport means () which is not greater than 0.005 kg*cm.'}223. Device according to claim 1 , characterised in that for thermal shielding to minimise the exchange of media the separating elements are made from a flexible material arranged on the side of the transport means () covered with yarn ().37. Device according to claim 2 , characterised in that the separating element is designed as a flexible loop ().487. Device according to claim 3 , characterised in that a loading element () is arranged inside the loop ().56. Device according to claim 2 , characterised in that the yarn-contacting side of the flexible material () has low-friction properties.69. Device according to claim 1 , characterised in that for thermal shielding the separating ...

Подробнее
06-02-2020 дата публикации

Device and Method for Thermosetting a Knitted Fabric

Номер: US20200040502A1
Принадлежит:

A device for thermosetting a knitted fabric includes a first tool half and a second tool half. The first tool half and the second tool half in a closed position enclose a cavity in which the knitted fabric is receivable. Each of the first tool half and the second tool half have a respective shape-imparting effective surface by way of which an external form of the knitted fabric is determinable. The device further includes a heating installation where thermal energy is introducible into the knitted fabric via the heating installation. 1. A device for thermosetting a knitted fabric , comprising:a first tool half;a second tool half;wherein the first tool half and the second tool half in a closed position enclose a cavity in which the knitted fabric is receivable;wherein each of the first tool half and the second tool half have a respective shape-imparting effective surface by way of which an external form of the knitted fabric is determinable; anda heating installation, wherein thermal energy is introducible into the knitted fabric via the heating installation.2. The device according to claim 1 , wherein the heating installation is a temperature-controllable medium claim 1 , wherein at least one of the first tool half and the second tool half has an infeed duct claim 1 , and wherein the temperature-controllable medium is introducible into the knitted fabric via the infeed duct.3. The device according to claim 2 , wherein at least one of the first tool half and the second tool half has a discharge duct and wherein the temperature-controllable medium is dischargeable from the knitted fabric via the discharge duct.4. The device according to claim 2 , wherein the temperature-controllable medium is air and/or steam.5. The device according to claim 1 , wherein the heating installation is a radiator array.6. The device according to claim 5 , wherein the radiator array is an infrared radiator or an electric radiator.7. A method for thermosetting a knitted fabric claim 5 , ...

Подробнее
25-02-2021 дата публикации

Method for thermoforming product of filaments

Номер: US20210054537A1
Автор: Kohei Ikeda, Mariko Honda
Принадлежит: Unitika Ltd

To provide a thermoforming method for obtaining a thermoformed article that exhibits excellent abrasion resistance at melt-bonded portions, and excellent adhesive strength between woven fabrics or to another kind of article. Polyethylene having a melt flow rate, measured under conditions of a temperature of 280° C. and a load of 2.16 kg, of 10 to 15 g/10 min and polyethylene terephthalate are prepared. By a conjugate melt spinning method using the polyethylene terephthalate as a core component and the polyethylene as a sheath component, multi-filament yarn in which core-sheath composite filaments having a core component:sheath component mass ratio of 1 to 4:1 are bundled is obtained. A product of filaments is obtained by weaving, knitting, braiding or winding using the multi-filament yarn. Thermoforming of the product of filaments is carried out by heating the product of filaments to melt the polyethylene, thereby melt-bonding the core-sheath composite filaments to each other, with the polyethylene terephthalate retaining its initial filament form.

Подробнее
05-03-2015 дата публикации

METHOD OF MANUFACTURING FRAYING-FREE COTTON ELASTANE WEFT KNIT FABRIC

Номер: US20150059137A1
Принадлежит:

This invention is related to a method of manufacturing a cotton weft knit fabric that is resistant to fraying, curling, and laddering. The unique fabrication method described herein generates a cotton fabric that resists edge fraying and curling when cut. As a result of the unique manufacturing method described herein, the typical garment hemming process typically used to prevent hemming and fraying in weft knit fabric is not required. 1. A method of generating a fray-resistant and curl-resistant weft knit cotton-based blended fabric comprising:a. providing a very fine cotton yarn with a count between about 80ne and about 100ne and a twist factor between about 3.5 and about 4.0;b. providing a secondary fiber yarn with a linear mass density between about 17 and about 22;c. interlock knitting said very fine cotton yarn and said secondary fiber yarn to create a blended fabric such that said very fine cotton yarn makes up between about 85% and about 90% by weight of said fabric and said secondary fiber yarn makes up between about 10% and about 15% by weight of said blended fabric; andd. pre-setting said blended fabric at a temperature between about 180° C. and about 205° C.2. The method of wherein said very fine cotton yarn has a count of 80ne.3. The method of wherein said secondary fiber yarn comprises elastane yarn.4. The method of wherein said elastane yarn has a linear mass density of 22 decitex.5. The method of wherein said very fine cotton yarn makes up about 88% of said blended fabric and said secondary fiber yarn makes up about 12% of said blended fabric.6. The method of wherein said pre-setting occurs at a temperature of 200° C.7. The method of wherein the curing hold time of said pre-setting is between about 15 and about 25 seconds.8. The method of wherein said blended fabric is additionally dyed and washed.9. The method of wherein said blended fabric has a knitting stitch length of 2.55 millimeters.10. The method of wherein the tension of said very fine ...

Подробнее
04-03-2021 дата публикации

TEXTILE ARTICLE AND METHOD FOR THE PRODUCTION AND DISASSEMBLY OF A TEXTILE ARTICLE

Номер: US20210060821A1
Автор: VANHOECH Cédric
Принадлежит: Regeneration bvba

The present invention related to a method of for the production of textile articles, I which the textile articles can be disassembled automatically or semi-automatically, in which, when sewing or stitching, a polymer melt yarn is used. 1. A method for the production and disassembly of textile articles , wherein the textile articles can be disassembled and thus recycled or reused automatically or semi-automatically ,wherein, during sewing or stitching the textile article, a polymer melt yarn is used, andwherein the melt yarn has a melting temperature, and in which the melt yarn transitions from a solid phase to a liquid or semi-liquid phase at a temperature that is equal to or higher than the melting temperature of the yarn, and wherein the disassembly is realized by heating the melt yarn and/or the article to a temperature that is equal to or higher than said melting temperature of the melt yarn.2. The method according to claim 1 , wherein claim 1 , the melting temperature of the melt yarn is between 60° C. and 200° C.3. The method according to claim 1 , wherein at least one melt yarn and at least one standard yarn are used during sewing or stitching claim 1 , or at least two different melt yarns wherein the two melt yarns have different melting temperatures.4. The method according to claim 2 , wherein the polymer melt yarn comprises between 40% and 100% of thermoplastic polymer claim 2 , wherein one or more polymers are selected from the group of polyolefins claim 2 , polyesters claim 2 , polyoxymethylene (POM) claim 2 , polypropylene claim 2 , polyurethane claim 2 , polyamides claim 2 , polylactic acid and co-polymers thereof.5. The method according to claim 1 , wherein the melt yarn is a mono- or multifilament.6. The method according to claim 1 , wherein the melt yarn is a twined multifilament.7. The method according to claim 1 , wherein the melt yarn is provided with one or more heat conduction increasing materials selected from the group of metals claim 1 , ...

Подробнее
21-02-2019 дата публикации

A WOVEN FIBER STRUCTURE PRESENTING A SATIN WEAVE ON AT LEAST ONE OF ITS OUTSIDE FACES

Номер: US20190055681A1
Принадлежит:

A woven fiber structure presenting over at least one of its outside faces a satin weave formed by interlinking a first set of yarns with a second set of yarns; wherein the first set of yarns is in the majority over the outside face, the first set of yarns being formed by a mixture of yarns having an S-twist and of yarns having a Z-twist. 1. A woven fiber structure comprising yarns made of a carbon precursor and presenting over at least one of its outside faces a satin weave formed by interlinking a first set of yarns with a second set of yarns;wherein the first set of yarns is in the majority over the outside face, said first set of yarns being formed by a mixture of yarns having an S-twist and of yarns having a Z-twist; and wherein the structure includes over its outside face:a first yarn of the second set of yarns forming a first set of satin points;a second yarn of the second set of yarns, adjacent to the first yarn of the second set of yarns, and forming a second set of satin points, the satin points of the second set being offset from the satin points of the first set by a first spacing; anda third yarn of the second set of yarns, adjacent to the second yarn of the second set of yarns, and forming a third set of satin points, the satin points of the third set being offset from the satin points of the second set by a second spacing different from the first spacing.2. A woven fiber structure comprising yarns made of carbon and presenting over at least one of its outside faces a satin weave formed by interlinking a first set of yarns with a second set of yarns;wherein the first set of yarns is in the majority over the outside face, said first set of yarns being formed by a mixture of yarns having an S-twist and of yarns having a Z-twist; and wherein the structure includes over its outside face:a first yarn of the second set of yarns forming a first set of satin points;a second yarn of the second set of yarns, adjacent to the first yarn of the second set of yarns, ...

Подробнее
12-03-2015 дата публикации

METHOD AND DEVICE FOR RECOVERING BULK OF NONWOVEN FABRIC

Номер: US20150067996A1
Принадлежит:

A device and method for excellent recovery of bulk in nonwoven fabric. While nonwoven fabric is transported so as to enter a heating chamber via an entry opening and, after progressing within the heating chamber, exit the heating chamber via an exit opening, heated air is supplied at a speed higher than the transport speed for the unwoven fabric so as to enter the heating chamber via the entry opening and after progressing within the heating chamber while contacting the nonwoven fabric, exit the heating chamber via the exit opening. 1. A method for restoring bulk of a strip-shaped nonwoven fabric , which method includesa step of providing a heating chamber which has an inlet and outlet,a step of conveying a nonwoven fabric so as to enter the heating chamber through the inlet, proceed through the inside of the heating chamber, then exit the heating chamber through the outlet while feeding a heated fluid by a speed faster than the speed of conveyance of the nonwoven fabric so as to enter the heating chamber through one of the inlet and outlet, proceed through the inside of the heating chamber while contacting the nonwoven fabric, then exit from the inside of the heating chamber through the other of the inlet and outlet.2. The method according to claim 1 , wherein the heated fluid enters the heating chamber through the inlet and exits the heating chamber through the outlet.3. The method according to claim 1 , wherein the nonwoven fabric is conveyed inside the heating chamber without being supported.4. The method according to claim 1 , wherein the heating chamber is partitioned by two partition walls which extend from the inlet to the outlet while being separated from each other and wherein the nonwoven fabric is conveyed in the heating chamber so that the two surfaces of the nonwoven fabric continue to face these partition walls.5. The method according to claim 1 , further comprising a step of cooling the nonwoven fabric which exits the heating chamber.6. The method ...

Подробнее
12-03-2015 дата публикации

ENVIRONMENTALLY FRIENDLY NON-BLEED POLYESTER FABRIC AND METHOD OF MANUFACTURING THE SAME

Номер: US20150068254A1
Принадлежит:

A method of manufacturing a polyester fabric with inherent color, the method including: providing a polyester fiber with inherent color; spinning polyester yarn from the fiber with inherent color; knitting the colored polyester yarn into knitted fabric which can combine with other yarn according to a requirement; wishing the colored polyester fabric and heat-setting the fabrics with add-on functional finish to the fabric. The providing of polyester fiber with inherent color may include: cleaning and drying polyester bottles; recycling polyester chips from clean bottles; mixing chips with pigment evenly and melting the chips with pigment; extruding the filament fiber with color; and drawing and cutting filament fiber into staple fiber. Further aspects of the present invention are directed to a colored polyester fabric and a method of manufacturing an article of clothing, using a colored polyester fabric produced using the above-described method. 1. A method of manufacturing a polyester knitted fabric with inherent color , the method comprising:providing a polyester fiber with inherent color;spinning a colored polyester yarn from the polyester fiber with inherent color; andknitting the colored polyester yarn into a colored polyester fabric.2. The method of claim 1 , wherein providing the polyester fiber with inherent color comprises:providing polyester chips:mixing the polyester chips with a pigment;extruding a colored filament fiber from the polyester chips mixed with the pigment; andcutting the filament fiber into a staple fiber.3. The method of claim 2 , wherein mixing the polyester chips with the pigment comprises melting the polyester chips with pigment chips having a color.4. The method of claim 3 , wherein the polyester chips are melted with the pigment chips at 260-285° C. claim 3 , and the colored filament fiber is then extruded at 270-285° C.5. The method of claim 2 , wherein the polyester chips are obtained from recycled polyester bottles.6. The method of ...

Подробнее
27-02-2020 дата публикации

SECURED STRAND END DEVICES

Номер: US20200060853A1
Принадлежит: IDev Technologies, Inc.

Methods for securing strand ends of devices configured for insertion into an anatomical structure, and the resulting devices. 192.-. (canceled)93. A device configured for insertion into an anatomical structure , the device comprising: a first body end;', 'a second body end; and', 'a body length between the first body end and the second body end;, 'a single strand including a strand portion on both sides of a strand bend, each of the strand portions having an end, the strand portions being woven to form a body havingthe strand portion ends are secured together to form a joint assembly that is spaced apart from each end of the body;wherein a length of the joint assembly along a longitudinal axis of the joint assembly is between 0.1 percent and 15 percent of the body length.94. The device of claim 93 , wherein the length of the joint assembly is less than 2 percent of the body length.95. The device of claim 93 , wherein the strand portion ends are secured side-by-side.96. The device of claim 93 , wherein the strand portion ends are secured end-to-end.97. The device of claim 93 , wherein the joint assembly is positioned beneath a strand of the device that crosses over the joint assembly at a strand crossing.98. The device of claim 97 , wherein the joint assembly is substantially centered beneath the strand that passes thereover.99. The device of claim 93 , wherein the device is configured as a self-expanding stent.100. The device of claim 93 , wherein the joint assembly is nearer to one of the first body end and the second body end than to the other of the first body end and the second body end.101. The device of claim 93 , wherein the joint assembly is spaced apart from each of the first body and the second body end by least two strand crossings.102. The device of claim 93 , wherein the strand portion ends are secured by soldering.103. The device of claim 93 , wherein the strand portion ends are secured by welding. This application is a continuation of U.S. application ...

