11-11-1997 дата публикации
Номер:
KR0100129542B1
Автор:
Принадлежит:
Контакты:
Номер заявки: 00-88-101915817
Дата заявки: 30-11-1988

[1]

<style="magin-left:20px">[ Brief explanation of the drawings] specification number 1 or of the present invention number 1 embodiment cross-sectional drawing: an wobble plate type a valve plate of compressor. Number 2 or of the present invention number 2 embodiment cross-sectional drawing: an wobble plate type a valve plate of compressor. Description of the sign for major part * of the drawings 10: compressor 18 : conduit 19: cylinder block 20: cylindrical housing assembly 21: cylinder block 22: crankcase 23 : shear plate 24: rear end plate 25:26 off plate: drive shaft 27, 28: gasket 30 : bearing 40: cam rotor 50: swash plate 60: rocking plate 70: cylinder 181:184 is formed of a large diameter: 193 25c: bellows 200: valve plate assembly generally refrigerant compressor [detailed description of the invention] the present invention refers to, in particular automatic air conditioner system utilized in which variable capacity suitable easy to memo advertisement sheet for a wobble plate type compressor such as relates to swash plate type compressor. Automatic air conditioner system utilized in which variable capacity suitable a wobble plate type compressor with mechanism of entertainment factor, so as to (Robert) robot disclosed is call patent number 3,861,829 it became the empty woman United States. Said Official Gazette as described, a rocking compression ratio of compressor by altering the method thereof for insect catching plate having a tilt angle of the tilted surfaces can be control. Rocking plate contacted crank chamber suction tilt angle in response to a change in pressure difference maintains the pressure a suction constant by means of the heating is adjust so that the. Suction chamber crank contacted contacted crank chamber suction pressure differential valves controlling the communication are generated by-controlling unit controls a. Valve control mechanism, into a suction chamber to respond to the pressure of the. alter the crankcase pressure. In prior art, rocking method thereof for insect catching plate having inclination change occurs by the piston the crankcase pressure through a developing gap the coolant gas passing through the are obtained by. The slit a cast iron number lining type cylinder pad is aluminum alloy piston about the outer circumference of the cast iron piston number occurring through to mechi using ring.. However, cylinder constitution to reduce weight of compressor fire rock thulium aluminate is alloy. Blends of polyamide blockpolymers and of copolymers seamless resin between them block piston to a cylinder, and a piston ring to prevent the abrasion between a further about the outer circumference of piston 5 is disposed on the. However, due to expansion and said piston ring during use the, crankcase thereby sent to is significantly reducing the amount refrigerant compression. Therefore, rocking plate inclination suitable generation process is carried out to generate satisfactory changes crankcase pressure of. it is difficult that obtained. said shortcomings is dually function as a pipeline and a piston ring 2 and method using which of data are resolved a monomodal, one of is positioned on the upper portion of the piston piston ring, the other is disposed lower of the piston between a piston to a cylinder, and. direct contact. Furthermore, a railing to overcome the user's United States patent application number 068,580 1 July 1987 Cardless key structure a large number layer a plurality of axially (resin (cut-out) [...] poly with the piston ring is are disclosed. However, depth of the cutouts may axial of a piston ring due to expansion and of a piston ring is reduced gradually. In other words, its whole useful life of a compressor through the swing plate to the inclination angle of when changes satisfactorily and the unsaturated fatty acid generating crankcase pressure performed in such a manner that so on. federation pushing amount endosperm compressor within an patent number 4,428,718, i.e. compressor capacity to control the compressor crankcase pressure chamber controlling the communication responsive to both suction and discharge pressure is valve control mechanism is described. However, elements of the high machining and accurate assembly is is required. Even other, rotational speed of or a compressor 27 of the evaporator when determining changing the up-link part, an increased amount of discharge gas valve control of compressor action and response of external circuit including (lag) the video signal and the delay between the passageway of the valve control mechanism due to a fluid is supplied into the crankcase via the compressor efficiency is vertically is away also automatic milled rice recovery compressor. The above-mentioned, using fluid communication contacted crank chamber discharge structure of idle gear cover format is acceptable and inclined surface or swash plate during drive mechanism using even compressor other format can be used. E.g., within an patent number 4,664,604 [...] of United States constitution: rotating plate type compressor is described. Rocking plate in a lower portion of the inclined rotating plate is disposed at an angle with, gear, and then driving a piston. connect that driving source. However, rocking plate only swing motion however, rotating plate make in a sliding relationship. Therefore, herein, groups, or with an swash plate type compressor in rotating plate and a rocking terms meaning as including both plate, drive mechanism installed in the swash plate or sloped surface all type compressor using a markup page. Therefore, the present purpose of the invention to a housing of a suitable angle values detected by the sensors and humidity variable capacity swash plate type compressor is provided to. The present invention according to swash plate type compressor a cylinder block and cylinder block attached to a forward plate and rear end plate includes compressor with the housing. Crankcase shear plate and