Foam type hair dying agent composition
Abstract
The present invention relates to a first composition, which is an oxidized permanent hair dying agent including an alcohol having a carbon number of 1~4, an anionic surfactant, a non-ionic surfactant, an antioxidant, an oxidized dye, a fatty alcohol having a carbon number of 14~22, a chelating agent, an alkaline chemical, and purified water. For the oxidized permanent hair dying agent of the present invention, when the first composition of the liquefied hair dying agent, and a second composition of liquefied oxidant are mixed, the generated foam does not disappear for 30 minutes or more after application to hair, and is maintained continuously, so that a user need not comb the hair meticulously during the application thereof, and can expect the convenience of dying even the innermost area of the hair by just massaging in the foam as if shampooing.

Term
No projected expiry on record.
- Priority and filed
- Published
- Today
15 claims: 2 independent, 13 dependent
- 1탄소수 1 ∼ 4의 알코올, 탄소수가 12 ∼ 16인 탄소사슬을 포함하는 알칼리금속염 또는 암모늄염 형태의 음이온 계면활성제, (C 8 -C 16 알킬)글루코사이드류, 폴리옥시(C 1 -C 6 알킬렌)라놀린알코올류, 및 폴리옥시(C 1 -C 6 알킬렌)(C 10 -C 30 알킬)에텔류로 이루어진 군으로부터 선택된 1 종 이상의 비이온 계면활성제, 산화방지제, 페닐렌디아민류, 피리딘디아민류, 페놀류, 나프톨류, 아미노페놀류, 하이드록시페놀류, 나프톨류, 페닐메칠피라졸론, 피크라민산 또는 이들의 염으로 이루어진 군으로부터 선택된 1 종 이상의 산화형 염료, 탄소수 14 ∼ 22의 지방알코올, 금속봉쇄제, 알칼리제, 및 정제수를 포함하는 산화형 영구 염모제 1제 조성물.
- 2제 1항에 있어서, 탄소수 1 ∼ 4의 알코올 10.0 ∼ 25.0 중량%, 음이온 계면활성제 0.5 ∼ 20.0 중량%, 비이온 계면활성제 5.0 ∼ 25.0 중량%, 산화방지제 0.1 ∼ 1.0 중량%, 산화형 염료 0.1 ∼ 8.0 중량%, 탄소수 14 ∼ 22의 지방알코올 1.0 ∼ 5.0 중량%, 금속봉쇄제 0.05 ∼ 0.4 중량%, 알칼리제 1.0 ∼ 15.0 중량% 및 정제수 0.6 ∼ 82.25 중량%를 포함하는 것을 특징으로 하는 산화형 영구 염모제 1제 조성물.
- 3제 1항에 있어서, 상기 탄소수 1 ∼ 4의 알코올은 에틸알코올, 이소프로필알코올 및 n-부틸알코올로 이루어진 군에서 선택된 1종 이상인 것을 특징으로 하는 산화형 영구 염모제 1제 조성물.
- 4제 1항에 있어서, 상기 음이온 계면활성제는 소듐라우릴설페이트 (Sodium Lauryl Sulfate), 포타슘라우릴설페이트 (Potassium Lauryl Sulfate), 암모늄라우릴설페이트 (Ammonium Lauryl Sulfate), 소듐미리스틸설페이트 (Sodium Myristyl Sulfate), 소듐세틸설페이트 (Sodium Cetyl Sulfate), 소듐코코일글루타메이트 (Sodium Cocoyl Glutamate), 소듐라우레스설페이트 (Sodium Laureth Sulfate) 및 암모늄라우레스설페이트 (Ammonium Laureth Sulfate)로 이루어진 군에서 선택되는 1종 이상인 것을 특징으로 하는 산화형 영구 염모제 1제 조성물.
- 5제 1항에 있어서, 상기 비이온 계면활성제는 코코글루코사이드, 폴리옥시에칠렌라놀린알코올 (POE Lanolin Alcohol), 폴리옥시에칠렌라우릴에텔 (POE Lauryl Ether), 폴리옥시에칠렌세틸에텔 (POE Cetyl Ether), 폴리옥시에칠렌스테아릴에텔 (POE Strearyl Ether), 폴리옥시에칠렌올레일에텔 (POE Oleyl Ether) 및 폴리옥시에칠렌베헤닐에텔 (POE Behenyl Ether)로 이루어진 군에서 선택되는 1종 이상이상인 것을 특징으로 하는 산화형 영구 염모제 1제 조성물.
- 6제 1항에 있어서, 상기 산화방지제는 아황산나트륨 (Sodium Sulfite), 아스코르빈산나트륨 (Sodium Ascorbate), 치오글리콜산 (Thioglycolic Acid), 치오글리콜산 암모늄 (Ammonium Thioglycolate), 아스코르빈산 (Ascorbic Acid) 및 에리소르빈산 (Erythorbic acid)으로 이루어진 군에서 선택된 1종 이상인 것을 특징으로 하는 산화형 영구 염모제 1제 조성물.
- 7제 1항에 있어서, 상기 산화형 염료는 오르토페닐렌디아민 (o-Phenylenediamine) 또는 이의 염산염 또는 황산염, 메타페닐렌디아민 (m-Phenylenediamine) 또는 이의 염산염 또는 황산염, 파라페닐렌디아민 (p-Phenylenediamine) 또는 이의 염산염 또는 황산염, N,N'-비스(2-하이드록시에칠)-파라페닐렌디아민 (N,N'-Bis(2-Hydroxyethyl)-p-Phenylenediamine) 또는 이의 염산염 또는 황산염, 2,4-디아미노페녹시에탄올(2,4-Diaminophenoxyethanol) 또는 이의 염산염 또는 황산염, 2-니트로-파라페닐렌디아민(2-Nitro-p-Phenylenediamine) 또는 이의 염산염 또는 황산염, 톨루엔-2,5-디아민 (Toluene-2,5-Diamine) 또는 이의 염산염 또는 황산염, 2,6-디아미노피리딘(2,6-Diaminopyridine) 또는 이의 염산염 또는 황산염, 오르토아미노페놀 (o-Aminophenol) 또는 이의 염산염 또는 황산염, 메타아미노페놀 (m-Aminophenol) 또는 이의 염산염 또는 황산염, 파라아미노페놀 (p-Aminophenol) 또는 이의 염산염 또는 황산염, 2-아미노-5-니트로페놀(2-Amino-5-Nitrophenol), 4-아미노-2-하이드록시톨루엔 (4-Amino-2-Hydroxytoluene) 또는 이의 염산염 또는 황산염, 1-나프톨 (1-Naphthol), 레조시놀 (Resorcinol), 페닐메칠피라졸론 (Phenyl Methyl Pyrazolone), 및 피크라민산(Picramic Acid)으로 이루어진 군에서 선택된 1종 이상인 것을 특징으로 하는 산화형 영구 염모제 1제 조성물.
- 8제 1항에 있어서, 상기 지방알코올은 미리스틸알코올 (Myristyl Alcohol), 세틸알코올 (Cetyl Alcohol), 스테아릴알코올 (Stearyl Alcohol), 올레일알코올 (Oleyl Alcohol) 및 베헤닐알코올 (Behenyl Alcohol)로 이루어진 군에서 선택된 1종 이상인 것을 특징으로 하는 산화형 영구 염모제 1제 조성물.