Подробнее
09-03-2017 дата публикации

AIRBAG BASE FABRIC AND MANUFACTURING METHOD THEREFOR

Номер: US20170067189A1
Автор: Yokoi Daisuke
Принадлежит:

An airbag base fabric satisfying characteristics A to D: 19-. (canceled)10. A non-coated airbag base fabric satisfying characteristics A to D: {'br': None, 'i': 'WR=', '(major axis of warp thread cross section in textile)/(minor axis of warp thread cross section in textile) \u2003\u2003(1)'}, '(A) a cross-sectional deformation (WR), calculated by formula (1), of multifilament warp threads constituting a textile is 4.0 to 6.0,'} {'br': None, 'i': 'FR=', '(major axis of weft thread cross section in textile)/(minor axis of weft thread cross section in textile) \u2003\u2003(2)'}, '(B) a cross-sectional deformation (FR), calculated by formula (2), of multifilament weft threads constituting the textile is 2.4 to 4.0,'}(C) a single fiber cross-sectional shape of the multifilament threads constituting the textile is substantially circular, and(D) the multifilament threads constituting the textile have total fineness of 145 to 720 dtex, single fiber fineness of 2 to 7 dtex, and tensile strength of 6.5 to 8.5 cN/dtex.11. The airbag base fabric according to claim 10 , wherein the warp thread cross-sectional deformation (WR) calculated by formula (1) is 4.3 to 5.7 claim 10 , and the weft thread cross-sectional deformation (WR) calculated by formula (2) is 2.6 to 3.7.12. The airbag base fabric according to claim 10 , wherein static air permeability measured under a test differential pressure of 500 Pa according to a fragile form method of JIS L 1096 is 0.1 to 5.0 L/dm/min claim 10 , and dynamic air permeability measured according to ASTM D 6476-02 is 100 to 1000 mm/sec.13. The airbag base fabric according to claim 10 , wherein a warp thread cover factor (WCF) is calculated by formula (3) claim 10 , a weft thread cover factor (FCF) is calculated by formula (4) claim 10 , and a sum (CF) of WCF and FCF claim 10 , calculated by formula (5) claim 10 , is 2000 to 2400:{'br': None, 'i': 'WCF=', 'sup': '1/2', '(total fineness of warp threads constituting textile (dtex))×(Warp thread ...

Подробнее
05-06-2014 дата публикации

Loom for producing paper machine clothing

Номер: US20140150225A1
Автор: Johan Einarsson
Принадлежит: VOITH PATENT GMBH

A loom for producing a paper machine clothing includes a weaving zone for producing a woven structure having warp threads and weft threads and a tensioning zone following the weave zone in a weaving direction. The tensioning zone has a first receiving roller system and a second receiving roller system following the first receiving roller system in a weaving direction. Each receiving roller system is configured to move the woven structure forward in the weaving direction in order to produce a tension. A heating assembly for thermofixing the woven structure is provided between the first receiving roller system and the second receiving roller system.

Подробнее
26-03-2015 дата публикации

FLEXIBLE, ABRASION RESISTANT TEXTILE SLEEVE AND METHOD OF CONSTRUCTION THEREOF

Номер: US20150083268A1
Автор: Itoh Emi
Принадлежит:

A textile sleeve for routing and protecting elongate members and method of construction thereof is provided. The sleeve has a flexible, abrasion resistant, self-curling elongate wall constructed from woven monofilament and multifilament yarns. The wall has opposite edges extending parallel to a central axis of the sleeve. The wall is woven with warp yarns extending parallel to the central axis and fill yarns extending transverse to the warp yarns. The warp yarns are provided at least in part as first monofilament yarns and the fill yarns are provided as second monofilament yarns and second multifilament yarns. The second monofilament yarns have a larger diameter than the first monofilament yarns. 1. A textile sleeve for routing and protecting elongate members , comprising:an elongate wall having opposite edges extending parallel to a central axis of the sleeve, said wall being woven with warp yarns extending parallel to said central axis and fill yarns extending transverse to said warp yarns, said warp yarns being provided at least in part as first monofilament yarns and said fill yarns being provided as second monofilament yarns and second multifilament yarns, said second monofilament yarns having a larger diameter than said first monofilament yarns.2. The textile sleeve of wherein said second monofilament yarns have a diameter about 40 percent larger than said first monofilament yarns.3. The textile sleeve of wherein said warp yarns further include first multifilament yarns.4. The textile sleeve of wherein said first multifilament yarns extend over an edge region adjacent said opposite edges and said first monofilament yarns extend over an intermediate region between said edge regions claim 3 , said edge regions being free of said first monofilament yarns.5. The textile sleeve of wherein said warp yarns in said intermediate region comprise only monofilament yarns.6. The textile sleeve of wherein said first multifilament yarns are heat-shrunk in length.7. The ...

Подробнее
24-03-2016 дата публикации

HEAT-TREATED BRAIDED INTRAVASCULAR DEVICES AND METHODS

Номер: US20160081825A1
Принадлежит:

A process for making a product including an expandable member is provided. The process can include braiding a plurality of wires to form a tubular structure that is capable of being manipulated such that a region of the tubular structure changes in diameter from a first dimension to a second dimension different from the first dimension. The process can also include initially heat-treating the tubular structure while the region is in the first dimension, changing the diameter of the tubular structure such that the region achieves the second dimension, and subsequently heat-treating the tubular structure while the region is in the second dimension. 1. A product made by a process , the process comprising:braiding a plurality of wires to form a tubular structure that is capable of being manipulated such that a region of the tubular structure changes in diameter from a first dimension to a second dimension different from the first dimension;initially heat-treating the tubular structure while the region is in the first dimension;changing the diameter of the tubular structure such that the region achieves the second dimension; andsubsequently heat-treating the tubular structure while the region is in the second dimension.2. The product of claim 1 , wherein the tubular structure is an intravascular device.3. The product of claim 2 , wherein the tubular structure is non-uniform in diameter.4. The product of claim 2 , wherein the tubular structure has opposing ends and wherein a tube diameter tapers at at least one of the opposing ends.5. The product of claim 2 , wherein the first dimension is greater than the second dimension.6. The product of claim 2 , wherein the initial heat-treating and the subsequent heat-treating occur for a period sufficient to enable the product to achieve an expansion ratio of at least about three.7. The product of claim 2 , the process further comprising enabling the tubular structure to cool between the initial heat treating and the subsequent ...

Подробнее
21-03-2019 дата публикации

Wrinkled Filament Nonwoven Fabric And Method For Manufacturing The Same

Номер: US20190085492A1
Автор: Ibayashi Kunihiko
Принадлежит: JXTG Nippon Oil & Energy Corporation

A wrinkled filament nonwoven fabric according to the present invention has a structure in which thermoplastic resin filaments are arrayed lengthwise and crosswise, and includes a plurality of first wrinkles arranged in parallel and a plurality of second wrinkles arranged in parallel, each of the plurality of second wrinkles intersecting at least one of the plurality of first wrinkles. Continuous production of the wrinkled filament nonwoven fabric according to the present invention is relatively easy. 1. A wrinkled filament nonwoven fabric having a structure in which thermoplastic resin filaments are arrayed lengthwise and crosswise , comprising a plurality of first wrinkles arranged in parallel and a plurality of second wrinkles arranged in parallel , each of the plurality of second wrinkles intersecting at least one of the plurality of first wrinkles.2. The wrinkled filament nonwoven fabric according to claim 1 , whereinthe wrinkled filament nonwoven fabric is formed in a long belt shape,each of the plurality of first wrinkles extends in a longitudinal direction of the wrinkled filament nonwoven fabric, andeach of the plurality of second wrinkles extends in a width direction of the wrinkled filament nonwoven fabric.3. The wrinkled filament nonwoven fabric according to claim 1 , comprising rectangular regions respectively surrounded by a pair of the first wrinkles adjacent to each other and a pair of the second wrinkles adjacent to each other.4. The wrinkled filament nonwoven fabric according to claim 1 , whereinthe first wrinkles are convex wrinkles which are convex on the surface of the wrinkled filament nonwoven fabric or concave wrinkles which are concave on the surface of the wrinkled filament nonwoven fabric, andthe second wrinkles are wrinkles alternately comprising convex wrinkle portions and concave wrinkle portions.5. The wrinkled filament nonwoven fabric according to claim 1 , wherein the thermoplastic resin is flame retardant resin.6. The wrinkled ...

Подробнее
05-05-2022 дата публикации

PROCESS FOR PRODUCING POLYVINYL ALCOHOL ARTICLES

Номер: US20220136168A1
Принадлежит:

The present invention provides a process for modifying the surface of a polyvinyl alcohol film or fabric by applying heat and pressure to the film or fabric to increase the moisture on the surface which is held by the fabric and to coalesce the surface fibers and reduce the porosity of the surface.

Подробнее
07-05-2015 дата публикации

FABRIC FOR USE IN COMPOSITE MATERIALS AND METHOD FOR PRODUCING SAID FABRIC AND A COMPOSITE MATERIAL BODY

Номер: US20150126089A1
Принадлежит: GROZ-BECKERT KG

A fabric () for use in composite materials having a reinforcing system () made of reinforcing warp threads () and reinforcing weft threads (), which are placed on top of one other in two different reinforcing layers (), (). A binding system () of binding warp threads () and binding weft threads () is formed from a binding yarn () with a lower yarn count than the reinforcing yarn (). The reinforcing system () is enclosed between the binding warp threads () on the one side and the binding weft threads () on the other side, and thus, held in place at binding points (). At each binding point (), a binding warp thread () is guided and held between a stationary warp thread () and a regular warp thread () of a warp thread pair () of binding warp threads (). Between two adjacent binding points of a warp thread pair (), the stationary warp thread () and the regular warp thread () have intersecting points (). 115-. (canceled)1610. A fabric () for use in composite materials , comprising{'b': 11', '13', '14', '13', '16', '14', '16', '13', '13', '17, 'a reinforcing system () of reinforcing warp threads () and reinforcing weft threads (), said the reinforcing warp threads () forming a first reinforcing layer (), said reinforcing weft threads () being placed on said first reinforcing layer () of said reinforcing warp threads () without binding with the reinforcing warp threads () for forming a second reinforcing layer ();'}{'b': 12', '20', '21', '11', '21', '20', '20', '25', '24', '21', '22', '25', '24, 'a binding system () of binding warp threads () and binding weft threads (), said reinforcing system () being located between the binding weft threads () and the binding warp threads (), pairs of said binding warp threads () each comprising a stationary warp thread () and a directly adjacent regular warp thread () which cross each other multiple times, and said binding weft threads () each running along binding points () between the stationary warp thread () and a regular warp () ...

Подробнее
24-07-2014 дата публикации

A method of treating a net made from ultra-high-molecular-weight polyethylene

Номер: US20140203476A1
Принадлежит: Amsafe Bridport Ltd

A method of treating a net ( 2 ) formed from interconnecting strands ( 4 a, 4 b ) of ultra-high-molecular-weight polyethylene (UHMWPE), the net ( 2 ) being formed with knotless intersections ( 6 ), comprising the steps of: a) heating the net ( 2 ) to a temperature of from 80° to 135° C.; b) applying tension to the net ( 2 ); c) reducing the temperature to below 80° C.; and d) removing tension from the net ( 2 ).

Подробнее
04-05-2017 дата публикации

SELF-WRAPPING, BRAIDED TEXTILE SLEEVE WITH SELF-SUSTAINING EXPANDED AND CONTRACTED STATES AND METHOD OF CONSTRUCTION THEREOF

Номер: US20170121868A1
Принадлежит:

A self-wrapping protective textile sleeve and method of construction is provided. The sleeve includes a braided, tubular wall having opposite free edges extending lengthwise between opposite ends. The wall has a first state with a decreased length, increased cross-sectional area and a second state with an increased length, decreased cross-sectional area, as viewed in cross-section taken generally transversely to a central longitudinal axis. The wall further includes braided, heat-set yarns imparting a bias on the wall, wherein the bias causes the wall to self-wrap into a tubular configuration and to remain substantially in the first and second states absent some externally applied force. 1. A self-wrapping protective textile sleeve , comprising:a braided, tubular wall having opposite free edges extending lengthwise between opposite ends; andsaid wall having a first state with a decreased length, increased cross-sectional area, as viewed in cross-section taken generally transversely to a central longitudinal axis extending between said opposite ends, and a second state with an increased length, decreased cross-sectional area, as viewed in cross-section taken generally transversely to said central longitudinal axis, and further including braided, heat-set yarns imparting a bias on said wall, said bias causing said wall to remain substantially in said first and second states absent some externally applied force and bringing said opposite free edges into overlapped relation with one another.2. The self-wrapping protective sleeve of wherein at least some of said heat-set yarns are braided in bundles claim 1 , said bundles including a plurality of yarns twisted with one another.3. The self-wrapping protective sleeve of wherein at least some said bundles have loops interlinked with loops of another bundle.4. The self-wrapping protective sleeve of wherein at least some of said bundles are formed entirely of said heat-set yarns.5. The self-wrapping protective sleeve of ...

Подробнее
24-07-2014 дата публикации

THREE DIMENSIONAL NEGATIVE POISSON'S RATIO SPACER KNITTED FABRIC AND METHOD FOR MAKING THE SAME

Номер: US20140205795A1
Автор: HU Hong

This present application relates to a three dimensional negative Poisson's ratio spacer knitted fabric and a method for making the same; the fabric includes a first surface layer fabric, a second surface layer fabric, and a spacer yarn layer connecting the first surface layer fabric with the second surface layer fabric, both the first surface layer fabric and the second surface layer fabric are bi-dimensional structures having the negative Poisson's ratio effects; the method is to compress and/or stretch a three dimensional mesh spacer knitted base fabric along one or two plane directions to form a structures having the negative Poisson's ratio effects. The advantages of the present application include low making cost, simple operation method, significant negative Poisson's ratio effects, good elastic recovery, and high practical application value. 110-. (canceled)11. A three dimensional negative Poisson's ratio spacer knitted fabric , wherein , the three dimensional negative Poisson's ratio spacer knitted fabric includes a first surface layer fabric , a second surface layer fabric , and a spacer yarn layer connecting the first surface layer fabric with the second surface layer fabric , and both the first surface layer fabric and the second surface layer fabric are bi-dimensional structures having the negative Poisson's ratio effects.12. The three dimensional negative Poisson's ratio spacer knitted fabric of claim 11 , wherein claim 11 , each of the first surface layer fabric and second surface layer fabric has a plurality of adjoining V-shaped repeated units.13. The three dimensional negative Poisson's ratio spacer knitted fabric of claim 11 , wherein claim 11 , each of the first surface layer fabric and second surface layer fabric is any one of a re-entrant quadrangle mesh structure claim 11 , a re-entrant hexagon mesh structure claim 11 , a rotary triangle mesh structure claim 11 , a rotary square mesh structure claim 11 , a rotary rectangle mesh structure claim ...