cylinder block are defined between the, . formed with the block for the cylinder plurality of cylinders. Larger than the outer diameter each piston 21 and 31 are nipped by is slidably. Drive mechanism larger than the outer diameter of the piston is reciprocated piston is connected to. In compressor housing drive mechanism being rotatably held in a drive shaft, a rotor is combined with pistons, piston rotational movement of rotor such a way that its position changes motion in a state that is wind turbine a connector for connecting an piston includes means for its. Is connected a control means axis face has a surface disposed at an angle with the cervical region of the spine includes plate. Tilt angle with crankcase pressure is controlled according to the change in compressor capacity change to. Rear end plate is comprises an ultra-chamber and, into a suction chamber. Number 1, into a suction chamber connects the drive shaft. Valve control mechanism to generate a change in pressure the crankcase and controls opening and closing of the passages in. Number 2 a formed with the block for cylinder chamber connecting to the drive shaft. Number 2 passage formed flow adjustment mechanism a refrigerant flows from crankcase chamber from the flow of gases to control. Flow adjustment mechanism with chamber to control detects over-currents flowing to crankcase in refrigerant gas for reduction of the pressure throttle means comprises an ultra-. Accompanying drawing in the following in connection with the present invention from the following description more completely each other and generally, according to the same number of advantages is it will be appreciated easily. , Groups, or with an wobble plate type compressor in the present invention 14a describes the terms, not limited this. The present invention refers to even compressor swash plate can be applied over a broad range. Embodiment one of the present invention: an wobble plate type refrigerant compressor was shown in also number 1. Compressor (10) the cylinder block (21), cylinder block (21) located at the ends of the shear plate (23), cylinder block (21) and shear plate (23) formed between the crankcase (22), and cylinder block (21) attached end of back-end plate (24) having a cylindrical housing assembly (20) consists of to. Shear plate (23) the plurality of bolts (101) by cylinder block (21), is fixed to the end of the.. Rear end plate (24) the plurality of bolts (102) the cylinder makes use of an block (21) the opposite end of the fitting protrusion 46 is fixed. Off plate (25) at the rear end plate (24) and the cylinder block (21) is arranged between. Opening (231) the disposed within an opening in a bearing (30) by the drive shaft (26) for supporting a the liquid reaction mixture is sheared plate (23) is formed on center of. Drive shaft (26) of the inboard end portions comprises a cylinder block (21) is provided with a centrical bore of (210) in a bearing arrangement on the in (31) is supported rotatably on. Bore (210) the cylinder block (21) of the spring (right direction at number 1) which extending towards the end face, valve control mechanism described below in addition (19) for receiving a. Cam rotor (40) has each other, of a fin member (261) by the drive shaft (26) fixed thereto rotated together. Thrust needle bearing (32) shear plate (23) inside face cam rotor (40) between axial end surfaces adjacent to is arranged. Cam rotor (40) the extending therefrom fin member (42) with arm (41) comprises an ultra-. Swash plate (50) a cam rotor (40) is positioned in close proximity to, drive shaft (26) is such that an opening is formed through (53) has a. Swash plate (50) the slot (52) with arm (51) comprises an ultra-. Cam rotor (40) are obliquely plate (50) a hinged to form a slot (52) that is inserted in a body fin member (42) is connected to. Said fin member (42) has a drive shaft (26) relation to the direction length of swash plate (50) crack resistant to adjust the angular position of (52) is slidably in. Rocking plate (60) a bearing (61 and 62) by swash plate (50) is provided rotatably on. Fork a film (63) is fin member (64) agitated by a plate (60) of external circumferential is attached to one end and forward plate (23) and the cylinder block (21) disposed between the rail with the (65) is slideably located on. Fork a film (63) has a rocking plate (60) inhibit rotation of. Rocking plate (60) a cam rotor (40) such that when the body is rotated said sliding rail (65) along the. may be oscillated in. Cylinder block (21) the piston (71) in which they reciprocate a, plurality of located about the periphery of cylinder chamber (70) comprises an ultra-. Each piston (71) the corresponding connecting rod (72) agitated by a plate (60) is connected to. Produced by blends of polyamide blockpolymers and of copolymers 1 pair of seamless piston ring (73) the piston (71) about the outer circumference of 5 is disposed on the. Piston (71) and aluminum alloy cylinder block ((21) due to friction between these Image forming apparatus in which wear of and, piston (71) to a cylinder, and a device (70) between inside surface of the inhibit any direct contact. Rear end plate (24) the placed on an annular inlet chamber (241) chamber a and centering function (251) comprises an ultra-. Off plate (25) comprises a cylinder block (21) and the rear end plate (24) is located between, and with the inhalation chamber (241) and each cylinder (70) for a plurality of valve type suction (242) has a. Furthermore, off plate (25) the chamber (251) and each cylinder (70) connecting an outlet (252) has a. Suction (242) and an outlet (252) [...] patent number 4,011,029 United States of the call (Shimizu) as described is my storehouse is a suitable reed valve (reed valve). , Into a suction chamber (241) an external cooling circuit (not shown) an inlet is connected during defrosting of evaporator (241a) has a. Chamber (251) the cooling circuit (not shown) condenser connected to an outlet portion (251a) is provided. Gasket (27 and 28) each cylinder block (21) and a valve plate (25) outer surface of rear end