ULTRAVIOLET BLOCKING FUNCTIONAL COMPLEXED POWDER DUALLY COATED WITH ULTRAVIOLET INORGANIC BLOCKING AGENT AND ULTRAVIOLET ORGANIC ABSORBENT OMC ON INORGANIC POWDER, AND ULTRAVIOLET BLOCKING COSMETIC COMPOSITION USING SAME
The present invention refers to an inorganic powder is at least one organic absorbing ultraviolet number BMDBM number OMC or double-coated inorganic ultraviolet blocking ultraviolet functional composite powder and ultraviolet relates to a cosmetic composition for coating an inorganic UV blocking number provided recovers inorganic powder coating to liposomes followed by at least one organic absorbing ultraviolet coating 2 then a difference number 1 difference inclusion by coating the skin irritation without involving 3 difference loaded on the V-UV blocking functional composite powder and a sunscreen cosmetic composition using the same are disclosed. The eye by making it visible light (400 - 760 nm), wavelength of 760 nm or more infrared, ultraviolet and X-a ray having a wavelength of 400 nm hereinafter, such as γ-a ray wavelength formed on a divided into the UVC (200 - 280 nm), UVB (280 - 320 nm), UVA (320 - 400 nm) are partitioned into a substrate. UVC is skin cancer DNA bonding to the ozone layer and penetration length becomes shorter wavelength but weak force absorbing elements and in stratospheric (Yasuo, I. , The mechanism of oryzanol activity and consideration to applicating efficency in cosmetic, J. Fragrance 45:92 - 97, 1980) UVB pierces the nucleic acid, the synthesis of skin erythema CLK3 billion number Image less such as proteins. The UVA UVB is compared to the amount of light energy reaches 100 times or indicator to 1/1000 not outside of UVB wavelength where the skin pigmentation and aging of the same is provided to known (Sydney, H. D. , Contact sensitization and photocontact sensitization of sunscreen ingagents. Physician's Guide to Sunscreens, 95 - 122, 1981). Recent ultraviolet protection is not reaching the ozone layer thin as indicator for skin care consumer interest is enhanced ultraviolet index etc. and in addition increases. The ultraviolet protection of the skin containing the hand cut off ultraviolet sunscreen number can be obtained from the market scale growth of 5% of which functional cosmetic popular showing the annual wetness etc. (2013 years cosmetic industry analysis report, Korean health industry). UV blocking functional cosmetics used for ultraviolet absorbing sunscreen number heat, wave, fluorescent, energy like the skin external application number radical at least one organic absorbing ultraviolet light UV inorganic blocking number 61. ultraviolet scatter. At least one organic absorbing ultraviolet or ultraviolet B ultraviolet A number is applicable for ability to absorb respectively but yet validated material processed carbostyril derivatives for skin, live probiotic bacteria may cause motor are disclosed. In addition number is compared to at least one organic absorbing number applicable by irradiating ultraviolet blocking inorganic ultraviolet wide ultraviolet blocking function to be little part. Such ultraviolet inorganic blocking number number is at least one organic absorbing ultraviolet before both the two UV blocking number thus each horizontal grill that is superior in the case of sun cream such as cream number type functional UV blocking said current SPF50 hereinafter for the addition composite two UV blocking number, etc. sold top PA + + + sun cream number article. In the case of a cosmetic powder but usually the starting material or woven inorganic powder such as talc (Talc) number to said at least one organic absorbing number on site (Sericite) inorganic ultraviolet blocking coating therefore not easy for binding together of the doors to intercept point number number number but inorganic powder-pin is. The number upon addition of 25% or more between the actual condition uniting two UV blocking door number as well exhausting the cosmetic powder generated by ultraviolet sun cream SPF 50 unlike excellent functionality, PA + + + powder cosmetic for developing and outputs data in a database are disclosed. The ultraviolet blocking function is performed skin a cosmetic powder can be used time and desired in which the composite powder cosmetic composition etc.. The present invention in conjunction with doped titanium dioxide, of manufacturing method, including same photocatalyst and ultraviolet absorption number, and using the same purification method call comprising titanium dioxide corrosion but is primarily a compensation is registered patent number 10 - 0445543 disclosure of doping inorganic UV blocking number are disclosed. The multilayer particles are encapsulated with a titanium dioxide and novel effective ingredient is a sunscreen number composition and manufacturing method patent number 10 - 0744945 disclosure but a compensation registration call-scale titanium dioxide, zinc oxide or cerium oxide coated with silicone oil are disclosed. Cosmetic composition containing titanium dioxide while oil dispersions obtained by the call for blocking ultraviolet rays but oil patent number 10 - 1006343 disclosure a compensation registration like titanium dioxide/aluminum oxide and zirconium beads (Bead) by adding titanium dioxide to a method a number bath oil dispersions are disclosed. However, said patent document number inorganic powder such as talc site or place woven inorganic UV blocking coating in titanium dioxide or zinc oxide 1 difference number seven (OMC) or butyl methoxy cyclohexyl screening organic ultraviolet absorber in a coating 3 then 2 difference (BMDBM) loaded on the V-cut off ultraviolet UV blocking functional composite powder and coating difference of cosmetic composition capacitor disclosure or implicit or taught bar free. Thus, the purpose of the invention is woven inorganic powder such as talc site or an inorganic UV blocking number in titanium dioxide or zinc oxide coating 1 difference, followed by at least one organic absorbing number seven (OMC) or butyl methoxy cyclohexyl inclusion to liposomes herein in a ultraviolet (BMDBM) 2 difference number absorbed into the at least one organic absorbing ultraviolet said heated there to a tree from a group silicon oil without skin irritation 3 difference -coated organic - inorganic composite powder a UV blocking functional manufacturing method number 30 to 60 seconds. It is another object of the present invention said method number prepared by the organic - inorganic composite powder as an active ingredient by a sunscreen cosmetic composition number 30 to 60 seconds. It is an object of the present invention said talc or woven site titanium dioxide or zinc oxide 1 - inorganic coating powder inorganic coating bath and a second difference number; the number seven sol to the maul [thok hour d it cuts the methane which it will tighten or butyl hexyl separated from each other by at least one organic absorbing ultraviolet number bath and a second lecithin inclusion; said steps number number 2 - inorganic coating powder coating inorganic high pressure liquid coolant at least one organic absorbing ultraviolet sol coating a tree 3 difference then silicon oil and a fatigue resistance by coating the organic - inorganic composite powder bath and a second difference [thok hour car [phu reel reel room column number; organic - inorganic composite powder coating whether obtained in said step, coating powder content, UV blocking functionality and skin stimulation via a measuring chlorination. The present invention organic - inorganic composite powder inorganic barrier by coating the UV blocking ultraviolet inorganic powder and at least one organic absorbing number simultaneously maximize the ability of participant when the carbostyril derivatives for skin support which can cause skin irritation by coating the inclusion to hydrogen and at least one organic absorbing number lecithin does not effects cut off ultraviolet ray blocking function and quality when using same cosmetic composition in one aspect window up significantly increase flow tides endochitinase number branch. Figure 1 the present invention according to inorganic - inorganic coating powder number provides a diagram indicating pore are disclosed. Figure 2 the present invention according to dye for titanium dioxide coating powder for phase separation photo are disclosed. Figure 3 the present invention according to phase separation photo for powder coating nanoscale titanium dioxide are disclosed. Figure 4 the present invention according to a zinc oxide coating pigment for phase separation photo for powder are disclosed. Figure 5 the present invention according to the nano-size zinc coating powder for phase separation photo are disclosed. Figure 6 shows a titanium dioxide coating powder of the present invention according to dye for transparent photo filtrate also are disclosed. Also the present invention according to Figure 7 shows a titanium dioxide coating of powder of filtrate transparent photo are disclosed. Figure 8 shows a pigment for the present invention according to a zinc oxide coating of powder of filtrate transparent photo also are disclosed. Figure 9 shows a the present invention according to the nano-size zinc coating of powder of filtrate transparent photo also are disclosed. Figure 10 the present invention according to dye for titanium dioxide coating powder FE-a SEM photograph are disclosed. Figure 11 the present invention according to nanoscale titanium dioxide coating powder FE-a SEM photograph are disclosed. Figure 12 the present invention according to a zinc oxide coating powder FE-a SEM photograph for dye are disclosed. Figure 13 the present invention according to the nano-size zinc coating powder FE-a SEM photograph are disclosed. Figure 14 the present invention according to OMC Sol number provides a diagram indicating pore are disclosed. Figure 15 the present invention according to BMDBM Sol number provides a diagram indicating pore are disclosed. Organic - inorganic coating powder number indicating diagram Figure 16 the present invention according to pore-forming fluorescent material are disclosed. Figure 17 shows a number Sol this hydrogenation lecithin also the present invention according to at least one organic absorbing ultraviolet indicating inclusion of the washing a mimetic are disclosed. Figure 18 the present invention according to table representing a criterion clinical anobject stimulating skin irritation are disclosed. Organic - inorganic coating powder containing powder SPF index number indicating table Figure 19 the present invention according to article are disclosed. Figure 20 the present invention according to organic - inorganic coating powder containing powder UVA PF index indicating the table number of the product are disclosed. The present invention UV blocking functional composite powder comprises a number such as pore-forming into the wet coating to the washing tank characterized by number. 