- 9제 1항에 있어서, 상기 금속봉쇄제는 에데트산(EDTA) 또는 이의 염인 것을 특징으로 하는 산화형 영구 염모제 1제 조성물.
- 10제 1항에 있어서, 상기 알칼리제는 암모니아, 탄산암모늄, 탄산수소암모늄, 모노(C 1 -C 6 알콜)아민류, 디(C 1 -C 6 알콜)아민류 및 트리(C 1 -C 6 알콜)아민류로 이루어진 군에서 선택된 1종 이상인 것을 특징으로 하는 산화형 영구 염모제 1제 조성물.
- 11제 1항 내지 제 10항 중에서 선택된 어느 한 항의 염모제 1제 조성물과,산화제, 안정화제, 음이온 계면 활성제, pH 조정제 및 탄소수 14 ∼ 22의 지방알코올을 포함하는 산화제 2제 조성물을 포함하는 산화형 영구 염모제.
- 12제 11항에 있어서, 상기 염모제 1제 조성물과 산화제 2제 조성물을 20 ∼ 60 :40 ∼ 80 의 중량비로 포함하는 것을 특징으로 하는 산화형 영구 염모제.
- 13제 11항에 있어서, 상기 산화제 2제 조성물은 산화제 5 ∼ 30 중량%, 안정화제 0.01 ∼ 1 중량%, 음이온 계면 활성제 1 ∼ 20 중량%, pH 조정제 0.01 ∼ 1 중량%, 지방알코올 0.1 ∼ 5 중량% 및 정제수 50 ∼ 80 중량%를 포함하는 것을 특징으로 하는 산화형 영구 염모제.
- 14제 11항에 있어서, 상기 산화제 2제 조성물은 과산화수소수 (Hydrogen Peroxide Solution), 과탄산나트륨 (Sodium Percarbonate), 과붕산나트륨 (Sodium Perborate)으로 이루어진 군에서 선택된 1종 이상의 산화제, 주석산나트륨 (Sodium Stannate), 아세트아닐리드 (Acetanilide) 및 페나세틴 (Phenacetin)로 이루어진 군에서 선택된 1종 이상의 안정화제, 탄소수 12 ∼ 16의 탄소사슬을 포함하는 알칼리금속염 또는 암모늄염 형태의 음이온 계면 활성제,인산 (Phosphoric Acid) 및 피로인산나트륨 (tetra Sodium Pyrophosphate)으로 이루어진 군에서 선택된 1종 이상의 pH 조정제, 및 탄소수 14 ∼ 22의 지방알코올을 포함하는 것을 특징으로 하는 산화형 영구 염모제.
- 15제 11항의 염모제 1제 조성물과 산화제 2제 조성물을 혼합하며 거품을 형성하여 산화형 영구 염모제를 제조하는 단계;상기 거품이 형성된 산화형 영구 염모제를 모발에 도포하는 단계;및상기 도포된 모발을 5 ∼ 30분간 방치하는 단계;를 포함하는 모발 염색 방법.
Independent claims15
93 paragraphs, as filed
Foam-type hair dye composition
p0001The present invention relates to oxidation permanent hair dye compositions stain the foam.
p0003Types of hair dyes are dyes that can be divided into three types, including large complexes salt temporary, semi-permanent dyes and permanent dyes according to the degree of fixation (fastness) to the hair.
p0004Permanent dye to which the invention pertains is composed of two compositions comprising one composition and an oxidizing agent containing oxidative dyes it has the color durability is very superior advantages over other dye also known as oxidative permanent hair dyes are used the most widely have. Oxidation permanent hair dyes is the type of powder, liquid, gel, cream or the like depending on the dosage form.
p0005Powder oxidized permanent hair dye comprises a technically cellulose water-soluble polymer such as (Hydroxyethyl Cellulose) to hit the oxidation dye and sodium carboxymethylcellulose (Sodium Carboxymethyl Cellulose) and hydroxy to increase the viscosity of the first composition to the beginning of the hair dye formulation to include an oxidizing agent of 3.0 ~ 12.0 weight% in the second composition is used by mixing the composition of claim 1 and 2 when using the compositions. However, a powdery oxidizing permanent hair dye has the inconvenience that the water-soluble polymer in powder form is hydrated (Hydration) staining was stirred for 5 to 20 minutes when using the procedure to form the proper viscosity and wait.
p00061 The liquid-phase oxidation permanent hair dye both the composition and the second composition is made of a liquid is to be sewn to the water-soluble polymer for the purpose of one of the compositions dye and a thickening (增 粘) dissolved in water together with a surfactant, using powdered without having to wait like hair dye has the advantage that can be immediately mixed with the composition of claim 1 claim 2 composition. However, liquid-phase oxidation permanent hair dyes do not have a high enough viscosity also has the disadvantage that can contaminate the skin or clothing stained down flows during treatment for short hair.
p0007The cream-phase oxidation permanent hair dyes developed in the most recent of oxidative permanent hair dye manufacture oil (Oil Phase), such as the award of such dyes and alkaline chemicals and purified water (Water Phase) and higher alcohols, fatty acids, using an emulsifier (emulsifier) as an emulsion (emulsion), and easily applied to the hair as a characteristic of soft cream, has the advantage that does not flow to the high viscosity there is most widely used in current public.
p0008However cream-phase oxidation permanent hair dyes are carefully applied during part is not a hair dye is applied in a manner that is applied to the hair to dye on the cream using a comb or brush method used, that part has not been combing is applied to does not dyed hair must do it. In particular, it is difficult to for women with long hair inside part or much of the hair thinning of the back of the head is and is applied uniformly, except for people who are not professional procedure training even if you get help from others as well is very difficult to apply himself, about 5 to 20 minutes time-consuming to apply on the hair also has a very long uncomfortable. Further oxidation dyeing principle of the permanent hair dyes using the first composition and second composition are mixed during use, the dye of the first composition is a hair react dyes between each other oxidized by oxygen molecules produced by the oxidizing agent of the second composition after mixing to represent a color, the response time of the first composition and second composition longer the dyeing effect becomes true. Therefore, if meticulously applying to the hair, while above you spend more than 5 minutes for a long time, to the first coated portion and the camp of the portion applied later not a dyed color not uniform, depending on the area of the hair after dyeing stick together the staining Disadvantages have. Furthermore, when applied in long hair is due to the weight of the large amount of hair dyeing cream applied on the hair a hair dye is applied does not fixed to the head (頭部) flows down to the bottom in order to prevent contaminating the clothing or the like around the while there is the inconvenience of individually dyed your hair with your index or fixed pins.
