Water-in-oil emulsion cosmetics
A water-in-oil emulsion cosmetic with hydrogenated polyisobutene, volatile silicone oil, and silicone surfactants addresses stability and feel issues, offering stable and smooth UV protection.
Patent Information
- Application Number
- JP2021064179
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2021-04-05
- Publication Date
- 2025-12-22
- Estimated Expiration
- 2041-04-05
AI Technical Summary
Existing water-in-oil emulsion cosmetics face challenges in maintaining formulation stability and providing a smooth, non-sticky feel when incorporating both ultraviolet absorbers and metal oxides, as they often result in reduced emulsion stability and impaired feel due to poor dispersibility and powdery texture.
A water-in-oil emulsion cosmetic formulation comprising hydrogenated polyisobutene, volatile silicone oil, silicone surfactants, glycerin fatty acid esters, sorbitan fatty acid esters, and metal oxides, which improves emulsion stability, dispersibility, and skin adhesion while maintaining a smooth feel.
The formulation achieves excellent emulsion stability, inhibits aggregation, and provides a pleasant, non-sticky feel, ensuring effective ultraviolet protection and adhesion to the skin.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present invention relates to a water-in-oil emulsion cosmetic containing an ultraviolet absorber and a metal oxide. The present invention also relates to a method for producing a water-in-oil emulsion cosmetic containing an ultraviolet absorber and a metal oxide. [Background technology]
[0002] Water-in-oil (W / O) emulsion cosmetics are known as one type of emulsion used in cosmetics. For water-in-oil emulsion cosmetics, the stability of the formulation over time (e.g., emulsion stability and aggregation inhibition) and the feel upon application (e.g., smoothness, non-stickiness, adhesion to skin, etc.) are important, but when UV absorbers and metal oxides are combined, it is not easy to satisfy all of these requirements. For example, the technologies described in Patent Documents 1 and 2 below are known as examples of water-in-oil emulsion cosmetics.
[0003] Patent Document 1 discloses a water-in-oil emulsion cosmetic that combines a hydrophobically treated metal oxide with polyhydroxystearic acid, a volatile hydrocarbon oil, and the like. However, when an ultraviolet absorber is added to the cosmetic of Patent Document 1, the smooth feel during use is likely to be impaired and emulsion stability may be reduced. Furthermore, Patent Document 2 discloses a water-in-oil sunscreen cosmetic that combines a specific solid ultraviolet absorber with a specific polar oil, a volatile hydrocarbon oil, and the like. However, when a metal oxide is added to the cosmetic of Patent Document 2, the dispersibility of the metal oxide is likely to be poor and the smooth feel during use is likely to be impaired due to powdery texture. [Prior art documents] [Patent documents]
[0004] [Patent Document 1] Japanese Patent Application Laid-Open No. 2014-172837 [Patent Document 2] Patent No. 6567755 Summary of the Invention [Problem to be solved by the invention]
[0005] The present invention aims to provide a water-in-oil emulsion cosmetic containing an ultraviolet absorber and a metal oxide, which has excellent formulation stability (emulsion stability, aggregation inhibition, etc.) and a good feel when used (smoothness, non-stickiness, adhesion to skin, etc.). [Means for solving the problem]
[0006] The present invention includes, but is not limited to, the following embodiments. [1] The following components (A) to (F): (A) one or more substances selected from the group consisting of hydrogenated polyisobutene having an average molecular weight of 200 or less and linear saturated hydrocarbons having 6 to 13 carbon atoms; (B) volatile silicone oil, (C) a silicone surfactant, (D) one or more substances selected from the group consisting of glycerin fatty acid esters, sorbitan fatty acid esters, and phospholipids; (E) an ultraviolet absorber, and (F) metal oxides, A water-in-oil emulsion cosmetic containing the above (hereinafter referred to as "the emulsion cosmetic"). [2] The water-in-oil emulsion cosmetic according to [1], wherein component (A) is one or more substances selected from the group consisting of hydrogenated polyisobutene, undecane, and tridecane, each having an average molecular weight of 200 or less. [3] The water-in-oil emulsion cosmetic according to [1] or [2], wherein the content of component (A) is 1 to 25 mass% based on the total amount of the water-in-oil emulsion cosmetic. [3-1] The water-in-oil emulsion cosmetic according to any one of [1] to [3], wherein the total content of component (A) and component (B) is 2 to 30 mass% based on the total amount of the water-in-oil emulsion cosmetic. [4] The water-in-oil emulsion cosmetic according to any one of [1] to [3], wherein the mass ratio of the contents of component (C) and component (D) ((C) / (D)) is 0.2 to 20. [5] The water-in-oil emulsion cosmetic according to any one of [1] to [4], wherein at least one substance of component (C) is a polyether-modified silicone represented by the following formula (I): [ka] [In the formula, R 1 represents a hydrogen atom or a linear or branched saturated hydrocarbon group having 1 to 30 carbon atoms; R 2 represents a linear or branched saturated hydrocarbon group having 1 to 30 carbon atoms; R 3 each independently represents a hydrogen atom or a linear or branched saturated hydrocarbon group having 1 to 30 carbon atoms; p is an integer of 0 to 100, m is an integer of 1 to 15, n is an integer of 0 to 15, q is an integer of 0 to 200, a is an integer of 0 to 15, b is an integer of 0 to 200, c is an integer of 0 to 200 (with the proviso that b+c is within the range of 2 to 200), g is an integer of 1 to 5, and h is an integer of 0 to 100. [5-1] The water-in-oil emulsion cosmetic according to any one of [1] to [4], wherein at least one substance of component (C) is a polyoxyalkylene-modified organopolysiloxane having an organopolysiloxane group with a linear or branched structure as the main skeleton and polyoxyalkylene groups in the side chains. [5-2] Component (C) is (C1) a silicone branched polyoxyalkylene-modified organopolysiloxane having a branched organopolysiloxane group as the main backbone and polyoxyalkylene groups in the side chains, (C2) a silicone branched polyoxyalkylene-alkyl-co-modified organopolysiloxane having a branched organopolysiloxane group as the main backbone and polyoxyalkylene groups and alkyl groups having 4 or more carbon atoms in the side chains, and (C3) a straight-chain organopolysiloxane The water-in-oil emulsion cosmetic according to any one of [1] to [4], wherein the component (a) is one or more substances selected from the group consisting of polyoxyalkylene-modified organopolysiloxanes having an organopolysiloxane group as the main skeleton and polyoxyalkylene groups in the side chains, and polyoxyalkylene-alkyl-co-modified organopolysiloxanes having an organopolysiloxane group with a (C4) linear structure as the main skeleton and polyoxyalkylene groups and alkyl groups having 4 or more carbon atoms in the side chains. [6] The water-in-oil emulsion cosmetic according to any one of [1] to [5], wherein component (C) is one or more substances selected from the group consisting of lauryl PEG-9 polydimethylsiloxyethyl dimethicone, PEG-9 polydimethylsiloxyethyl dimethicone, PEG-10 dimethicone, and cetyl PEG / PPG-10 / 1 dimethicone. [7] The water-in-oil emulsion cosmetic according to any one of [1] to [6], wherein at least one substance of component (D) is a sorbitan fatty acid ester. [8] The water-in-oil emulsion cosmetic according to any one of [1] to [7], wherein component (E) is one or more substances selected from the group consisting of ethylhexyl methoxycinnamate, bisethylhexyloxyphenol methoxyphenyl triazine, diethylaminohydroxybenzoyl hexyl benzoate, and polysilicone-15. [9] The water-in-oil emulsion cosmetic according to any one of [1] to [8], wherein the content of component (F) is 5% by mass or more based on the total amount of the water-in-oil emulsion cosmetic.
[10] The water-in-oil emulsion cosmetic according to any one of [1] to [9], wherein component (F) is one or two substances selected from the group consisting of titanium oxide and zinc oxide.
[11] The water-in-oil emulsion cosmetic according to any one of [1] to
[10] , wherein component (B) is one or more substances selected from the group consisting of dimethylpolysiloxane, methyltrimethicone, and decamethylcyclopentasiloxane.
[12] The following components (A) to (F): (A) one or more substances selected from the group consisting of hydrogenated polyisobutene having an average molecular weight of 200 or less and linear saturated hydrocarbons having 6 to 13 carbon atoms; (B) volatile silicone oil, (C) a silicone surfactant, (D) one or more substances selected from the group consisting of glycerin fatty acid esters, sorbitan fatty acid esters, and phospholipids; (E) an ultraviolet absorber, and (F) Metal oxide A method for producing a water-in-oil emulsion cosmetic (hereinafter referred to as "the present production method"), comprising mixing the above ingredients. [Effects of the Invention]
[0007] According to the present invention, it is possible to provide a water-in-oil emulsion cosmetic containing an ultraviolet absorber and a metal oxide, which has excellent formulation stability (emulsion stability, aggregation inhibition, etc.) and a good feel when used (smoothness, non-stickiness, adhesion to skin, etc.). DETAILED DESCRIPTION OF THE INVENTION
[0008] The water-in-oil emulsion cosmetic of the present invention comprises the following components (A) to (F): (A) one or more substances selected from the group consisting of hydrogenated polyisobutene having an average molecular weight of 200 or less and linear saturated hydrocarbons having 6 to 13 carbon atoms; (B) volatile silicone oil, (C) a silicone surfactant, (D) one or more substances selected from the group consisting of glycerin fatty acid esters, sorbitan fatty acid esters, and phospholipids; (E) an ultraviolet absorber, and (F) metal oxides, The present emulsion cosmetic is a cosmetic composition. In this specification, (A) to (F) are symbols for the components, and hereinafter may be referred to as component (A), etc.
[0009] Component (A) Component (A) is one or more substances selected from the group consisting of hydrogenated polyisobutenes with an average molecular weight of 200 or less and linear saturated hydrocarbons with 6 to 13 carbon atoms. These are volatile oils (particularly hydrocarbons). The incorporation of a volatile oil can impart a smooth, less sticky feel to the emulsion cosmetic. Furthermore, the incorporation of component (A) can improve the emulsion stability and dispersibility (anti-aggregation) of metal oxides in the emulsion cosmetic.
[0010] Component (A), hydrogenated polyisobutene, is known as a compound obtained by polymerizing isobutene and then hydrogenating it. The hydrogenated polyisobutene contained in this emulsion cosmetic has an average molecular weight of 200 or less. Such hydrogenated polyisobutene is volatile, imparting a good feel to the cosmetic and contributing to improving the emulsion stability of the cosmetic and the dispersibility of metal oxides. The hydrogenated polyisobutene preferably has an average molecular weight of 100 or more. That is, the average molecular weight of hydrogenated polyisobutene is more preferably 100 to 200. Here, the average molecular weight of hydrogenated polyisobutene refers to the number average molecular weight. The number average molecular weight (polystyrene equivalent) can be measured using GPC (gel permeation chromatography).