1 - Step number bath (1 difference coating) inorganic powder inorganic (A) positive number 500 - 800 parts by weight of an inorganic powder and a fatigue resistance coating 75 provided 80 °C in 70 - 90% by weight added to be a predetermined positive number number, dispersing coating base material dispersion bath agitating step number 25 - 30 minutes; (B) be separated from each other by a predetermined positive number is 10 - 30 parts by weight of a dispersion of inorganic ultraviolet blocking positive number number number number number step sol (Sol) inorganic blocking bead crushing with a bath; (C) said step (a) step (b) inorganic barrier coating base material dispersion sol followed by addition of 25 - 30 minutes agitating primary wet 1 described; (D) reaction for reducing the coating liquid coated powder to separate the positive and political and cooling at ambient temperature on verifying the number number transparency; (E) coating liquid remaining after the powder coating industry positive number number number 15 hours after the dewatering and drying 2 weight % hereinafter to dry the moisture content 105 provided °C 110 in step; (F) during a transfer coating powder manufactured inorganic - the present invention an inorganic powder number for blocking ultraviolet rays e writing processes (Atomizer) high pressure liquid coolant therein. 2 - Step number inorganic composite powder oil bath (2 difference, 3 difference coating) (A-a 1) positive number 500 - 900 parts by weight of a predetermined positive number be warmed to 70 provided 80 °C number 1 - 5 parts by weight of butylene glycol, 0. 1 - 1. 0 Parts by weight of a tocopheryl acetate, adding 1 - 10 parts by weight of hydrogenated lecithin (Hydrogenated Lecithin), then seven hexyl dispersing added, and is 2 times at room temperature by a change in the processing for preparing an ultra-high pressure mercury emulsion into a number seven sol (Sol) the steps of providing a bath and cooled to 40 °C hereinafter cyclohexyl; (A-a 2) is separated from each other, positive number 500 - 900 parts by weight of a predetermined number be warmed to 70 provided 80 °C positive number 1 - 5 parts by weight of butylene glycol, 0. 1 - 1. 0 Parts by weight of a tocopheryl acetate, adding 1 - 10 parts by weight of hydrogenated lecithin (Hydrogenated Lecithin), then dispersing C12 provided 15 alkyl benzoate, the mixed solution obtained by dissolving the maul [thok hour d it cuts the methane which it will tighten the writing this call d it cuts trillion a [thu dipropylene -15 and anti-butyl added, at room temperature is cooled to 40 °C hereinafter by a change in the liposomes in which the butyl methoxy sol (Sol) the steps of providing a reservoir and number (B) moreover, the separated from each other by said 1 - positive number number number coating components with a high pressure liquid coolant 75 provided 80 °C in 20 - 30 minutes stirring 70 - 95 parts by weight of an inorganic powder be adding a predetermined positive number inorganic organic material a predetermined positive number then be 0. 1 - 5. 0 Parts by weight to 10 - 20 minutes stirring adding magnesium metal inorganic - inorganic powder dispersion step number bath; (C) obtained in step (a) said 2 - seven steps (b) to said 2 - hexyl sol (Sol) or butyl (Sol) followed by addition of 25 - 30 minutes agitating primary inorganic - inorganic powder dispersion described wet 2; (D) reaction for reducing the coating liquid coated powder to separate the positive and political and cooling at ambient temperature on verifying the number number transparency; (E) coating liquid remaining after the positive number number number 15 hours in a stand-alone coating powder after the dewatering and 70 provided 80 °C, has a moisture content of 2 weight % hereinafter to 1 difference e writing processes (Atomizer) drying and milling; (F) 1 - 5 parts by weight of a silicone oil described primary coating powder to ground surface 3; (G) prepared by the present invention a coating powder drying processes 3 difference e with me - 2 difference number number jaws inorganic composite powder for blocking ultraviolet rays oil high pressure liquid coolant therein. (A) inorganic powder is talc (talc) according to the present invention said 1 - step, woven site (sericite), mica (Mica), silica (Silica), production of (Illite), kaolin (Kaolin), barium sulfate (Barium Sulfate) talc (talc) which preferably can be used during which one (sericite) on woven site using substrate. Said woven talc and mica (Mica) used as extender pigment with cosmetic powder site are disclosed inorganic powder. Talc is smooth spreadability and excellent properties relative to the skin, are less well when applied to other static pressure force required Two Way Cake Powder Pact microgranule tablet and receives the pin is selected from the property. While the clay mineral to Sericite, compared spreadability and Talc is to soft properties but, to be applied to the skin and scrapes the lubricant homogeneously puff (make up cotton) number article to rub off to a chemical microreactor puff is processed in the other. (B) inorganic ultraviolet blocking said 1 - step number is titanium dioxide (TiO2 ) And zinc oxide (ZnO) or the like a predetermined positive number 10 - 30 parts by weight of the characterized. In addition said number may apply to impart cosmetic powder of titanium dioxide and zinc oxide in white particle size 0. 25 - 0. 30 Um either sun cream or the like number of Pigment employed primarily inorganic nano particle size of inorganic barrier blocking number 30 - 50 nm are disclosed. In addition said 1 - 2 - (e) and (d) in coating liquid phase separation verification step includes coating glass is inorganic ultraviolet blocking number identifying a normal crucial steps progression between coating phase separation will not occur or will not coated well comparatively high concentration present in the upper coating. (A) according to the present invention said 2 - hexyl or butyl methoxy cyclohexyl step seven instead of seven, the maul [thok hour d it cuts the methane which it will tighten butyl, ethylhexyl salicylate, analog , benzophenone -3 (oxy ), benzophenone -4 (deoxy ), ethyl [heyk thread tree oh zone, ethylhexyl salicylate, amyl isocyanate - - screening, is between - screening, it carries on shoulder and [thil does not sprout neel [ley the [thu, 4 - methyl-it cuts qualitative the cam which is burnt to ladle,, during which one to maul [thok hour phenyl tree oh position number can be used to at least one organic absorbing ultraviolet bis to liposomes inclusion. (B) magnesium salts in addition said 2 - step number in said 1 - (a) at least one organic absorbing ultraviolet number in said 2 - inorganic powder and inorganic high pressure liquid coolant high pressure liquid coolant to the Lotus number crosslinked crosslinked sol number magnesium sulfate (MgSO4 ) Or anhydrous (XH2 0) Etc.. (F) said 2 - step silicon oil is (methicone) or tree (triethoxycaprylylsilane, OTS) is provided to be used when the present invention refers to hydrogen is 1 - 5 parts by weight of emulsion number OTS doing so when applied type instead of using his most preferred. In addition generally dry method for imparting water silicon oil is coated but, in the present invention wet coating on the substrate loaded on the V-opening portion of a vehicle. According to the present invention example 1 to example 5 of the present invention through experiments testing different types and concentration of inorganic - inorganic coating powder inorganic powder coating (TiO2, ZnO) inorganic ultraviolet blocking number after phase separation whether X-coating result powder and coating separation normally backplane. Character recognition for the FE-a SEM analysis result, coating is coated on the substrate applied number inorganic ultraviolet blocking number formate, EDS analysis result, glass is used as an inorganic powder coating an inorganic component number identified all the inorganic ultraviolet blocking number were coated with a well know that the fatigue resistance. In addition experiment example 6 coated with an inorganic coating powder through a size and concentration of different inorganic - method of UV blocking index beam measured by the result, Nano TiO2 A 30% concentration of ZnO coated composite powder and an ultraviolet protection factor as the highest measured fatigue resistance of