Подробнее
14-05-2015 дата публикации

Method for Producing High-Brightness Light-Emitting Fabric Using Acrylic Optical Fibers, and High-Brightness Light-Emitting Fabric

Номер: US20150131954A1
Принадлежит:

The present invention relates to a light-emitting fabric, in which acrylic optical fibers and general fibers are woven together, and light is emitted to the surface of the fabric through the optical fibers floating on the surface of the union fabric. According to the present invention, part of the clad portion of the optical fibers is removed by melting so as to prevent the total reflection of the clad portion and to emit high-brightness patterns or characters having a higher brightness than those emitted by optical fibers having a conventional clad portion. Also, a semi-circular core portion is flattened so as to prevent the light from being refracted unnecessarily, and thus the high-brightness light-emitting fabric which can express complex patterns or characters at a higher resolution without emitting environmental pollutants can be provided. 1. A method for producing a high brightness light emitting fabric using acrylic optical fibers , comprising:a weaving process for producing a union fabric by weaving an acrylic optical fiber formed of a clad part and a core part, and a general fiber; anda heat treatment process for melting a partial cross section of the clad potion of the acrylic optical fibers prolonging from the surface of the union fabric by heat-treating the union fabric while pressurizing with a roller or a press of 100˜250° C. and flattening and exposing the core part.2. The method of claim 1 , wherein in the heat treatment process the diameter of the exposed core potion of the acrylic optical fibers is 20˜80% of the diameter of the whole acrylic optical fibers.3. The method of claim 1 , wherein the union fabric is a Uragiri jacquard woven fabric.4. A high brightness light emitting woven fabric using acrylic optical fibers claim 1 , comprising:a flat core part which is exposed, wherein a clad portion of an acrylic optical fibers prolonging from a surface potion of the woven fabric is removed. This is a US national phase of PCT patent Application No. ...

Подробнее
12-05-2016 дата публикации

BALLISTIC RESISTANT THERMOPLASTIC SHEET, PROCESS OF MAKING AND ITS APPLICATIONS

Номер: US20160130734A1
Принадлежит: HONEYWELL INTERNATIONAL INC.

Woven fabrics are formed from high tenacity fibers or tapes that are loosely interwoven with adhesive coated filaments, to composite articles formed therefrom, and to a continuous process for forming the composite articles. 19-. (canceled)10. A closed , fused sheet comprising high tenacity elongate bodies interwoven and bonded with transversely disposed binding elongate bodies , said high tenacity elongate bodies comprising a thermoplastic polymer , and having a tenacity of at least about 14 g/denier and having a tensile modulus of at least about 300 g/denier; and wherein said binding elongate bodies at least partially comprise a thermoplastic polymer having a melting temperature below a melting temperature of the high tenacity elongate bodies , the closed , fused sheet having substantially no gaps between adjacent high tenacity elongate bodies and wherein said adjacent high tenacity elongate bodies do not overlap.11. A closed , fused multilayer article comprising a first fused sheet of attached to a second fused sheet of , wherein the high tenacity elongate bodies of the first fused sheet are oriented at a non-parallel angle relative to the high tenacity elongate bodies of the second fused sheet.12. A closed claim 11 , fused multilayer article of wherein said first fused sheet and said second fused sheet are thermally fused together in the absence of an additional intermediate adhesive resin.13. A ballistic resistant multi-layer article comprising a consolidated plurality of the closed claim 11 , fused multilayer articles of .14. A process for forming a dimensionally stable open fabric claim 11 , the process comprising:a) providing a woven fabric comprising high tenacity elongate bodies interwoven with transversely disposed binding elongate bodies, said high tenacity elongate bodies comprising a thermoplastic polymer, having a tenacity of at least about 14 g/denier and having a tensile modulus of at least about 300 g/denier, wherein adjacent high tenacity elongate ...

Подробнее
14-05-2015 дата публикации

Secured strand end devices

Номер: US20150134045A1
Принадлежит: IDEV Technologies Inc

A woven, self-expanding stent device has one or more strands and is configured for insertion into an anatomical structure. The device includes a coupling structure secured to two different strand end portions that are substantially aligned with each other. The two different strand end portions include nickel and titanium. The coupling structure is not a strand of the device.

Подробнее
01-09-2022 дата публикации

Polyester cotton-like yarn-dyed fabric, and manufacturing method and application thereof

Номер: US20220275576A1
Принадлежит: Luthai Textile Co Ltd

Disclosed are a polyester cotton-like yarn-dyed fabric, and a manufacturing method and application thereof. The polyester cotton-like yarn-dyed fabric is interwoven by warp and weft, the warp adopts dyed polyester as a covering layer and low-temperature spandex as a core-spun yarn of a core yarn, a weight ratio of the polyester to the low-temperature spandex is 4-49:1, and the polyester is subjected to alkali deweighting treatment to form an eroded surface. The polyester cotton-like yarn-dyed fabric has good cotton feeling, high elasticity, high color fastness and low ironing shrinkage rate, and is suitable for making high-quality clothing, especially shirts. The manufacturing method of the yarn-dyed fabric is energy-saving and emission-reducing, and can manufacture a novel polyester yarn-dyed fabric with low ironing shrinkage rate, high color fastness and cotton-like hand feeling. Use of the yarn-dyed fabric for making clothing such as shirts increases the selectivity and functionality.

Подробнее
07-08-2014 дата публикации

TRIMMING FRAMEWORK, MANUFACTURING METHOD AND ASSOCIATED DEVICE

Номер: US20140217683A1
Автор: Martinetto Filiberto
Принадлежит: FILMAR S.R.L.

A method for producing a gasket framework () includes creating a strip () having a warp () and a weft () obtained using a yarn () made of semi-rigid synthetic material and susceptible of being folded. The method also includes compressing a multiple points (P) of the yarn () made of synthetic material. 1. Method for producing a gasket framework , comprising:a step of creating a strip comprising a warp and a weft obtained using a yarn made of semi-rigid synthetic material and susceptible of being folded;a step of localizing thickness reduction and facilitating folding of said yarn into a plurality of points of said yarn made of synthetic material; said plurality of points lying on a plurality of ideal parallel lines.2. The method according to claim 1 , wherein said step of localizing thickness reduction is a step; said compressing step comprises passing said strip between a pair of rollers respectively having a pair of projecting elements and a pair of recessed elements with respect to a lateral surface of said rollers.3. The method according to claim 1 , further comprising a step of heating said strip.4. The method according to claim 3 , wherein said step of heating said strip performs an action of softening said yarn made of synthetic material.5. The method according to claim 1 , wherein said thickness reduction step is a cutting step; said cutting step comprising a localised cutting of said yarn into a plurality of cutting points.6. The method according to claim 1 , wherein said yarn comprises a first thickness and in said plurality of points said yarn has a second thickness less than said first thickness.7. The method according to claim 1 , wherein said strip is U-folded at said plurality of points.8. Gasket framework claim 1 , comprising: a strip claim 1 , the strip comprising a warp and a weft made using a yarn made of synthetic material; said yarn made of synthetic material comprises a plurality of compression or cutting points and said yarn is semi-rigid and ...

Подробнее
18-05-2017 дата публикации

Apparatus and process for recycling heated gas

Номер: US20170135865A1
Автор: Hans Adolf Jackels
Принадлежит: Procter and Gamble Co

The present disclosure relates to a recycling apparatus for recycling a heated gas, such as heated air, the apparatus comprising a Venturi nozzle. The present disclosure also relates to process for recycling a heated gas, the process comprising regulating the flow of gas by a Venturi nozzle.

Подробнее
30-04-2020 дата публикации

Self-wrapping, braided textile sleeve with self-sustaining expanded and contracted states and method of construction thereof

Номер: US20200131681A1
Принадлежит: Federal Mogul Powertrain LLC

A self-wrapping protective textile sleeve and method of construction is provided. The sleeve includes a braided, tubular wall having opposite free edges extending lengthwise between opposite ends. The wall has a first state with a decreased length, increased cross-sectional area and a second state with an increased length, decreased cross-sectional area, as viewed in cross-section taken generally transversely to a central longitudinal axis. The wall further includes braided, heat-set yarns imparting a bias on the wall, wherein the bias causes the wall to self-wrap into a tubular configuration and to remain substantially in the first and second states absent some externally applied force.

Подробнее
14-08-2014 дата публикации

Multi-layer fabric, use thereof and method for producing composites

Номер: US20140227474A1
Автор: Johannes Cramer

This present invention relates to a multilayered fabric consisting of several twin layers, whereby each twin layers is constructed from two layers, namely one layer from structurally arranged reinforcement fibres Vo, Vm and Vu such as for example carbon fibres, and one layer from structurally arranged thermoplastic matrix fibres M1 and M2, such as for example PEEK fibres. Several twin layers are connected with binder fibre B. Additionally the invention comprises use of the multilayer fabric as a semi-finished product and for manufacture of composites plus a process for manufacture of composites using a special multilayered fabric with an “Advanced Synchron Weave” zero crimp fabric structure (FIG. 1 ).

Подробнее
21-08-2014 дата публикации

METHODS FOR MANUFACTURING SECURED STRAND END DEVICES

Номер: US20140230204A1
Принадлежит: IDev Technologies, Inc.

A woven, self-expanding stent device has one or more strands and is configured for insertion into an anatomical structure. The device includes a coupling structure secured to two different strand end portions that are substantially aligned with each other. The two different strand end portions include nickel and titanium. The coupling structure is not a strand of the device. 115-. (canceled)16. A method of forming a self-expanding stent , the method comprising:forming a first end of the stent by forming a first bend in each of a plurality of strands, each strand including a strand section on both sides of the first bend, each strand section including an end;weaving the strand sections;after weaving the strand sections, heat treating the plurality of strands for a first heat treatment time;forming a second end of the stent by forming a second bend in each of the plurality of strands; andafter forming the second bends, back braiding some of the strand sections, wherein back braiding some of the strand sections comprises passing the strand sections by at least two strand crossings,wherein passing the strand sections by at least two strand crossings comprises passing the strand sections radially inward of at least one strand crossing and radially outward of at least one other strand crossing.17. The method of claim 16 , further comprising claim 16 , after forming the second bends claim 16 , heat treating the plurality of strand for a second heat treatment time.18. The method of claim 16 , further comprising securing a first strand section end to a second strand section end.19. The method of claim 18 , wherein securing the first strand section end to the second strand section end comprises aligning the first strand section end and the second strand section end end-to-end.20. The method of claim 18 , wherein securing the first strand section end to the second strand section end comprises welding a coupling structure to the first strand section end and the second strand ...

Подробнее
16-05-2019 дата публикации

Multi-material integrated knit thermal protection for industrial and vehicle applications

Номер: US20190145027A1
Принадлежит: Boeing Co

Knit fabrics having ceramic strands, thermal protective members formed therefrom and to their methods of construction are disclosed. Methods for fabricating thermal protection using multiple materials which may be concurrently knit are also disclosed. This unique capability to knit high temperature ceramic fibers concurrently with a load-relieving process aid, such as an inorganic or organic material (e.g., metal alloy or polymer), both small diameter wires within the knit as well as large diameter wires which provide structural support and allow for the creation of near net-shape performs at production level speed. Additionally, ceramic insulation can also be integrated concurrently to provide increased thermal protection.

Подробнее
11-06-2015 дата публикации

Process for producing polyvinyl alcohol articles

Номер: US20150159322A1
Принадлежит:

The present invention relates to novel polyvinyl alcohol non-woven films and fabrics which have been modified so as to have a breathable coalesced lower porosity surface polyvinyl alcohol layer attached to a fibrous polyvinyl alcohol layer by a transition layer. The fabrics are useful as clothing or wraps for inert articles. 1. A non-woven breathable article comprising polyvinyl alcohol having at least one coalesced surface layer having a reduced porosity polyvinyl alcohol and a layer consisting essentially of fibrous polyvinyl alcohol , said coalesced layer being more susceptible to thermal transfer than the fibrous layer.2. The article of comprising a transition layer of fibrous polyvinyl alcohol and coalesced reduced porosity polyvinyl alcohol bonding the surface layer to said fibrous polyvinyl alcohol layer.3. The article of wherein upper surface and bottom surface comprise said coalesced polyvinyl alcohol.4. The article of wherein the at least one surface layer is formed with steam.5. The article of wherein said fibrous polyvinyl alcohol layer has attached a different thermoplastic polymer layer.6. The article of wherein said different thermoplastic layer is a polyolefin.7. The article film of wherein said polyvinyl alcohol has a degree of polymerization of 700 to 1500.8. The article of wherein the at least one surface layer comprises a water repelling composition.9. The article of wherein the at least one layer comprises an antimicrobial composition.10. The article of wherein the polyvinyl alcohol is cross-linked.11. The article of wherein the surface layer is substantially non porous.12. The article of wherein the polyvinyl alcohol has acetyl groups.13. Clothing comprising the article of .14. The clothing of wherein the article contains a plastisizer.15. The clothing of including an antimicrobial coating.16. The clothing of which comprises medical clothing.17. The clothing of wherein the polyvinyl alcohol is spun laced.18. The article of which is film.19. A ...

Подробнее
01-06-2017 дата публикации

VELOUR FABRIC AND METHOD OF MANUFACTURING A VELOUR FABRIC

Номер: US20170152613A1
Автор: Vanbostal Jean-Pierre
Принадлежит:

The invention provides a velvet fabric and a method of making the fabric. The fabric includes a support formed by weft yarns and warp yarns, such that the weft yarns are inserted and interwoven with the warp yarns, and at least one filling yarn is anchored in the form of loops or bristles in the support. The support has two surfaces and the filling yarn emerges from at least one surface of the support. The warp yarns and/or the weft yarns of the support are at least partially formed of polyester at a low melting temperature. 1. Method of manufacturing a velvet fabric wherein a support formed by warp yarns and weft yarns is used , such that the weft yarns are inserted and interwoven with warp yarns , comprising:at least one step of inserting at least one filling yarn into the support, wherein said filling yarn is anchored in the form of loops or bristles in the support, and wherein the filling yarn emerges from at least one surface of the support, thereby obtaining the velvet fabric, and wherein the warp yarns and/or the weft yarns of the support are at least partially formed of polyester at a low melting temperature and wherein the melting temperature of the warp yarns and/or weft yarns of the support is less than 250° C., andat least one step of dyeing the velvet fabric, wherein said dyeing is initiated at an initial temperature Ti and is continued at variable temperatures higher than the temperature Ti.2. Method according to claim 1 , wherein the melting temperature of the warp yarns and/or the weft yarns of the support is less than 200° C.3. Method according to claim 1 , wherein the composition of the warp yarns and/or weft yarns comprises at least 50% of polyester.4. Method according to claim 1 , wherein the variable temperatures are obtained by gradually increasing the initial temperature Ti.5. Method according to claim 1 , wherein Ti is at least 20° C.6. Method according to claim 1 , wherein the variable temperatures are between 20 and 250° C.7. Method ...