[0011] Specifically, the linear saturated hydrocarbons having 6 to 13 carbon atoms include hexane, heptane, octane, nonane, decane, undecane, dodecane, and tridecane. The linear saturated hydrocarbons having 6 to 13 carbon atoms in component (A) may be one or more (e.g., two, three, four, or five) selected from hexane, heptane, octane, nonane, decane, undecane, dodecane, and tridecane. Preferably, the linear saturated hydrocarbons having 6 to 13 carbon atoms in component (A) are one or both of undecane and tridecane. In this case, the smooth feel of the emulsion cosmetic can be effectively improved. When undecane and tridecane are included (hereinafter, a mixture of undecane and tridecane will be referred to as "undecane-tridecane"), the mixing ratio thereof may be, for example, 1:1 to 9:1 by mass, but is not limited thereto. Thus, in one embodiment, component (A) is preferably one or more substances selected from the group consisting of hydrogenated polyisobutene, undecane, and tridecane, each having an average molecular weight of not more than 200. This improves emulsion stability and metal oxide dispersibility (aggregation inhibition), and also makes it easier to impart a smooth, less sticky feel to the present emulsion cosmetic.
[0012] The content of component (A) in the present emulsion cosmetic (the total amount if multiple components are present) is not limited to, but from the viewpoints of obtaining a good feel in use and emulsion stability, it can be 0.5 to 30% by mass, preferably 1 to 25% by mass, of the total amount of the present emulsion cosmetic (100% by mass). Furthermore, the content of component (A) is preferably 1 to 20% by mass, more preferably 2 to 15% by mass, and even more preferably 4 to 10% by mass, of the total amount of the present emulsion cosmetic. In this case, it is possible to impart a non-sticky, smooth feel in use, resulting in a cosmetic that is pleasant to use.
[0013] Ingredient (B) Component (B) is a volatile silicone oil. By including component (B), the deterioration of the feel during use that can occur due to the incorporation of ultraviolet absorbers or metal oxides can be suppressed, thereby imparting a smooth feel to the present emulsion cosmetic. Examples of volatile silicone oils include, but are not limited to, dimethylpolysiloxane, methyltrimethicone, and decamethylcyclopentasiloxane. These may be used alone or in combination of two or more substances. In this specification, "volatile" refers to the property of volatilizing at temperatures normally used in cosmetics (e.g., 10 to 30°C), meaning the property of volatilizing at room temperature (specifically, 25°C). Specifically, this refers to a silicone oil with a boiling point of 250°C or less under 1 atmosphere. The boiling point of volatile silicone oil is preferably 150°C or higher. Among the components exemplified above, polymerized compounds can become volatile by adjusting the degree of polymerization. For example, dimethylpolysiloxane has a viscosity (particularly, kinematic viscosity) of 1 to 2 mm at 25°C. 2 / sec is preferred because it has volatility. The viscosity in this case conforms to the viscosity measurement method stipulated in Method 1 of the "Standards for Quasi-drug Ingredients 2006 (Quasi-drug Standards)." However, the value is measured at 25°C using a modified Ostwald capillary viscometer.
[0014] The content of component (B) in the present emulsion cosmetic is not limited to this, but from the viewpoint of obtaining a good feeling when used, it can be 0.5 to 30% by mass, preferably 1 to 25% by mass, and more preferably 3 to 15% by mass, relative to the total amount of the present emulsion cosmetic (100% by mass).
[0015] Furthermore, the total content of components (A) and (B) in the present emulsion cosmetic is preferably 2 to 30% by mass relative to the total amount (100% by mass) of the present emulsion cosmetic. Components (A) and (B) are volatile oils, and by having the total content of these components within this range, a smoother feel can be achieved. The total content of components (A) and (B) is preferably 3 to 25% by mass, more preferably 5 to 20% by mass. Furthermore, the mass ratio of components (A) to (B) is preferably 1:30 to 25:1, more preferably 1:25 to 20:1.
[0016] Ingredients (C) Component (C) is a silicone surfactant, and the inclusion of component (C) improves the emulsion stability of the present emulsified cosmetic. In particular, when a silicone oil is blended as in component (B), the inclusion of a silicone surfactant significantly improves emulsion stability. The silicone surfactant is a copolymer containing at least an organopolysiloxane group and a hydrophilic group. Examples of silicone surfactants include, but are not limited to, polyether-modified silicones having polyether chains as hydrophilic groups and polyglycerin-modified silicones having polyglycerin chains as hydrophilic groups. The silicone surfactant may be a graft copolymer having an organopolysiloxane group as the main chain and hydrophilic groups on the side chains, or a linear block copolymer or crosslinked polymer in which organopolysiloxane groups and hydrophilic groups are alternately bonded. The organopolysiloxane group may be linear or branched, or may be co-modified with an organic group such as an alkyl group or a fluorine-substituted alkyl group. These may be used alone or in combination of two or more substances.
[0017] At least one of the components (C) is preferably a polyether-modified silicone represented by the following formula (I). [ka] [In the formula, R 1 represents a hydrogen atom or a linear or branched saturated hydrocarbon group having 1 to 30 carbon atoms; R 2represents a linear or branched saturated hydrocarbon group having 1 to 30 carbon atoms; R 3 each independently represents a hydrogen atom or a linear or branched saturated hydrocarbon group having 1 to 30 carbon atoms; p is an integer of 0 to 100, m is an integer of 1 to 15, n is an integer of 0 to 15, q is an integer of 0 to 200, a is an integer of 0 to 15, b is an integer of 0 to 200, c is an integer of 0 to 200 (with the proviso that b+c is within the range of 2 to 200), g is an integer of 1 to 5, and h is an integer of 0 to 100. (Note that for b and c, b+c is 2 or greater, so the cases where both b and c are 0, b is 1 and c is 0, and b is 0 and c is 1 are excluded. Therefore, when b is 0, c is 2 or greater; when b is 1, c is 1 or greater; when c is 0, b is 2 or greater; and when c is 1, b is 1 or greater.)
[0018] Alternatively, at least one substance of component (C) is preferably a polyoxyalkylene-modified organopolysiloxane having a main skeleton of organopolysiloxane groups having a linear or branched structure and polyoxyalkylene groups in the side chains. Furthermore, component (C) is more preferably one or more substances selected from the group consisting of (C1) silicone-branched polyoxyalkylene-modified organopolysiloxanes having a branched organopolysiloxane group as the main backbone and polyoxyalkylene groups in the side chains, (C2) silicone-branched polyoxyalkylene-alkyl-co-modified organopolysiloxanes having a branched organopolysiloxane group as the main backbone and having polyoxyalkylene groups and alkyl groups having 4 or more carbon atoms in the side chains, (C3) polyoxyalkylene-modified organopolysiloxanes having a linear organopolysiloxane group as the main backbone and polyoxyalkylene groups in the side chains, and (C4) polyoxyalkylene-alkyl-co-modified organopolysiloxanes having a linear organopolysiloxane group as the main backbone and having polyoxyalkylene groups and alkyl groups having 4 or more carbon atoms in the side chains.
[0019] In formula (I), n may be an integer of 1 or more (i.e., 1 to 15). In this case, the polyether-modified silicone of formula (I) has an organopolysiloxane group with a branched structure as the main skeleton and has polyoxyalkylene groups in the side chains, and corresponds to the silicone-branched polyoxyalkylene-modified organopolysiloxane of (C1) above. Alternatively, in formula (I), n may be an integer of 1 or more (i.e., 1 to 15), p may be an integer of 1 or more (i.e., 1 to 100), and R 2 Alternatively, n may be 0 and p may be 0. In this case, the polyether-modified silicone of formula (I) has a main skeleton of an organopolysiloxane group having a branched structure and polyoxyalkylene groups and alkyl groups having 4 to 30 carbon atoms in the side chains, and corresponds to the silicone-branched polyoxyalkylene-alkyl co-modified organopolysiloxane of (C2) above. Alternatively, in formula (I), n may be 0 and p may be 0. In this case, the polyether-modified silicone of formula (I) has a main skeleton of an organopolysiloxane group having a linear structure and polyoxyalkylene groups in the side chains, and corresponds to the polyoxyalkylene-modified organopolysiloxane of (C3) above. Alternatively, in formula (I), n may be 0 and p may be an integer of 1 or greater (i.e., 1 to 100), and R 2 However, it may be a linear or molecular chain saturated hydrocarbon group having 4 to 30 carbon atoms. In this case, the polyether-modified silicone of formula (I) has a linear organopolysiloxane group as the main skeleton, with polyoxyalkylene groups and alkyl groups having 4 to 30 carbon atoms in the side chains, and corresponds to the polyoxyalkylene-alkyl co-modified organopolysiloxane of (C4) above.
[0020] In formula (I), R 1 is preferably a hydrogen atom or a linear or branched saturated hydrocarbon group having 1 to 15 carbon atoms, more preferably a hydrogen atom or a linear saturated hydrocarbon group having 1 to 10 carbon atoms. 2 is preferably a linear or branched saturated hydrocarbon group having 4 to 25 carbon atoms, more preferably a linear or branched saturated hydrocarbon group having 6 to 20 carbon atoms. 3are each independently preferably a hydrogen atom or a linear or branched saturated hydrocarbon group having 1 to 15 carbon atoms, more preferably a hydrogen atom or a linear saturated hydrocarbon group having 1 to 10 carbon atoms. p is preferably 0 or an integer from 2 to 80, more preferably 0 or an integer from 4 to 50. m is preferably an integer from 1 to 10. n is preferably 0 or an integer from 1 to 10, more preferably 0 or an integer from 1 to 5. q is preferably an integer from 1 to 100. a is preferably 0 or an integer from 1 to 10. b is preferably 0, 1, or an integer from 2 to 100, c is preferably 0 or an integer from 1 to 100, and b+c is preferably within the range of 2 to 100. g is preferably an integer from 1 to 4. And h is preferably 0 or an integer from 1 to 50.