coating and at least one organic absorbing ultraviolet (OMC and BMDBM) number was selected. According to the present invention in direct contact with the skin in order to protect the shortcomings of harmful ultraviolet fluorescent material for at least one organic absorbing number same number of abortion in liposome inclusion a pore. To liposomes entrapped inorganic sol - inorganic coating powder to at least one organic absorbing number then the present invention organic - inorganic composite powder is coated with a high pressure liquid coolant same experiment example 8 when the number (OMC and BMDBM coating powder) total organic quantifying the results, in the case of coated composite powder coating applied to 5 - 15% OMC concentration 90% or more based on the total organic materials has been identified, BMDBM 2 - 10% to 90% in the case of coated composite powder coating applied overall organic powder coating applied to the method of the OMC and BMDBM is identified by most coated has been confirmed. In addition experiment example 9 measured average particle size of the present invention through organic - inorganic composite powder, number average particle size of at least one organic absorbing ultraviolet coating concentration range regardless of show, they all are of sufficient magnitude to be applied to a cosmetic by appropriate has been confirmed. In addition experiment example 10 of the present invention through an ultraviolet protection factor as organic - inorganic composite powder for analyzing result, they coating applied to at least one organic absorbing ultraviolet UVA PF SPF number and also proportional to the concentration of the higher showed. When the same kind of at least one organic absorbing number TiO2 It will be a base metal on the substrate characterized in that it has high UV blocking ability when compared ZnO cells exhibit, at least one organic absorbing number higher than when the same concentration when the OMC BMDBM showed when UV blocking ability. In addition organic - inorganic composite powder of the present invention through experiment example 11 functional analysis result, in the case of 5 - 15% concentration to the OMC OMC coating powder and proportional to the coating concentration induced by too soon and, in the case of 2 - 10% and proportional to the sample reservoir to the coating powder coating concentration BMDBM been. This the threshold concentration is present on the substrate coated OMC and BMDBM has been confirmed. In the embodiment 3 with the result of the aforementioned experiment to experiment example 10 example 11 5 - 15% by weight when the at least one organic absorbing ultraviolet coating concentration optimum number seven hexyl , butyl 2 - 10% by weight most preferably when the maul [thok hour d it cuts the methane which it will tighten up. The present invention is organic - inorganic composite powder through said experiment enhanced powder cosmetic composition characterized in that it has the functionality UV blocking ERK available inorganic composite powder containing a cosmetic active ingredient on said present invention organic - Multicut Loose Powder Multicut Two Way Cake powder (in the embodiment 4) number was high pressure liquid coolant. In a cosmetic of UV blocking functionality for determining similarity example 13 and have performed the present invention OMC-skin harmful result of applying powder coating on an ultraviolet protection factor (SPF, UVA PF) Multicut Two Way Cake Multicut Loose Powder BMDBM in clinical and beam method end of the SPF 50 number result both article 2 species, it has been determined that UVA PF 8 or more was, clinical data by both skin irritation test is performed without any skin irritation has been confirmed that the negative result number article 2 species. In the embodiment 1. The present invention UV blocking functional inorganic - inorganic coating powder number bath The present invention also seed number of powder of an inorganic coating such as UV blocking functional inorganic - pore 1 2000. Particularly 75 provided 80 °C be positive number up to a temperature of 70 - 90 parts by weight of a fatigue resistance woven site number number after processing coating deformation, when agitating mixing and dispersing chains. In titanium dioxide or zinc oxide is separated from each other by number 10 - 30 parts by weight of inorganic ultraviolet blocking number positive number and dispersing titanium dioxide sol (sol) or zinc oxide sol (sol) dispersing a bead with wheat number was a high pressure liquid coolant. Then said 10 - 30 parts by weight of titanium dioxide sol (sol) or zinc oxide sol (sol) 25 - 30 minutes mixing and agitating said parent number adding a coating dispersion such as returning water coating. Coating the coating liquid coated powder 12 hours then whether political and cold-cools between phase separation and confirmed to be positive number and transparency of supernatant (also 2 to 5 also). The coating liquid phase separated from the coating powder 2 weight % hereinafter coating powder to bring the moisture content by recovering only in 15 hours drying with respect to the 105 provided 110 °C. Uniform grain discharge process then e writing processes using the present invention UV blocking coating powder grinding said dried (Atomizer) to inorganic coating powder was number functional inorganic - high pressure liquid coolant. The mixing ratio of said inorganic - inorganic coating powder inorganic powder and inorganic blocking number, depending on the size and type of number 1 to number bath such as inorganic blocking table take place. The present invention the size of the particle size to the employed inorganic blocking number 0. 25 - 0. 30 Um on particle size of 30 - 50 nm of Pigment nano unit are disclosed. Table 1 (P)- in the case of inorganic - indication of the inorganic coating is an inorganic coating powder Fit ST 10 Fit inorganic powder, an inorganic powder is a kind of soft-Sericite S, T is the number of types of TiO2 soft inorganic ultraviolet blocking, exhibit a number (P) of inorganic ultraviolet blocking number is hereinafter - Pigment-type display method was based on the inorganic substrate such inorganic coating powder field is recorded. Experiment example 1. Inorganic - inorganic coating powder observed phase separation Table prepared by the number 1 - number of inorganic coating powder coating along said in the embodiment 1 further pore-inorganic coating liquid for logining in whether the observed phase separation. Also such as 2 to 5 also, coating liquid phase separation is 1 - 12 all coated with powder and inorganic species of said said table inorganic coating powder injection have been in progress in the embodiment number provides a positive number clean phase separation by ultraviolet light through the inorganic powder normally coated inorganic blocking number manufactured by pore-that has been confirmed. Experiment example 2. Inorganic - inorganic coating powder number bath transparency of filtrate after irradiation In the embodiment 1 number always in high pressure liquid coolant has been confirmed that the transparency of the coating liquid filtrate after filtering. If the transparency of coating solution coated powder is the case which will be positive number not the experiments compared the number by applying coating can be confirming whether an effect. Such as also to also 6, table 1 - 12 of said inorganic species of filtrate transparency compared with a big difference appears both inorganic coating powder filtrate in the embodiment number provides a positive number be manufactured by we shall be normally coated inorganic powder that inorganic blocking number by ultraviolet light through the pore has been confirmed. Experiment example 3. Inorganic - inorganic coating powder FE-a SEM The meaning that the field emission-type electron microscope (Field Emmision Scanning Electron Microscope)* FE-a SEM is using maximum resolution is only times Field Emission electron gun 100, 0. 5 - 2. 0 Nm material can be accomplished to identify the images, high resolution Image of higher quality number substrate. 15 Kv inorganic coating powder of the present invention maximum at 10,000 times magnification Image view coated inorganic - surface of when the equipment was analyzed through a Korean analysis can identify ceramic powder. Also such as 11 to 13 also, said table 1 - 12 as signal based on inorganic species of inorganic coating powder on the surface of zinc oxide or titanium dioxide white FE-a SEM is coated at a site of woven gray when engine has been confirmed. Experiment example 4. EDS inorganic - inorganic coating powder Example FE-a SEM based on the result of said experiment 3, the surface of the powder coated titanium dioxide or zinc oxide used as analyzing each element number using EDS present powder coating normally has been confirmed. EDS (Energy Dispersive X a-ray Spectroscopy) present in the same is a specific substance in a metal salt component is present at analyzer unit content ratio in the case that element by the catalytic decomposition of quantifying equipment are disclosed. Such as said table 1, woven site compositions include general SiO2 (70. 12%), Al2 O3 (17. 97%), Fe2 O3 (0. 71%), CaO (0. 27%), MgO (1. 36%), K2 O (6. 07%), Na2 O (0. 14%) Metal salt of inorganic species 12 - 1 when said table and in view of the present form of the woven inorganic coating powder used as an atom sites (TiO2) or zinc oxide (ZnO) titanium dioxide into the coating number has been identified elements of both. Number average composition of from about 10 - 30% titanium dioxide coating is used as a Ti - 1. 69 - 6. 