<p id="p0010" num="0010">The present invention is a conventional cream, or gel that is applied to the hair with a comb or brush, by staining around for plaiting is as shampoo as generated by mixing the formulation with using one composition and the second composition of the oxide-type permanent hair dyes bubble oxidation type permanent easy compared to hair dyes applied to the hair, and if the time is long hair and cuts to form a high degree of adhesion foam to uniformly dyed, light hair, without stain required for the application of the hair dye to the weight of the applied hair dye applied to the hair for its object to provide a very convenient oxidation permanent hair dyes do not flow down.</p><p id="p0011" num="0011">In addition, disappear bubbles while allowed to stand and then applying the hair dye to the hair, after application to the hair to stand the foam turned into a liquid flows down the skin and foam form of the hair dye to compensate for the disadvantages of such polluting and clothing while the hair but at least 30 minutes or more bubbles disappear after application has as its object to provide a hair dye which is maintained continuously.</p><p id="p0012" num="0012"></p>
<p id="p0013" num="0013">The present invention, in order to achieve the above object is comprising an alcohol of 1 to 4 carbon atoms, an anionic surfactant, a nonionic surfactant, an antioxidant, an oxidation-type dye, having a carbon number of 14 ~ 22 fatty alcohols, metal chelating agent, an alkali agent and purified water oxidation permanent hair dye composition of claim 1 provides.</p><p id="p0014" num="0014">The invention also provides a permanent hair dye containing oxidation the oxidized permanent hair dye composition of claim 1 as the oxidizing agent composition of claim 2.</p><p id="p0015" num="0015">In another aspect, the present invention provides a hair dyeing method using the oxidative permanent hair dyes.</p><p id="p0016" num="0016"></p>
<p id="p0017" num="0017">Oxidized permanent hair dye of the present invention is then applied to the generated upon mixing the oxidant second composition of the liquid hair dye first composition and a liquid foam hair is held in a row does not disappear for 30 minutes or more meticulously combing and a foam bar without the need to as simple as shampoo distance plaiting bubbles can expect only the convenience of being dyed to deep inside the hair.</p><p id="p0018" num="0018">Further, by regions of the shorter procedure time it is due to the foam formulation required for applying the hair dye to the hair to within 3 minutes, due to the applied time difference occurring due to the long operation time of about 5 to 30 minutes of the conventional hair dye hair the color will solve the problems such as stains that stained differently.</p><p id="p0019" num="0019"></p>
p0020Figure 1 is the image of a negatively charged double layer and the repulsion force that the anionic surfactant form a liquid film of the bubble.
p0021Figure 2 is a photo of the embodiment and the comparative example immediately after bubble discharge on the Experiment 3.
p00223 is a photograph after 5 minutes compared to the embodiment example foam discharged in Experimental Example 3.
p00234 is a photo in 10 cases foam bun discharge compared to the embodiment in Experiment 3.
p0024Figure 5 is a photograph 20 after the discharge compared to the foam bun example embodiment in Experiment 3.
p0025Figure 6 is a photograph after 30 courtesy foam bun discharge compared to the embodiment in Experiment 3.
p0026Figure 7 is a photograph after the Examples and Comparative Examples, foam discharged 40 min Example 3.
p0027Figure 8 is a photograph after the discharge compared to the embodiment example foam in Example 3 for 60 minutes.
p0029It will be described below in more detail the present invention.
p0030The present invention is an alcohol having from 1 to 4 carbon atoms, an anionic surfactant, a nonionic surfactant, an antioxidant, an oxidation-type dye, having a carbon number of 14 ~ 22 fatty alcohols, metal chelating agent, oxidized permanent hair dye containing an alkali agent and purified water 1 claim It relates to a composition.
p0031Foam is a type of particle that is colloidal gas particles dispersed in a liquid, emulsion stability of the foam (乳化 物, Emulsion) and one or depend on the presence or absence and the surface tension and gravity of more additives like.
p0032As a method for generating a bubble is a method of precipitating the gas dissolved in the solution and a method for blowing gas into the liquid from the outside. In the former case, that is to create a bubble by heating under reduced pressure or by decreasing the solubility of the gas or aerosol type applied to the product of the beer. The latter is using a non-aerosol hand pump dispenser of the type by the method adopted by the present invention to produce a foam.
p0033Bubbles generated in the liquid will come to mind to differences in the density. Liquid risen to the surface of the liquid foam is produced after a certain time is up falling liquid film thinner (流下) of the liquid due to gravity as duteo Una over time and eventually destroy bubbles.
p0034Typically, if the rich and how to increase the viscosity of the solution using a long as an additive in order to produce a foam which maintained method by blending a surfactant appropriate to lower the surface tension of the solution and the like, such as thickeners are known.
p0035The surfactant helps to lengthen the life of the foam to ease the occurrence of air bubbles by reducing the surface tension between the gas and the liquid, and a film adsorbed on the liquid film of the bubble. In particular anionic surfactants in the repulsive force between the liquid film of the bubble to form a negatively charged double layer (二 重 層) within a pair of the liquid film, a double layer has the effect of maintaining the foam being so long as the support is thinner than a certain thickness. Anionic surfactants in Figure 1 is shown in detail and the negatively charged double layer repulsive forces to form a liquid film of the bubble.
p0036Stability of the foam is dependent on the interaction between the foam and the foam surface. Destruction of the foam if the quality is the thickness of still thinner liquid film liquid film by the flow of liquid by the curvature difference of the fluid flowing down and the bubbles of the liquid by the bubble liquid film gravity inside the liquid thinned to about 5 to 15 nanometers, the liquid film is inside the gas and eventually it destroys the pressure of not winning.
p0037Taking into consideration the nature of the liquid film depending on how the sign language (水 和, Hydration) for blending the ionic surfactant as an additive to increase the stability of the liquid membrane constituting the foam using a water-soluble polymer increases the viscosity of the liquid of the liquid film maintaining the thickness of the liquid film, or using a water-soluble alkali metal salt and the like, such as how to stabilize the structure of a sign language known liquid film. However, these methods can not be considered for the gravity affecting the stability of the foam in a manner to increase the interaction of the interface to increase the foam stability of the foam.
p0038Therefore, in the present invention using the specific gravity and surface tension lowering additive that can appropriately foam the solution containing an anionic surfactant, we propose a method of increasing the stability of the foam.
p0039The additives, it is preferable to use a lower alcohol having from 1 to 4 carbon atoms. More specifically, the specific gravity may be at least one selected from the group consisting of ethyl alcohol, isopropyl alcohol, n- butyl alcohol, and the d20 0.785~0.816 range.
p0040There is no generally repulsive force of the foam is an electric double layer of liquid film occurs in an aqueous solution of alcohol, it had ever stability due to hydration, stayed factors preventing the thinning (薄 化) of the liquid film due to the flow by (流下) or curvature car a very small, easy to get lost talisman will quickly destroy the bubbles. However, if the blending function to lower the surface tension of the aqueous solution of the gateun lower alcohol is an anionic surface active agent in an appropriate ratio, jimyeonseo lower the surface tension of an aqueous solution, the generation of bubbles becomes easier, the thickness of the liquid film, but thinner is below a certain level falling (流下) by gravity as well not be thinned also by lowering the proportion of the liquid film also completed the present invention to find a new foam of ideal liquid composition that can be delayed.
p0041The amount of the lower alcohol in the carbon number of 1-4 are preferably of 10.0 ~ 25.0 wt% of the oxide permanent hair dye composition of claim 1. If and when this amount exceeds 25.0% by weight excessively lowering the surface tension of the bubbles can be destroyed rather the foam, less than 10% by weight can not see the effect of adding a lower alcohol. It may be more preferably 15 to 20% by weight.