Подробнее
07-06-2018 дата публикации

METHOD FOR PRODUCTION OF ACTIVATED CARBON FABRICS FROM COTTON

Номер: US20180155861A1
Принадлежит:

An improved method of producing activated carbon fabrics from cotton fabrics involves washing a piece of cotton fabric with a detergent before soaking the washed piece of cotton fabric in an acidic chemical such as phosphoric acid for a specific amount of time, and then drying the soaked piece of cotton fabric in an oven. After the fabric has been dried, it is heated in a furnace which is fed with a flow of nitrogen gas as the temperature of the furnace is gradually increased to a pre-determined temperature and kept at the pre-determined temperature for an extended amount of time, before allowing the temperature to gradually return back to room temperature. After being removed from the furnace and being washed with distilled water to remove any remnants of phosphoric acid, the resulting product is an activated carbon fabric. 1. A method of producing an activated carbon fabric , comprising:preparing a piece of cotton fabric;washing the prepared piece of cotton fabric;treating the washed piece of cotton fabric with an acidic chemical;drying the treated piece of cotton fabric with a first heating source;when the treated piece of cotton fabric has dried, heating the treated piece of cotton fabric with a second heating source while feeding the second heating source with nitrogen gas;removing the heated piece of cotton fabric from the second heating source; andrinsing the heated piece of cotton fabric.2. The method of producing an activated carbon fabric of claim 1 , wherein washing the piece of cotton fabric comprises washing the piece of cotton fabric with a non-ionic detergent and rinsing the piece of cotton fabric with distilled water.3. The method of producing an activated carbon fabric of claim 1 , wherein the acidic chemical comprises phosphoric acid.4. The method of producing an activated carbon fabric of claim 3 , wherein the acidic chemical comprises phosphoric acid comprises an 85% aqueous solution.5. The method of producing an activated carbon fabric of claim ...

Подробнее
22-09-2022 дата публикации

Method for evaluating fiber products

Номер: US20220298696A1
Принадлежит: TORAY INDUSTRIES INC

A method evaluates a fiber product and includes washing at least one fiber product by a washing machine and washing conditions defined in ISO 6330 (2012), collecting fiber fragments discharged from a wastewater outlet of the washing machine by a filter with a sieve opening of 5 to 20 μm, and measuring a weight of the fiber fragments.

Подробнее
11-09-2014 дата публикации

HEAT-SHRUNK TEXTILE SLEEVE WITH EXTENDED ELECTRO-FUNCTIONAL YARN AND METHOD OF CONSTRUCTION THEREOF

Номер: US20140251490A1
Принадлежит: Federal-Mogul Powertrain, Inc.

A textile sleeve has wall of interlaced warp yarn and weft yarn. The warp yarn extends lengthwise along a longitudinal axis of the sleeve between opposite first and second ends of the sleeve. The warp yarn is non-metallic heat-shrinkable polymeric yarn. The sleeve has at least one electro-functional member interlaced with some of the weft yarn. The at least one electro-functional yarn extends along the longitudinal axis between the first and second ends. The non-metallic polymeric warp yarns have a greater heat-shrinkage ratio than the at least one electro-functional member. The non-metallic polymeric warp yarns are caused to be shortened in the lengthwise direction along the longitudinal axis relative to the at least one electro-functional member upon being heated.

Подробнее
21-05-2020 дата публикации

SYNTHETIC LEATHER

Номер: US20200157736A1
Автор: SHINOZAKI Michio
Принадлежит: SEIREN CO., LTD.

Provided is synthetic leather with wrinkling and springiness similar to those of natural leather. The synthetic leather has a grain pattern and is obtained by laminating a polyurethane resin layer on a fibrous substrate. A stiffness of the front surface of the synthetic leather is 65 to 95 mm and a stiffness of a rear surface of the synthetic leather is 55 to 85 mm. 1. Synthetic leather comprising:a fibrous substrate; anda polyurethane resin layer that is formed on the fibrous substrate,the synthetic leather having a grain pattern on a front surface,wherein a stiffness of the front surface of the synthetic leather is 65 to 95 mm and a stiffness of a rear surface of the synthetic leather is 55 to 85 mm.2. The synthetic leather according to claim 1 ,wherein a height of grain in the grain pattern is equal to or greater than 50 μm.3. The synthetic leather according to claim 1 ,wherein a width of grain in the grain pattern is equal to or greater than 580 μm.4. The synthetic leather according to claim 1 , which shows a rate of change in grain height in the grain pattern of 100 to 550% when the synthetic leather is bent.5. The synthetic leather according to claim 1 ,wherein the fibrous substrate is a circular knitted fabric with a circular interlock knitted structure with one surface or both surfaces formed as a raised surface, and the polyurethane resin layer is laminated on the raised surface.6. The synthetic leather according to claim 1 ,wherein one surface of the fibrous substrate is formed using a yarn with a smaller single-fiber fineness than that of the other surface, and the polyurethane resin layer is laminated on the one surface.7. The synthetic leather according to claim 1 ,wherein the polyurethane resin layer comprises a first resin layer that serves as a colored layer and a second resin layer that serves as an adhesive layer, the first resin layer is a non-foamed layer, the second resin layer is a foamed layer, and the first resin layer is laminated on the ...

Подробнее
11-09-2014 дата публикации

Elevator cover assembly

Номер: US20140255639A1
Принадлежит: Harry Miller Co Inc

An elevator cover assembly having a cover pad and a trim with openings for receiving a hanging knob inside the elevator is disclosed. The trim is a separate piece attached to the elevator cover after openings are made in the trim. The trim slits formed therein are sized and positioned to receive hanging knobs. The trim is made of a flexible material that can be deformed to broaden the openings to more easily position the openings over the knobs.

Подробнее
01-07-2021 дата публикации

Apparatus, systems, and methods for finishing a yarned strap

Номер: US20210198838A1
Принадлежит: Facebook Technologies LLC

The disclosed method may include bending, by an end-shaping tool, a portion of an end of a strap in a direction at least substantially perpendicular to a plane of the strap. The bending may include extending the portion of the end of the strap over a raised area of a first portion of the end-shaping tool and connecting a second portion of the end-shaping tool to the first portion. The connecting may include placing a recessed area of the second portion over the raised area of the first portion. The method may include debossing, by an end-setting tool dimensioned to accommodate the strap as bent by the end-shaping tool, the portion of the end of the strap at the bend. Various other methods, systems, and apparatus are also disclosed.

Подробнее
02-07-2015 дата публикации

PALATABLE, LONG-LASTING PET CHEW PRODUCT

Номер: US20150181839A1
Автор: BAIKIE Jeff
Принадлежит: Redbarn Pet Products, Inc.

Disclosed herein are pet chew products and methods for making them. The methods include sewing together strips of material obtained from a bovine or from other animals to form an outline of a desired shape; interweaving additional strips of rawhide, animal penis or both under and on top of the strips forming an outline to form a pet chew product of desired shape and size; and drying the pet chew product to the desired moisture content. 1. A pet chew product comprising strips of material obtained from a bovine or from other animals , the strips being interwoven to form a substantially spherical pet chew with a hollow center.2. The pet chew product of claim 1 , wherein the material obtained from a bovine or from other animals comprises rawhide or pizzle or both obtained from bovine animals.3. The pet chew product of claim 2 , wherein the bovine animal is a bull claim 2 , steer claim 2 , cow or an ox.4. The pet chew product of claim 3 , wherein the rawhide material is lightly bleached.5. The pet chew product of claim 3 , wherein the ratio of rawhide fraction to pizzle fraction is 2:1.6. The pet chew product of claim 3 , wherein the ratio of rawhide fraction to pizzle fraction is 1:1.7. The pet chew product of claim 3 , wherein the ratio of rawhide fraction to pizzle fraction is 1:2.8. The pet chew product of claim 1 , wherein the strips are sewn together using an edible sewing material.9. The pet chew product of claim 8 , edible sewing material is catgut.10. The pet chew product of claim 1 , wherein the strips have a length of about 5 cm to about 100 cm.11. The pet chew product of claim 1 , wherein the strips have a width of about 1 mm to about 20 mm.12. The pet chew product of claim 1 , wherein the diameter of the substantially spherical pet chew is about 5 cm to about 20 cm.13. A method of forming a substantially spherical a pet chew product comprising sewing together strips of material obtained from a bovine or from other animals to form an outline; interweaving ...

Подробнее
18-09-2014 дата публикации

ELONGATE SELF-CLOSING SLEEVE FOR PROTECTING ELONGATE MEMBERS HAVING IMPROVED SOUND DAMPENING QUALITY

Номер: US20140272224A1
Принадлежит:

The present disclosure concerns an elongate self-closing sleeve for protecting elongate members, said sleeve having internal and external opposite faces wherein said sleeve comprises a sound dampening textile substrate and a warp knitted textile stitched to said textile substrate. Said sound dampening textile substrate and said warp knitted textile having first and second longitudinal opposite free edges biased toward each other in order to define an internal space wherein said elongate member could be placed therein, and wherein said warp knitted textile comprises at least one first monofilament yarn that forms laying-in stitches and that is in plastic material(s). 1. An elongate self-closing sleeve for protecting at least one elongate member , said sleeve comprising internal and external opposite faces wherein said sleeve comprises a sound dampening textile substrate and a warp knitted textile stitched to said textile substrate , said sound dampening textile substrate and said warp knitted textile having first and second longitudinal opposite free edges biased toward each other in order to define an internal space configured to receive said at least one elongate member , and wherein said warp knitted textile comprises at least one first monofilament yarn that forms laying-in stitches , the at least one first monofilament comprising a plastic material.2. The elongate self-closing sleeve according to claim 1 , wherein the warp knitted textile comprises a first monofilament yarn and a second monofilament yarn each forming laying-in stitches extending in the same direction between the first and second longitudinal free edges on at least two wales claim 1 , each of said first and second yarns comprising at least one plastic material claim 1 , and wherein the warp knitted textile comprises a third yarn forming chain stitches or tricot stitches.3. The elongate self-closing sleeve according to claim 2 , wherein the first yarn and the second yarn are also knitted on at ...

Подробнее
18-09-2014 дата публикации

BALLISTIC RESISTANT THERMOPLASTIC SHEET, PROCESS OF MAKING AND ITS APPLICATIONS

Номер: US20140272271A1
Принадлежит: HONEYWELL INTERNATIONAL INC.

Woven fabrics are formed from high tenacity fibers or tapes that are loosely interwoven with adhesive coated filaments, to composite articles formed therefrom, and to a continuous process for forming the composite articles. 1. A woven fabric comprising high tenacity elongate bodies interwoven and bonded with transversely disposed binding elongate bodies , said high tenacity elongate bodies comprising a thermoplastic polymer , having a tenacity of at least about 14 g/denier and having a tensile modulus of at least about 300 g/denier , wherein adjacent high tenacity elongate bodies are spaced apart from each other by a distance equivalent to at least about 10% of the width of the high tenacity elongate bodies; and wherein said binding elongate bodies at least partially comprise a thermoplastic polymer having a melting temperature below a melting temperature of the high tenacity elongate bodies.2. The woven fabric of wherein said high tenacity elongate bodies are longitudinally extending warp bodies and said binding elongate bodies are laterally extending weft bodies.3. The woven fabric of wherein said high tenacity elongate bodies are laterally extending weft bodies and said binding elongate bodies are longitudinally extending warp bodies.4. The woven fabric of wherein said binding elongate bodies comprise bi-component elongate bodies comprising a first component and a second component claim 1 , wherein the first component comprises a thermoplastic polymer having a melting temperature below a melting temperature of the high tenacity elongate bodies claim 1 , and wherein the first component has a melting temperature that is below a melting temperature of second component.5. The woven fabric of wherein said binding elongate bodies comprise single component binder element claim 1 , said single component binder element comprising a thermoplastic polymer having a melting temperature that is below a melting temperature of the high tenacity elongate bodies.6. The woven ...

Подробнее
18-09-2014 дата публикации

Stab and ballistic resistant articles and the process of making

Номер: US20140273696A1
Принадлежит: Honeywell International Inc

Dimensionally stable open woven fabrics formed from a plurality of high tenacity warp elongate bodies interwoven and bonded with a plurality of transversely disposed, high tenacity weft elongate bodies, composite articles formed therefrom, and to a continuous process for forming the composite articles.

Подробнее
18-09-2014 дата публикации

ENERGY ABSORBING FABRIC AND METHOD OF MANUFACTURING SAME

Номер: US20140273697A1
Автор: Russell Timothy M.
Принадлежит: YKK Corporation of America

Energy absorbing fabrics that are generally flat and that have a controllable and significant elongation distance. The fabrics are comprised of elongation yarns, such as partially oriented yarns (POY), and binder yarns, where the elongation yarns and the binder yarns have various weave-in percentages depending on the desired amount of elongation. In certain embodiments, because they are generally flat, the energy absorbing fabrics are suitable for use in retractors. Also provided are processes of manufacturing generally flat, energy absorbing fabrics. 1. A fabric comprising:(i) a first layer comprising a first set of elongation yarns extending in a substantially warp direction, wherein the elongation yarns of the first set of elongation yarns are interwoven with one another;(ii) a second layer comprising a second set of elongation yarns extending in a substantially warp direction, wherein the elongation yarns of the second set of elongation yarns are interwoven with one another;(iii) a plurality of binder yarns that are interwoven between the first layer and the second layer to bind the first set of elongation yarns with the second set of elongation yarns; and(iv) a plurality of lateral yarns, wherein some of the plurality of lateral yarns extend in a substantially weft direction across the fabric between the first set of elongation yarns and others of the plurality of lateral yarns extend in a substantially weft direction across the fabric between the second set of elongation yarns;wherein at least one of the plurality of binder yarns interweaves pairs of lateral yarns in the first layer with pairs of lateral yarns in the second layer,wherein the at least one of the plurality of binder yarns exits the first layer and reenters the first layer along a plurality of first sections such that each of the first sections includes one of the pairs of lateral yarns,wherein the at least one of the plurality of binder yarns exits the second layer and reenters the second layer ...