48%, Average composition from about 10 - 30% Zn - 2. 97 - 20. 97% Have been identified. In addition Mg -, Fe -, Na site such as metals are woven in a trace amount in a highly pure the result can be detected when the whether into each constant. In the embodiment 1 of the present invention prepared by the number into the pore number as a result of the or more inorganic - number in titanium dioxide or zinc oxide coating is an inorganic coating powder coated with the coating element basis in the presence of normally recovers a woven site has been confirmed quantitatively. Experimental example 5. Inorganic - inorganic coating powder purity analysis The experiment in different temporal analysis size and concentration in titanium dioxide and zinc oxide content of the zinc oxide coating and coated titanium dioxide powder was. This coating on the substrate surface has been treated inorganic materials by whether coated by desired concentration normally are disclosed. The experiments food safety destination specified in Bluetooth or the analysis engine operate in pharmaceuticals Korean Institute test conducting construction. Said table such as 3, inorganic powder coating concentration 10 - 30% titanium dioxide coated inorganic ultraviolet blocking number about 8. 19 - 28. 88%, 10 - 30% Zinc oxide of about 9. 37 - 30. The present invention is identified as 9% through inorganic coating powder inorganic powder coated zinc oxide or titanium dioxide inorganic - well engine has been confirmed. Experiment example 6. Inorganic - inorganic coating powder has an ultraviolet protection factor Titanium dioxide and zinc oxide coated with composite powder 12 blocking index for each powder measuring ultraviolet barrier capability between species difference crowd. Different titanium dioxide and zinc oxide is coated with an ultraviolet protection factor as qualifications with respect to composite powder coating machine can be used in the OMC can identify BMDBM and base are disclosed. Measuring ultraviolet device coated with coating powder whose size and concentration of different model in SPA 290S a SPF, UVA-a PF and Critical wavelength (C. W) or the like has been confirmed. Said table such as 4, ZnO TiO2 powder coating powder coating as compared to ultraviolet A and B area is cut off at a capacity was excellent. In addition increasing the concentration of UV powder coating all inorganic blocking number and proportional to the blocking index increased but also, these are displayed in the particle size of the inorganic ultraviolet blocking number differs somewhat according higher UV blocking ability than inorganic ultraviolet blocking number Nano Grade Pigment Grade but is showed. This generally on ZnO TiO2 - B ultraviolet blocking capability and is used in an ultraviolet - A area, average particle sizes of 100 nm (0. 1 Micro m) hereinafter those of excellent ultraviolet blocking capability is known. 100 Nm or more on but also with the capability of ZnO TiO2 discharge UV blocking, processes not irradiate them therefore, particle size about 10 times compared to nano size powder based on color cosmetics because when applied to exposed skin and white turbidity because disclosed. The integrated results when the inorganic powder coated composite powder inorganic ultraviolet blocking number 30% Nano size number was coated on at least one organic absorbing ultraviolet hereinafter BMDBM OMC in selecting a fatigue resistance. In the embodiment 2. The present invention UV blocking functional organic - inorganic composite powder number bath Prior to the present invention refers to inorganic composite powder coated inorganic - organic material coating process where the at least one organic absorbing ultraviolet number liposomal inclusion are disclosed. The coating for carrying out at least one organic absorbing number Sol number of seed required ultraviolet (OMC) depending on the type and number of pore-forming at least one organic absorbing ultraviolet-cut such as butyl methoxy cyclohexyl seven 14 and 15 (BMDBM) also be the case of such as disclosed. Particularly positive number 500 - 900 parts by weight of a pore-forming seed number OMC sol first number a predetermined positive number to be 1 - 5 parts by weight of butylene glycol and 70 provided 80 °C warming and 0. 1 - 1 Parts by weight of a tocopheryl acetate added, agitating mixing, adding the same temperature in the range of 1 - 10 parts by weight of hydrogenated lecithin dispersing, dispersing substrate. 5 - 20 Parts by weight of ethylhexyl screening (OMC) then adding at least one organic absorbing ultraviolet in number, with respect to the preparing an so as to be decentralized. In an air cooling controller 2 ethylhexyl maul [thok dead body or may [thu 30 °C when added into and out of said ultra-high pressure mercury emulsion processing times for inorganic composite powder for coating inorganic - 40 °C cooling into and out of a high pressure liquid coolant (14 also) OMC sol (Sol) his number. , the number in the embodiment applying said OMC in a uniform and but instead of ethylhexyl salicylate as at least one organic absorbing ultraviolet, analog , benzophenone -3 (oxy ), benzophenone -4 (deoxy ), ethyl [heyk thread tree oh zone, ethylhexyl salicylate, amyl isocyanate - - screening, is between - screening, it carries on shoulder and [thil does not sprout neel [ley the [thu, 4 - methyl-it cuts qualitative the cam which is burnt to ladle,, bis liposome using even when there disclosed. On the other hand, positive number 500 - 900 parts by weight of a first number of BMDBM seed number 70 provided 80 °C to warming and pore-forming a predetermined positive number be 0 and 1 - 5 parts by weight of butylene glycol. 1 - 1 Parts by weight of a tocopheryl acetate added, agitating mixing, adding the same temperature in the range of 1 - 10 parts by weight of hydrogenated lecithin dispersing, number liposome dispersion solution prepared in high pressure liquid coolant therein. BMDBM is 2 - 10 parts by weight of 3 - 15 parts by weight of a C12 provided 15 separated from each other by equal to a mixed alkyl benzoate, the writing this call d it cuts trillion a [thu -15 60 provided 65 °C in dissolving the adhesive and dipropylene capacities for the number BMDBM solution heated high pressure liquid coolant therein. Adding said number 2 - 10 parts by weight of a high pressure liquid coolant capacities for the high pressure liquid coolant then said number liposomes BMDBM solution, dispersing inorganic composite powder for coating inorganic - 40 °C cooling at room temperature into and out a number for his BMDBM sol (Sol) high pressure liquid coolant (also 15). , the at least one organic absorbing number as in the embodiment applying said BMDBM in a uniform and but instead of ethylhexyl salicylate ultraviolet, analog , benzophenone -3 (oxy ), benzophenone -4 (deoxy ), ethyl [heyk thread tree oh zone, ethylhexyl salicylate, amyl isocyanate - - screening, is between - screening, it carries on shoulder and [thil does not sprout neel [ley the [thu, 4 - methyl-it cuts qualitative the cam which is burnt to ladle,, bis liposome using even when there disclosed. The present invention functional organic - inorganic composite powder seed number equals 16 also of pore-blocking ultraviolet rays. Particularly 500 - 900 parts by weight of a predetermined number of positive number one positive number in the embodiment 1 and a fatigue resistance coating 70 provided 80 °C warming to be Fit TT 30 (N) 70 - 95 parts by weight of magnesium metal powder coating (N) or Fit ST 30 0. 1 - 5 Parts by weight of as much as 20 - 30 minutes after addition stirring. Number 14 to number such as a high pressure liquid coolant (Sol) OMC 15 then also to coating sol sol (Sol) BMDBM or also added, stirring said inorganic - inorganic coating powder to his underwater coating. Political and cooling the supernatant phase separation and then coating 12 hours at room temperature filtration and dehydration to identify said transparency of the coating liquid after 15 hours drying to a moisture content adjusted to 70 provided 80 °C 2% hereinafter to very dry. Said step 1 difference obtained in a plane of the same fatigue resistance coating silicon oil (OTS) 3 parts by weight of a comminuted Triethoxycaprylylsilane concentration with respect to the dry coating. The present invention is dried to a functional organic - inorganic composite powder and then back high pressure liquid coolant other (17 also) UV blocking number. Said organic - inorganic coating powder inorganic powder, the mixing ratio of inorganic blocking number and at least one organic absorbing number, type of inorganic blocking number, such as 5 to table according to the type of at least one organic absorbing number number bath take place. Table 5 in the case of a representation of Artisto OMC organic - inorganic coating powder coating, in the case of coating of Vasto BMDBM exhibit e.g. Artisto TZ05 Artisto is OMC coating, soft-magnetic kind of inorganic powder is a Talc T, Z is the number of types of organic - inorganic coating powder hereinafter exhibit a soft inorganic ultraviolet blocking nano ZnO substrate such method was based on the display field is recorded. Experiment example 7. Organic - inorganic coating PowderPhase separation Observation and filtrate transparency of irradiation Number of organic - inorganic coating powder coating along said in the embodiment 2 5 table prepared by the number further pore-check for logining in coating liquid phase separation and transparency of filtrate observed. Example 36 species of said silsesquioxane powder coating is in the range 2 to filtrate transparency of more accurate using absorbance spectrophotometer (UV-a Spentrophotometer, 660 nm) has been confirmed. Said table such as 7, organic - inorganic coating powder coating concentration greater range but in the embodiment 2 of 36 species extinction is higher than the relatively small 0. 