[0021] Examples of the silicone branched polyoxyalkylene-modified organopolysiloxane (C1) include, but are not limited to, PEG-9 polydimethylsiloxyethyl dimethicone. Examples of the silicone branched polyoxyalkylene-alkyl co-modified organopolysiloxane (C2) include, but are not limited to, lauryl PEG-9 polydimethylsiloxyethyl dimethicone. Examples of the polyoxyalkylene-modified organopolysiloxane (C3) include, but are not limited to, PEG-10 dimethicone, PEG-9 dimethicone, PEG-11 methyl ether dimethicone, and the like. Examples of the polyoxyalkylene-alkyl co-modified organopolysiloxane (C4) include, but are not limited to, cetyl PEG / PPG-10 / 1 dimethicone.
[0022] Component (C) is preferably one or more substances selected from the group consisting of lauryl PEG-9 polydimethylsiloxyethyl dimethicone, PEG-9 polydimethylsiloxyethyl dimethicone, PEG-10 dimethicone, and cetyl PEG / PPG-10 / 1 dimethicone, which further improves the emulsion stability of the present emulsion cosmetic.
[0023] The content of component (C) (the total amount if there are multiple components) is not limited to this, but from the perspective of improving emulsion stability, it can be 0.1 to 5 mass %, preferably 0.2 to 4.5 mass %, and more preferably 0.4 to 4 mass %, relative to the total amount of the emulsion cosmetic (100 mass %).
[0024] Ingredients (D) Component (D) is one or more substances selected from the group consisting of glycerin fatty acid esters, sorbitan fatty acid esters, and phospholipids. Component (D) may be one substance selected from the group consisting of glycerin fatty acid esters, sorbitan fatty acid esters, and phospholipids, or a combination of glycerin fatty acid esters and sorbitan fatty acid esters, a combination of sorbitan fatty acid esters and phospholipids, or a combination of glycerin fatty acid esters and phospholipids. It may also contain all of glycerin fatty acid esters, sorbitan fatty acid esters, and phospholipids. The inclusion of one or more substances selected from glycerin fatty acid esters, sorbitan fatty acid esters, and phospholipids can improve emulsion stability and metal oxide dispersibility (aggregation inhibition). Furthermore, when component (D) is combined with component (F) and a powder, it improves the dispersibility of component (F) and the powder, allowing them to adhere uniformly to the skin, thereby enhancing the skin adhesion of the emulsion cosmetic.
[0025] Glycerin fatty acid esters are esters of fatty acids and glycerin. They are also called fatty acid glyceryls. Examples of glycerin fatty acid esters include, but are not limited to, polyglyceryl-2 isostearate, polyglyceryl-2 diisostearate, polyglyceryl-2 triisostearate, polyglyceryl-10 laurate, and glyceryl stearate. As the fatty acid glyceryl, polyglyceryl-2 isostearate is particularly preferred.
[0026] Sorbitan fatty acid esters are esters of sorbitan and fatty acids. Examples of sorbitan fatty acid esters include, but are not limited to, sorbitan sesquiisostearate, sorbitan sesquioleate, sorbitan isostearate, sorbitan palmitate, and sorbitan monooleate.
[0027] The phospholipid may be an egg yolk-derived phospholipid, a soybean-derived phospholipid, etc. Examples of the phospholipid include, but are not limited to, lecithin, hydrogenated lecithin, hydrogenated soybean phospholipid, etc. The phospholipid may contain phosphatidylcholine.
[0028] At least one of the components (D) is preferably a sorbitan fatty acid ester, which can effectively improve emulsion stability.
[0029] The content of component (D) (the total amount if there are multiple components) is not limited to this, but from the perspective of improving emulsion stability, it can be 0.1 to 4.5 mass% relative to the total amount of the emulsion cosmetic (100 mass%), preferably 0.2 to 2 mass%, and more preferably 0.4 to 2 mass%.
[0030] Here, the mass ratio ((C) / (D)) of the contents of component (C) to component (D) is preferably 0.2 to 20. By including the specific amount of component (D) in combination with component (C), it is possible to suppress the decrease in emulsion stability caused by the incorporation of an ultraviolet absorber and the decrease in dispersibility when a metal oxide is incorporated, thereby obtaining an emulsion cosmetic with excellent stability (emulsion stability and aggregation inhibition). From the viewpoint of enhancing these effects, this mass ratio ((C) / (D)) is more preferably 0.5 to 15.
[0031] Ingredient (E) The present emulsion cosmetic contains an ultraviolet absorber as component (E). In the present invention, by blending component (E) in combination with the above-mentioned components (A) to (D), it is possible to obtain an emulsion cosmetic that is less susceptible to a decrease in stability due to the blending of component (E), has excellent usability, such as smoothness, and has a high ultraviolet protection effect. Therefore, the present emulsion cosmetic is suitable for cosmetics that protect the skin from ultraviolet (UV) rays (e.g., sunscreens, etc.). Solid ultraviolet absorbers are preferred as the ultraviolet absorber. A solid ultraviolet absorber can achieve a high ultraviolet absorption effect. Here, "solid" refers to a state that is solid at normal temperatures (e.g., 10 to 30°C) when the cosmetic is used, and is solid under conditions such as room temperature (specifically, 25°C). In the formulation of the present emulsion cosmetic, the ultraviolet absorber may be present in a state dissolved in an oily component, in a state dissolved in an aqueous component, or may remain solid, such as in particulate form. Examples of the ultraviolet absorber include organic ultraviolet absorbers, but are not limited to these. Examples include ethylhexyl methoxycinnamate, bisethylhexyloxyphenol methoxyphenyl triazine, diethylaminohydroxybenzoyl hexyl benzoate, polysilicone-15, methylenebisbenzotriazolyltetramethylbutylphenol, octocrylene, dimethicone diethylbenzalmalonate, t-butylmethoxydibenzoylmethane, ethylhexyl triazone, oxybenzone-3, phenylbenzimidazole sulfonic acid, homosalate, and ethylhexyl salicylate.
[0032] Component (E) is preferably one or more selected from the group consisting of ethylhexyl methoxycinnamate, bisethylhexyloxyphenol methoxyphenyl triazine, diethylaminohydroxybenzoyl hexyl benzoate, and polysilicone-15, which provides excellent UV absorption and makes it possible to obtain a more stable formulation.
[0033] The content of component (E) (the total amount if there are multiple components) is not limited to this, but from the perspective of obtaining an ultraviolet absorption effect, it can be 1 to 20 mass % relative to the total amount of the present emulsified cosmetic (100 mass %), preferably 2 to 10 mass %, and more preferably 5 to 10 mass %.
[0034] Ingredient (F) Component (F) is a metal oxide. The metal oxide may be in powder form, but is usually blended in the present emulsion cosmetic in the form of metal oxide particles. The metal oxide may function as an ultraviolet ray scattering agent. In this case, the ultraviolet ray scattering effect can be exerted, thereby further providing the effect of protecting the skin from ultraviolet rays. The metal oxide may also be a pigment. For example, the metal oxide can be used as a pigment that imparts a color such as white. Alternatively, it can be used, for example, as an extender pigment. In the present emulsion cosmetic, the metal oxide is preferably present in a dispersed state, and blending the above components (A) to (D) in combination can increase the dispersibility of the metal oxide and suppress aggregation.
[0035] Examples of metal oxides include, but are not limited to, titanium oxide, zinc oxide, cerium oxide, zirconium oxide, iron oxide, aluminum oxide, magnesium oxide, chromium oxide, and red iron oxide. The metal oxide may be surface-treated with a surface treatment agent, such as a silicone compound, an organic compound, an inorganic salt, or a fluorine compound. When a surface-treated metal oxide is used, the total mass, including the surface treatment agent, is considered to be the mass of the metal oxide in component (F). Preferably, the metal oxide in component (F) is one or two selected from the group consisting of titanium oxide and zinc oxide. These metal oxides can enhance functions such as UV scattering and / or pigment properties. Furthermore, these metal oxides can provide cosmetics with good dispersibility. When a particulate metal oxide is used, the average particle size of the metal oxide is not limited, but is preferably in the range of, for example, 10 to 10,000 nm.
[0036] Metal oxides may also be included as coating components for particles such as inorganic particles, and in the present emulsion cosmetic, such metal oxides are also included in component (F). Examples of such metal oxide-coated particles include metal oxide-coated mica and metal oxide-coated borosilicate (Ca / Al), and specific examples include iron oxide-coated mica, titanium oxide-coated mica, and titanium oxide / tin oxide-coated borosilicate (Ca / Al).
[0037] The content of component (F) (the total amount when multiple components are present) is not limited thereto, but from the viewpoint of exhibiting the functions of the metal oxide (e.g., UV scattering properties, pigment properties), it can be 1 to 30% by mass, preferably 3 to 25% by mass, and more preferably 5 to 20% by mass, relative to the total amount of the emulsion cosmetic (100% by mass). In one embodiment, the content of component (F) is preferably 5% by mass or more relative to the total amount of the emulsion cosmetic. In this case, the functions of the metal oxide (e.g., UV scattering properties, pigment properties) can be more effectively exhibited. In particular, the content of the metal oxide is preferably 5 to 20% by mass. In the present invention, by blending component (F) in combination with the above components (A) to (D), it is possible to obtain an emulsion cosmetic that has good emulsion stability, inhibits aggregation, and is excellent in usability, such as smoothness, even when the blending amount of component (F) is relatively high (e.g., 5% by mass or more).
[0038] Other ingredients: Water The present emulsion cosmetic may contain water as an additional component. In the case of a water-in-oil emulsion cosmetic, the emulsion is in the form of a water-in-oil (W / O) emulsion, with the oil phase being the external phase and the aqueous phase being the internal phase. The aqueous phase may contain water-soluble substances and hydrophilic substances. The water is not limited to these, but purified water is preferably used.
[0039] The water content in the present water-in-oil emulsion cosmetic is not limited to, but can be 1 to 90% by mass, preferably 10 to 80% by mass, more preferably 20 to 70% by mass, and even more preferably 30 to 60% by mass. Furthermore, depending on the form of the preparation, the water content may be 50% by mass or less.
[0040] Other ingredients The present emulsion cosmetic may contain various components that can be formulated as water-in-oil emulsion cosmetics, such as oils other than components (A) and (B), alcohols, moisturizers, thickeners, powders, pigments, film-forming agents, pH adjusters, anti-fading agents, antioxidants, anti-foaming agents, cosmetic ingredients, plant extracts, preservatives, fragrances, etc.
[0041] Examples of oils include natural or synthetic ester oils, hydrocarbon oils, higher alcohols, and fatty acids, but are not limited to these. Specific examples include cetyl ethylhexanoate, isotridecyl isononanoate, diisostearyl malate, diethylhexyl succinate, isononyl isononanoate, triethylhexanoin, squalane, isododecane, paraffin, microcrystalline wax, tri(caprylic / capric)glyceryl, propylene glycol dicaprate, ethylhexylglycerin, dipentaerythritol hexa(hydroxystearic acid / stearic acid / rosin acid), trimethylolpropane triisostearate, pentaerythrityl tetraethylhexanoate, ethyl oleate, isostearic acid, stearic acid, cetyl alcohol, stearyl alcohol, behenyl alcohol, beeswax, and mineral oil.