p0042The oxidation to the anionic surfactant of the permanent hair dye composition of claim 1 may be used a surface active agent of the alkali metal salt or ammonium salt form, including the carbon chain of a carbon number of 12-16. These anionic surfactants include sodium lauryl sulfate (Sodium Lauryl Sulfate), potassium lauryl sulfate (Potassium Lauryl Sulfate), ammonium lauryl sulfate (Ammonium Lauryl Sulfate), sodium myristyl sulfate (Sodium Myristyl Sulfate), sodium cetyl sulfate ( sodium Cetyl sulfate), sodium cocoyl glutamate (sodium cocoyl glutamate), sodium laureth sulfate (sodium laureth sulfate), and ammonium laureth sulfate (ammonium laureth sulfate) to the group consisting in selecting which one or more the use of preferably it. The amount of the anionic surfactant is preferably from 0.5 to 20.0% by weight of the oxidized permanent hair dye composition of claim 1.
p0043Wherein the non-ionic surfactant may be used for oxidation of commonly used in permanent hair dye composition of claim 1. Such nonionic surfactants include (C<sub>8</sub>-C<sub>16</sub>Alkyl) glucoside, poly oxy (C<sub>One</sub>-C<sub>6</sub>Alkylene) lanolin alcohols, and polyoxyethylene (C<sub>One</sub>-C<sub>6</sub>Alkylene) (C<sub>10</sub>-C<sub>30</sub>Alkyl) may be included at least one member selected from the group consisting of the ether and the like. The present invention in use is the non-ionic surfactant is particularly coco glucoside, polyoxypropylene ethylene lanolin alcohol (POE Lanolin Alcohol), polyoxy ethylene lauryl ether (POE Lauryl Ether), polyoxy ethylene cetyl ether (POE Cetyl Ether), poly oxy-ethylene stearyl ether (POE Strearyl Ether), polyoxy ethylene oleyl ether (POE oleyl Ether), and polyoxyethylene behenyl ether ethylene (POE behenyl Ether) which is selected from a group consisting of one or more of which can be used. The amount of the nonionic surfactant is preferably 5.0 ~ 25.0% by weight of the oxidized permanent hair dye composition of claim 1.
p0044Wherein the oxidation-type dye may be used that are usually used for oxidation hair dyes of the permanent. Such as oxidation dyes are phenylene diamine, pyridine, diamines, phenols, naphthols acids, amino phenols, hydroxy phenols, naphthols acids, phenyl methyl pyrazolone, one selected from the peak lamin acid or the group consisting of salts and the like or more may be included. Oxidation dyes used in the present invention is specifically ortho-phenylenediamine (o-Phenylenediamine) or its hydrochloride or sulfate, meta-phenylenediamine (m-Phenylenediamine) or its hydrochloride or sulfate, p-phenylenediamine (p-Phenylenediamine) or its hydrochloride or sulfate, (fill to 2-hydroxy) N, N'- bis-para-phenylenediamine (N, N'-bis (2-hydroxyethyl) -p-phenylenediamine) or its hydrochloride or sulphate, 2, 4-diamino-phenoxyethanol (2,4-Diaminophenoxyethanol) or its hydrochloride or sulphate, 2-nitro-para-phenylenediamine (2-nitro-p-phenylenediamine) or its hydrochloride or sulfate, toluene-2,5-diamine (Toluene-2,5-Diamine) or its hydrochloride or sulfate, 2,6-diaminopyridine (2,6-diaminopyridine) or its hydrochloride or sulfate, the ortho-aminophenol (o-aminophenol) or its hydrochloride or sulfate, meta aminophenol (m-aminophenol) or its hydrochloride or sulfate, para-aminophenol (p-aminophenol) or its hydrochloride or sulphate, 2-amino-5-nitrophenol (2-amino-5-nitrophenol), -2-amino-4- -hydroxytoluene (4-Amino-2-hydroxytoluene) or its hydrochloride or sulphate, 1-naphthol (1-naphthol), resorcinol (resorcinol),, and peak lamin acid (phenyl methyl pyrazolone (phenyl methyl pyrazolone) it is preferred to use at least one selected from the group consisting of Picramic Acid). The amount of the oxidation dye is preferably from 0.1 to 8.0% by weight of the oxidized permanent hair dye composition of claim 1.
p0045The anti-oxidizing agent may be used those used in the conventional oxidation of permanent hair dyes. The present invention in used to be an antioxidant specifically sodium sulfite (Sodium Sulfite), sodium ascorbate (Sodium Ascorbate), Fuck glycolic acid (Thioglycolic Acid), Fuck glycolic acid ammonium (Ammonium Thioglycolate), ascorbic acid (Ascorbic Acid) and it can be used at least one member selected from the group consisting of sorbic acid Erie (Erythorbic acid). The amount of the antioxidant is preferably 0.1 to 1.0 wt% of oxidative permanent hair dye composition of claim 1.
p0046Wherein the fatty alcohol is used, a saturated or unsaturated fatty alcohol having a carbon number of 14 ~ 22. The present invention in use is the fatty alcohol is specifically myristyl alcohol (Myristyl Alcohol), Cetyl Alcohol (Cetyl Alcohol), Stearyl Alcohol (Stearyl Alcohol), oleyl alcohol (Oleyl Alcohol) and behenyl alcohol (Behenyl Alcohol) as made It can be used at least one selected from the group. The amount of the fatty alcohol is preferably from 1.0 to 5.0% by weight of the oxidized permanent hair dye composition of claim 1.
p0047The metal containment agent uses the edetate (EDTA) or a salt thereof, specifically, may be used sodium edetate (Disodium EDTA). The amount of the metal chelating agent is preferably 0.05 ~ 0.4 weight% of oxidized permanent hair dye composition of claim 1.
p0048The alkali agents include ammonia, ammonium carbonate, ammonium bicarbonate, mono (C<sub>One</sub>-C<sub>6</sub>Alcohol) amines, di (C<sub>One</sub>-C<sub>6</sub>Alcohol) amines and tri (C<sub>One</sub>-C<sub>6</sub>Alcohol) is at least one member selected from the group consisting of amines can be used. Alkali agent used in the present invention may specifically be at least one selected from the group consisting of aqueous ammonia (Ammonia Water), ammonium bicarbonate (Ammonium Bicarbonate), ethanolamine (Monoethanolamine) and triethanolamine (Triethanolamine). The amount of the alkali agent is preferably 1.0 ~ 15.0% by weight of the oxidized permanent hair dye composition of claim 1.
p0049The amount of the purified water is preferably 0.6 ~ 82.25% by weight of the oxidized permanent hair dye composition of claim 1.
p0051The invention also relates to a permanent oxidation hair dyes containing the oxidized permanent hair dye composition of claim 1 and the oxidizing agent composition of claim 2.
p0052Wherein the weight ratio of oxidation-type permanent hair dye composition of claim 1 and 2, the oxidizing agent composition of claim 20 to 60: may be 40 to 80.
p0053The oxidizer of claim 2, the composition may comprise a fatty alcohol, and purified water of an oxidizing agent, stabilizing agent, anionic surfactant, pH adjusting agent, 14 ~ 22 carbon atoms.
p0054In the oxidizing agent composition of claim 2, the oxidizing agent may be used those used in the conventional oxidation of permanent hair dyes. The oxidizing agent used in the present invention can be specifically used a hydrogen peroxide solution (Hydrogen Peroxide Solution), and sodium carbonate (Sodium Percarbonate), and at least one selected from the group consisting of sodium borate (Sodium Perborate). The oxidizing agent is preferably 5 to 30% by weight of the oxidizing agent composition of claim 2.