002 - 0. 065 Positive number to number of absorbance (0) was similar to a. In addition 36 species solution coating powder coating powder phase separation between both been well. In the embodiment 2 number manufactured by ultraviolet light through the at least one organic absorbing number - normally coated inorganic fluorescent material for pore-inorganic coating powder that has been confirmed. Experiment example 8. Organic - inorganic coating powder organic quantitative (TG-a DSC) The present invention organic - inorganic coating powder contained in quantifying the total organic coating on the substrate are normally applied to the organic coating has been confirmed. The organic quantitative analysis equipment scanning calorimetry analyzer through a Korean ceramic TG-a DSC method to have 10 °C temperature up to 800 °C (model name: STA409PC, Luxx) per minute using an increase or decrease of weight while sample, endothermic or exothermic phenomenon were measured (disclosure temperature: room temperature (Room Temperature), relative humidity: 50. 1 ± 1%, temperature per minute speed: 5 °C/min, N2 Gas: 30 ml/min). Controls are organic - inorganic coating powder coated with at least one organic absorbing ultraviolet before each experiment troops number inorganic - inorganic coating powder was used. [Main] 1) Powder to Coating a thread number concentration=[TG-a DCS measurements (%) - Correction concentration (%)], 2) Coating yield (%) X 100=(coated chamber number concentration/total density of organic substance) Said table such as 8, 60 - 65% to 20% when the OMC coating yield is high coating concentration was 15% hereinafter shown to coating concentration preferably is inefficient. In addition BMDBM the yield 2% 4% among the best coating on 24.4, 8% yield of 90% or more even and viscoelasticity. Experiment example 9. Organic - inorganic coating powder size analysis Organic - inorganic coating powder (D50) determined the average particle size of the present invention. Generally the material such as powder (powder coating comprising) is Loose Powder Two way cake and number-average particle size of 30 micro m hereinafter with the inorganic powder is surface-treated in a variety of coating number (ex water for silicon oils and other) are used. These coating powder are powder number water repellency in article including spreadability, contact force can be moisturizing feeling like number. During cosmetic powder having an average particle size of 20 micro m apparatus and method primarily inorganic powder is 30 micro m hereinafter Loose powder are used. Loose Powder is powder puffs (puff) and brush number type when used absence of added pressure (brush) 1 or dedicated Loose powder. Two way cake Loose Powder puffs and brush is used as an interlayer dielectric is covered with respect to use in powder rub off, should a small amount of powder is uniformly coated on the skin. This Loose Powder when powder coating applied to a particle size of small, they are uniformly coated on the face makes it difficult to disclosed. The spreadability and improved small size powder coating is higher than the wax but, since the feeling of use as it only remaining original raw material powder coating after coating on specific properties change to tame. This Loose powder (powder coating comprising) used inorganic powder having an average particle size of 20 or 30 micro m hereinafter micro m is relatively large particle size before and after powder are used and, in a variety of coating properties on the lack of original raw material (coating) can be enhanced through a number of car. The average particle size of the present invention applicable to measuring whether organic - inorganic coating powder cosmetic by melting the water therefrom. The particle size analysis using Microtrac particle size yarn (number country: American, model name: S3500) have partially disconnected, the powder 0. Average particle size after dispersed in a concentration of 3% (w/w) IPA and ultrasonic treatment were measured. The coating powder particles size distribution graph has been confirmed that the average particle size of analysis and simultaneously through the distribution of degree. Said table such as 9, organic - inorganic coating powder of average particle size of at least one organic absorbing number 36 species in the embodiment 2 of the coating concentration is increased by an average particle size of powder coating but also tend to increase density of organic substance applied coating have a great impact is a cosmetic powder coating powder are all applicable to both 30um hereinafter without affecting said 36 species was. Experiment example 10. Organic - inorganic coating powder has an ultraviolet protection factor The present invention organic - inorganic coating ultraviolet index for a long time. This loose powder or powder coating to be applied to a two way cake are transported to the aforementioned, the analysis in which difference between UV blocking siberian bustard detection was more each coating powder. The previous analysis TiO2 and ZnO coating powder UV blocking index measuring display the same circuit structure (equipment name: SPF 290S) using the air. Said table such as 10, in the embodiment 2 - 5 - 15% OMC organic species on the substrate when the overexposure to UV blocking of powder of an inorganic coating 36 of TiO2 OMC proportion to the concentration of the ultraviolet protection factor increases but, when the 20% OMC is rather reduced. This TiO2 coating on the substrate has been confirmed that the optimum concentration of about 15% for OMC. In addition OMC TiO2 coating concentration when the same fatigue resistance the employed inorganic blocking number is approximately 1.5 to more than when using an ultraviolet protection factor as high where the ZnO 2 yet. This number also depends on the kind of a fatigue resistance used has been much difference between these inorganic ultraviolet blocking UV blocking ability. In addition generally different inorganic species when a blocking number is dipped into a composite powder 2 TiO2 cells both the discharge tube and his high fatigue resistance, when a coating is at least one organic absorbing number two coating having excellent ultraviolet BMDBM than comparable OMC further when her ability. Applying ultraviolet index on the substrate and at least one organic absorbing number 10% Talc-a TiO2 Artisto TT 10 Vasto TT 10 is etched by using the, Artisto TT 10 of SPF is 45. 46 But were, of SPF Vasto TT 10 is 114. 85 2 These are displayed to show differences in times been is measured. In the case of the UVA PF Artisto TT 10 and 18. 22, The 123 Vasto TT 10. 48 From the numerical show differences in times between 6 been. This TiO2 BMDBM OMC on ZnO is compared to liver combination on blocking combination is superior in molecular genetic methods in which the acronym (Synergy) are disclosed. The substrate is coated with the same concentration of OMC BMDBM Sericite provided TiO2 on even when similar tendency in OMC BMDBM is excellent ultraviolet ability than the same preform showing her. Experiment example 11. Quantitative functional organic - inorganic coating powder The present invention organic - inorganic coating powder coating was performing a quantitative analysis of at least one organic absorbing ultraviolet number. BMDBM without loss during the coating process the coating and method for engaging OMC and well even upon application routing number type powder having excellent ultraviolet capability coupled each formed on the substrate through the at least one organic absorbing ultraviolet number previously normally coated for conducting analysis. The combination limit component assays during cosmetic<analysis guidelines (2010. 06)>"UV blocking number" method of performing a thermal analysis of have, through conducting (model name HP 1050 Series) HPLC analysis. Said table such as 11, in the case of 5 - 15% OMC coating powder coating concentration applied to proportion a quantitative OMC concentrations should, OMC 15% coating powder has been similar result in rather decreases 20% concentration. Alternatively BMDBM decomposed organic matter used to coat applied in the case of powder coating concentration higher than 2 - 10% BMDBM OMC coating powder coating is applied to a sample reservoir and proportional to the concentrations of organic even lower electrode has been confirmed. In the case of coating applied to the substrate through the at least one organic absorbing ultraviolet for this number concentration method of the classification has been confirmed that the presence of a powder with separate coating concentration. In addition coating degree when etched by using the ZnO preform TiO2 At least one organic absorbing ultraviolet coating on the substrate higher concentration compared his number. In the embodiment 3. At least one organic absorbing ultraviolet number selecting optimal coating concentration Based on experimental results be applied to a cosmetic powder such as Two Way Cake Loose Powder and makes the OMC BMDBM and optimum coating concentration decided as below. The organ conducting skin irritation experiment evaluating plan according to a schedule. The skin stimulation experiments a composite powder comprises a table 12 total 8 is connected to the request such as disclosed. Stimulation experiments No coating powder is required. 