[0042] Alternatively, a non-volatile silicone oil (non-volatile silicone oil) may be used as the oil agent. Examples of such silicone oils include, but are not limited to, methylphenylpolysiloxane and non-volatile dimethylpolysiloxane.
[0043] Examples of alcohols include lower alcohols and polyhydric alcohols. Examples of lower alcohols include ethanol and isopropanol, and examples of polyhydric alcohols include glycerin, 1,3-butylene glycol, propylene glycol, and polyethylene glycol.
[0044] Examples of thickeners include acrylic thickeners and clay thickeners, and specific examples include stearoxyhydroxypropylmethylcellulose, hydroxypropylmethylcellulose, hydroxyethylcellulose, xanthan gum, carbomer, (acrylates / C10-30 alkyl acrylate) crosspolymer, dimethyl distearyl ammonium hectorite, and benzyl dimethyl stearyl ammonium hectorite.
[0045] Examples of powders include, but are not limited to, minerals, clay minerals, organic powders, and silicone powders. Specific examples include silica, mica, talc, sericite, zinc myristate, calcium aluminum borosilicate, nylon, polyurethane, polyethylene, boron nitride, methyl methacrylate crosspolymer, polymethylsilsesquioxane, dimethicone / vinyl dimethicone crosspolymer, vinyl dimethicone / methicone silsesquioxane crosspolymer, diphenyl dimethicone / diphenyl vinyl dimethicone / silsesquioxane crosspolymer, dimethicone / PEG-10 / 15 crosspolymer, barium sulfate, and lauroyl lysine.
[0046] Examples of preservatives include, but are not limited to, phenoxyethanol and methyl parahydroxybenzoate.
[0047] The present emulsion cosmetic may be a skin cosmetic or a hair cosmetic. The present emulsion cosmetic is particularly preferably a skin cosmetic (a water-in-oil emulsion cosmetic for skin). The present emulsion cosmetic can be used in a variety of emulsion cosmetics, including skin care products and makeup products. The present emulsion cosmetic can provide a smooth feel during use (application), is not sticky after application, and has excellent adhesion to the skin.
[0048] Skin cosmetics are not particularly limited as long as they are in the form of a water-in-oil emulsion, and can be used as cosmetics for a variety of purposes. Examples include emulsions, creams, beauty serums, sunscreens, hand creams, eye creams, body creams, makeup cosmetics, concealers, blushers, makeup bases, and foundations (e.g., liquid foundations and solid foundations). Methods of using skin cosmetics include applying them to hands or fingers, using cotton, impregnating nonwoven fabric, and spraying or misting them.
[0049] The hair cosmetic is not particularly limited as long as it is in the form of a water-in-oil emulsion, and can be used as a cosmetic for various purposes. Examples include cosmetics such as hair cream, hair wax, hair rinse, hair mask, hair treatment, and sunscreen for hair. Methods of using the hair cosmetic include applying it to the hands or fingers, or spraying it with a spray or mist.
[0050] The present emulsion cosmetic can be produced by mixing the above-mentioned components. For example, a method can be used in which a preheated and mixed aqueous component and a preheated and mixed oily component are mixed and emulsified, and then cooled. Of course, the method for producing the present emulsion cosmetic is not limited to this.
[0051] This specification discloses a method for producing a water-in-oil emulsion cosmetic, which includes mixing components (A) to (F). As described above, by blending components (E) and (F) in combination with components (A) to (D), the emulsion is stabilized, and a stable cosmetic can be obtained in which components (E) and (F) are well dissolved or dispersed. In the production, an appropriate emulsifier or kneader (e.g., a three-roller mixer, a homomixer, etc.) can be used. [Example]
[0052] The water-in-oil emulsion cosmetic according to the present invention will be described below with reference to examples, but the present invention is not limited to these examples.
[0053] Tables 1 and 2 show the ingredients of the emulsion cosmetics (specifically, sunscreens) of Examples 1 to 24 and Comparative Examples 1 to 8, their blending amounts (mass %), and the results of evaluation of stability, etc.
[0054] [Table 1]
[0055] [Table 2]
[0056] In the examples and comparative examples in Tables 1 and 2, the names of raw materials and the like that should be particularly noted are shown below. Hydrogenated polyisobutene (average molecular weight 170): Dedraflow 5 (manufactured by CIT Sarl), undecane-tridecane: Cetiol Ultimate (manufactured by BASF Japan), isododecane: ISODODECANE (manufactured by Kaneda Co., Ltd.), hydrogenated polyisobutene (average molecular weight 1000): Pearleem 18 (manufactured by NOF Corporation), dimethylpolysiloxane (viscosity at 25°C 2 mm 2 / sec) (boiling point 229°C), methyl trimethicone: silicone TMF-1.5 (Shin-Etsu Chemical Co., Ltd.) (boiling point 180°C), decamethylcyclopentasiloxane: KF-995 (Shin-Etsu Chemical Co., Ltd.) (boiling point 210°C), lauryl PEG-9 polydimethylsiloxyethyl dimethicone: KF-6038 (Shin-Etsu Chemical Co., Ltd.), PEG-9 polydimethylsiloxyethyl dimethicone: KF-6028P (Shin-Etsu Chemical Co., Ltd.), PEG-10 dimethicone: KF-6017 (Shin-Etsu Chemical Co., Ltd.), cetyl PEG / PPG-10 / 1 dimethicone: KF-6048 (Shin-Etsu Chemical Co., Ltd.), lecithin: lecithin CLO (J-Oil Mills), titanium dioxide: OTS-2 TiO2MP-1133 (manufactured by Daito Kasei Co., Ltd.), zinc oxide: MZ-500 (manufactured by Teika Co., Ltd.) (average particle size 0.025 μm).
[0057] The examples and comparative examples shown in Tables 1 and 2 were produced by the following methods. Manufacturing Methods of Examples 1 to 24 (1) A portion of component (C), a portion of component (D), component (F), and a portion of cetyl ethylhexanoate were added and dispersed uniformly using a triple roller. (2) Dimethyl distearyl ammonium hectorite was swollen with a portion of component (B), a portion of component (C), and a portion of ethanol. (3) The remainder of component (D), component (E), and the remainder of cetyl ethylhexanoate were dissolved at 70°C, and the above (1) and (2), as well as the remainder of component (A), component (B), and component (C) were added and mixed. (4) 1,3-butylene glycol, the remainder of the ethanol, and purified water were mixed, and then added to (3) above and emulsified. (5) The mixture was defoamed to obtain a water-in-oil emulsion cosmetic (sunscreen).
[0058] Manufacturing methods of comparative examples 1 to 8 In Comparative Example 1, an emulsified cosmetic was obtained by producing in the same manner as in Example 1, except that component (A) was not blended (the same amount was replaced with cetyl ethylhexanoate). In Comparative Example 2, an emulsified cosmetic was obtained in the same manner as in Example 1, except that isododecane was used instead of component (A). In Comparative Example 3, an emulsified cosmetic was obtained in the same manner as in Example 1, except that hydrogenated polyisobutene having an average molecular weight of 1,000 was used instead of component (A). In Comparative Example 4, an emulsified cosmetic was obtained by producing in the same manner as in Example 1, except that component (B) was not blended (the same amount was replaced with cetyl ethylhexanoate). In Comparative Example 5, an emulsified cosmetic was obtained by producing in the same manner as in Example 1, except that component (C) was not blended (the same amount was replaced with purified water). In Comparative Example 6, an emulsified cosmetic was obtained in the same manner as in Example 1, except that component (D) was not added (the same amount was replaced with purified water). In Comparative Example 7, an emulsified cosmetic was obtained in the same manner as in Example 1, except that component (E) was not blended (the same amount was replaced with cetyl ethylhexanoate). In Comparative Example 8, an emulsified cosmetic was obtained by producing in the same manner as in Example 1, except that component (F) was not blended (the same amount was replaced with purified water).
[0059] The cosmetics of the Examples and Comparative Examples shown in Tables 1 and 2 were evaluated by the following methods. Usability (smooth application, non-sticky finish, adhesion to skin) A usability test was conducted on each sample (cosmetics of Examples 1 to 24 and Comparative Examples 1 to 8) by a panel of 20 experts. The cosmetics were applied to the forearm, and the feel upon application was evaluated by sensory evaluation in three categories (smooth feel upon application, non-stickiness after application, and adhesion to the skin) based on the questionnaire results and using the following criteria. ◎: 15 or more out of 20 people answered "good" 〇: 10 to 14 out of 20 people answered that it was good △: 5 to 9 out of 20 people answered good ×: 4 or less out of 20 people answered "good"
[0060] Formulation stability (pigment dispersibility, emulsion stability) Each sample (cosmetics of Examples 1 to 24 and Comparative Examples 1 to 8) was filled into a glass bottle, sealed, and stored in a thermostatic chamber at 40°C for one month. The stored products were visually observed for changes in appearance, with the state immediately after production as the standard, and rated according to the following criteria. Note that metal oxides in the above examples mainly refer to pigments. Pigment dispersibility (whether or not pigment aggregation occurs) ◎: No aggregation 〇: Slight aggregation occurs, but disappears after mixing △: Slight aggregation occurs and does not disappear even after mixing ×: Significant aggregation Emulsion stability (presence or absence of separation of the internal aqueous phase) ◎: No separation 〇: There is a slight separation, but it disappears when mixed △: Slight separation occurs, but does not disappear even when mixed ×: Significant separation
[0061] result Examples 1 to 24, which contain components (A) to (F), were rated ◯ or ⊚ in all evaluation criteria (smooth feel in use, non-stickiness after application, adhesion to skin, pigment dispersibility, and emulsion stability), demonstrating good formulation stability and feel in use. On the other hand, Comparative Examples 1 to 3, 5, and 6 had poor formulation stability, Comparative Example 4 was sticky after application, and Comparative Examples 6 to 8 had poor adhesion to skin.
[0062] Example (prescription example) The following examples were produced as water-in-oil emulsion cosmetics. In the following examples, the content refers to the blending ratio (% by mass), and the "remaining amount" refers to the amount that makes the total amount 100% by mass.