plate (24) is arranged between. Gasket (27 and 28) comprises a cylinder block (21), off plate (25) and a trailing plate (24) of the sealing surfaces. A cylinder passage number 1 crank chamber, into a suction chamber between in fire rock is formed. Is a valve chamber passage number 1 (192) form a cup-shaped casing member (191) for comprising a valve adjustment mechanism (19) with of wet liquid to flow down. O-ring (19a) the casing member (191) and a cylinder block (21) for sealing the surface of the bore (210) inner and outer side faces of the casing member (191) is disposed between the outer surface of. Plurality of holes (19b) the cup-shaped casing member (191) of closed end (in the Figure number 1, left) is formed on crankcase pressure bearing (31) and the cylinder block (21) above the air gap between the (31a) through the valve chamber (192) into a to be applied. Hole (194a) the central which is formed on the won template (194) the cup-shaped casing member (191) open end of the fitting protrusion 46 is fixed. Bellows (193) the valve chamber has a smaller thickness (192) which is disposed in the crankcase pressure. that has been stretched in longitudinal in response. Space bellows (193) deflectors (number 1 at left direction) end casing member (191) ., is fixed to the end closed. Valve member (193a) a hole (194a) to selectively control opening and closing of bellows (193) of the spring (number 1 at right direction) attached end. Valve chamber (192) and, into a suction chamber (241) holes (194a), bore (210) of bore (211), cylinder block (21) to conduits (195) and valve plate assembly (200) formed from thin sheet metal (196) are connected by. Valve plate assembly (200) the valve plate (25) and gasket (27 and 28) consists of in. Valve retainer (retainer) (15) the bolt (151) applied to a valve plate assembly (200) is immobilized on the surface of a rear end of. Cylinder block (21) from the front end of valve retainer (15) longitudinally until facet rear end of the passageway in the holes (18) of the discharge chamber (251) with the crank chamber (22) a cylinder connection to [...] formed is passage number 2. Passage (18) of the discharge chamber (251) from crankcase (22) up to. controlling the flow of a gas refrigerant. Passage (18) which is of bigger diameter has a (181) the therein filter screen (181) with of wet liquid to flow down. Capillary tube (183) of the discharge chamber (251) from crankcase (22) passing therethrough to a refrigerant pressure of the gases for performing security on throttle for drop by pushing a button to decide the, passage (18) in fixed and filter screen (182) and is coupled to. Compressor (10) is operated while drive shaft (26) electromagnetic clutch (300) vehicles through a (not shown) is rotated by endotracheal. Cam rotor (40) has the swash plate (50) to rotate a drive shaft (26) is rotated by. Swash plate (50) rotation of agitated by a plate (60) for oscillating the is provided to a. Rocking plate (60) swing motion of each cylinder (70) in a piston (71) to reciprocation of a. Piston (71) by they reciprocate, inlet (241a) through, into a suction chamber (241) suction inlet, a second inlet, and the refrigerant gases (242) through the cylinder (70) is directed into, . pressed the and continuous. The coolant gas a cylinder (70) from outlet (252) through the chamber (251) may be released to, then continue to outlet portion (251a) is discharge into the cooling circuit through the. Chamber (251) a portion of the refrigerant gas discharge in capillary tube (183) at reduced pressures by pipe (18) the crankcase via the (22) which is flowed into a.. Valve control mechanism (19) has crankcase (22) reduced discharge pressure and react accordingly constitution: an. Crankcase (22) exhaust gas pressure beyond a predetermined value upon the reduction of the, bellows (193) by the contraction of the perforations (194a) is is opened. Hole (194a) the opening of crankcase (22) and, into a suction chamber (241). communication with between. As a result, swash plate (50) tilt angle to maximize amount of displacement of the compressor is maximum. However crankcase (22) exhaust gas pressure when little suffer from reduced from that of predetermined value, hole (194a) the durability and operating efficiency through protecting the (193) attached to valve member (193a) is closed by. Is the crankcase (22) and, into a suction chamber (241) to sealed communication between a. As a result, swash plate (50) tilt angle passage (18) for the crankcase via the (22) to right to reduced exhaust gas variation of pressure is controlled by compressor capacity change to. Number 2 on the first aluminum layer to the number 1 also the mark in code as shown in the to come thereby, the cold air flows of the present invention number 2 embodiment. In in the embodiment is, passage (18) small (184) has crankcase (22), in a discharge station admitted to to reduce pressure on refrigerant gas for performing security on the throttle to. Refrigerant passage (18) through the chamber (251) from crankcase (22) when flows into the, generating reduction (pressure sensitive) the capillary tube (183) or 25c (184) is determined by and to the length inner diameter of. Therefore, , a pressure reducing amount required preferably predominantly, by a selection of these dimension can be that the. Crankcase from chamber to control the flow of refrigerant gas to a cylinder block crankcase with the mounting passage controlling the pressure in an oblique angle adjusting deed revealed him to be burned again simple can be viewed. Even other operation of compressor the balloon is effective through life SPAN, from expanding piston ring such as when looking at a mirror without problem. The present invention refers to a preferred embodiment described specifically relation to aspect. However, these embodiment only relate not limited to, excitation does exemplary. Defined by patent the following is claimed as one skilled in the art of the present invention in the range of other modified, body frame is inserted that can be obtained may understand that the is.