5 - 8 But, since these powder are 3 difference in a variety of coating process via the composite powder which has been confirmation process involving irritation when coarse powder whose stimulation outputs No involved. 1 - 4 Including the final coating powder derived composite powder coating base during development database to his skin irritation. No. 1, 2 Is cut off ultraviolet double-coating of powder of a fatigue resistance inorganic - inorganic coating powder are disclosed. Coated TiO excitation2 These can be obtained by conducting experiments can be causing irritation. No. 3, 4 Is only coated composite powder processes silicon oil and Hydrogenated Lecithin Fit ST 30 Fit TT 30 on surface finish 2 difference coating powder are disclosed. These powder for the reason for his Hydrogenated Lecithin component determines the database involves stimulating pad are disclosed. The OMC Hydrogenated Lecithin BMDBM substances and a core material with other material replacement is difficult to liposome processing procedure for although not necessarily only powder coated confirmation whether stimulation of these force. Coating powder No. 5 - 8 Of the 10% OMC BMDBM after coating on the substrate after collection and final coating powder into silicone oil (Triethoxycaprylylsilane) surface has been treated 3 difference, the flexible composite powder ultimately involving at each of skin irritations are disclosed. The reason is that skin irritation experiment 8% BMDBM coating powder for powder coating instead of 10% BMDBM defines, 8% BMDBM coating powder production loss minute contacted directly applied to compensate for the higher portions to which 10% 10% BMDBM coating powder and the concentration thereof to substantially proximate to go for skin irritation experiment. This 10% BMDBM skin irritation when not involved in powder coating, hereinafter BMDBM composite powder coated with concentration and also does not involve skin irritation was deemed. Allergic contact dermatitis of skin irritation experiments (Allergenic contact dermatitis) name of said free memory card 30 healthy women (average age: 45 ± 2. 9 Cells) when the subject the substrate to a predetermined analyte for the experiment the 8 species both powder type, they all are 1:1 to 3.0 parts by weight of squalane stirring well applied after filtering the experiments. To measure the degree of skin irritations such as 4 to 8 having the evaluation criteria 18 also have 30 minutes after said sample is connected to the total classification skin irritation, skin irritation evaluation criteria is met if a time observing the skin after 48 time and 72 degree of stimulus therefrom. Skin irritation through falling on said evaluation criteria below equations 1 "Response" have corresponding to an upper level, for the numerical (R) to one of the table 13 are described. Said table such as 14, the present invention only a two powder coating of powder of skin irritation result Liposome ST 1 1 + skin irritation was found very guard. This period of time has elapsed after the wetting ability powder loaded patch number 72 30 1 as universal stimulation reaction in a subject name of players in the field of view during obscured and disclosed. Alternatively skin irritation by 10% respectively installed in the OMC BMDBM known in the case of the present invention coated on organic - inorganic composite powder and any subject it stands but skin irritation even when the user is not involved in the real-number coating powder cosmetic skin irritation by secure cosmetic material applied without has been confirmed. 15 Said table such as, in the case of powder coating an ultraviolet protection factor and organic matter in quantitative analysis result is appropriate but 15% OMC, skin functional evaluation in sanitary ill OMC 15% wax powder between skin grown is not adapted for application number type. Other organic functional evaluation of skin guide apparatus to examine all item number type OMC overall determination result is set to be applied to a 10% concentration. In the case of powder coating but this number is appropriate functional evaluation 6% BMDBM in cosmetic skin when applied UV blocking siberian bustard deterministic adversely affect the concentration-her house. An ultraviolet protection factor analysis items regarding the organic guide apparatus as result was 8% BMDBM coating be applied to a type number is appropriate concentration. At least one organic absorbing ultraviolet coating be applied to a type number through number OMC 10% concentration, the number of powder applied Loose Powder and determined BMDBM 8% Two way cake type. Experiment example 12. The present invention organic - inorganic coating Powder Skin irritation experiment The present invention organic - inorganic coating of powder of ultraviolet blocking function is optimized by jetting the skin irritation even when these methods involving, article number applicable to system outputs the coating powder to the skin of safety has been confirmed. Whether a short circuit is processed through a clinical evaluation engine have "compared to e pro", In the embodiment 4. The present invention organic - inorganic coating powder applied powder cosmetic number bath The present invention organic - inorganic coating powder through said experiments as well as excellent skin without skin irritation when the ultraviolet blocking effects for the repairing material 15 and table 16 cosmetic same bright on a number added to cosmetic powder blocking functional Loose Powder Two Way Cake his high pressure liquid coolant. Number 1 attainments. Multicut Loose powder Attainments number 2. Muticut Two way cake Experiment example 13. The present invention organic - inorganic coating Powder The flame containing cosmetic UV blocking ability confirmation Said number 1 and number 2 attainments attainments ultraviolet powder cosmetic skin irritation experiment, quantitative and ultraviolet ray-shielding functionality active ingredient was assessed. Skin irritation experiment Said number 1 and number 2 attainments attainments ultraviolet powder cosmetic skin 32 causes stimulation in order to identify whether said target subject the same method name experiment example 12 skin stimulating his database. The experiments a clinical analysis engine his request. Said table such as 18, said number 1 and number 2 attainments agents or skin a cosmetic powder does not experiment result ultraviolet attainments appeared. Within the article number quantitative functional powder Said number 1 and number 2 attainments attainments cosmetic powder containing at least one organic absorbing ultraviolet number inorganic ultraviolet blocking ultraviolet content of food safety destination number specified in replay university cooperation only through a public IP address based on analysis engine analyzing his pharmaceuticals industry and education. Said table such as 19, said number 1 and number 2 number attainments attainments number the overall content of at least one organic absorbing ultraviolet UV powder cosmetic ultraviolet inorganic blocking levels have shown similar number. UV blocking functional estimation The present invention number 1 and number 2 the purpose of the invention in cosmetic powder ultraviolet SPF50 attainments attainments, PA + + + or more UV blocking functionality for the ferroelectric layer has an has been confirmed. The target region is 50 SPF protection factor B ultraviolet fluorescence, for target PA min + + +. (With reference to PA is UVA-a PF value "+" symbol terms that, when it has been determined that PA is 8 or more UVA PF is "+ + +" are transcribing) 1) Beam evaluation Said number 1 and number 2 attainments attainments SPF and UVA PF value for circuit structure has an ultraviolet protection factor (SPF 290S) ultraviolet powder cosmetic confirmed through. Said table such as 20, on the average each of said number of UVA PF SPF attainments Multicut Loose Powder 1 138. 35 And 59. 95, Said number 2 Multicut Two Way cake attainments of the 198. 03 And 95. 02 Have shown. 2) Clinical evaluation Said number 1 and number 2 attainments attainments for clinically assessing the functionality of the engine cut off ultraviolet UV powder cosmetic to a SPF and UVA PE request therefrom. First SPF 10 users subject to a test object for skin disorders for testing without an ultraviolet protection factor (SPF) measuring method will only respond to cut off ultraviolet index number in width army Japanese cosmetic industry (JCIA, 2011) is measured. In addition the test standard sample in, measurement object sample and solid wire cloth (sample also operates without coating skin) to a minimum portion of a subject for measuring erythema quantity (Minimal erythema dose, MED) like UV-a B (290 - 320 nm) was irradiated. The determination may be 16 - 24 hours after irradiation in the minimum said self test point determining criteria 2 name ultraviolet have carbostyril derivatives for discriminating along, the criteria are such as to table 20 and ultraviolet protection factor B expressions such as 2 represented the bill. Also such as 19, blocking index number 1 Multicut Loose Powder attainments of SPF is 56. 7, 2 Number of attainments Multicut Two Way cake is 61. 9 Mistletoe. Next UVA PF said SPF testing test subject goes into two differences like the same method 320 - 400 nm transparent, long-lasting immediately minimum measuring (Minimal Persistent Pigment Darkening Dose, MPPDD) are disclosed. Black reconciliation measurement is 2 - 24 hours after irradiation in the ultraviolet splicing 2 have black self test name determining, determining criteria are based on temperature have to table 21, the subject has an ultraviolet protection factor (UVA PFi) according to criteria determined by MPPDD 3 expressions according to the bill. Also such as 20, blocking index number 1 attainments of UVA PF Multicut Loose Powder is 11. 