Подробнее
05-07-2018 дата публикации

SECURED STRAND END DEVICES

Номер: US20180185180A1
Принадлежит: IDev Technologies, Inc.

Methods for securing strand ends of devices configured for insertion into an anatomical structure, and the resulting devices. 192-. (canceled)93. A method of forming a self-expanding stent , comprising:forming a first end of the stent by forming a first bend in each of a plurality of strands, each strand including a strand section on both sides of the first bend, each strand including a strand section first end and a strand section second end;weaving the strand sections;forming a second end of the stent by forming a second bend in each of the plurality of strands;inserting the strand section first end into a first opening of a tubular coupling structure and inserting the strand section second end into a second opening of the tubular coupling structure;mounting the plurality of strands and the tubular coupling structure onto a mandrel to set an internal diameter of the stent; andapplying a first weld bead to the tubular coupling structure to attach the strand section first end and applying a second weld bead to the tubular coupling structure to attach the strand section second end.94. The method of claim 93 , wherein the first weld bead and the second weld bead are not in contact.95. The method of claim 94 , wherein the tubular coupling structure has an inner diameter of 0.0070 inch and the strand section first and second ends have an outer diameter of 0.0060 inch thereby providing a tight fit when the strand section first and second ends are inserted into the tubular coupling structure.96. The method of claim 95 , wherein the first weld bead and the second weld bead are formed by laser welding.97. The method of claim 96 , wherein the plurality of strands comprise a superelastic material.98. The method of claim 97 , wherein the tubular coupling structure comprises a superelastic material.99. The method of claim 98 , wherein after laser welding the strand section first end is not in contact with the strand section second end.100. The method of claim 98 , wherein after ...

Подробнее
18-09-2014 дата публикации

Secured strand end devices

Номер: US20140277329A1
Принадлежит: IDEV Technologies Inc

A woven, self-expanding stent device has one or more strands and is configured for insertion into an anatomical structure. The device includes a coupling structure secured to two different strand end portions that are substantially aligned with each other. The two different strand end portions include nickel and titanium. The coupling structure is not a strand of the device.

Подробнее
12-07-2018 дата публикации

ENVIRONMENTALLY FRIENDLY NON-BLEED POLYESTER FABRIC AND METHOD OF MANUFACTURING THE SAME

Номер: US20180195217A1
Принадлежит:

A method of manufacturing a polyester fabric with inherent color, the method including: providing a polyester fiber with inherent color; spinning polyester yarn from the fiber with inherent color; knitting the colored polyester yarn into knitted fabric which can combine with other yarn according to a requirement; washing the colored polyester fabric and heat-setting the fabrics with add-on functional finish to the fabric. The providing of polyester fiber with inherent color may include: cleaning and drying polyester bottles; recycling polyester chips from clean bottles; mixing chips with pigment evenly and melting the chips with pigment; extruding the filament fiber with color; and drawing and cutting filament fiber into staple fiber. Further aspects of the present invention are directed to a colored polyester fabric and a method of manufacturing an article of clothing using a colored polyester fabric produced using the above-described method. 1. A method of manufacturing a polyester knitted fabric with inherent color , the method comprising:providing a polyester fiber with inherent color;spinning a colored polyester yarn from the polyester fiber with inherent color; andknitting the colored polyester yarn into a colored polyester fabric.2. The method of claim 1 , wherein providing the polyester fiber with inherent color comprises:providing polyester chips;mixing the polyester chips with a pigment;extruding a colored filament fiber from the polyester chips mixed with the pigment; andcutting the filament fiber into a staple fiber.3. The method of claim 2 , wherein mixing the polyester chips with the pigment comprises melting the polyester chips with pigment chips having a color.4. The method of claim 3 , wherein the polyester chips are melted with the pigment chips at 260-285° C. claim 3 , and the colored filament fiber is then extruded at 270-285° C.5. The method of claim 2 , wherein the polyester chips are obtained from recycled polyester bottles.6. The method of ...

Подробнее
30-07-2015 дата публикации

Nonwoven cloth

Номер: US20150211157A1
Автор: Jun Okuda, Satoshi Mitsuno
Принадлежит: Unicharm Corp

A nonwoven cloth provided with both improved softness and adequate thickness and specific volume having thermally fused composite fibers that are mutually intersecting and overlapping, and a constricted thermally adhesive section in which the thermally fused composite fibers are thermally fused in the intersection region. The constricted thermally adhesive section has a recessed surface facing a center line extending in a direction overlapping with the thermally fused composite fibers across the center of the intersection region. The distance between the thermally fused composite fibers is larger than the sum of the radii of the thermally fused composite fibers, the thickness under a load of 3.0 gf/cm 2 is 0.5-3.0 mm, and the specific volume is 6-300 cm 3 /g.

Подробнее
06-08-2015 дата публикации

Article Of Footwear Including A Monofilament Knit Element With A Fusible Strand

Номер: US20150216253A1
Автор: Daniel A. Podhajny
Принадлежит: Nike Inc

An article of footwear including a full monofilament upper is described. The full monofilament upper incorporates a knitted component including a monofilament knit element. The monofilament knit element is formed by knitting with a monofilament strand. The monofilament knit element is formed of unitary knit construction with the remaining portions of the knitted component, including peripheral portions that are knit using a natural or synthetic twisted fiber yarn. An inlaid tensile element can extend through the knitted component, including portions of the monofilament knit element. The monofilament knit element may be knitted with a monofilament strand according to a variety of knit structures. A fusible strand may be knit with the monofilament knit element. Upon heating, the fusible strand can combine and surround the monofilament strand within the monofilament knit element.

Подробнее
06-08-2015 дата публикации

METHOD FOR PRODUCING A PROSTHESIS FOR REINFORCING THE ABDOMINAL WALL

Номер: US20150218738A1
Принадлежит:

The invention relates to a method for producing a prosthesis comprising a knitted structure made in one piece, in which method a knit () comprising a base sheet () and a succession of perpendicular folds () is produced in a single knitting step, and said knit () is then cut on each side of said folds () in order to obtain said knitted structure. 15-. (canceled)6. A method for producing a prosthesis for reinforcing an abdominal wall in which an incision has been made , the prosthesis comprising a knitted structure made in one piece , the knitted structure comprising a first portion , which is substantially plane and flexible and is intended to be placed between the abdominal wall and the abdominal cavity , and a second portion , which is substantially plane and flexible and is intended to be placed between two margins of the incision , the second portion extending substantially perpendicularly from one face of the first portion , the method comprising the following steps:{'b': 2', '3, 'a) producing a knit comprising a base sheet which is substantially plane and elongate and which is equipped in a longitudinal direction with a succession of substantially perpendicular folds to the base sheet, by knitting biocompatible yarns on a warp knitting machine, the biocompatible yarns being distributed on at least three guide bars BI, B and B, the three guide bars operating according to a defined weave repeat recurring as desired along a production length of the knit, each guide bar being supplied with a biocompatible yarn coming from a corresponding warp beam rod at a dedicated run-in appropriate to movement of the guide bar in accordance with the weave repeat, at least bar BI having a variable dedicated run-in value DI, wherein the variable dedicated run-in value DI decreases and tends towards 0 on a part of the weave repeat, the decrease in the variable dedicated run-in value DI on the part of the weave repeat generates a substantially perpendicular fold to the base sheet,'} ...

Подробнее
04-07-2019 дата публикации

DEVICE FOR HEAT-TREATING INNER SURFACE OF BRAID FOR REINFORCING HOLLOW FIBER MEMBRANE FOR WATER TREATMENT WITH TEMPERATURE CONTROL STRUCTURE

Номер: US20190201847A1
Автор: KIM Im Sun
Принадлежит:

Disclosed is a device for heat-treating an inner surface of a braid for reinforcing a hollow fiber membrane for water treatment with a temperature control structure. The device includes a heating core; a heater coupled to the heating core; a temperature sensor passing through the heater; a cylindrical housing through which the heater and the sensor pass; a heat shield tube placed between the heating core and the housing and coupled to the heating core; a clamping nut connecting the heat shield tube and the housing; a mounting board on which a lower portion of the housing is fixed; and a temperature controller. 1. A device for heat-treating an inner surface of a braid for reinforcing a hollow fiber membrane for water treatment with a temperature control structure , the device comprising:{'b': '100', 'a heating core which includes a heating part having a reduced diameter at an upper end thereof and an engaging part formed at a lower end portion thereof, and is made of a material of copper or a copper alloy;'}a heater coupled to the heating core to heat the same and receive a power through a heater electric wire coated with a braid;a temperature sensor which vertically passes through a center of the heater, and comes into contact with an inner lower end of the heating core by an upper end thereof;a cylindrical housing through which the heater electric wire and the sensor electric wire vertically pass, and includes a male screw part formed on an upper outer circumference thereof, and an insulator mount groove formed in an upper inner portion thereof;a vertically long cylindrical heat shield tube which includes a core engaging jaw bent inward at an upper end thereof to surround the heating core and to be engaged to an upper portion of the engaging part, and an engaging flange made of stainless steel, which is formed at a lower end thereof with being bent outward to connect the heating core and the housing with being spaced apart from each other;a clamping nut which has a ...

Подробнее
04-07-2019 дата публикации

Fabric

Номер: US20190203388A1
Автор: Liu Yen-Ting
Принадлежит:

A fabric includes a base layer formed by assembling at least a first yarn and having a first surface and a second surface opposite to the first surface. At least a first embedded yarn is embedded in a first region of the base layer. The first embedded yarn includes a thermoplastic polymer. 1. A fabric , comprising:abase layer formed by assembling at least a first yarn and having a first surface and a second surface opposite to the first surface; andat least a first embedded yarn embedded in a first region of the base layer, wherein the first embedded yarn comprises a thermoplastic polymer.2. The fabric according to claim 1 , wherein the fabric has a unitary one-piece construction.3. The fabric according to claim 1 , wherein the first embedded yarn comprises thermoplastic polyester elastomer (TPEE).4. The fabric according to claim 1 , wherein the first yarn may be made of natural fibers or artificial fibers.5. The fabric according to claim 1 , wherein the first yarn comprises thermoplastic polymer having a melting point equal to or higher than a melting point of the first embedded yarn.6. The fabric according to claim 1 , wherein the first embedded yarn is only partially melted claim 1 , keeping at least part of its texture and adhering to the first yarn.7. The fabric according to claim 1 , wherein the base layer is formed by weaving claim 1 , and the first embedded yarn is embedded in the base layer along a weft or warp direction of the fabric.8. The fabric according to claim 1 , wherein the base layer is formed by knitting claim 1 , and the first embedded yarn is manipulated into loops and interlaced with loops of the first yarn.9. The fabric according to claim 1 , wherein the base layer is formed by knitting claim 1 , and the first embedded yarn extends along a weft direction or a warp direction of the fabric and passes through loops of the first yarn without being manipulated into loops.10. The fabric according to claim 1 , wherein the first embedded yarn is ...

Подробнее
12-08-2021 дата публикации

FUNCTIONAL MULTI-WALLED CORE-SHELL PARTICLES

Номер: US20210245132A1
Принадлежит: RUDOLF GMBH

The present invention relates to core-shell particles comprising a core comprising at least one lipophilic compound and a shell comprising at least one layer close to the core and one layer far from the core. The invention further relates to the preparation of such core-shell particles and their use, particularly in the finishing of fibers and textiles. 1. Core-shell particles comprising(a) a core comprising at least one lipophilic compound and(b) a shell comprising at least one layer close to the core and one layer far from the core, wherein the layer close to the core is obtainable by polymerization of at least one monomer with at least one ethylenically unsaturated group and wherein the monomer with at least one ethylenically unsaturated group does not have a nucleophilic group with active hydrogen atom, particularly no NCO-reactive hydrogen.2. The core-shell particles of claim 1 , wherein the layer far from the core is disposed on the layer close to the core.3. The core-shell particles of claim 1 , wherein the lipophilic compound is selected from pigments claim 1 , dyes claim 1 , fragrances claim 1 , cosmetics claim 1 , flame retardants claim 1 , latent heat storage materials claim 1 , biocides claim 1 , catalysts claim 1 , adhesives claim 1 , adhesive components claim 1 , hydrophobing agents claim 1 , polymer building blocks claim 1 , isocyanates claim 1 , oils claim 1 , silicone oils claim 1 , waxes or mixtures thereof.5. The core-shell particles of claim 1 , wherein the layer far from the core contains at least one urethane claim 1 , allophanate claim 1 , carbodiimide claim 1 , isocyanurate claim 1 , biuret claim 1 , uretdione claim 1 , urea claim 1 , iminooxadiazinedione or uretonimine group.6. The core-shell particles of claim 1 , wherein the layer far from the core is an addition product of at least one polyisocyanate and at least one compound comprising at least two groups with NCO-reactive hydrogen atom claim 1 , preferably hydroxy claim 1 , amino claim ...

Подробнее
02-07-2020 дата публикации

PILE KNIT FABRIC FOR INTERIOR MATERIALS OF VEHICLES, METHOD OF MANUFACTURING THE SAME AND MANUFACTURING MACHINE OF PILE KNIT FABRIC

Номер: US20200208309A1
Принадлежит:

A pile knit fabric for internal materials of vehicles may include a knit layer prepared by weaving ground yarns, on one surface thereof, and a pile layer prepared by interweaving pile yarns with ground yarn loops of the knit layer, on the other surface thereof and, thus, has excellent physical coupling force between the ground yarns and the pile yarns and has excellent abrasion resistance, scratch resistance and formability as well as soft tactility. 1. A pile knit fabric for internal materials of vehicle , the pile knit fabric comprising:a knit layer formed of a plurality of ground yarns woven lengthwise and widthwise into loop shapes; anda pile layer formed of a plurality of pile yarns interwoven with ground yarn loops of the knit layer,wherein the knit layer is prepared by weaving the plurality of ground yarns to form a double-sided loop structure or a single-sided loop structure; andwherein the pile layer is fixed to a surface of the knit layer and prepared by interlacing the plurality of pile yarns with the ground yarn loops of the knit layer.2. The pile knit fabric of claim 1 , wherein the plurality of ground yarns or the plurality of pile yarns are formed of one or more selected from the group consisting of polyamide claim 1 , polypropylene claim 1 , polyethylene terephthalate (PET) claim 1 , wool and combination thereof.3. The pile knit fabric of claim 1 , wherein a number of the ground yarn loops of the knit layer is 250-950 per meter in a horizontal direction thereof.4. The pile knit fabric of claim 1 , wherein the plurality of ground yarns has fineness of 50-200 denier.5. The pile knit fabric of claim 1 , wherein the knit layer has a thickness of 0.1-2 mm and a weight per area of 40-200 g/m.6. The pile knit fabric of claim 1 , wherein one strand of the plurality of pile yarns includes 10-140 strands of filaments claim 1 , and the filaments have fineness of 3-25 denier.7. The pile knit fabric of claim 1 , wherein the plurality of pile yarns has a length of ...