[2]

[Purpose] suitable with values detected by the sensors and humidity provided variable capacity swash plate type compressor.. compressor (10) the cylinder block (19) attached to a forward plate (23) and the rear end plate (24) comprises an ultra-. Crankcase (22) shear plate and cylinder block are defined between the, plurality of cylinders (70). formed with the block for the cylinder. Piston (70) each larger than the outer diameter is slidably drive mechanism is held (26, 40, 50, 60, 72) the cylinder in the piston is reciprocated piston is connected to. In compressor housing drive mechanism being rotatably held in a drive shaft (26) together with a corotating rotor is connected to (40) such a way that its position changes motion piston rotational movement of wind turbine in a state that is means for connecting a piston (50, 60, 72) includes. Connection means a drive shaft and to obliquely to the plate (50) includes pressure crankcase tilt angle is controlled according to the change in compressor capacity change to. Rear end plate is, into a suction chamber (241) and chamber (251) number 1 is provided with the drive shaft, into a suction chamber connects the. Valve control mechanism to generate a change in pressure the crankcase and controls opening and closing of passages in the cylinder number 2 a formed with the block for connecting the first chamber the drive shaft passage number 2 formed flow adjustment mechanism flows from crankcase chamber from flow to control a planetary. Flow adjustment mechanism detects over-currents flowing to crankcase chamber in planetary [...] of the pressure reduction (183,184) comprises an ultra-.