7, 2 Number of attainments Multicut Two Way cake is 11. 1 Of intetrest. Through the present invention organic - inorganic composite powder containing a cosmetic powder with SPF 50, having PA + + + or more UV blocking functionality as signal peptides. The present invention refers to ability to skin diseases associated with ultraviolet rays while the gypsum feed invention in effective functional cosmetics industry are disclosed. The present invention relates to an ultraviolet blocking functional complexed powder dually coated with an ultraviolet inorganic blocking agent and an ultraviolet organic absorbent OMC on an inorganic powder, and an ultraviolet blocking cosmetic composition using the same. More specifically, titanium dioxide and zinc oxide, which are ultraviolet inorganic scattering agents, are primarily coated by using inorganic powder such as talc and sericite as a coating base material, and ethylhexyl methoxycinnamate or butyl methoxydibenzoylmethane, which is an ultraviolet organic absorbent, is liposomized and secondarily coated, and then triethoxycaprylylsilane is thirdly coated to complete an organic-inorganic complexed powder for blocking ultraviolet rays. The organic-inorganic complexed powder for blocking ultraviolet rays effectively blocks ultraviolet rays in the UV-A and UV-B regions, prevents direct application and absorption into the skin by collecting an ultraviolet organic absorbent that may accompany skin irritation through a liposomal process, and prevents the coated organic absorbent from leaking out, thereby maximizing the ultraviolet blocking ability without being harmful to the human body. COPYRIGHT KIPO 2018 (A) organic - inorganic composite powder to form positive number 500 - 900 parts by weight of the total composition and then heating to 70 - 95 parts by weight of inorganic ultraviolet blocking number number 70 provided 80 °C inorganic coating powder is surface-treated inorganic - added to mixing and dispersing a fatigue resistance coating and color; (b) 0. 5 - 2. 0 Parts by weight of magnesium sulfate anhydride dispersed and dissolved by adding and; (c) adding organic ultraviolet absorber number butyl methoxy-dibenzoylmethane (BMDBM) by coating the coating liquid tank and a second number; (d) said step (c) the coating liquid obtained in 12 hours after verifying the supernatant phase separation and transparency of political and cooling; (e) said step (d) the coating liquid obtained in filtration and dehydration at room temperature after 15 hours to 2 weight % hereinafter 70 provided 80 °C adjusting moisture content and drying to dry; (f) said drying step (e) and 1 - 5 parts by weight of dry matter obtained by grinding a fatigue resistance coating and coating by adding 3 difference tree (Triethoxycaprylylsilane); (g) obtained in said step (f) drying the coating 12 hours in 70 provided 80 °C 2 weight % hereinafter and adjusting moisture content to dry; (h) grinding said building obtained in a drying step, comprising the steps of filtration and packaging manufacturing method of organic sunscreen characterized - inorganic composite powder. According to Claim 1, said (c) step (Sol) 2 - 10% by weight butyl sol coating concentration method characterized in that According to functional organic - inorganic composite coating powder prepared by the UV blocking anti method number 2 number. A sunscreen cosmetic composition according to Claim 3 - inorganic organic composite powder. Inorganic - inorganic coating powder Inorganic powder (% by weight) (% By weight) inorganic ultraviolet blocking number Talc Sericite Pigment TiO2 Nano TiO2 Pigment ZnO Nano ZnO Fit ST 10 (P) - 90 10 - - - Fit ST 20 (P) - 80 20 - - - Fit ST 30 (P) - 70 30 - - - Fit ST 10 (N) - 90 - 10 - - Fit ST 20 (N) - 80 - 20 - - Fit ST 30 (N) - 70 - 30 - - Fit SZ 10 (P) - 90 - - 10 - Fit SZ 20 (P) - 80 - - 20 - Fit SZ 30 (P) - 70 - - 30 - Fit SZ 10 (N) - 90 - - - 10 Fit SZ 20 (N) - 80 - - - 20 Fit SZ 30 (N) - 70 - - - 30 EDS analysis result (unit: %) Inorganic - inorganic coating powder O Na Mg Al Si K Ti Fe Zn Total Fit ST 10 (P) 59. 45 0. 35 0. 75 12. 76 17. 89 6. 81 1. 69 1. 67 - 100 Fit ST 20 (P) 63. 51 0. 61 0. 96 11. 92 15. 23 5. 12 2. 71 0. 70 - 100 Fit ST 30 (P) 59. 47 0. 65 1. 03 11. 51 15. 35 5. 68 6. 26 0. 83 - 100 Fit ST 10 (N) 63. 78 0. 68 0. 56 12. 72 14. 92 4. 96 2. 44 0. 96 - 100 Fit ST 20 (N) 61. 36 0. 73 1. 05 12. 08 14. 94 5. 12 5. 02 0. 66 - 100 Fit ST 30 (N) 60. 55 0. 54 1. 12 11. 45 15. 13 5. 18 6. 48 0. 79 - 100 Fit SZ 10 (P) 60. 46 0. 87 0. 71 13. 26 16. 29 5. 55 - 1. 05 2. 97 100 Fit SZ 20 (P) 61. 47 - - 11. 75 12. 71 4. 26 - 0. 61 9. 52 100 Fit SZ 30 (P) 53. 78 - 0. 53 10. 13 11. 32 3. 46 - 0. 48 20. 97 100 Fit SZ 10 (N) 52. 79 - 0. 93 13. 31 18. 26 8. 36 - 1. 56 4. 81 100 Fit SZ 20 (N) 54. 20 - 0. 25 11. 58 12. 15 4. 30 - 0. 46 17. 20 100 Fit SZ 30 (N) 52. 66 - 0. 3 11. 1 12. 75 4. 13 - 0. 61 18. 61 100 Inorganic - inorganic coating powder Object Content (% by weight) Fit ST 10 (P) Titanium dioxide 8. 19 Fit ST 20 (P) Titanium dioxide 20. 31 Fit ST 30 (P) Titanium dioxide 27. 80 Fit ST 10 (N) Titanium dioxide 10. 71 Fit ST 20 (N) Titanium dioxide 19. 85 Fit ST 30 (N) Titanium dioxide 28. 88 Fit SZ 10 (P) Zinc Oxide 9. 57 Fit SZ 20 (P) Zinc Oxide 15. 31 Fit SZ 30 (P) Zinc Oxide 28. 91 Fit SZ 10 (N) Zinc Oxide 9. 37 Fit SZ 20 (N) Zinc Oxide 18. 28 Fit SZ 30 (N) Zinc Oxide 30. 9 Inorganic - inorganic coating powder SPF UVA-a PE Fit ST 10 (P) 6. 3 5. 81 Fit ST 20 (P) 14. 38 13. 14 Fit ST 30 (P) 20. 74 19. 36 Fit ST 10 (N) 18. 22 10. 37 Fit ST 20 (N) 24. 48 16. 38 Fit ST 30 (N) 39. 27 24. 04 Fit SZ 10 (P) 3. 55 3. 35 Fit SZ 20 (P) 4. 09 3. 95 Fit SZ 30 (P) 8. 12 7. 83 Fit SZ 10 (N) 4. 96 4. 19 Fit SZ 20 (N) 7. 35 6. 13 Fit SZ 30 (N) 9. 64 8. 34 Organic - inorganic coating powder Inorganic - inorganic coating powder (parts by weight) At least one organic absorbing ultraviolet number sol (parts by weight) Fit TT 30 (N) Fit ST 30 (N) Fit TZ 30 (N) Fit SZ 30 (N) OMC BMDBM Artisto TT05 95 - - - 5 - Artisto TT10 90 - - - 10 - Artisto TT15 85 - - - 15 - Artisto TT20 80 - - - 20 - Artisto ST05 - 95 - - 5 - Artisto ST10 - 90 - - 10 - Artisto ST15 - 85 - 15 Artisto ST20 - 80 - - 20 - Artisto TZ05 - - 95 - 5 - Artisto TZ10 - - 90 - 10 - Artisto TZ15 85 - 15 - Artisto TZ20 - - 80 - 20 - Artisto SZ05 - - - 95 5 - Artisto SZ10 - - - 90 10 - Artisto SZ15 - - - 85 15 - Artisto SZ20 - - - 80 20 - Vasto TT02 98 - - - - 2 Vasto TT04 96 - - - - 4 Vasto TT06 94 - - - - 6 Vasto TT08 92 - - - - 8 Vasto TT10 90 - - - - 10 Vasto ST02 - 98 - - - 2 Vasto ST04 - 96 - - - 4 Vasto ST06 - 94 - - - 6 Vasto ST08 - 92 - - 8 Vasto ST10 - 90 - - - 10 Vasto TZ02 - - 98 - - 2 Vasto TZ04 - - 96 - - 4 Vasto TZ06 - - 94 - - 6 Vasto TZ08 - - 92 - - 8 Vasto TZ10 - - 90 - - 10 Vasto SZ02 - - - 98 - 2 Vasto SZ04 - - - 96 - 4 Vasto SZ06 - - - 94 - 6 Vasto SZ08 - - - 92 - 8 Vasto SZ10 - - - 90 - 10 Butylene glycol TocopherylAcetate Possibility [chem city [thin OMC Fit TT 30 Total Fit TT 30(Minimum maximum Artisto TT 05 (minimum 1 0. 1 1 5 92. 9 100 94 Artisto TT 05 (maximum 5 1 10 5 79 100 78 Butylene glycol TocopherylAcetate Possibility [chem city [thin OMC Fit TT 30 Total Fit TT 30(Minimum maximum Artisto TT 10 (minimum 1 0. 1 1 10 87. 9 100 89 Artisto TT 10 (maximum 5 1 10 10 74 100 73 Butylene glycol TocopherylAcetate Possibility [chem city [thin OMC Fit TT 30 Total Fit TT 30(Minimum maximum Artisto TT 15 (minimum 1 0. 1 1 15 82. 9 100 84 Artisto TT 15 (maximum 5 1 10 15 69 100 68 Butylene glycol TocopherylAcetate Possibility [chem city [thin OMC Fit TT 30 Total Fit TT 30(Minimum maximum Artisto TT 20 (minimum 1 0. 1 1 20 77. 9 100 79 Artisto TT 20 (maximum 5 1 10 20 64 100 63 Butylene glycol TocopherylAcetate Possibility [chem city [thin BMDBMSolvent BMDBM Fit TT 30 Total Artisto TT 20 (minimum 1 0. 1 1 3 2 92. 9 100 Artisto TT 20 (maximum 5 1 10 15 2 67 100 Butylene glycol TocopherylAcetate Possibility [chem city [thin BMDBM Solvent BMDBM Fit TT 30 Total Artisto TT 20 (minimum 1 0. 1 1 3 4 90. 9 100 Artisto TT 20 (maximum 5 1 10 15 4 65 100 Butylene glycol TocopherylAcetate Possibility [chem city [thin BMDBM Solvent BMDBM Fit TT 30 Total Artisto TT 20 (minimum 1 0. 1 1 3 6 88. 9 100 Artisto TT 20 (maximum 5 1 10 15 6 63 100 Butylene glycol TocopherylAcetate Possibility [chem city [thin BMDBM Solvent BMDBM Fit TT 30 Total Artisto TT 20 (minimum 1 0. 1 1 3 8 86. 9 100 Artisto TT 20 (maximum 5 1 10 15 8 61 100 Butylene glycol TocopherylAcetate Possibility [chem city [thin BMDBM Solvent BMDBM Fit TT 30 Total Artisto TT 20 (minimum 1 0. 1 1 3 10 84. 9 100 Artisto TT 20 (maximum 5 1 10 15 10 59 100 Organic - inorganic coating powder Absorbance (660 nm) Artisto TT05 0. 052 Artisto TT10 0. 065 Artisto TT15 0. 014 Artisto TT20 0. 048 Artisto ST05 0. 036 Artisto ST10 0. 020 Artisto ST15 0. 062 Artisto ST20 0. 046 Artisto TZ05 0. 034 Artisto TZ10 0. 036 Artisto TZ15 0. 020 Artisto TZ20 0. 051 Artisto SZ05 0. 028 Artisto SZ10 0. 029 Artisto SZ15 0. 053 Artisto SZ20 0. 037 Vasto TT02 0. 009 Vasto TT04 0. 032 Vasto TT06 0. 034 Vasto TT08 0. 051 Vasto TT10 0. 044 Vasto ST02 0. 025 Vasto ST04 0. 062 Vasto ST06 0. 046 Vasto ST08 0. 041 Vasto ST10 0. 059 Vasto TZ02 0. 021 Vasto TZ04 0. 017 Vasto TZ06 0. 018 Vasto TZ08 0. 026 Vasto TZ10 0. 010 Vasto SZ02 0. 004 Vasto SZ04 0. 003 Vasto SZ06 0. 002 Vasto SZ08 0. 011 Vasto SZ10 0. 021 The bath concentration (%) total number applied organic TG-a DSC experiment group result (%) Controls of TG-a DSC results (%) Powder coated chamber number concentration1) Coating yield2) Artisto TT05 6. 625 10. 37 2. 13 8. 