Подробнее
09-08-2018 дата публикации

Insulating Fabric and Method for Making the Same

Номер: US20180223459A1
Автор: Sinykin Daniel L.
Принадлежит:

A sliver-knit insulating fabric is disclosed that has pile extending from both sides of a knitted base material with the insulating fabric having a weight per unit area of less than 200 g/m2. The pile is formed from a plurality of tufts of fibers secured within the knitted base material. The tufts of fibers define a plurality of end portions extending from the knitted base material with a first portion of the end portions extending from a first side of the knitted base material to form a first pile portion and a second portion of the end portions extending from a second side of the knitted base material to form a second pile portion. A method of forming the sliver-knit insulating fabric is also disclosed. 1. A sliver-knit insulating fabric comprising:a knitted base material;a plurality of tufts of fibers secured within the knitted base material, the tufts of fibers defining a plurality of end portions extending from the knitted base material, a first portion of the end portions extending from a first side of the knitted base material to form a first pile portion and a second portion of the end portions extending from a second side of the knitted base material to form a second pile portion; and{'sup': '2', 'the knitted base material and plurality of tufts of fibers having a combined weight per unit area of less than 200 g/m.'}2. The sliver-knit insulating fabric of claim 1 , wherein a ratio of the weight of the first portion of the end portions to the weight of the second portion of the end portions is between 1:1 and 2.5:1.3. The sliver-knit insulating fabric of claim 1 , wherein a ratio of the weight of the first portion of the end portions to the weight of the second portion of the end portions is between 1.75:1 and 2.25:1.4. The sliver-knit insulating fabric of claim 1 , wherein the knitted base material is a low melt yarn.5. The sliver-knit insulating fabric of claim 1 , wherein the tufts of fibers are formed from a low denier fiber.6. The sliver-knit insulating ...

Подробнее
19-08-2021 дата публикации

METHOD FOR TREATING A TEXTILE MATERIAL WEB AND APPARATUS FOR TREATING A TEXTILE MATERIAL WEB

Номер: US20210254249A1
Принадлежит: ANDRITZ KUESTERS GMBH

A method for treating a textile material web for reducing a gas-permeability of the textile material web. The method includes providing the textile material web with a first side having a planar configuration and a second side having a planar configuration, the first side being opposite to the second side, transporting the textile material web in an advancing direction, and reducing the gas permeability of the textile material web. The gas permeability of the textile material web is reduced by applying water to the first side and/or the second side of the textile material web, guiding the textile web material through a first treatment gap which is formed by a first treatment roller and a first counter tool, and in the first treatment gap, pressure treating the textile material web and thermally treating the first side and/or the second side of the textile material web. 115-. (canceled)16: A method for treating a textile material web for reducing a gas-permeability of the textile material web , the method comprising:providing the textile material web comprising a first side having a planar configuration and a second side having a planar configuration, the first side being opposite to the second side;transporting the textile material web in an advancing direction; and applying water to at least one of the first side and the second side of the textile material web,', 'guiding the textile web material through a first treatment gap which is formed by a first treatment roller and a first counter tool, and', 'in the first treatment gap, pressure treating the textile material web and thermally treating at least one of the first side and the second side of the textile material web., 'reducing the gas permeability of the textile material web in a first step which comprises,'}17: The method as recited in further comprising:drying the textile material web after pressure treating and thermally treating the textile material web in the first treatment gap.18: The method as recited ...

Подробнее
18-08-2016 дата публикации

Polyester Acetate Tear-Away Printed Label and Methods of Manufacturing

Номер: US20160237600A1
Принадлежит:

A polyester acetate tear-away printed label and associated methods of manufacture are disclosed. In at least one embodiment, one such method of manufacture involves weaving a base cloth using polyester acetate filament yarns, sizing and oiling the base cloth, desizing and refining the base cloth using a jet grouting overflow machine having a low desizing bath ratio, performing an alkali peel on the base cloth, shaping and drying the base cloth, further shaping the base cloth, coating the base cloth, and slitting the base cloth into desired dimensions. 1. A method for manufacturing a polyester acetate tear-away printed label comprising the steps of:weaving a base cloth using polyester acetate filament yarns;sizing and oiling the base cloth;desizing and refining the base cloth using a jet grouting overflow machine having a low desizing bath ratio;performing an alkali peel on the base cloth;shaping and drying the base cloth;further shaping the base cloth;coating the base cloth; andslitting the base cloth into desired dimensions.2. The method of claim 1 , wherein the step of weaving a base cloth using polyester acetate filament yarns further comprises the step of weaving a base cloth using polyester acetate filament yarns having a weight of 98-150 grams claim 1 , a pH value of 6-10 claim 1 , and a thickness of 0.11-0.19 millimeters.3. The method of claim 1 , wherein the step of weaving a base cloth using polyester acetate filament yarns further comprises the step of weaving a base cloth using polyester acetate filament yarns with a warp yarn of the polyester acetate filament yarn being 75D/48F and having a warp density of 750-950 pieces per 10 centimeters claim 1 , and a weft yarn of the polyester acetate filament yarn being 120D/72F and having a weft density of 280-380 pieces per 10 centimeters.4. The method of claim 1 , wherein the step of weaving a base cloth further comprises the steps of:designing satin weave as the weaving structure;using an air jet loom to weave ...

Подробнее
18-08-2016 дата публикации

BULK RECOVERY APPARATUS FOR NONWOVEN FABRIC AND BULK RECOVERY METHOD FOR THE SAME

Номер: US20160237608A1
Принадлежит:

An apparatus for recovering bulkiness of a nonwoven fabric by blowing hot air and heating the nonwoven fabric transferred in a transfer direction, includes a case member that has both end portions in the transfer direction opened; an entrance and an exit provided to openings on opposite end sides, in the transfer direction, of the case member to transfer the nonwoven fabric; a wall surface along the transfer direction and located between the entrance and the exit; a blast opening in the wall surface for blasting hot air inside the case member in a blasting direction being the transfer direction or opposite to the transfer direction; and a discharge opening provided to the case member and downstream in the blasting direction. Hot air flows from the blast opening toward the discharge opening while coming into contact with one of two faces of the nonwoven fabric inside the case member. 2. The nonwoven fabric bulk recovery apparatus according to claim 1 , whereina sectional area of the blast opening is wider than a sectional area having a normal direction thereof come along the transfer direction of the hot air flowing in the space at an interior of the case member.3. The nonwoven fabric bulk recovery apparatus according to claim 1 , whereinthe blast opening is provided to a part of the entrance of the case member,the discharge opening is provided to a part of the exit of the case member, andthe hot air is blasted to flow from an upstream side along the transfer direction toward a downstream side along the transfer direction.4. The nonwoven fabric bulk recovery apparatus according to claim 3 , whereina direction in which the hot air is blasted forms an angle that is 30 degrees or less with respect to the transfer direction.5. The nonwoven fabric bulk recovery apparatus according to claim 4 , whereina shape, of a wall surface on the downstream side along the transfer direction, of a wall surface that forms the blast opening has a curved surface configured with curved ...

Подробнее
18-08-2016 дата публикации

ABSORBENT ARTICLE MANUFACTURING APPARATUS AND ABSORBENT ARTICLE MANUFACTURING METHOD

Номер: US20160237609A1
Автор: Mitsuno Satoshi, Okuda Jun
Принадлежит:

An absorbent article manufacturing apparatus includes: 1. An absorbent article manufacturing apparatus comprising:a first conveying route that is arranged in a straight line along a first direction in plan view;a plurality of processing devices that process an intermediate product of an absorbent article that is conveyed along the first conveying route;a heating unit that restores bulk of a non-woven fabric through heating the non-woven fabric by blowing hot air onto the non-woven fabric while conveying the non-woven fabric along a direction in which the non-woven fabric is continuous, the non-woven fabric being a strip shape and serving as a part of the absorbent article; anda second conveying route that conveys the non-woven fabric in a second direction that intersects the first direction in plan view, the non-woven fabric having been restored of the bulk through heating with the heating unit, the non-woven fabric being input to the first conveying route via the second conveying route.2. An absorbent article manufacturing apparatus according to claim 1 , whereinthe heating unit is arranged in a position that does not overlap with the first conveying route in plan view.3. An absorbent article manufacturing apparatus according to claim 1 , whereinthe non-woven fabric, after having been conveyed upward, is conveyed in the second direction with the second conveying route to directly above the first conveying route, and is input to the first conveying route from upward of the first conveying route.4. An absorbent article manufacturing apparatus according to claim 1 , whereinthe heating unit has a case member equipped with an entrance for the non-woven fabric and an exit for the non-woven fabric,one of an entrance-side portion and an exit-side portion of the case member has a blast opening that blasts the hot air into a space inside the case member toward another one of the entrance-side portion and the exit-side portion, andthe other one of the entrance-side portion ...

Подробнее
16-08-2018 дата публикации

SKIN MATERIAL AND CONVEYANCE SEAT

Номер: US20180230632A1
Принадлежит:

It is intended to improve texture of a decoration using a stitch line while improving workability in sewing for forming the stitch line at a skin material, to promote manufacturing efficiency as compared to formation of a stepped shape only by sewing, and to reduce the number of steps. A skin material is used for a conveyance seat, and is molded using a die. The skin material includes a linearly-extending stepped portion having a stepped shape transferred from the die, and a stitch line sewn along the stepped portion. The stepped portion serves as a guide upon formation of the stitch line. 1. A skin material used for a conveyance seat and molded using a die , comprising:a linearly-extending transferred extension having a stepped shape transferred from the die; anda stitch line sewn along the transferred extension,wherein the transferred extension serves as a guide upon formation of the stitch line.2. The skin material according to claim 1 , whereina thickness of the transferred extension and a periphery thereof is a constant thickness.3. The skin material according to claim 1 , whereinthe transferred extension is formed in a vicinity of a standing wall of the conveyance seat.4. The skin material according to claim 1 , whereinthe stitch line is formed on one side with respect to the transferred extension.5. The skin material according to claim 1 , whereinthe stitch line is formed at a portion formed continuously to a lower side of the stepped shape of the transferred extension.6. The skin material according to claim 1 , further comprising:a seal material configured to cover, from a back side, a sewing hole formed by the stitch line.7. The skin material according to claim 6 , whereinthe seal material covers the stitch line to extend over the transferred extension.8. A conveyance seat comprising:{'claim-ref': {'@idref': 'CLM-00001', 'claim 1'}, 'the skin material according to .'} This application is based on and claims the benefit of priority from the prior Japanese ...

Подробнее
16-08-2018 дата публикации

APPARATUS AND METHODS FOR DELIVERING A HEATED FLUID

Номер: US20180231272A1
Принадлежит:

Apparatus and methods for delivering a heated fluid. The apparatus includes at least a preheat zone, an expansion zone, and an expanded zone comprising a plurality of trim heaters, at least one fluid flow-distribution sheet, and an outlet. The apparatus may be used for delivering the heated fluid onto a moving fluid-permeable substrate. 1. An apparatus for handling , heating and delivering a gaseous fluid , comprising:a preheat zone comprising a preheater; 'wherein the first and second major walls of the expansion zone and the first and second minor walls of the expansion zone are configured so that the expansion zone comprises a lateral expansion angle of at least 15 degrees and a tertiary contraction angle of at least 2.0 degrees; and,', 'an expansion zone fluidly connected to the preheat zone, the expansion zone being defined by first and second major walls and first and second minor walls, the expansion zone comprising an expansion zone inlet through which preheated fluid is received from the preheat zone and an expansion zone outlet through which preheated fluid exits the expansion zone,'} a plurality of trim heaters collectively extending across at least a portion of the lateral extent of the expanded zone,', 'at least one fluid flow-distribution sheet positioned downstream of the plurality of trim heaters,', 'and,', 'an outlet;, 'the expanded zone further comprising, 'an expanded zone with an expanded zone inlet that is fluidly connected to the expansion zone outlet of the expansion zone and through which preheated fluid is received from the expansion zone outlet of the expansion zone, the expanded zone being defined by first and second major walls and first and second minor walls and comprising a downstream axis and a lateral extent and a tertiary extent;'}wherein the major and minor walls that define the expansion zone, the major and minor walls that define the expanded zone, and walls that define the preheat zone, are all made of sheet metal,and wherein ...

Подробнее
25-08-2016 дата публикации

BULKINESS RECOVERY APPARATUS AND BULKINESS RECOVERY METHOD FOR NONWOVEN FABRIC

Номер: US20160244903A1
Автор: Mitsuno Satoshi, Okuda Jun
Принадлежит: Unicharm Corporation

A bulkiness recovery apparatus for nonwoven fabric, the apparatus being for recovering bulkiness of the nonwoven fabric by blowing hot air to heat the nonwoven fabric, the apparatus including: a heating mechanism including case units, jet inlets and an evacuation opening, the case unit having a conveyor space in which the nonwoven fabric is conveyed, the jet inlet blasting hot air into the conveyor space from a one side toward another side of the conveyor space in a conveying direction of the nonwoven fabric, the evacuation opening evacuating hot air from the conveyor space, the hot air flowing along the conveying direction while being in contact with either one of two surfaces of the nonwoven fabric; and deformation mechanisms that deform the nonwoven fabric discharged from the case unit so that the one surface of the nonwoven fabric is convex. 1. A bulkiness recovery apparatus for nonwoven fabric , the apparatus being for recovering bulkiness of the nonwoven fabric by blowing hot air to heat the nonwoven fabric , the apparatus comprising: the case unit having a conveyor space in which the nonwoven fabric is conveyed,', 'the jet inlet blasting hot air into the conveyor space from a one side toward another side in a conveying direction in which the nonwoven fabric is conveyed inside the conveyor space,', 'the evacuation opening evacuating hot air from the conveyor space, the hot air flowing along the conveying direction while being in contact with either one of two surfaces of the nonwoven fabric; and, 'a heating mechanism including a case unit, a jet inlet and an evacuation opening,'}a deformation mechanism that deforms the nonwoven fabric discharged from the case unit so that the one surface of the nonwoven fabric is convex.2. A bulkiness recovery apparatus for nonwoven fabric according to claim 1 , whereinthe deformation mechanism deforms the nonwoven fabric that is being spontaneously cooled outside the case unit.3. A bulkiness recovery apparatus for nonwoven ...