[0063] Example 25: Sunscreen (Ingredients) (Content) 1. Hydrogenated polyisobutene (average molecular weight 170) (Component A) (*1) 4.0% 2. Dimethylpolysiloxane (viscosity 2mm at 25°C) 2 / sec)(component B) 4.0% 3. Methyl trimethicone (ingredient B) (*2) 5.0% 4. Decamethylcyclopentasiloxane (ingredient B) (*3) 1.0% 5. Lauryl PEG-9 Polydimethylsiloxyethyl Dimethicone (ingredient C) (*4) 2.0% 6. PEG-9 Polydimethylsiloxyethyl Dimethicone (ingredient C) (*5) 1.5% 7. Polyglyceryl-2 Isostearate (ingredient D) 0.1% 8. Sorbitan sesquiisostearate (ingredient D) 1.5% 9. Lecithin (ingredient D) (*6) 0.5% 10. Ethylhexyl methoxycinnamate (ingredient E) 7.0% 11. Diethylaminohydroxybenzoylhexyl benzoate (ingredient E) 1.5% 12. Bisethylhexyloxyphenol methoxyphenyl triazine (ingredient E) 1.0% 13. Polysilicone-15 (ingredient E) 0.5% 14. Dimethicone-treated / Aluminum hydroxide-treated / Zinc oxide-coated titanium dioxide (average particle size 1 μm) (ingredient F) (*7) 0.5% 15. Aluminum hydroxide-treated titanium dioxide (average particle size 0.25 μm) (ingredient F) (*8) 1.0% 16. Hydrogen dimethicone-treated titanium dioxide (average particle size 0.080 μm) (ingredient F) (*9) 5.0% 17. Aluminum hydroxide-treated / hydrated silica-treated titanium dioxide (average particle size 0.035 μm) (ingredient F) (*10) 10.0% 18. Zinc oxide (average particle size 0.30 μm) (ingredient F) (*11) 0.1% 19. Dimethicone-treated red iron oxide / sericite (ingredient F) (*12) 0.03% 20. Dimethicone-treated yellow iron oxide (ingredient F) (*13) 0.2% 21. Dimethicone-treated black iron oxide (ingredient F) (*14) 0.02% 22. Dimethicone-treated red iron oxide / titanium oxide-coated mica (ingredient F) (*15) 0.2% 23. Dimethicone 2% Treated Talc 2.0% 24. Dimethicone-treated silica-coated mica (*16) 0.2% 25. (Fluoride / Hydroxide / Oxide) / (Mg / K / Silicon)(*17) 2.0% 26. Zinc myristate (*18) 1.0% 27. Silica (*19) 1.0% 28. Cetyl ethylhexanoate 5.0% 29. Propylene glycol dicaprate 1.0% 30. Isododecane (*20) 1.0% 31. Dimethyl distearyl ammonium hectorite 0.5% 32. Benzyl dimethyl stearyl ammonium hectorite 0.5% 33. Sodium chloride 0.5% 34. Remaining purified water 35. Phenoxyethanol 0.2% 36.1,3-Butylene glycol 2.0% 37. Ethylhexylglycerin (*21) 0.1% 38. Mixture of Elderberry Flower Extract, Tea Leaf Extract, Tea Extract, Jasminum Sambac Flower Extract, Polyquaternium-51, Rosa Multiflora Fruit Extract, Rugosa Rose Flower Extract, Rosa Izayoi Extract, Water-Soluble Collagen, Royal Jelly Extract, Angelica Root Extract, Rosa Centifolia Flower Extract, Rosa Damascena Flower Water, Rosemary Leaf Extract, Acerola Fruit Extract, Acetyl Glutamic Acid, Theanine, Glycine, Hydrolyzed Hyaluronic Acid, and Sodium Hyaluronate (Mixture of Cosmetic Ingredients) 1.0% 39. Ethanol 5.0% 40.Fragrance 0.1% (*1) Dedraflow5 (manufactured by CIT Sarl) (*2) Silicone TMF-1.5 (Shin-Etsu Chemical Co., Ltd.) (*3) KF-995 (Shin-Etsu Chemical Co., Ltd.) (*4) KF-6038 (Shin-Etsu Chemical Co., Ltd.) (*5) KF-6028P (Shin-Etsu Chemical Co., Ltd.) (*6) Lecithin CLO (manufactured by J-Oil Mills) (*7) MPY-100M (manufactured by Teika) (*8)MP-1133 (manufactured by Teika) (*9) MTY-700BS (manufactured by Teika) (*10) MT-500SA (manufactured by Teika) (*11) Hexagonal plate-shaped zinc oxide XZ-300F (Sakai Chemical Industry Co., Ltd.) (*12)SA-R-516PS(80%)JS(manufactured by Miyoshi Kasei Co., Ltd.) (*13)SA-YHP-10 (manufactured by Miyoshi Kasei Co., Ltd.) (*14) SA-BHP-10 (Miyoshi Chemicals Co., Ltd.) (*15) SA-RELIEF COLOR PINK (Miyoshi Chemicals) (*16)SXI-5 (Miyoshi Kasei Co., Ltd.) (*17) Micromica MK-200PG-A (Katakura Co-op Agri Co., Ltd.) (*18) Powder Base M (NOF Corporation) (*19) God Ball D11-796C (manufactured by Suzuki Oil Industries Co., Ltd.) (*20) ISODODECANE (Kaneda Co., Ltd.) (*21) ADEKA NOL GE-RF (ADEKA Chemical Supply Co., Ltd.)
[0064] (Manufacturing method) A. A portion of components 5, a portion of 6, a portion of 8, 9, 14 to 24, and a portion of 28 were added and dispersed uniformly using three rollers. B. Components 31 and 32 were swelled with a portion of components 2, a portion of components 6, and a portion of components 39. C. Components 10 to 12 were dissolved at 90°C, and then A, B, the remainder of components 1 and 2, the remainder of components 3, 4, and 5, the remainder of component 6, the remainder of components 7 and 8, the remainder of components 13, 25, 26, 27, and 28, and components 29, 30, and 40 were added and mixed uniformly. D. Components 33 to 38 and the remainder of 39 were mixed and dissolved, and then added to the above C and emulsified. E. The mixture was defoamed to obtain a sunscreen as a water-in-oil cosmetic.
[0065] In Example 25, the content of component (A) was 4.0%, the content of component (C) was 3.5%, the content of component (D) was 2.1%, the (C) / (D) ratio was 1.67 (mass ratio), and the content of component (F) was 17.05%. The water-in-oil sunscreen of Example 25 spread smoothly and had a non-sticky finish, while also exhibiting excellent skin adhesion and cosmetic wear. The dispersibility and emulsion stability of the metal oxide were also good.
[0066] Example 26: Liquid Foundation (Ingredients) (Content) 1. Hydrogenated polyisobutene (average molecular weight 170) (Component A) (*1) 10.0% 2. Undecane / Tridecane (ingredient A) (*22) 2.0% 3. Dimethylpolysiloxane (viscosity at 25°C 1.5mm) 2 / sec)(component B) 1.0% 4. Decamethylcyclopentasiloxane (ingredient B) (*23) 2.0% 5. Lauryl PEG-9 Polydimethylsiloxyethyl Dimethicone (ingredient C) (*4) 1.0% 6. PEG-10 Dimethicone (ingredient C) (*24) 0.5% 7. Polyglyceryl-2 diisostearate (ingredient D) 0.1% 8. Sorbitan sesquioleate (ingredient D) 2.0% 9. Sorbitan palmitate (ingredient D) 1.0% 10. Hydrogenated soybean phospholipid (ingredient D) (*25) 0.1% 11. Ethylhexyl methoxycinnamate (ingredient E) 4.0% 12. Bisethylhexyloxyphenol methoxyphenyl triazine (ingredient E) 1.0% 13. Aluminum hydroxide-treated titanium dioxide (average particle size 0.25 μm) (ingredient F) (*26) 2.0% 14. Triethoxycaprylylsilane-treated / Al hydroxide-treated titanium dioxide (average particle size 0.25 μm) (ingredient F) (*27) 5.0% 15. Triethoxycaprylylsilane 3% Treatment / Dimethicone 22% Treatment / Al Hydroxide 10% Treatment / Hydrated Silica-Treated Titanium Dioxide (Component F) (Average Particle Size 0.010 μm) 1.0% 16. Zinc oxide (average particle size 0.025 μm) (ingredient F) (*28) 3.0% 17. Hydrogen dimethicone-treated zinc oxide (average particle size 0.3 μm) (ingredient F) (*29) 3.0% 18. Triethoxycaprylylsilane 3% treated / Dimethicone 10% treated Zinc oxide (average particle size 0.025 μm) (ingredient F) 1.5% 19. Triethoxycaprylylsilane-treated red iron oxide (ingredient F) (*30) 0.3% 20. Triethoxycaprylylsilane-treated yellow iron oxide (ingredient F) (*31) 2.0% 21. Triethoxycaprylylsilane-treated black iron oxide (ingredient F) (*32) 0.2% 22. Triethoxycaprylylsilane 2% treated sericite 1.5% 23. Triethoxycaprylylsilane 2% treated talc 1.5% 24.Synthetic phlogopite 1.5% 25. Boron nitride 1.0% 26. Isotridecyl isononanoate 2.0% 27. Diisostearyl Malate 4.5% 28. Hydrogenated polyisobutene (average molecular weight 1000) (*33) 0.2% 29. Dimethyl distearyl ammonium hectorite 1.0% 30. Sodium chloride 0.3% 31. Remaining purified water 32. Methyl parabenzoate 0.1% 33. 1,3-Butylene glycol 5.0% 34. Mixture of Jasminum Sambac flower extract, Grape leaf extract, Mentha piperita leaf extract, Bifidobacterium culture lysate, Prunus satozakura flower extract, Polyquaternium-51, Rosa multiflora fruit extract, Rugosa rose flower extract, Rosa izayoi extract, Tocopheryl acetate, Water-soluble collagen, Royal jelly extract, Angelica acutiloba root extract, Rosa centifolia flower extract, Rosa damascena flower water, Rosemary leaf extract, Acerola fruit extract, Acetyl glutamic acid, Theanine, Glycine, Hydrolyzed hyaluronic acid, and Sodium hyaluronate (mixture of beauty ingredients) 1.0% 35. Ascorbyl tetrahexyldecanoate 0.01% 36. Ethanol 7.0% 37.Fragrance 0.1% (*22) Cetiol Ultimate (BASF Japan) (*23)DOWSIL TM SH245 Fluid (Dow Chemical Japan) (*24) KF-6017 (Shin-Etsu Chemical Co., Ltd.) (*25) Nikkor Resinol S-10EZ (Nikko Chemicals) (*26) TIPAQUE CR-50 (Ishihara Sangyo Kaisha) (*27) OTS-2 TiO2 MP-1133 (manufactured by Daito Chemical Industry Co., Ltd.) (*28) MZ-500 (manufactured by Teika) (*29) XZ-300F-LP (Sakai Chemical Industry Co., Ltd.) (*30) OTS-2 RED R-516P (manufactured by Daito Kasei Kogyo Co., Ltd.) (*31) OTS-2 YELLOW YP-1200P (manufactured by Daito Kasei Kogyo Co., Ltd.) (*32) OTS-2 BLACK BL-100P (manufactured by Daito Kasei Kogyo Co., Ltd.) (*33) Pearleem 18 (NOF Corporation)
[0067] (Manufacturing method) A. A portion of component 5, a portion of component 8, components 10, 13 to 23, and 27 were added and dispersed uniformly using three rollers. B. Component 29 was swelled with part of components 1, part of 3, part of 6, and part of 36. C. Components 9, 11, and 12 were dissolved at 90°C, and then the above components A, B, the remainder of component 1, the remainder of components 2 and 3, the remainder of components 4 and 5, the remainder of component 6, the remainder of components 7 and 8, components 24 to 26, 28, 35, and 37 were added and mixed uniformly. D. Components 30 to 34 and the remainder of 36 were mixed and dissolved, and then added to the above C and emulsified. E. The mixture was defoamed to obtain a liquid foundation as a water-in-oil cosmetic.