(A) cylinder block (21) and said cylinder block (21) installed wall of the cylinder is reduced (70) comprised of compressor housing (20) and, (b) said cylinder block (21) preclude a are placed in said cylinder block (21) in crankcase (22) for sealing the shear plate (23) and, (c) each said cylinder (70) slidable within the floating materials could not be washed away one or more piston ring (73) for a piston equipped (71) and, (d) said cylinder (70) in said piston (71) to reciprocate to move said piston (71) is connected to said compressor housing (20) being rotatably held in in a drive shaft (26) and, said drive shaft (26) can rotate together is connected to a rotor (40) and a, and said rotor (40) the rotary motions of said piston (71) converts at least reciprocating motion of said rotor (40) for said piston (71) is driven connecting the first chamber to the second said drive shaft (26) inclined at an angle with relation to the swash plate surface and disposed (50) with connection means (50, 60 and 72) with said crankcase (22) according to that a change of pressure in the swash plate (50) and the inclination angle of controlled to vary the compressor capacity in a drive mechanism (26, 40, 50, 60 and 72) and a, (e) said shear plate (23) pressed against the resist to imprint the cylinder block (21) is disposed, into a suction chamber (241) and chamber (251) is formed includes a trailing plate (24) and, (f) said crankcase (22) and said, into a suction chamber (241) transfer paths or the first (31a, 210, 19b, 192,194a, 211,195,196) and a, and (g) said crankcase (22) to cause a that a change of pressure in the passage and controls opening and closing of the (193,193a) and that includes an input and in swash plate type compressor, said piston ring (73) of the chemical reaction of and correction for reducing since any leakage of gas is is comprised of means, said correction means said chamber (251) from said crankcase (22) to control the flow of refrigerant gas to said cylinder block (21) formed in flow regulation water even in the means, said flow said chamber (251) and said crankcase (22) the continuous products between provides communication of the coolant gas, said flow control means for controlling said inclination angle [...]angle of inclination[...] said crank (22) gives rise to pressure of said chamber (251) from said crankcase (22) flowing from the refrigerant gas to refrigerant gas to reduce pressure on throttle for throttle means (183,184) further emitting surface from which, said chamber said throttle means (251) regardless of the size of the pressure said crankcase (22) continuous discharge pressure present in the gas flowing to medium exchanges body which is characterized by compressor.

According to Claim 1, capillary tube therein said flow control means (183) is arranged a conduit (18) characterized by being constituted compressor.

According to Claim 2, said conduit (18) a refrigerant gas flowing through the filtration means for filtering further emitting surface from which, said netting said conduit (18) which are arranged in filter screen (182) is formed in a compressor characterized by a.

According to Claim 1, 25c said flow control means (184) is formed of a large diameter and a (181) consisting of conduit (18) characterized by being constituted compressor.

According to Claim 4, said conduit (18) a refrigerant gas flowing through the filtration means for filtering further emitting surface from which, said netting said conduit (18) small (184) which are arranged in filter screen (182) is formed in a compressor characterized by a.