p0055Stabilizer composition according to claim 2 wherein the oxidizing agent may be used those used in the conventional oxidation of permanent hair dyes. Stabilizers used in the present invention can specifically be at least one selected from the group consisting of sodium tartrate (Sodium Stannate), acetanilide (Acetanilide) and phenacetin (Phenacetin). The stabilizing agent is preferably from 0.01 to 1% by weight of the oxidizing agent composition of claim 2.
p0056In addition to the anionic surfactant in the composition of claim 2 wherein the oxidizing agent may be used a surface active agent of the alkali metal salt or ammonium salt form, including the carbon chain of a carbon number of 12-16. These anionic surfactants include specifically, sodium lauryl sulfate (Sodium Lauryl Sulfate), potassium lauryl sulfate (Potassium Lauryl Sulfate), ammonium lauryl sulfate (Ammonium Lauryl Sulfate), sodium myristyl sulfate (Sodium Myristyl Sulfate), sodium cetyl sulfate (sodium Cetyl sulfate), sodium cocoyl glutamate (sodium cocoyl glutamate), sodium laureth sulfate (sodium laureth sulfate), ammonium laureth sulfate (ammonium laureth sulfate) to at least one selected the group consisting of the use may be. The anionic surfactant is preferably from 1 to 20% by weight of the oxidizing agent composition of claim 2.
p0057A pH adjusting agent can be used at least one selected from the group consisting of phosphate (Phosphoric Acid) and sodium pyrophosphate (tetra Sodium Pyrophosphate) according to claim 2 wherein the oxidizing agent composition. The pH adjusting agent is preferably from 0.01 to 1% by weight of the oxidizing agent composition of claim 2.
p0058Consisting of the oxidant 2 to fatty alcohol having a carbon number of 14 ~ 22 range in the composition are myristyl alcohol (Myristyl Alcohol), Cetyl Alcohol (Cetyl Alcohol), Stearyl Alcohol (Stearyl Alcohol) and behenyl alcohol (Behenyl Alcohol) group at least one member selected from may be used. The fatty alcohol is preferably 0.1 to 5% by weight of the oxidizing agent composition of claim 2.
p0059The amount of the purified water is preferably from 50 to 80% by weight of the oxidizing agent composition of claim 2.
p0060In addition, the present invention includes the permanent oxidative hair dyes, mixing the hair dye composition of claim 1 and claim 2 wherein the oxidizing agent composition to form a foam; The oxidation step of permanent hair dyes applied to the hair bubble is formed; And applying the step of leaving the hair 5 ~ 30 minutes; relates to a hair dyeing method comprising the.
p0061More preferably in the step of leaving the hair with the coating is possible by rapid staining for 5 ~ 20 minutes.
p0063Or less to the present invention is described in detail for specific embodiments, but the scope of the present invention is not limited to these Examples.
p0065<b>Example 1</b>
p0066As oxidation dye in oxidative hair dye compositions 1 composition permanent Para-phenylenediamine 3.0 wt.%, 1.0 wt% para-aminophenol, 4-amino-2-hydroxytoluene, and 0.2 wt.% Of resorcinol was used at 1.0% by weight of the glow , antioxidants as sodium sulfite 0.5% by weight, the metal chelating agent as edetate sodium 0.2% by weight, an anionic surfactant as sodium laureth sulfate 6.0% by weight of sodium cocoyl glutamate 4.0% by weight, a nonionic surfactant as Coco glucoside 5.0 wt. % and polyoxy ethylene (23) lauryl ether 3.0% by weight, and then to myristyl alcohol 3.5 is mixed with purified water 61.6% by weight% by weight of a fatty alcohol dissolved by heating to 75 ~ 85 ℃ cooled to 40 ~ 45 ℃, here a lower alcohol having from 1 to 4 carbon atoms as a 5.0% by weight of ethyl alcohol, and stirred after addition of the aqueous ammonia as the alkaline agent of 4.0 wt% and 2.0 wt.% monoethanolamine was prepared by oxidation-type hair dye composition of claim 1, the composition of the liquid phase.
p0067Sodium lauryl sulphate 10.0% by weight of an anionic surfactant, a fat as cetyl alcohol 1.5% by weight of alcohol, the stabilizing agent as 0.1% by weight of tartaric acid, sodium, and pH adjusting agents as phosphoric acid 0.1 weight% and fatigue the sodium phosphate 0.05% by weight purified water 71.25% by weight and after the mix warmed to 75 ~ 85 ℃ dissolved and cooled to 40 ~ 45 ℃, here by stirring and then as an oxidant was added to 17.0% by weight aqueous hydrogen peroxide (35 wt%) produced an oxidation type hair dye composition of two agents of the liquid It was.
p0069<b>Example 2</b>
p0070Synthesis was carried out as in Example 1, were prepared by changing the composition of ethyl alcohol 10.0% by weight purified water 56.6% by weight in the first composition.
p0072<b>Example 3</b>
p0073Synthesis was carried out as in Example 1, were prepared by changing the composition of ethyl alcohol 15.0% by weight purified water 51.6% by weight in the first composition.
p0075<b>Example 4</b>
p0076Synthesis was carried out as in Example 1, were prepared by changing the composition of ethyl alcohol 20.0% by weight purified water 46.6% by weight in the first composition.
p0078<b>Example 5</b>
p0079Synthesis was carried out as in Example 1, were prepared by changing the composition of ethyl alcohol 25.0% by weight purified water 41.6% by weight in the first composition.
p0081<b>Example 6</b>
p0082Synthesis was carried out as in Example 1, were prepared by changing the composition of ethyl alcohol in 30.0% by weight purified water 36.6% by weight in the first composition.
p0084<b>Comparative Example </b>
p0085Synthesis was carried out as in Example 1, was not used in the first composition of ethyl alcohol, 66.6% by weight of purified water was used. To the content of the hair dye composition in the above Examples 1 to 6 and Comparative Examples are summarized in Table 1.