[0068] In Example 26, the content of component (A) was 12.0%, the content of component (C) was 1.5%, the content of component (D) was 3.2%, (C) / (D) was 0.469 (mass ratio), and the content of component (F) was 18.0%. The water-in-oil liquid foundation of Example 26 spread smoothly and had a non-sticky finish, while also exhibiting excellent adhesion to the skin and makeup wear. The dispersibility and emulsion stability of the metal oxide were also good.
[0069] Example 27: Liquid Foundation (Ingredients) (Content) 1. Hydrogenated polyisobutene (average molecular weight 170) (Component A) (*1) 2.0% 2. Hydrogenated polyisobutene (average molecular weight 170) (component A) (*34) 1.0% 3. Dimethylpolysiloxane (viscosity at 25°C: 2.0 mm) 2 / sec)(component B) 2.0% 4. Dimethylpolysiloxane (viscosity at 25°C 1.0 mm) 2 / sec)(component B) 2.0% 5. Decamethylcyclopentasiloxane (ingredient B) (*3) 2.0% 6. Lauryl PEG-9 Polydimethylsiloxyethyl Dimethicone (ingredient C) (*4) 2.0% 7. PEG-9 Polydimethylsiloxyethyl Dimethicone (ingredient C) (*35) 1.0% 8. PEG-9 Dimethicone (ingredient C) 0.5% 9. Glyceryl stearate (ingredient D) 0.2% 10. Sorbitan sesquiisostearate (ingredient D) 0.3% 11. Ethylhexyl methoxycinnamate (ingredient E) 3.0% 12. Polysilicone-15 (ingredient E) 1.0% 13. Perfluorooctyltriethoxysilane-treated / Al hydroxide-treated titanium dioxide (average particle size 0.25 μm) (ingredient F) (*36) 3.0% 14. Perfluorooctyltriethoxysilane-treated / Al hydroxide-hydrated silica-treated titanium dioxide (average particle size 0.035 μm) (ingredient F) (*37) 3.0% 15. Zinc oxide (average particle size 3 μm) (ingredient F) (*38) 1.0% 16. Alumina-treated / silica-treated titanium dioxide (average particle size 0.4 μm) (ingredient F) (*39) 1.0% 17. Perfluorooctyltriethoxysilane-treated red iron oxide (ingredient F) (*40) 0.3% 18. Perfluorooctyltriethoxysilane-treated yellow iron oxide (ingredient F) (*41) 2.0% 19. Perfluorooctyltriethoxysilane-treated black iron oxide (ingredient F) (*42) 0.2% 20. Perfluorooctyltriethoxysilane 3% treated sericite 1.0% 21. Iron oxide coated mica (ingredient F) (*43) 0.1% 22. Titanium dioxide-coated mica (ingredient F) (*44) 0.1% 23. Titanium oxide / tin oxide coated mica (ingredient F) (*45) 0.1% 24. Perfluorooctyltriethoxysilane 2% Treatment / Titanium Oxide / Tin Oxide Coated Borosilicate (Ca / Al) (Component F) 0.1% 25. Nylon 1.0% 26. Polyurethane 1.0% 27. Lauroyl Lysine 1.0% 28. Diethylhexyl succinate 1.5% 29. Isononyl isononanoate 1.0% 30. Dimethylpolysiloxane (viscosity at 25°C 6.0 mm) 2 / sec) 0.5% 31. Isododecane (*20) 5.0% 32. Dimethyl distearyl ammonium hectorite 1.0% 33. Sodium chloride 0.5% 34. Remaining purified water 35. Phenoxyethanol 0.1% 36. 1,3-Butylene glycol 5.0% 37. Water-soluble collagen, Rosa centifolia flower extract, Royal jelly extract, Orange flower water mixture (beauty ingredient mixture) 0.3% 38. Ethanol 5.0% 39.Fragrance 0.1% (*34) Pearleem 3 (NOF Corporation) (*35) KF-6028 (Shin-Etsu Chemical Co., Ltd.) (*36) FHS-3 TiO2 CR-50 (manufactured by Daito Kasei Kogyo Co., Ltd.) (*37) FHS-3 TiO2 MT-500SA (manufactured by Daito Kasei Kogyo Co., Ltd.) (*38) XZ-3000F (Sakai Chemical Industry Co., Ltd.) (*39) SYMPHOLIGHT WW-E (JGC Catalysts and Chemicals) (*40) FHS-3 RED R-516P (manufactured by Daito Kasei Kogyo Co., Ltd.) (*41) FHS-3 YELLOW YP-1200P (manufactured by Daito Kasei Kogyo Co., Ltd.) (*42) FHS-3 BLACK BL-100P (manufactured by Daito Kasei Kogyo Co., Ltd.) (*43)CLOIZONNE CERISE FLAMBE 550Z (manufactured by BASF) (*44)FLAMENCO SPARKLE GOLD 220J (manufactured by BASF) (*45) COSMETICA SUPER RED N-5401S (CQV)
[0070] (Manufacturing method) A. A portion of component 6, a portion of component 10, components 13 to 20, 28, and 30 were added and dispersed uniformly using three rollers. B. Component 32 was swelled with a portion of components 3, a portion of components 7, and a portion of components 38. C. Components 9 and 29 were dissolved at 70°C, and then A, B, the remainder of components 1, 2, and 3, the remainder of components 4, 5, and 6, the remainder of component 7, the remainder of components 8 and 10, and components 11, 12, 21 to 27, 31, and 39 were added and mixed uniformly. D. Components 33 to 37 and the remainder of 38 were mixed and dissolved, and then added to the above C and emulsified. E. The mixture was defoamed to obtain a liquid foundation as a water-in-oil cosmetic.
[0071] In Example 27, the content of component (A) was 3.0%, the content of component (C) was 3.5%, the content of component (D) was 0.5%, (C) / (D) was 7.00 (mass ratio), and the content of component (F) was 10.9%. The water-in-oil liquid foundation of Example 27 spread smoothly and had a non-sticky finish, while also exhibiting excellent adhesion to the skin and makeup wear. The dispersibility and emulsion stability of the metal oxide were also good.
[0072] Example 28: Solid Foundation (Ingredients) (Content) 1. Hydrogenated polyisobutene (average molecular weight 170) (Component A) (*1) 2.0% 2. Dimethylpolysiloxane (viscosity at 25°C: 2.0 mm) 2 / sec)(component B) 2.0% 3. Decamethylcyclopentasiloxane (ingredient B) (*3) 8.0% 4. Lauryl PEG-9 Polydimethylsiloxyethyl Dimethicone (ingredient C) (*4) 3.5% 5. PEG-11 methyl ether dimethicone (ingredient C) 0.2% 6. Polyglyceryl-2 triisostearate (ingredient D) 0.1% 7. Sorbitan isostearate (ingredient D) 0.1% 8. Polyglyceryl-10 laurate (ingredient D) 0.2% 9. Ethylhexyl methoxycinnamate (ingredient E) 3.0% 10. Diethylaminohydroxybenzoylhexyl benzoate (ingredient E) 1.0% 11. Methylenebisbenzotriazolyltetramethylbutylphenol (Component E) 1.0% 12. Isopropyl triisostearate-treated / aluminum hydroxide-treated titanium dioxide (average particle size 0.25 μm) (ingredient F) (*46) 10.0% 13. Titanium dioxide (average particle size 0.25 μm) (ingredient F) 5.0% treated with aluminum hydroxide 3% / sodium dilauroyl glutamate lysine 1% / magnesium chloride 14. Hydrogen dimethicone-treated zinc oxide (average particle size 0.025 μm) (ingredient F) (*47) 2.0% 15. Titanium oxide, alumina, and silica-coated mica (ingredient F) (*48) 1.5% 16. Hydrogen dimethicone-treated zinc oxide (average particle size 1 μm) (ingredient F) (*49) 0.1% 17. Bengala (ingredient F) (*50) 0.3% 18. Yellow iron oxide (component F) (*51) 2.0% 19. Black iron oxide (component F) (*52) 0.2% 20. Mica 1.0% 21. Silica (*53) 1.0% 22. Propylene glycol dicaprate 1.0% 23. Hexa(hydroxystearic acid / stearic acid / rosin acid) dipentaerythritol 1.5% 24. Methylphenylpolysiloxane (*54) 4.0% 25. Trimethylsiloxysilicate 0.5% 26. Paraffin 1.0% 27. Microcrystalline wax 1.0% 28. Polyethylene 0.5% 29. Beeswax 0.5% 30. Lauryl Polyglyceryl-3 Polydimethylsiloxyethyl Dimethicone (*55) 0.5% 31. Sodium chloride 0.5% 32. Remaining purified water 33. Phenoxyethanol 0.1% 34. 1,3-Butylene glycol 7.0% 35. Licorice flavonoids, rosemary leaf extract, apricot kernel oil, rosehip fruit extract, almond oil, corn oil mixture (beauty ingredient mixture) 0.3% 36. DL-α-Tocopherol Acetate 0.01% 37.Fragrance 0.1% (*46) ITT-2 TiO2 CR-50 (manufactured by Daito Chemical Industry Co., Ltd.) (*47) MZY-505S (Teika Co., Ltd.) (*48) RONAFLAIR SOFTSHADE (Merck) (*49) XZ-1000F-LP (Sakai Chemical Industry Co., Ltd.) (*50) Tarox R-516P (manufactured by Titanium Industries Co., Ltd.) (*51) TAROX IRON OXIDE YP1200P (manufactured by Titanium Industries Co., Ltd.) (*52) Tarox BL-100P (manufactured by Titanium Industries Co., Ltd.) (*53) Silica Microbeads P-1505 (JGC Catalysts and Chemicals) (*54)KF-54 (manufactured by Fuji Kasei Co., Ltd.) (*55) KF-6105 (Shin-Etsu Chemical Co., Ltd.)