Подробнее
01-08-2019 дата публикации

STAB AND BALLISTIC RESISTANT ARTICLES AND THE PROCESS OF MAKING

Номер: US20190232609A1
Принадлежит: HONEYWELL INTERNATIONAL INC.

Dimensionally stable open woven fabrics formed from a plurality of high tenacity warp elongate bodies interwoven and bonded with a plurality of transversely disposed, high tenacity weft elongate bodies, composite articles formed therefrom, and to a continuous process for forming the composite articles. 111-. (canceled)12. A process for forming a dimensionally stable open fabric , the process comprising:a) providing a woven fabric comprising a plurality of warp elongate bodies interwoven and bonded with a plurality of transversely disposed weft elongate bodies, said warp elongate bodies and weft elongate bodies each comprising thermoplastic high tenacity elongate bodies having a tenacity of at least about 14 g/denier and a tensile modulus of at least about 300 g/denier, wherein adjacent warp elongate bodies are spaced apart from each other by a distance equivalent to at least about 10% of the width of the warp elongate bodies and adjacent weft elongate bodies are spaced apart from each other by a distance equivalent to at least about 10% of the width of the weft elongate bodies;b) at least partially melting the thermoplastic polymer of the high tenacity warp elongate bodies and/or the high tenacity weft elongate bodies; andc) allowing the melted thermoplastic polymer of the high tenacity warp elongate bodies and/or the high tenacity weft elongate bodies to solidify, whereby the high tenacity warp elongate bodies and the high tenacity weft elongate bodies are bonded to each other, thereby forming a dimensionally stable open fabric.13. The process of wherein adjacent warp elongate bodies are spaced apart from each other at their nearest longitudinal edges by more than 1 mm and adjacent high tenacity weft elongate bodies are spaced apart from each other at their nearest longitudinal edges by more than 1 mm.14. A process for forming a ballistic resistant closed claim 12 , thermally fused multilayer article comprising adjoining at least two dimensionally stable open ...

Подробнее
01-09-2016 дата публикации

BULK RECOVERY APPARATUS FOR NONWOVEN FABRIC AND BULK RECOVERY METHOD FOR THE SAME

Номер: US20160251779A1
Автор: Mitsuno Satoshi, Okuda Jun
Принадлежит:

An apparatus for recovering bulkiness of a nonwoven fabric by blowing hot air and heating the nonwoven fabric transferred in a transfer direction, includes a case member that has both end portions in the transfer direction opened; an entrance and an exit provided to openings on opposite end sides, in the transfer direction, of the case member to transfer the nonwoven fabric; and a blast opening provided on the entrance side of the case member for blasting hot air inside the case member toward the exit. Inside the case member, a sectional area at a first position downstream of the blast opening is wider than at a second position located between the blast opening and the first position. Hot air blasted from the blast opening flows downstream through the first and second positions while coming into contact with one of two faces of the nonwoven fabric inside the case member. 1. An apparatus that recovers a bulk of a nonwoven fabric by blowing hot air and heating the nonwoven fabric that is transferred in a transfer direction , comprising:a case member that has both end portions thereof in the transfer direction opened;an entrance that is provided to an opening on one end side, in the transfer direction, of the case member, the entrance being used to transfer the nonwoven fabric;an exit that is provided to an opening on an other end side, in the transfer direction, of the case member, the exit being used to transfer the nonwoven fabric; anda blast opening that is provided to a part on the entrance side of the case member and blasts into a space inside the case member the hot air toward a part on the exit side, whereina sectional area at a first position, of the space inside the case member, on a downstream side along the transfer direction with respect to a position where the blast opening is provided, is wider than a sectional area at a second position, of the space inside the case member, located between the position where the blast opening is provided and the first ...

Подробнее
17-09-2015 дата публикации

NATURAL FINISH FABRIC

Номер: US20150259843A1
Автор: Goenka Dipali
Принадлежит:

A method for producing environmentally friendly fabric and textile products without use of chemicals comprises a finishing process including the steps of: singeing, enzyme desizing; water washing, peaching, stentering, and sanforizing. The steps of the finishing process are purely physical and preferably uses only water, water vapor (steam), and enzymes, and not chemicals including chemical agents. As such, the finishing process is believed to be environmentally friendly. 1. A method for producing a fabric , comprising the steps of:(a) singeing a continuous length of a fabric;(b) after said step (a), desizing the continuous length of fabric;(c) after said step (b), washing the continuous length of fabric;(d) after said step (c), peaching the continuous length of fabric by impacting at least one of the surfaces of the fabric with a plurality of bristles;(e) after said step (d), stentering the continuous length of fabric; and(f) after said step (e), sanforizing the continuous length of fabric;(g) wherein said steps (a) through (f) are performed using only water, water vapor, and enzymes without use of chemicals.2. The method of claim 1 , wherein said step (a) is performed by passing the fabric on a singeing machine at a predetermined speed.3. The method of claim 2 , wherein the continuous length of fabric in the singing machine is subjected to a gas singe having a flame temperature about 800° C. to 1000° C. and operating at a speed of 80 meters per minute to 100 meters per minute.4. The method of claim 1 , wherein said step (b) is performed using a desizing machine.5. The method of claim 1 , wherein said step (b) comprises enzymatic desizing and the enzymatic desizing takes place in a desizing machine where the enzymes are introduced at a temperature of 60° C. to 80° C. to react with the continuous length of fabric for about six to eight hours.6. The method of claim 1 , wherein the continuous length of fabric is washed with water having a temperature of about 85° C. ...

Подробнее
08-09-2016 дата публикации

Woven materials and methods of forming woven materials

Номер: US20160258084A1
Принадлежит: Apple Inc

Woven material and altering the weave pattern of the woven material. The woven material may comprise a first portion comprising a weave pattern formed by a plurality of warp threads and at least one weft thread woven between the plurality of warp threads. The first portion may have a first thickness. The woven material may also comprise a locally thinned portion positioned adjacent the first portion. The locally thinned portion may comprise an altered weave pattern, which may comprise the plurality of warp threads positioned on a single side of the at least one weft thread, and/or the at least one weft thread woven between the plurality of warp threads in the locally thinned portion is separated by a first distance. The first distance may be greater than a second distance positioned between the at least one weft thread woven between the plurality of warp threads in the first portion.

Подробнее
08-09-2016 дата публикации

BULKINESS RECOVERY APPARATUS FOR NONWOVEN FABRIC

Номер: US20160258090A1
Автор: Mitsuno Satoshi, Okuda Jun
Принадлежит: Unicharm Corporation

A bulkiness recovery apparatus for nonwoven fabric includes a hot-air source; and a case unit including a base member, and first and second members. The first and second members face opposite first and second surfaces of the base member and partition first and second conveyor spaces. The base member has first and second hot-air chambers. The first and second surfaces have first and second jet inlets. The first and second hot-air chambers at least partly overlap in a direction normal to the first surface. First and second conveying directions of the nonwoven fabric in the first and second conveyor spaces are different. Hot air flows along the first conveying direction and is blasted from the first jet inlet into the first conveyor space. Hot air flows along the second conveying direction and is blasted from the second jet inlet into the second conveyor space. 1. A bulkiness recovery apparatus for nonwoven fabric , the apparatus being for recovering bulkiness of the nonwoven fabric by blowing hot air to heat the nonwoven fabric , the apparatus comprising:a hot-air source; anda case unit including a base member, a first member and a second member, the first member being provided facing a first surface of the base member and partitioning a first conveyor space for the nonwoven fabric,the second member being provided facing a second surface of the base member and partitioning a second conveyor space for the nonwoven fabric, the first surface having a first jet inlet,', 'the second surface being placed on a side opposite the first surface,', 'the second surface having a second jet inlet,', 'the first hot-air chamber being supplied with hot air from the hot-air source and communicating with the first jet inlet,', 'the second hot-air chamber being supplied with hot air from the hot-air source and communicating with the second jet inlet,', 'the first hot-air chamber and the second hot-air chamber being arranged so as to at least partly overlap in a direction normal to the ...

Подробнее
07-10-2021 дата публикации

STABILIZATION OF SLIT ABSORBENT FABRIC EDGES

Номер: US20210310169A1
Принадлежит:

Disclosed are the cut edges of an absorbent fabric comprising at least 45% and less than about 90% cellulosic or natural fibers, and a fusible component being stabilized by fusing the fusible component with an arrangement of spaced lines or spaced areas extending from the cut edges, and optionally over the entire absorbent fabric. 1. A process for stabilizing the cut edges of an absorbent fabric containing at least about 45% , preferably at least about 55% , preferably at least about 70% and less than about 90% cellulosic or natural component , and a fusible component present or added at least within a margin along the cut edges , comprising the steps ofintermittently fusing said margin by applying heat and pressure to said margin to melt the fusible component in discrete fused areas extending at least along, across or at angle to the cut edges, andmaintaining free areas between the discrete fused areas substantially free of fusing,wherein the fused areas transition in a sloping and progressively less fused periphery toward the free areas,wherein said margin optionally extend over substantially the entire surface of the fabric,wherein the discrete fused areas comprise less than about 33%, preferably less than about 30%, preferably less than about 25%, preferably less than about 20% of said margin,wherein the free areas comprise at least about 50%, preferably at least about 75% of their original thickness, andwherein the fabric maintains greater than 50%, preferably at least about 75%, preferably at least about 90% of its overall original thickness.21. The process of claim 1 , wherein the fused areas protrude through an opposite surface to create a three-dimensional effect in said margin.2. The process of wherein the fusible component comprises a pattern of stitch-bonded yarns entering and exiting the fabric with a repeating pattern having a first directional frequency and a second cross-directional frequency claim 1 , and wherein a pattern of the discrete fused ...

Подробнее
27-11-2014 дата публикации

KNIT WITH ZONES WITHOUT BARBS, METHOD OF MAKING SAME AND PROSTHESES OBTAINED THEREFROM

Номер: US20140350577A1
Принадлежит: SOFRADIM PRODUCTION

The present invention relates to an openwork prosthetic knit () made from a single piece based on first yarns of biocompatible polymer materials that define a first face () and a second face that are opposite one another and on a second biocompatible yarn that generates barbs () that protrude outwards from at least said first face, characterized in that said first face comprises at least one zone in which it is provided with said barbs and at least one zone () in which it is free of such barbs. It also relates to a process for manufacturing such a knit () and to a prosthesis comprising such a knit (). 1. An openwork prosthetic knit comprising a single piece based on at least a first yarn made of biocompatible polymer material that defines a first face and a second face that are opposite one another and on a second biocompatible yarn that generates barbs that protrude outwards from at least said first face , wherein said first face comprises at least a first zone provided with said barbs and at least a second zone free of said barbs.2. The openwork prosthetic knit according to claim 1 , wherein said first face comprises several of said first zones provided with said barbs claim 1 , and several of said second zones which are free of said barbs.3. The openwork prosthetic knit according to claim 1 , wherein said second yarn is a heat-fusible monofilament yarn.4. The openwork prosthetic knit according to claim 3 , wherein said first yarns have a melting point strictly above that of said second yarn.5. The openwork prosthetic knit according to claim 3 , wherein said second yarn is a monofilament yarn made of polylactic acid and said first yarns are monofilament yarns made of polyethylene terephthalate (PET).6. A process for manufacturing a knit claim 3 , comprising the following steps:a) manufacturing an arrangement of at least one first yarn of biocompatible polymer material that defines a first face and a second face that are opposite one another for said knit and of at ...

Подробнее
27-11-2014 дата публикации

BARBED PROSTHETIC KNIT AND HERNIA REPAIR MESH MADE THEREFROM AS WELL AS PROCESS FOR MAKING SAID PROSTHETIC KNIT

Номер: US20140350578A1
Принадлежит:

The present invention relates to a prosthetic knit based on at least a first yarn of biocompatible polymer material defining first and second opposite and openwork faces, and on at least a second biocompatible and heat-fusible monofilament yarn, forming barbs that protrude outwards from at least said first face and are obtained by melting loops generated by said second yarn, the chart followed for the knitting of said first and second yarns on a warp knitting machine having three guide bars B B B being the following, according to the ISO 11676 standard:—Bar B 1.0/0.1//—Bar B 1.0/7.7/6.6/7.7//—Bar B 2.1/5.5/3.4/0.0// said second yarn following the chart of bar B The present invention also relates to a process for manufacturing such a knit. 1123. A prosthetic knit comprising at least a first yarn of biocompatible polymer material defining first and second opposite and openwork faces , and at least a second biocompatible and heat-fusible monofilament yarn which forms barbs that protrude outwards from at least said first face and are obtained by melting loops generated by said second yarn , said first and second yarns being knit on a warp knitting machine having three guide bars B , B , B , according to ISO 11676 standard and the following chart:{'b': '1', 'Bar B: 1.0/0.1//'}{'b': '2', 'Bar B: 1.0/7.7/6.6/7.7//'}{'b': '3', 'Bar B: 2.1/5.5/3.4/0.0//'}{'b': '3', 'said second yarn following the chart of bar B.'}2. The knit according to claim 1 , wherein the first yarns are monofilament yarns.3. The knit according to claim 2 , wherein the first yarns are monofilament yarns made of polyester terephthalate (PET) having a diameter of 0.09 mm.4. The knit according to claim 3 , wherein the second heat-fusible monofilament yarn comprises a material selected from polypropylene claim 3 , polyglycolic acid claim 3 , polylactic acid claim 3 , and mixtures thereof.5. The knit according to claim 3 , wherein the second heat-fusible monofilament yarn is a polylactic acid monofilament ...