p0086<tables id="tabl01" num="1"><table><tgroup cols="8"><colspec align="center" colname="col1" colnum="1" colwidth="3013" /><colspec align="center" colname="col2" colnum="2" colwidth="956" /><colspec align="center" colname="col3" colnum="3" colwidth="956" /><colspec align="center" colname="col4" colnum="4" colwidth="957" /><colspec align="center" colname="col5" colnum="5" colwidth="957" /><colspec align="center" colname="col6" colnum="6" colwidth="957" /><colspec align="center" colname="col7" colnum="7" colwidth="957" /><colspec align="center" colname="col8" colnum="8" colwidth="806" /><tbody><row><entry colname="col1"> (weight%)</entry><entry align="center" colname="col2">Example 1</entry><entry align="center" colname="col3">Example 2</entry><entry align="center" colname="col4">Example 3</entry><entry align="center" colname="col5">Example 4</entry><entry align="center" colname="col6">Example 5</entry><entry align="center" colname="col7">Example 6</entry><entry align="center" colname="col8">Comparative Example</entry></row><row><entry nameend="col8" namest="col1"><b>The hair dye composition 1</b></entry></row><row><entry colname="col1">Para-phenylenediamine</entry><entry align="center" colname="col2">3.00</entry><entry align="center" colname="col3">3.00</entry><entry align="center" colname="col4">3.00</entry><entry align="center" colname="col5">3.00</entry><entry align="center" colname="col6">3.00</entry><entry align="center" colname="col7">3.00</entry><entry align="center" colname="col8">3.00</entry></row><row><entry colname="col1">Para Amino Phenol</entry><entry align="center" colname="col2">1.00</entry><entry align="center" colname="col3">1.00</entry><entry align="center" colname="col4">1.00</entry><entry align="center" colname="col5">1.00</entry><entry align="center" colname="col6">1.00</entry><entry align="center" colname="col7">1.00</entry><entry align="center" colname="col8">1.00</entry></row><row><entry colname="col1">4-amino-2-hydroxytoluene</entry><entry align="center" colname="col2">0.20</entry><entry align="center" colname="col3">0.20</entry><entry align="center" colname="col4">0.20</entry><entry align="center" colname="col5">0.20</entry><entry align="center" colname="col6">0.20</entry><entry align="center" colname="col7">0.20</entry><entry align="center" colname="col8">0.20</entry></row><row><entry colname="col1">Resorcinol</entry><entry align="center" colname="col2">1.00</entry><entry align="center" colname="col3">1.00</entry><entry align="center" colname="col4">1.00</entry><entry align="center" colname="col5">1.00</entry><entry align="center" colname="col6">1.00</entry><entry align="center" colname="col7">1.00</entry><entry align="center" colname="col8">1.00</entry></row><row><entry colname="col1">Sodium sulfite</entry><entry align="center" colname="col2">0.50</entry><entry align="center" colname="col3">0.50</entry><entry align="center" colname="col4">0.50</entry><entry align="center" colname="col5">0.50</entry><entry align="center" colname="col6">0.50</entry><entry align="center" colname="col7">0.50</entry><entry align="center" colname="col8">0.50</entry></row><row><entry colname="col1">Sodium edetate</entry><entry align="center" colname="col2">0.20</entry><entry align="center" colname="col3">0.20</entry><entry align="center" colname="col4">0.20</entry><entry align="center" colname="col5">0.20</entry><entry align="center" colname="col6">0.20</entry><entry align="center" colname="col7">0.20</entry><entry align="center" colname="col8">0.20</entry></row><row><entry colname="col1">Sodium laureth sulfate</entry><entry align="center" colname="col2">6.00</entry><entry align="center" colname="col3">6.00</entry><entry align="center" colname="col4">6.00</entry><entry align="center" colname="col5">6.00</entry><entry align="center" colname="col6">6.00</entry><entry align="center" colname="col7">6.00</entry><entry align="center" colname="col8">6.00</entry></row><row><entry colname="col1">Sodium cocoyl glutamate</entry><entry align="center" colname="col2">4.00</entry><entry align="center" colname="col3">4.00</entry><entry align="center" colname="col4">4.00</entry><entry align="center" colname="col5">4.00</entry><entry align="center" colname="col6">4.00</entry><entry align="center" colname="col7">4.00</entry><entry align="center" colname="col8">4.00</entry></row><row><entry colname="col1">Alkyl (8-16) glucoside</entry><entry align="center" colname="col2">5.00</entry><entry align="center" colname="col3">5.00</entry><entry align="center" colname="col4">5.00</entry><entry align="center" colname="col5">5.00</entry><entry align="center" colname="col6">5.00</entry><entry align="center" colname="col7">5.00</entry><entry align="center" colname="col8">5.00</entry></row><row><entry colname="col1">Polyoxy ethylene (23) lauryl ether</entry><entry align="center" colname="col2">3.00</entry><entry align="center" colname="col3">3.00</entry><entry align="center" colname="col4">3.00</entry><entry align="center" colname="col5">3.00</entry><entry align="center" colname="col6">3.00</entry><entry align="center" colname="col7">3.00</entry><entry align="center" colname="col8">3.00</entry></row><row><entry colname="col1">Myristyl alcohol</entry><entry align="center" colname="col2">3.50</entry><entry align="center" colname="col3">3.50</entry><entry align="center" colname="col4">3.50</entry><entry align="center" colname="col5">3.50</entry><entry align="center" colname="col6">3.50</entry><entry align="center" colname="col7">3.50</entry><entry align="center" colname="col8">3.50</entry></row><row><entry colname="col1">Ethyl alcohol</entry><entry align="center" colname="col2">5.00</entry><entry align="center" colname="col3">10.00</entry><entry align="center" colname="col4">15.00</entry><entry align="center" colname="col5">20.00</entry><entry align="center" colname="col6">25.00</entry><entry align="center" colname="col7">30.00</entry><entry align="center" colname="col8">-</entry></row><row><entry colname="col1">ammonia</entry><entry align="center" colname="col2">4.00</entry><entry align="center" colname="col3">4.00</entry><entry align="center" colname="col4">4.00</entry><entry align="center" colname="col5">4.00</entry><entry align="center" colname="col6">4.00</entry><entry align="center" colname="col7">4.00</entry><entry align="center" colname="col8">4.00</entry></row><row><entry colname="col1">Monoethanolamine</entry><entry align="center" colname="col2">2.00</entry><entry align="center" colname="col3">2.00</entry><entry align="center" colname="col4">2.00</entry><entry align="center" colname="col5">2.00</entry><entry align="center" colname="col6">2.00</entry><entry align="center" colname="col7">2.00</entry><entry align="center" colname="col8">2.00</entry></row><row><entry colname="col1">Purified water</entry><entry align="center" colname="col2">61.60</entry><entry align="center" colname="col3">56.60</entry><entry align="center" colname="col4">51.60</entry><entry align="center" colname="col5">46.60</entry><entry align="center" colname="col6">41.60</entry><entry align="center" colname="col7">36.60</entry><entry align="center" colname="col8">66.60</entry></row><row><entry nameend="col8" namest="col1"><b>2 oxidant composition</b></entry></row><row><entry colname="col1">Sodium lauryl sulfate</entry><entry align="center" colname="col2">10.00</entry><entry align="center" colname="col3">10.00</entry><entry align="center" colname="col4">10.00</entry><entry align="center" colname="col5">10.00</entry><entry align="center" colname="col6">10.00</entry><entry align="center" colname="col7">10.00</entry><entry align="center" colname="col8">10.00</entry></row><row><entry colname="col1">Cetyl alcohol</entry><entry align="center" colname="col2">1.50</entry><entry align="center" colname="col3">1.50</entry><entry align="center" colname="col4">1.50</entry><entry align="center" colname="col5">1.50</entry><entry align="center" colname="col6">1.50</entry><entry align="center" colname="col7">1.50</entry><entry align="center" colname="col8">1.50</entry></row><row><entry colname="col1">Sodium tartrate</entry><entry align="center" colname="col2">0.10</entry><entry align="center" colname="col3">0.10</entry><entry align="center" colname="col4">0.10</entry><entry align="center" colname="col5">0.10</entry><entry align="center" colname="col6">0.10</entry><entry align="center" colname="col7">0.10</entry><entry align="center" colname="col8">0.10</entry></row><row><entry colname="col1">Phosphate</entry><entry align="center" colname="col2">0.10</entry><entry align="center" colname="col3">0.10</entry><entry align="center" colname="col4">0.10</entry><entry align="center" colname="col5">0.10</entry><entry align="center" colname="col6">0.10</entry><entry align="center" colname="col7">0.10</entry><entry align="center" colname="col8">0.10</entry></row><row><entry colname="col1">Sodium pyrophosphate</entry><entry align="center" colname="col2">0.05</entry><entry align="center" colname="col3">0.05</entry><entry align="center" colname="col4">0.05</entry><entry align="center" colname="col5">0.05</entry><entry align="center" colname="col6">0.05</entry><entry align="center" colname="col7">0.05</entry><entry align="center" colname="col8">0.05</entry></row><row><entry colname="col1">Hydrogen peroxide (35 wt%)</entry><entry align="center" colname="col2">17.00</entry><entry align="center" colname="col3">17.00</entry><entry align="center" colname="col4">17.00</entry><entry align="center" colname="col5">17.00</entry><entry align="center" colname="col6">17.00</entry><entry align="center" colname="col7">17.00</entry><entry align="center" colname="col8">17.00</entry></row><row><entry colname="col1">Purified water</entry><entry align="center" colname="col2">71.25</entry><entry align="center" colname="col3">71.25</entry><entry align="center" colname="col4">71.25</entry><entry align="center" colname="col5">71.25</entry><entry align="center" colname="col6">71.25</entry><entry align="center" colname="col7">71.25</entry><entry align="center" colname="col8">71.25</entry></row></tbody></tgroup></table></tables>
p0088<b>Experimental Example 1 Evaluation of transparency 1 for long-term storage of the composition</b>
p0089As a lower alcohol to assess the effect of long-term storage stability of the composition of claim 1 ethyl alcohol, the transparency of the Examples 1 to 6 and Comparative Examples 1 hair dye composition with the composition under the following conditions after storage for 30 days at -5 ℃ It was observed. The results are shown in Table 2.