[0073] (Manufacturing method) A. Components 22, 23, and 25 to 29 were heated and dissolved at 100°C. B. The above A, a portion of component 4, a portion of component 6, components 12 to 21, a portion of component 24, and component 36 were added and dispersed uniformly using three rollers. C. After dissolving the above B and ingredients 9 to 11 at 70°C, ingredients 1 to 3, the remainder of 4, 5, the remainder of 6, 7, 8, the remainder of 24, 30, and 37 were added and mixed uniformly. D. Components 31 to 35 were mixed and dissolved, then added to the above C and emulsified. E. The mixture was defoamed to obtain a solid foundation as a water-in-oil cosmetic.
[0074] In Example 28, the content of component (A) was 2.0%, the content of component (C) was 3.7%, the content of component (D) was 0.4%, (C) / (D) was 9.25 (mass ratio), and the content of component (F) was 21.1%. The water-in-oil solid foundation of Example 28 spread smoothly and had a non-sticky finish, while also exhibiting excellent adhesion to the skin and makeup wear. The dispersibility and emulsion stability of the metal oxide were also good.
[0075] Example 29: Makeup base (Ingredients) (Content) 1. Hydrogenated polyisobutene (average molecular weight 170) (Component A) (*1) 3.0% 2. (C9-C12) Alkane (Component A) (*56) 1.0% 3. Dimethylpolysiloxane (viscosity at 25°C: 2.0 mm) 2 / sec)(component B) 13.0% 4. Decamethylcyclopentasiloxane (ingredient B) (*3) 2.0% 5. Lauryl PEG-9 Polydimethylsiloxyethyl Dimethicone (ingredient C) (*4) 3.0% 6. Cetyl PEG / PPG-10 / Dimethicone (ingredient C) (*57) 0.5% 7. Sorbitan sesquiisostearate (ingredient D) 1.0% 8. Ethylhexyl methoxycinnamate (ingredient E) 2.0% 9. Bis-ethylhexyloxyphenol methoxyphenyl triazine (ingredient E) 1.0% 10. Disodium stearoyl glutamate-treated / aluminum hydroxide-treated titanium dioxide (average particle size 0.25 μm) (ingredient F) (*58) 3.0% 11. Alumina-Stearic Acid-Titanium Dioxide / Nylon-12 (Component F) (*59) 3.0% 12. Isopropyl triisostearate 3% treated / Hydrogen dimethicone 5% treated Zinc oxide (average particle size 0.025 μm) (ingredient F) 4.0% 13. Stearin-treated / Al hydroxide-treated titanium dioxide (average particle size 0.010 μm) (ingredient F) (*60) 1.0% 14. Bengala (ingredient F) (*50) 0.03% 15. Yellow iron oxide (component F) (*51) 0.2% 16. Black iron oxide (component F) (*52) 0.02% 17. Mica 1.5% 18. (Dimethicone / vinyl dimethicone) crosspolymer (*61) 2.0% 19. Methyl methacrylate crosspolymer (*62) 1.0% 20. Polymethylsilsesquioxane 0.5% 21. Triethylhexanoin 1.5% 22. Cetyl ethylhexanoate 2.0% 23. Methylphenylpolysiloxane (*63) 1.0% 24. (Acrylates / Ethylhexyl Acrylate / Dimethicone Methacrylate) Copolymer 0.5% 25. Dimethyl distearyl ammonium hectorite 0.5% 26. Benzyl dimethyl stearyl ammonium hectorite 0.5% 27. Sodium chloride 0.3% 28. Remaining purified water 29. Phenoxyethanol 0.2% 30. 1,3-Butylene glycol 3.0% 31. Mixture of Hydrolyzed Conchiolin Solution, Gentian Extract, Hydrolyzed Silk Solution, Hydrolyzed Rice Extract, Seaweed Extract, L-Serine, Iwashobu Leaf Extract, Artemisia Capillaris Flower Extract, Alpinia Speciosa Leaf Extract, Saccharomyces Cerevisiae Extract, Pomegranate Fruit Extract, Pomegranate Peel Extract, Tilia Officinalis Fruit Extract, Eggplant Fruit Extract, Harpagophytum Root Extract, Parsley Extract, Royal Jelly Extract, Rosa Alba Flower Extract, Avocado Extract, Gynostemma Pentaphyllum Extract, Chamomilla Recutita (Matricaria) Water, Barberry Fruit Extract, Apple Extract, Lemongrass Extract, Ichinoseki Extract, Asparagus Extract, Artemia Extract, Guava Extract, Coffee Extract, Eggplant Extract, Grape Leaf Extract, and Sanguisorba Officinalis (Bull's Worm) Extract (Mixture of Cosmetic Ingredients) 1.0% 32. Ethanol 5.0% 33.Fragrance 0.1% (*56) Vegelight Silk (BIO SYNTHIS) (*57) ABIL EM-90 (EVONIC GOLDSCHMIDT GMBH) (*58) NAI-Titanium MP-1133 (Miyoshi Chemicals Co., Ltd.) (*59) MTXO-70NL (Hayate Material Co., Ltd.) (*60) MT-01 (manufactured by Teika) (*61) KSG-15 (Fujikasei Co., Ltd.) (*62) Ganz Pearl GM-2800 (Nihon Koken Kogyo Co., Ltd.) (*63)KF-56 (manufactured by Fuji Kasei Co., Ltd.)
[0076] (Manufacturing method) A. A portion of components 5, a portion of 7, 10 to 17, a portion of 22, and a portion of 23 were added and dispersed uniformly using three rollers. B. Components 25 and 26 were swelled with a portion of components 3, a portion of components 5, and a portion of components 32. C. Components 8 and 9 were dissolved at 90°C, and then the above A, B, the remainder of components 1, 2, and 3, the remainder of 4 and 5, the remainder of 6 and 7, the remainder of components 18 to 21, the remainder of 22, the remainder of 23, 24, and 33 were added and mixed uniformly. D. Components 27 to 31 and the remainder of 32 were mixed and dissolved, and then added to the above C and emulsified. E. The mixture was defoamed to obtain a makeup base as a water-in-oil cosmetic.
[0077] In Example 29, the content of component (A) was 4.0%, the content of component (C) was 3.5%, the content of component (D) was 1.0%, (C) / (D) was 3.50 (mass ratio), and the content of component (F) was 11.25%. The water-in-oil cosmetic base of Example 29 spread smoothly and provided a non-sticky finish, while also exhibiting excellent adhesion to the skin and makeup wear. The dispersibility and emulsion stability of the metal oxide were also good.
[0078] Example 30: Concealer (Ingredients) (Content) 1. Hydrogenated polyisobutene (average molecular weight 170) (Component A) (*1) 8.0% 2. Dodecane (ingredient A) (*64) 2.0% 3. Methyl trimethicone (ingredient B) (*2) 7.0% 4. Dimethylpolysiloxane (viscosity at 25°C: 2.0 mm) 2 / sec)(component B) 2.0% 5. Lauryl PEG-9 Polydimethylsiloxyethyl Dimethicone (ingredient C) (*3) 1.5% 6. Cetyl PEG / PPG-10 / Dimethicone (ingredient C) (*65) 0.5% 7. PEG-9 Polydimethylsiloxyethyl Dimethicone (ingredient C) (*5) 0.5% 8. Sorbitan sesquioleate (ingredient D) 1.5% 9. Sorbitan isostearate (ingredient D) 0.2% 10. Hydrogenated soybean phospholipid (ingredient D) (*66) 0.3% 11. Ethylhexyl methoxycinnamate (ingredient E) 5.0% 12. Diethylaminohydroxybenzoylhexyl benzoate (ingredient E) 1.0% 13. Lecithin 0.5% treated / Al hydroxide 3% treated titanium dioxide (average particle size 0.25 μm) (ingredient F) 5.0% 14. Dimethicone-treated / Al hydroxide-treated titanium dioxide (average particle size 0.25 μm) (ingredient F) (*67) 5.0% 15. Dimethicone, aluminum hydroxide, and hydrous silica-treated titanium dioxide (average particle size 0.030 μm) (ingredient F) (*68) 0.5% 16. Hydrogen dimethicone-treated zinc oxide (average particle size 0.035 μm) (ingredient F) (*69) 1.0% 17. Lecithin 0.5% Treated Bengala (ingredient F) 0.3% 18. Lecithin 0.5% processed yellow iron oxide (ingredient F) 2.0% 19. Lecithin 0.5% processed black iron oxide (ingredient F) 0.2% 20. Lecithin 1% Treated Talc 1.5% 21. Titanium dioxide / tin oxide coated borosilicate (Ca / Al) (component F) (*70) 0.1% 22. Titanium dioxide / silica-coated mica (ingredient F) (*71) 0.1% 23. Titanium oxide / iron oxide coated mica (ingredient F) (*72) 0.1% 24. (Vinyl Dimethicone / Methicone Silsesquioxane) Crosspolymer (*73) 2.0% 25. (Diphenyl dimethicone / diphenyl vinyl dimethicone / silsesquioxane) crosspolymer (*74) 1.0% 26. Barium sulfate 0.5% 27. Isotridecyl isononanoate 2.0% 28. Mineral oil 1.0% 29. Dimethylpolysiloxane (viscosity at 25°C 6.0 mm) 2 / sec) 1.0% 30. Methylphenylpolysiloxane (*75) 3.0% 31. (Dimethicone / (PEG-10 / 15)) Crosspolymer (*76) 1.5% 32. Dimethyl distearyl ammonium hectorite 1.0% 33. Sodium chloride 0.5% 34. Remaining purified water 35. Phenoxyethanol 0.2% 36.1,3-Butylene glycol 2.0% 37. Mixture of Elderberry Flower Extract, Tea Leaf Extract, Tea Extract, Jasminum Sambac Flower Extract, Polyquaternium-51, Rosa Multiflora Fruit Extract, Rugosa Rose Flower Extract, Rosa Izayoi Extract, Water-Soluble Collagen, Royal Jelly Extract, Angelica Root Extract, Rosa Centifolia Flower Extract, Rosa Damascena Flower Water, Rosemary Leaf Extract, Acerola Fruit Extract, Acetyl Glutamic Acid, Theanine, Glycine, Hydrolyzed Hyaluronic Acid, and Sodium Hyaluronate (Mixture of Cosmetic Ingredients) 1.0% 38. Ethanol 5.0% 39.Fragrance 0.1% (*64) PARAFOL 12-97 (manufactured by Sasol) (*65) KP-6048 (Shin-Etsu Chemical Co., Ltd.) (*66) HSL-70 (Iwaki) (*67) SA-Titanium MP-1133 (Miyoshi Chemicals Co., Ltd.) (*68) SMT-500SAM (Teika Co., Ltd.) (*69) FINEX-30S-LP2 (Sakai Chemical Industry Co., Ltd.) (*70) Micro Glass Metashine MT1080RR (Nippon Sheet Glass Co., Ltd.) (*71) TIMIRON SPLENDID GOLD (Merck) (*72) TIMICA RADIANT GOLD 222G (BASF) (*73)KSP-101 (manufactured by Fuji Kasei Co., Ltd.) (*74)KSP-300 (manufactured by Fuji Kasei Co., Ltd.) (*75)DOWSIL TM SH556 Fluid (Dow Chemical Japan) (*76) KSG-210 (Fujikasei Co., Ltd.)