Подробнее
14-10-2021 дата публикации

PRESSURIZED REDUCTION OF CNT RESISTIVITY

Номер: US20210316543A1
Принадлежит:

A method for reducing the resistivity of a carbon nanotube nonwoven sheet includes providing a carbon nanotube nonwoven sheet comprising a plurality of carbon nanotubes and applying pressure to the carbon nanotube nonwoven sheet to reduce air voids between carbon nanotubes within the carbon nanotube nonwoven sheet. 1. A method for reducing the resistivity of a carbon nanotube nonwoven sheet , the method comprising:providing a carbon nanotube nonwoven sheet comprising a plurality of carbon nanotubes; andapplying pressure to the carbon nanotube nonwoven sheet to reduce air voids between carbon nanotubes within the carbon nanotube nonwoven sheet; andheating the carbon nanotube nonwoven sheet,wherein the carbon nanotube sheet contains no adhesives or resins and the steps of applying pressure to the carbon nanotube nonwoven sheet and heating the carbon nanotube nonwoven sheet occur simultaneously such that the carbon nanotube nonwoven sheet has at least 45% decreased resistivity following application of pressure and heat compared to the resistivity of the carbon nanotube nonwoven sheet before application of pressure and heat.2. The method of claim 1 , wherein the step of applying pressure to the carbon nanotube nonwoven sheet is performed using a machine press.3. The method of claim 2 , further comprising:layering a foil on a side of the carbon nanotube nonwoven sheet prior to applying pressure to the carbon nanotube nonwoven sheet.4. The method of claim 3 , wherein the foil comprises aluminum and polytetrafluoroethylene.5. The method of claim 1 , wherein the step of applying pressure to the carbon nanotube nonwoven sheet is performed using a set of nip rollers.6. The method of claim 1 , wherein the step of applying pressure to the carbon nanotube nonwoven sheet is performed using an autoclave.7. The method of claim 1 , wherein the carbon nanotube nonwoven sheet comprises a plurality of carbon nanotubes held together by Van der Waals forces claim 1 , and wherein applying ...

Подробнее
13-08-2020 дата публикации

BALLISTIC RESISTANT THERMOPLASTIC SHEET, PROCESS OF MAKING AND ITS APPLICATIONS

Номер: US20200255986A1
Принадлежит: HONEYWELL INTERNATIONAL INC.

Woven fabrics are formed from high tenacity fibers or tapes that are loosely interwoven with adhesive coated filaments, to composite articles formed therefrom, and to a continuous process for forming the composite articles. 113-. (canceled)14. A process for forming a dimensionally stable open fabric , the process comprising:a) providing a woven fabric comprising high tenacity elongate bodies interwoven with transversely disposed binding elongate bodies, said high tenacity elongate bodies comprising a thermoplastic polymer, having a tenacity of at least about 14 g/denier and having a tensile modulus of at least about 300 g/denier, wherein adjacent high tenacity elongate bodies are spaced apart from each other by a distance equivalent to at least about 10% of the width of the high tenacity elongate bodies; and wherein said binding elongate bodies at least partially comprise a thermoplastic polymer having a melting temperature below a melting temperature of the high tenacity elongate bodies;b) at least partially melting the thermoplastic polymer of the binding elongate bodies; andc) allowing the melted thermoplastic polymer of the binding elongate bodies to solidify, whereby the binding elongate bodies are bonded to the high tenacity elongate bodies, thereby forming a dimensionally stable open fabric.15. A process for forming a closed , thermally fused multilayer article comprising adjoining a first dimensionally stable open fabric of with a second dimensionally stable open fabric of , wherein the high tenacity elongate bodies of the first fabric are oriented at a non-parallel angle relative to the high tenacity elongate bodies of the second fabric , and thermally pressing the adjoined fabrics under conditions sufficient to attach the first fabric to the second fabric and to flatten the high tenacity elongate bodies in each fabric respectively , thereby causing longitudinal edges of the adjacent high tenacity elongate bodies in each fabric respectively to contact each ...

Подробнее
08-10-2015 дата публикации

METHODS FOR MAKING ZONED APERTURED WEBS

Номер: US20150284892A1
Принадлежит: The Procter & Gamble Company

A method for making a zoned apertured nonwoven web comprises providing an unapertured nonwoven web having a first plurality of weakened locations in a first pattern in a first zone and a second plurality of weakened locations in a second pattern in a second zone. The method comprises applying a substantially cross machine directional tensioning force to the nonwoven web to cause the nonwoven web to rupture at some of the first and second pluralities of weakened locations. The applying step creates a plurality of first apertures in the nonwoven web coincident with the some of the first plurality of weakened locations and a plurality of second apertures in the nonwoven web coincident with the some of the second plurality of weakened locations. The cross machine directional width of the nonwoven web after the applying step is substantially the same in the first zone and the second zone. 1. A method for making a zoned apertured nonwoven web , the method comprising:advancing a nonwoven web in a machine direction;weakening the nonwoven web at a plurality of first locations in a first zone of the nonwoven web to create a first plurality of weakened locations that are situated in a first pattern;weakening the nonwoven web at a plurality of second locations in a second zone of the nonwoven web to create a second plurality of weakened locations that are situated in a second pattern that is different than the first pattern, wherein the first zone is positioned further upstream than the second zone relative to the machine direction;incrementally stretching the nonwoven web to locally extend portions of the nonwoven web in a direction substantially parallel to a cross machine directional to cause the nonwoven web to rupture at some of the first and second pluralities of weakened locations in the first and second zones; and a plurality of first apertures in the nonwoven web coincident with the some of the first plurality of weakened locations in the first zone; and', 'a plurality ...

Подробнее
28-09-2017 дата публикации

BREATHABLE LIGHT WEIGHT UNIDIRECTIONAL LAMINATES

Номер: US20170275790A1
Принадлежит: HONEYWELL INTERNATIONAL INC.

Lightweight, breathable, non-woven fibrous materials and composite articles incorporating the same are provided. Composite articles are formed by merging an open, non-woven grid formed from high tenacity elongate bodies with at least one substrate, forming an article having excellent tensile strength, excellent breathability and a unique aesthetic appearance. 1. An open , non-woven fabric comprising:a) a first array comprising a plurality of laterally spaced first elongate bodies, wherein immediately laterally adjacent first elongate bodies are spaced apart from each other at their nearest longitudinal edges whereby an empty space is between said immediately laterally adjacent first elongate bodies; wherein each of said first elongate bodies comprises at least one filament and optionally comprises a binder coating, said binder coating comprising less than 50% by weight of each of said first elongate bodies;b) a second array comprising a plurality of laterally spaced second elongate bodies, wherein immediately laterally adjacent second elongate bodies are spaced apart from each other at their nearest longitudinal edges whereby an empty space is between said immediately laterally adjacent second elongate bodies; wherein each of said second elongate bodies comprises at least one filament and optionally comprises a binder coating, said binder coating comprising less than 50% by weight of each of said second elongate bodies;wherein the first array overlies the second array and wherein the first elongate bodies are oriented at an angle relative to the second elongate bodies, whereby gaps are defined at the junctions of pairs of overlying, adjacent first elongate bodies and pairs of underlying, adjacent second elongate bodies;wherein each of the first elongate bodies overlies and is bonded to a plurality of the second elongate bodies, and wherein each of the second elongate bodies underlies and is bonded to a plurality of the first elongate bodies, whereby the first ...

Подробнее
28-09-2017 дата публикации

Steam De-Wrinkling Appliance Having a De-Wrinkling Head Connected by a Line to a Base

Номер: US20170275809A1
Автор: Ducruet Guy, JAVIT Maxime
Принадлежит:

A steam de-wrinkling appliance includes a de-wrinkling head connected by a line to a base for producing a steam flow. The de-wrinkling head has a rear portion forming a handle and a flared front portion having a surface with one or a plurality of steam exit holes for distributing the steam flow originating from the base. The de-wrinkling head further includes a device having a movable member capable of assuming a retracted position and a restriction position. The flared front portion encloses a single steam plenum chamber that supplies steam to the steam exit hole or holes. 1. A steam de-wrinkling appliance comprising a de-wrinkling head connected by a line to a base for producing a steam flow , the de-wrinkling head comprising a rear portion forming a handle and a flared front portion comprising a surface having one or a plurality of steam exit holes for distributing the steam flow originating from the base , the de-wrinkling head comprising a device for reducing an area of the flow toward the steam exit hole or holes , said device comprising a movable member capable of assuming a retracted position , in which the area of the flow toward the steam exit hole or holes is maximal , and a restriction position , in which the movable member reduces the area of the flow toward the steam exit hole or holes , wherein the flared front portion encloses a single steam plenum chamber that supplies steam to the steam exit hole or holes.2. The steam de-wrinkling appliance according to claim 1 , wherein the surface has at least a first group of steam exit holes and a second group of steam exit holes and the movable member is capable of assuming a retracted position claim 1 , in which the plenum chamber communicates freely with the entirety of the first group of steam exit holes and second group of steam exit holes claim 1 , and a restriction position claim 1 , in which the movable member covers claim 1 , at least partially claim 1 , the second group of steam exit holes or isolates ...

Подробнее
20-08-2020 дата публикации

CANVAS FLOCKING DIAMOND PICTURE

Номер: US20200262235A1
Принадлежит:

The disclosure discloses a canvas flocking diamond picture, and relates to the technical field of canvas flocking diamond picture devices and making methods, solving the problem that the gray cloth of diamond canvas is shrunk after encountering water so that the diamond picture becomes uneven. The picture frame is internally provided with a protective film and a canvas; the upper end surface of the canvas is provided with a flash layer; an ink-receiving layer is arranged under the flash layer; an upper back cover layer is arranged under the ink-receiving layer; a cingico layer is arranged under the upper back cover layer; a lower back cover layer is arranged under the cingico layer; a flocking layer is arranged under the lower back cover layer; an adhesive layer is arranged between the lower back cover layer and the flocking layer. 111232334546576871081039810. A canvas flocking diamond picture , comprising a picture frame () , wherein , the picture frame () is internally provided with a protective film () and a canvas () , and the protective film () is located at one side of the canvas (); the upper end surface of the canvas () is provided with a flash layer (); an ink-receiving layer () is arranged under the flash layer (); an upper back cover layer () is arranged under the ink-receiving , layer (); a cingico layer () is arranged under the upper back cover layer (); a lower back cover layer () is arranged under the cingico layer (); a flocking layer () is arranged under the lower back cover layer () , and the flocking layer () is located on the lower end surface of the canvas (); an adhesive layer () is arranged between the lower back cover layer () and the flocking layer ().267. The canvas flocking claim 1 , diamond picture according to claim 1 , wherein claim 1 , the lower end surface of the upper back cover layer () is attached to the upper end surface of the cingico layer ().378. The canvas flocking diamond picture according to claim 1 , wherein claim 1 , the ...

Подробнее
27-09-2018 дата публикации

BALLISTIC RESISTANT THERMOPLASTIC SHEET, PROCESS OF MAKING AND ITS APPLICATIONS

Номер: US20180274135A1
Принадлежит: HONEYWELL INTERNATIONAL INC.

Woven fabrics are formed from high tenacity fibers or tapes that are loosely interwoven with adhesive coated filaments, to composite articles formed therefrom, and to a continuous process for forming the composite articles. 1. A woven fabric comprising high tenacity elongate bodies interwoven and bonded with transversely disposed binding elongate bodies , said high tenacity elongate bodies comprising a thermoplastic polymer , having a tenacity of at least about 14 g/denier and having a tensile modulus of at least about 300 g/denier , wherein adjacent high tenacity elongate bodies are spaced apart from each other by a distance equivalent to at least about 10% of the width of the high tenacity elongate bodies; and wherein said binding elongate bodies at least partially comprise a thermoplastic polymer having a melting temperature below a melting temperature of the high tenacity elongate bodies.2. The woven fabric of wherein said high tenacity elongate bodies are longitudinally extending warp bodies and said binding elongate bodies are laterally extending weft bodies.3. The woven fabric of wherein said high tenacity elongate bodies are laterally extending weft bodies and said binding elongate bodies are longitudinally extending warp bodies.4. The woven fabric of wherein said binding elongate bodies comprise bi-component elongate bodies comprising a first component and a second component claim 1 , wherein the first component comprises a thermoplastic polymer having a melting temperature below a melting temperature of the high tenacity elongate bodies claim 1 , and wherein the first component has a melting temperature that is below a melting temperature of second component.5. The woven fabric of wherein said binding elongate bodies comprise single component binder element claim 1 , said single component binder element comprising a thermoplastic polymer having a melting temperature that is below a melting temperature of the high tenacity elongate bodies.6. The woven ...

Подробнее
25-12-2014 дата публикации

Fabric Having Cut-Loop Structure, Method for Manufacturing Same, and Product Using Fabric Having Cut-Loop Structure

Номер: US20140373967A1
Принадлежит:

The present invention provides fabrics with cut loop group and a manufacturing method thereof, wherein the core yarn at the section where said loops are being cut is outwardly protruded from the covering yarns, while the synthetic fiber divided yarn, which is a core yarn, is separated into multiple filaments. The fabrics with cut loop group show superior characteristics in polishing properties, sliding properties, water absorption properties, rapid drying properties and feeling of touch owing to a split-type microfiber and a viscos rayon yarn which comprises a covering yarn, and polishing can be performed while easily catching foreign substances such as extremely minute dust particles or human hairs and the like by the synthetic fiber divided yarn which functions as a hook. Thus the fabrics with cut loop group according to the present invention can be used usefully in the products such as various kind of mats, towels, bathroom products, and the like including dishclothes and mops. 1. A manufacturing method for fabrics with cut loop group , the method characterized in that: a synthetic fiber divided yarn having total fineness within the range from about 100 denier to about 300 denier is used as a core yarn; and a split-type microfiber made of polyester and nylon having total fineness within the range from about 50 denier to about 300 denier and a viscos rayon having total fineness within the range from about 100 denier to about 300 denier , are used for a covering yarn; and the method includes the steps of:a yarn manufacturing step for manufacturing a yarn having a structure of a core yarn where the covering yarn is fixed into through a heat treatment after twisting the covering yarn into said core yarn;a textile manufacturing step for weaving a textile using said yarn to include loop group therein;a pre-fabric manufacturing step for manufacturing pre-fabrics having cut loops through raising and shearing of one surface or both surfaces of said textile; anda fabric ...

Подробнее