24 124 Artisto ST05 9. 60 3. 68 5. 92 89 Artisto TT10 13. 25 14. 83 2. 13 12. 7 96 Artisto ST10 15. 15 3. 68 11. 47 87 Artisto TT15 19. 875 26. 93 2. 13 24. 8 125 Artisto ST15 22. 11 3. 68 18. 43 93 Artisto TT20 26. 5 18. 32 2. 13 16. 19 61 Artisto ST20 21. 09 3. 68 17. 41 66 Vasto TT02 9. 5 11. 51 2. 13 9. 38 98. 7 Vasto ST02 11. 91 3. 68 8. 23 86. 6 Vasto TT04 14. 6 16. 38 2. 13 14. 25 98. 3 Vasto ST04 16. 60 3. 68 12. 92 89. 1 Vasto TT06 19. 5 18. 17 2. 13 16. 04 82. 3 Vasto ST06 21. 19 3. 68 17. 51 89. 8 Vasto TT08 24. 5 24. 47 2. 13 22. 34 91. 2 Vasto ST08 25. 18 3. 68 21. 50 87. 8 Vasto TT10 29. 5 26. 96 2. 13 24. 83 84. 2 Vasto ST10 30. 63 3. 68 26. 95 91. 4 Organic - inorganic coating powder (Um) average particle size Artisto TT05 17. 68 Artisto TT10 19. 90 Artisto TT15 24. 01 Artisto TT20 21. 61 Artisto ST05 8. 76 Artisto ST10 7. 74 Artisto ST15 9. 07 Artisto ST20 12. 74 Artisto TZ05 19. 37 Artisto TZ10 23. 41 Artisto TZ15 21. 24 Artisto TZ20 22. 64 Artisto SZ05 9. 37 Artisto SZ10 9. 64 Artisto SZ15 9. 95 Artisto SZ20 9. 93 Vasto TT02 18. 89 Vasto TT04 18. 44 Vasto TT06 18. 77 Vasto TT08 19. 12 Vasto TT10 18. 72 Vasto ST02 8. 66 Vasto TT04 9. 23 Vasto ST06 9. 35 Vasto ST08 8. 72 Vasto ST10 8. 54 Vasto TZ02 20. 31 Vasto TT04 19. 14 Vasto TZ06 20. 01 Vasto TZ08 19. 92 Vasto TZ10 19. 34 Vasto SZ02 9. 31 Vasto TT04 10. 63 Vasto SZ06 10. 58 Vasto SZ08 10. 85 Vasto SZ10 9. 59 Organic - inorganic coating powder An ultraviolet protection factor SPF UVA PF Artisto TT05 38. 89 18. 19 Artisto TT10 45. 46 18. 22 Artisto TT15 76. 72 28. 21 Artisto TT20 63. 85 22. 37 Artisto ST05 77. 95 36. 45 Artisto ST10 99. 35 39. 99 Artisto ST15 179. 38 76. 85 Artisto ST20 159. 57 66. 18 Artisto TZ05 9. 87 5. 49 Artisto TZ10 20. 84 8. 46 Artisto TZ15 21. 83 7. 95 Artisto TZ20 38. 39 12. 51 Artisto SZ05 18. 81 8. 83 Artisto SZ10 29. 42 11. 98 Artisto SZ15 37. 86 13. 55 Artisto SZ20 57. 42 19. 74 Vasto TT02 54. 29 32. 89 Vasto TT04 73. 78 65. 42 Vasto TT06 85. 00 100. 83 Vasto TT08 112. 09 118. 88 Vasto TT10 114. 85 123. 48 Vasto ST02 62. 51 35. 4 Vasto ST04 112. 43 78. 92 Vasto ST06 157. 57 125. 75 Vasto ST08 188. 2 173. 92 Vasto ST10 177. 24 180. 79 Vasto TZ02 9. 5 8. 8 Vasto TZ04 10. 13 9. 62 Vasto TZ06 13. 97 14. 14 Vasto TZ08 14. 24 15. 34 Vasto TZ10 15. 54 17. 99 Vasto SZ02 16. 87 15. 32 Vasto SZ04 22. 01 21. 38 Vasto SZ06 22. 16 25. 1 Vasto SZ08 26. 23 31. 74 Vasto SZ10 25. 53 32. 56 Organic - inorganic coating powder Number concentration (weight %) at least one organic absorbing ultraviolet OMC BMDBD Artisto TT05 5. 60 - Artisto TT10 12. 58 - Artisto TT15 15. 27 - Artisto TT20 14. 22 - Artisto ST05 5. 37 - Artisto ST10 12. 84 - Artisto ST15 15. 52 - Artisto ST20 14. 61 - Artisto TZ05 5. 76 - Artisto TZ10 12. 80 - Artisto TZ15 16. 42 - Artisto TZ20 15. 34 - Artisto SZ05 5. 69 - Artisto SZ10 13. 49 - Artisto SZ15 16. 45 - Artisto SZ20 15. 49 - Vasto TT02 - 2. 19 Vasto TT04 - 3. 97 Vasto TT06 - 6. 07 Vasto TT08 - 8. 67 Vasto TT10 - 10. 05 Vasto ST02 - 2. 36 Vasto ST04 - 4. 16 Vasto ST06 - 6. 28 Vasto ST08 - 8. 69 Vasto ST10 - 10. 08 Vasto TZ02 - 2. 91 Vasto TZ04 - 4. 71 Vasto TZ06 - 6. 83 Vasto TZ08 - 8. 75 Vasto TZ10 - 10. 89 Vasto SZ02 - 2. 67 Vasto SZ04 - 4. 49 Vasto SZ06 - 7. 11 Vasto SZ08 - 9. 62 Vasto SZ10 - 11. 37 No Coating Coating powder described 1 Fit TT 30 TiO2 30% Talc 1 coated with powder coating the nano size difference 2 Fit ST 30 Sericite TiO2 30% 1 coated with powder coating the nano size difference 3 Liposome TT 2 Difference Hydrogenated Lecithin Fit TT 30 on coated with powder coating 4 Liposome ST 2 Difference Hydrogenate Lecithin Fit ST 30 on coated with powder coating 5 Artisto TT 10 The OMC 10% Liposome TT 3 difference coating powder coated and surface-treated for silicon oil 6 Artisto ST 10 The OMC 10% Liposome ST 3 difference coating powder coated and surface-treated for silicon oil 7 Vasto TT 10 Liposome TT BMDBM 10% to 3 difference coating powder coated and surface-treated for silicon oil 8 Vasto ST 10 Liposome ST BMDBM 10% to 3 difference coating powder coated and surface-treated for silicon oil Final stimulating numerical reference description table Range of Response Criteria 0. 00 ≤ R < 0. 87 Slight 0. 87 ≤ R < 2. 42 Mild 2. 42 ≤ R<3. 44 Moderate 3. 44 ≤ R Severe No Test Material No. OfResponder 48 Hrs 72 Hrs Reaction Grade 1 + 2 + 3 + 4 + 1 + 2 + 3 + 4 + 48H 72H Mean 01 Fit TT 30 0 - - - - - - - - 0. 0 0. 0 0. 0 02 Fit ST 30 0 - - - - - - - - 0. 0 0. 0 0. 0 03 Liposome TT 0 - - - - - - - - 0. 0 0. 0 0. 0 04 Liposome ST 1 - - - - 1 - - - 0. 0 0. 8 0. 4 05 Artisto TT 10 0 - - - - - - - - 0. 0 0. 0 0. 0 06 Artisto ST 10 0 - - - - - - - - 0. 0 0. 0 0. 0 07 Vasto TT 10 0 - - - - - - - - 0. 0 0. 0 0. 0 08 Vasto ST 10 0 - - - - - - - - 0. 0 0. 0 0. 0 At least one organic absorbing ultraviolet coating concentration (weight %) be applied to an optimum number number type Organic quantitative An ultraviolet protection factor At least one organic absorbing ultraviolet quantitative number Skin functional evaluation Total Optimum coating concentration OMC 10 15 15 10 10 BMDBM optimal coating concentration 8 8 8 6 8 Materials life INCI Name Mixing ratio (% By weight) ArtistoTT 10 Talc, Titanium Dioxide, Ethylhexyl Methoxycinnamate, Hydrogenated Lecithin, Triethoxycaprylylsilane, Tocopheryl Acetate, Butylene Glycol 10. 00 Artisto ST 10 Mica, Titanium Dioxide, Ethylhexyl Methoxycinnamate,Hydrogenated Lecithin, Triethoxycaprylylsilane,Tocopheryl Acetate, Butylene Glycol 10. 00 Artisto TZ 10 Talc, Zinc Oxide, Ethyhexyl Methoxycinnamate,Hydrogenated Lecithin, PEG-a 26 a-PPG provided 30 Phosphate andDEA, Triethoxycaprylylsilane, Tocopheryl Acetate, Butylene Glycol 10. 00 Fit SZ 30 (N) Mica, Zinc Oxide, PEG-a 26 -PPG- 30 Phosphate (and) DEA, Triethoxycaprylylsilane 9. 00 Fit ST 30 (N) Mica, Titanium Dioxide, Triethoxycaprylylsilane 9. 00 Fit TT 30 (N) Talc, Titanium Dioxide, Triethoxycaprylylsilane 13. 00 Talc L MS Talc, Magnesium Stearate 15. 00 Silica 67 SDM Silica, Dimethicone 10. 00 - Methyl Methacrylate Crosspolymer 6. 00 TiO2 PFC OTS Titanium Dioxide, Triethoxycaprylylsilane 7. 00 IOY provided OTS (CI77492) Iron Oxides, Synthetic Fluorphlogopite,Triethoxycaprylylsilane 0. 70 IOR provided OTS (CI77491) Iron Oxides, Synthetic Fluorphlogopite,Triethoxycaprylylsilane 0. 24 IOB-a OTS (CI77499) IronOxides, Synthetic Fluorphlogopite,Triethoxycaprylylsilane 0. 06 Total 100. 00 Materials life INCI Name Mixing ratio (%) Artisto TT 10 Talc, Titanium Dioxide, Ethylhexyl Methoxycinnamate,Hydrogenated Lecithin, Triethoxycaprylylsilane, Tocopheryl Acetate, Butylene Glycol 10. 00 Artisto ST 10 Mica, Titanium Dioxide, Ethylhexyl Methoxycinnamate, Hydrogenated Lecithin, Triethoxycaprylylsilane,TocopherylAcetate, Butylene Glycol 10. 00 Vasto ST 08 Mica, Titanium Dioxide, C12 provided 15 Alkyl Benzoate (and)Dipropylene Glycol Dibenzoate Sterayl PPG-a 15 (and)Ether Dibenzoate, Butyl Methoxydibenzoylmethane,Hydrogenated Lecithin, Triethoxycaprylylsilane,Tocopheryl Acetate 10. 00 Artisto TZ 10 Talc, Zinc Oxide, Ethyhexyl Methoxycinnamate,Hydrogenated Lecithin, PEG-a 26 a-PPG provided 30 Phosphate (and) DEA, Triethoxycaprylylsilane, Tocopheryl Acetate,Butylene Glycol 5. 00 Fit SZ 30 (N) Mica, Zinc Oxide, PEG-a 26 a-PPG provided 30 Phosphate DEA (and),Triethoxycaprylylsilane 14. 00 Fit TT 30 (N) Talc, Titanium Dioxide, Triethoxycapyrylylsilane 18. 00 Talc SJ J1 OTS Talc, Triethoxycaprylylsilane 7. 25 Sericite ASP SDM Mica, Dimethicone 10. 00 - Methyl Methacrylate Crosspolymer 2. 00 Silica 67 SDM Silica, Dimethicone 5. 00 TiO2 PFC OTS Titanium Dioxide, Triethoxycaprylylsilane 7. 00 IOY provided OTS (CI77492) IronOxides, Synthetic Fluorphlogopite,Triethoxycaprylylsilane 0. 80 IOR provided OTS (CI77491) IronOxides, SyntheticFluorphlogopite,Triethoxycaprylylsilane 0. 24 IOB-a OTS (CI77499) IronOxides, SyntheticFluorphlogopite,Triethoxycaprylylsilane 0. 06 - Caprylylic/Capric Triglycerides 0. 25 - Hexyl Laurate 0. 40 Total 100. 00 No Test Material No. OfResponder 48 Hrs 72 Hrs Reaction Grade 1 + 2 + 3 + 4 + 1 + 2 + 3 + 4 + 48H 72H Mean 01 Multicut loose powder 0 - - - - - - - - 0. 0 0. 0 0. 0 02 Multicut two way cake 0 - - - - - - - - 0. 0 0. 0 0. 0 03 Negative control 0 - - - - - - - - 0. 0 0. 0 0. 0 TiO2 (%) ZnO (%) Total number (%) inorganic blocking OMC (%) BMDBM (%) Total number (%) at least one organic absorbing Multicut Loose Powder 17. 83 4. 95 22. 78 2. 98 2. 98 Multicut Two Way cake 18. 83 5. 09 23. 92 2. 47 0. 62 3. 09 SPF UVA PF Critical wavelength Multicut Loose Powder 138. 35 59. 95 380. 14 Multicut Two Way cake 198. 03 95. 20 381. 74 Evaluation Content Non - Not any reaction ± Visible or ultraviolet irradiation erythema quantity to determine the minimum or some carbostyril derivatives for reaction weak takes place at less than 50% area of the circular form is completed carbostyril derivatives for not + Without applying ultraviolet compared with which the ultraviolet irradiation area of the carbostyril derivatives for specifically provides a reaction of the first circular shape before region (2/3) when fully visual Minimum erythema quantity (MED) + + 100% Ultraviolet irradiation site is poured into the skin surface when the diamine view clearly carbostyril derivatives for reaction Evaluation Content Non - Not any reaction ± Some blackening reaction to weak or ultraviolet irradiation area of visible or to determine minimum takes place at less than 50% black angry blackening is not complete circular form + Without applying ultraviolet compared with which the ultraviolet irradiation area of the blackening reaction areas are specifically of the first circular shape before region (2/3) when fully visual (MPPDD) minimum continuity style immediately black quantity