[0079] (Manufacturing method) A. A portion of components 5, a portion of 8, 10, 13 to 20, a portion of 27, and a portion of 30 were added and dispersed uniformly using three rollers. B. Component 32 was swelled with part of components 7, part of components 30, and part of components 38. C. Components 11 and 12 were dissolved at 90°C, and then the above A, B, the remainder of components 1 to 4, 5, 6, 7, 8, 9, 21 to 26, 27, 28, 29, 30, 31, and 39 were added and mixed uniformly. D. Components 33 to 37 and the remainder of 38 were mixed and dissolved, and then added to the above C and emulsified. E. The mixture was defoamed to obtain a concealer as a water-in-oil cosmetic.
[0080] In Example 30, the content of component (A) was 10.0%, the content of component (C) was 2.5%, the content of component (D) was 2.0%, (C) / (D) was 1.25 (mass ratio), and the content of component (F) was 14.3%. The water-in-oil concealer of Example 30 spread smoothly and had a non-sticky finish, while also exhibiting excellent adhesion to the skin and makeup wear. The dispersibility and emulsion stability of the metal oxide were also good.
[0081] Example 31: Cheek (Ingredients) (Content) 1. Hydrogenated polyisobutene (average molecular weight 170) (Component A) (*1) 8.0% 2. Decamethylcyclopentasiloxane (ingredient B) (*3) 12.0% 3. Methyl trimethicone (ingredient B) (*2) 3.0% 4. Lauryl PEG-9 Polydimethylsiloxyethyl Dimethicone (ingredient C) (*24) 1.5% 5. PEG-9 Polydimethylsiloxyethyl Dimethicone (ingredient C) (*5) 1.5% 6. Sorbitan sesquiisostearate (ingredient D) 0.8% 7. Triisostearin Polyglyceryl-2 (ingredient D) 0.1% 8. Ethylhexyl methoxycinnamate (ingredient E) 0.5% 9. Zinc laurate 6% treated / Al hydroxide 1.5% treated titanium dioxide / mica (average particle size 0.25 μm) (ingredient F) 2.0% 10. Bengala (ingredient F) (*50) 0.2% 11. Red No. 226 1.5% 12. Red No. 202 0.5% 13. Yellow No. 4 0.2% 14. Gunjo (*77) 0.2% 15. Dimethicone 2% Treated Talc 6.0% 16. Titanium oxide-coated synthetic phlogopite (ingredient F) (*78) 1.0% 17. Titanium dioxide coated mica (ingredient F) (*79) 1.0% 18. Titanium dioxide / tin oxide coated borosilicate (Ca / Al) (Component F) (*80) 1.0% 19. Dimethicone-treated / titanium oxide-coated mica (ingredient F) (*81) 1.0% 20. Silica (*82) 1.0% 21. (Dimethicone / vinyl dimethicone) crosspolymer (*83) 2.5% 22. Isotridecyl isononanoate 2.0% 23. Caprylic / Capric Triglyceride 2.0% 24. Squalane 1.0% 25. Methylphenylpolysiloxane (*63) 7.0% 26. Dimethyl distearyl ammonium hectorite 1.0% 27. Sodium chloride 0.1% 28. Remaining purified water 29. Phenoxyethanol 0.2% 30. 1,3-Butylene Glycol 2.0% 31. Glycerin 0.5% 32. Jasmine flower extract, edelweiss extract, mallow extract, vitamin E acetate, theanine, organic peppermint extract (beauty ingredient mixture) 1.0% 33. Ethanol 8.0% 34.Fragrance 0.5% (*77)C43-1810 SUNCROMA ULTRAMARINE BLUE (DIC) (*78) HELIOS R100S (Topy Industries) (*79) FLAMENCO ORANGE 320C (BASF) (*80) Microglass Metashine MT1120RY (Nippon Sheet Glass Co., Ltd.) (*81) SA-Flamenco Gold (Miyoshi Kasei Co., Ltd.) (*82) Sunsphere NP-200 (AGC Si-Tech) (*83) KSG-016F (Fujikasei Co., Ltd.)
[0082] (Manufacturing method) A. A portion of components 4, 6, 9 to 15, and 23 were added and dispersed uniformly using three rollers. B. Component 26 was swelled with part of components 2, part of components 5, and part of components 33. C. The above A, B, the remainder of components 1 and 2, the remainder of 3 and 4, the remainder of 5, the remainder of 6, 7, 8, 16 to 22, the remainder of 23, 24, 25, and 34 were added and mixed uniformly. D. Components 27 to 32 and the remainder of 33 were mixed and dissolved, and then added to the above C and emulsified. E. The mixture was defoamed to obtain a blush as a water-in-oil cosmetic.
[0083] In Example 31, the content of component (A) was 8.0%, the content of component (C) was 3.0%, the content of component (D) was 0.9%, the (C) / (D) ratio was 3.33 (mass ratio), and the content of component (F) was 6.2%. The water-in-oil blush of Example 31 spread smoothly and provided a non-sticky finish, while also exhibiting excellent skin adhesion and makeup wear. The dispersibility and emulsion stability of the metal oxide were also good.
Claims
1. The following components (A) to (F): (A) one or more substances selected from the group consisting of hydrogenated polyisobutene having an average molecular weight of 200 or less and linear saturated hydrocarbons having 6 to 13 carbon atoms; (B) a volatile silicone oil, (C) a silicone surfactant, (D) one or more substances selected from the group consisting of glycerin fatty acid esters, sorbitan fatty acid esters, and phospholipids; (E) an ultraviolet absorber, and (F) a metal oxide, Contains The volatile silicone oil is a silicone oil having a boiling point of 250°C or less under 1 atmosphere. Water-in-oil emulsion cosmetics.
2. 2. The water-in-oil emulsion cosmetic according to claim 1, wherein component (A) is one or more substances selected from the group consisting of hydrogenated polyisobutene, undecane, and tridecane, each having an average molecular weight of 200 or less.
3. 3. The water-in-oil emulsion cosmetic according to claim 1, wherein the content of component (A) is 1 to 25% by mass based on the total amount of the water-in-oil emulsion cosmetic.
4. 4. The water-in-oil emulsion cosmetic according to claim 1, wherein the mass ratio of the contents of component (C) to component (D) ((C) / (D)) is 0.2 to 20.
5. The water-in-oil emulsion cosmetic according to any one of claims 1 to 4, wherein at least one substance of component (C) is a polyether-modified silicone represented by the following formula (I): 【Chemistry 1】 [In the formula, R 1 represents a hydrogen atom or a linear or branched saturated hydrocarbon group having 1 to 30 carbon atoms; R 2 represents a linear or branched saturated hydrocarbon group having 1 to 30 carbon atoms; R 3 each independently represents a hydrogen atom or a linear or branched saturated hydrocarbon group having 1 to 30 carbon atoms; p is an integer from 0 to 100, m is an integer from 1 to 15, n is an integer from 0 to 15, q is an integer from 0 to 200, a is an integer from 0 to 15, b is an integer from 0 to 200, c is an integer from 0 to 200 (with the proviso that b+c is in the range of 2 to 200), g is an integer from 1 to 5, and h is an integer from 0 to 100.
6. The water-in-oil emulsion cosmetic according to any one of claims 1 to 5, wherein component (C) is one or more substances selected from the group consisting of lauryl PEG-9 polydimethylsiloxyethyl dimethicone, PEG-9 polydimethylsiloxyethyl dimethicone, PEG-10 dimethicone, and cetyl PEG / PPG-10 / 1 dimethicone.
7. 7. The water-in-oil emulsion cosmetic according to claim 1, wherein at least one substance of component (D) is a sorbitan fatty acid ester.
8. 8. The water-in-oil emulsion cosmetic according to any one of claims 1 to 7, wherein component (E) is one or more substances selected from the group consisting of ethylhexyl methoxycinnamate, bisethylhexyloxyphenol methoxyphenyl triazine, diethylaminohydroxybenzoylhexyl benzoate, and polysilicone-15.
9. The water-in-oil emulsion cosmetic according to any one of claims 1 to 8, wherein the content of component (F) is 5 mass% or more based on the total amount of the water-in-oil emulsion cosmetic.
10. 10. The water-in-oil emulsion cosmetic according to any one of claims 1 to 9, wherein component (F) is one or two substances selected from the group consisting of titanium oxide and zinc oxide.
11. The water-in-oil emulsion cosmetic according to any one of claims 1 to 10, wherein component (B) is one or more substances selected from the group consisting of dimethylpolysiloxane, methyltrimethicone, and decamethylcyclopentasiloxane.
12. The following components (A) to (F): (A) one or more substances selected from the group consisting of hydrogenated polyisobutene having an average molecular weight of 200 or less and linear saturated hydrocarbons having 6 to 13 carbon atoms; (B) a volatile silicone oil, (C) a silicone surfactant, (D) one or more substances selected from the group consisting of glycerin fatty acid esters, sorbitan fatty acid esters, and phospholipids; (E) an ultraviolet absorber, and (F) Metal oxide mixing the The volatile silicone oil is a silicone oil having a boiling point of 250°C or less under 1 atmosphere. A method for producing a water-in-oil emulsion cosmetic.
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