p0090★★★; In 30 -5 ℃ also transparent ilgan
p0091★★ ☆; Initial turbidity one room temperature (24 ℃) becomes transparent after allowed to stand for 24 hours
p0092★ ☆☆; Initial turbidity one room temperature (24 ℃) after allowed to stand for 24 hours a translucent precipitation does not occur
p0093☆☆☆; Initial turbidity one room temperature (24 ℃) after allowed to stand for 24 hours precipitation occurs also
p0095<b>Experimental Example 2: Foam generating ability assessment</b>
p0096The above Example 1-6 and Comparative Example 1, the hair dye composition and the second composition 30: 50 were mixed in a weight ratio of the fineness of the foam was observed for the occurrence of a non-aerosol dispenser with the bubble generation method. The results are shown in Table 2. Table 2 As you can see from the case to form the foam using a liquid phase oxidation-type permanent hair dyes the bubble generating dispenser comprising an anionic surfactant foam generating ability is excellent foam compared to a composition otherwise the composition containing ethanol as the lower alcohol you can see what looks the generating force.
p0097★★★; Fine and uniform foam
p0098★★ ☆; Uniform foam
p0099★ ☆☆; Non-uniform foam
p0100☆☆☆; Bubbles do not occur
p0102<b>Example 3: Evaluation foam retention</b>
p0103The Examples 1 to 6 and Comparative Example 1 The hair dye composition and a second composition 30: without bubbles disappear at room temperature for 1 hour a 50 rate after foaming using a foam generating dispenser of non-aerosol mixture by way of It was observed that maintenance allows continuity. The results are shown in Table 2. When, as shown in Table 2 as a lower alcohol days 10.0 ~ 25.0% by weight of ethyl alcohol foam can be found enables continuity is maintained for more than 30 minutes does not disappear. Figure 2-8 shows a picture of the bubbles discharged immediately, 5, 10, 20, 30, 40, after 60 minutes.
p0104★★★; Allow 60 minutes kept the bubble does not disappear continuity
p0105★★ ☆; Allow 30 minutes kept the bubble does not disappear continuity
p0106★ ☆☆; 10 minutes maintained the continuity of the foam does not disappear so
p0107☆☆☆; Foam does not allow maintaining continuity for more than 10 minutes
p0109<b>Experimental Example 4: Surface Tension Measurement</b>
p0110A lower alcohol of the above Examples 1 to 6 and Comparative Examples were measured for surface tension of the composition according to the concentration of ethyl alcohol. Measurement of surface tension The surface tension meter was used (Model; Kruss, Germany; Easy Dyne, manufacturer). The results are shown in Table 2. Surface tension of a specific result, more to increase the concentration of ethyl alcohol in the composition, were found to decrease the surface tension. The initial concentration of ethyl alcohol showed that the surface tension decreases sharply up to about 25%, and showed a characteristic that the surface tension is reduced gradually more concentrations. When the bubbles when the surface tension is 50.0 ~ 40.0 nN / m range to be seen as a result of the Experiment 3 it can be seen that the most stable.
p0112<b>Measurement of specific gravity: Example 5</b>
p0113A specific gravity in order to observe the force of gravity on the liquid film of the bubble in accordance with the concentration of the ethyl alcohol as a lower alcohol composition of the above embodiment and Comparative Example 1-6 were measured. Measurement of specific gravity using a specific gravity based buaek (hydrometer) was measured in the condition of 20 ℃. The results are shown in Table 2. As it can be seen in Table 2 as a lower alcohol was confirmed that the specific gravity of the composition decreases with increasing content of ethyl alcohol.
p0115<b>Experimental Example 6: Evaluation salt moryeok</b>
p0116Taking the standard aunt To test the salt moryeok dyed the hair length 8.0cm, each weighing 1.0g, was allowed to stand in Example 1 to 6 and 20 after coating a hair dye composition of claim 1 prepared in Comparative Example minutes shampoo liquid the salt was observed moryeok dried after washing under running water using 2 bungan. Salt moryeok evaluation test is to measure the color difference meter (model; MINOLTA CO LTD, JAPAN; Spectrophotometer CM-508C, the manufacturer..) The brightness of each of the standard samples aunt as a reference value by using the value (L *). L * indicates the brightness value is written to the L * value is higher the value, the brighter the color sense. To test the salt moryeok results of evaluation are shown in Table 2. As can be seen in Table 2 it can be seen that Examples 1 to 6 and Comparative Example the dye be both uniform. It can be seen that does not affect the oxidation hair dyes of moryeok salt of a lower alcohol is liquid.
p0117<tables id="tabl02" num="2"><table><tgroup cols="8"><colspec align="center" colname="col1" colnum="1" colwidth="2466" /><colspec align="center" colname="col2" colnum="2" colwidth="1029" /><colspec align="center" colname="col3" colnum="3" colwidth="1029" /><colspec align="center" colname="col4" colnum="4" colwidth="1029" /><colspec align="center" colname="col5" colnum="5" colwidth="1029" /><colspec align="center" colname="col6" colnum="6" colwidth="1029" /><colspec align="center" colname="col7" colnum="7" colwidth="1029" /><colspec align="center" colname="col8" colnum="8" colwidth="919" /><tbody><row><entry align="center" colname="col1">division </entry><entry align="center" colname="col2">Example 1</entry><entry align="center" colname="col3">Example 2</entry><entry align="center" colname="col4">Example 3</entry><entry align="center" colname="col5">Example 4</entry><entry align="center" colname="col6">Example 5</entry><entry align="center" colname="col7">Example 6</entry><entry align="center" colname="col8">Comparative Example</entry></row><row><entry colname="col1">The transparency of 1</entry><entry align="center" colname="col2">★★★</entry><entry align="center" colname="col3">★★★</entry><entry align="center" colname="col4">★★★</entry><entry align="center" colname="col5">★★★</entry><entry align="center" colname="col6">★★ ☆</entry><entry align="center" colname="col7">★ ☆☆</entry><entry align="center" colname="col8">★★★</entry></row><row><entry colname="col1">Bubble generating force</entry><entry align="center" colname="col2">★★★</entry><entry align="center" colname="col3">★★★</entry><entry align="center" colname="col4">★★★</entry><entry align="center" colname="col5">★★★</entry><entry align="center" colname="col6">★★★</entry><entry align="center" colname="col7">★★★</entry><entry align="center" colname="col8">★★ ☆</entry></row><row><entry colname="col1">Foam retention</entry><entry align="center" colname="col2">★ ☆☆</entry><entry align="center" colname="col3">★★ ☆</entry><entry align="center" colname="col4">★★★</entry><entry align="center" colname="col5">★★★</entry><entry align="center" colname="col6">★★ ☆</entry><entry align="center" colname="col7">☆☆☆</entry><entry align="center" colname="col8">★ ☆☆</entry></row><row><entry colname="col1">Surface tension (nN / m)</entry><entry align="center" colname="col2">56.48</entry><entry align="center" colname="col3">50.88</entry><entry align="center" colname="col4">46.80</entry><entry align="center" colname="col5">42.56</entry><entry align="center" colname="col6">40.98</entry><entry align="center" colname="col7">38.00</entry><entry align="center" colname="col8">61.04</entry></row><row><entry colname="col1">Share (d<sub>20</sub>)</entry><entry align="center" colname="col2">.992</entry><entry align="center" colname="col3">.985</entry><entry align="center" colname="col4">.978</entry><entry align="center" colname="col5">.970</entry><entry align="center" colname="col6">.962</entry><entry align="center" colname="col7">.955</entry><entry align="center" colname="col8">1.024</entry></row><row><entry colname="col1">Moryeok salt (L *)</entry><entry align="center" colname="col2">18.60</entry><entry align="center" colname="col3">19.96</entry><entry align="center" colname="col4">19.23</entry><entry align="center" colname="col5">18.53</entry><entry align="center" colname="col6">19.02</entry><entry align="center" colname="col7">19.22</entry><entry align="center" colname="col8">19.38</entry></row></tbody></tgroup></table></tables>
2 sheets
Sheet 1 Sheet 2
Every citation, both ways
| Document | Relation | Office | Category | Cited during |
|---|---|---|---|---|
| JP2002308736A | Cites | Japan | A | International search |
| KR20040049819A | Cites | Republic of Korea | A | International search |
| JP2004189634A | Cites | Japan | A | International search |
| US7651533B2 | Cites | United States of America | A | International search |
| KR870007325A | Cites | Republic of Korea | A | International search |
6 members in 5 offices
Members6
| Document | Office | Kind | |
|---|---|---|---|
| KR101076914B1 | Republic of Korea | B1 | |
| WO2012144698A1This record | World Intellectual Property Organization (WIPO) | A1 | |
| CN102958499A | China | A | |
| JP2013532724A | Japan | A | |
| US2014026332A1 | United States of America | A1 | |
| US8685113B2 | United States of America | B2 |
7 legal events, as 3 offices reported them to INPADOC
Over the term
Point at a mark for the eventEvents
| Event | Code | Office | |
|---|---|---|---|
| Ep: pct application non-entry in european phase122 | 122 | WO | |
| Non-entry into the national phaseNENP | NENP | DE | |
| Entry into the national phaseENP | ENP | JP | |
| Ep: the epo has been informed by wipo that ep was designated in this application121 | 121 | WO | |
| Wipo information: entry into national phaseWWE | WWE | WO | |
| Wipo information: entry into national phaseWWE | WWE | WO | |
| Wipo information: entry into national phaseWWE | WWE | WO |
Numbers
- Publication
- 2012/144698
- Application
- 6402
Titles4
- English
- FOAM TYPE HAIR DYING AGENT COMPOSITION
- French
- COMPOSITION D'AGENT DE COLORATION CAPILLAIRE DE TYPE MOUSSE
- Unlabeled
- 거품형 모발 염색제 조성물
- Korean
- Foam-type hair dye composition
Classification
- CPC, 17
- A61K8/046
- A61K8/34
- A61K8/23
- A61K8/342
- A61K8/347
- A61K8/41
- A61K8/411
- A61K8/415
- A61K8/44
- A61K8/442
- A61K8/463
- A61K8/602
- A61K8/86
- A61K8/925
- A61Q5/10
- A61K9/0007
- A61Q5/00
- IPC, 3
- A61K8 34
- A61K9 46
- A61Q5 00
Designated states141
- Regional, 78
- Botswana
- Ghana
- Gambia
- Kenya
- Liberia
- Lesotho
- Malawi
- Mozambique
- Namibia
- Sudan
- Sierra Leone
- Eswatini
- United Republic of Tanzania
- Uganda
- Zambia
- Zimbabwe
- Armenia
- Azerbaijan
- Belarus
- Kyrgyzstan
- Kazakhstan
- Republic of Moldova
- Russian Federation
- Tajikistan
and 54 moreShow fewer
- Turkmenistan
- Albania
- Austria
- Belgium
- Bulgaria
- Switzerland
- Cyprus
- Czechia
- Germany
- Denmark
- Estonia
- Spain
- Finland
- France
- United Kingdom
- Greece
- Croatia
- Hungary
- Ireland
- Iceland
- Italy
- Lithuania
- Luxembourg
- Latvia
- Monaco
- North Macedonia
- Malta
- Netherlands (Kingdom of the)
- Norway
- Poland
- Portugal
- Romania
- Serbia
- Sweden
- Slovenia
- Slovakia
- San Marino
- Türkiye
- Burkina Faso
- Benin
- Central African Republic
- Congo
- Côte d’Ivoire
- Cameroon
- Gabon
- Guinea
- Equatorial Guinea
- Guinea-Bissau
- Mali
- Mauritania
- Niger
- Senegal
- Chad
- Togo
- National, 63
- United Arab Emirates
- Antigua and Barbuda
- Angola
- Australia
- Bosnia and Herzegovina
- Barbados
- Bahrain
- Brazil
- Belize
- Canada
- Chile
- China
- Colombia
- Costa Rica
- Cuba
- Dominica
- Dominican Republic
- Algeria
- Ecuador
- Egypt
- Grenada
- Georgia
- Guatemala
- Honduras
and 39 moreShow fewer
- Indonesia
- Israel
- India
- Japan
- Comoros
- Saint Kitts and Nevis
- Democratic People’s Republic of Korea
- Lao People’s Democratic Republic
- Saint Lucia
- Sri Lanka
- Libya
- Morocco
- Montenegro
- Madagascar
- Mongolia
- Mexico
- Malaysia
- Nigeria
- Nicaragua
- New Zealand
- Oman
- Peru
- Papua New Guinea
- Philippines
- Qatar
- Seychelles
- Singapore
- Sao Tome and Principe
- El Salvador
- Syrian Arab Republic
- Thailand
- Tunisia
- Trinidad and Tobago
- Ukraine
- United States of America
- Uzbekistan
- Saint Vincent and the Grenadines
- Viet Nam
- South Africa