Stick-type cosmetics

A stick-type cosmetic formulation combining specific ratios of spherical powders, crosslinked organopolysiloxane, wax, and silicone oil addresses moldability and usability issues, achieving a smooth and spreadable cosmetic product.

JP7720705B2Active Publication Date: 2025-08-08KOSE CORPORATION
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Patent Information

Application Number
JP2021030181
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2020-02-28
Filing Date
2021-02-26
Publication Date
2025-08-08
Estimated Expiration
2041-02-26

AI Technical Summary

Technical Problem

Existing stick-shaped cosmetics struggle with poor moldability, smoothness of application, and usability due to high powder content, lacking a combination of smooth finish, smooth spreadability, and good adhesion.

Method used

A stick-type cosmetic preparation comprising 30 to 50% powder, including spherical powders with specific ratios, crosslinked organopolysiloxane, wax, and silicone oil, achieving a smooth finish and spreadability.

Benefits of technology

The formulation provides a stick-type cosmetic with a smooth finish, smooth spreadability, and good adhesion, enhancing usability.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide stick-like cosmetics having good usability such as a dry finish, smooth spreading, and adhesion.SOLUTION: Stick-like cosmetics comprise component (A) powder 30-50 mass%, component (B) crosslinked organopolysiloxane, component (C) wax 3-10 mass% and component (D) liquid oil including silicone oil. Spherical powder included in component (A) is 60 mass% or more in the component (A).SELECTED DRAWING: None
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Description

[Technical Field]

[0001] The present invention relates to a stick-type cosmetic preparation. [Background technology]

[0002] Many solid cosmetics containing a large amount of powder have been developed by pouring them into jar containers or by press-molding them in metal plates. However, molding them into a stick shape has been considered difficult due to poor fluidity during molding. On the other hand, stick-shaped cosmetics are preferred in the market due to their portability and the convenience of being able to apply them without getting hands dirty. Therefore, there is a demand for the development of stick-shaped cosmetics that combine a smooth finish with a large amount of powder. Previously known technologies for solid cosmetics containing a large amount of powder include a stick-shaped cosmetic that contains 30 to 60% by weight of powder and 5 to 40% by weight of spherical powder, which has good usability (spreadability) and reduced breakage during use (e.g., Patent Document 1), and a technology that achieves good makeup visibility and good application by combining a crosslinked organopolysiloxane, powder, and a fluid oily component (e.g., Patent Document 2). [Prior art documents] [Patent documents]

[0003] [Patent Document 1] Japanese Patent Application Laid-Open No. 2002-187813 [Patent Document 2] Japanese Patent Application Laid-Open No. 2005-206497 Summary of the Invention [Problem to be solved by the invention]

[0004] However, although the former is stick-shaped, it does not have the smooth feel of use that powder cosmetics have, and the latter technology is unsatisfactory in terms of moldability in stick form and smooth feel in use. In view of the above circumstances, an object of the present invention is to provide a stick-shaped cosmetic that combines a smooth finish, smooth spreadability, good adhesion, and other usability characteristics. [Means for solving the problem]

[0005] In light of these circumstances, the present inventors have conducted extensive research to solve the above-mentioned problems, and as a result have discovered that a stick-type cosmetic preparation containing 30 to 50 mass % of a powder including spherical powder in a specific blend ratio, a crosslinked organopolysiloxane, a wax, and a silicone oil has excellent moldability, can achieve a smooth finish, and achieves smooth spreadability, thereby completing the present invention.

[0006] That is, the present invention includes the following. [1] The following components (A) to (D): Component (A) powder 30~50% by mass Component (B) Crosslinked organopolysiloxane Component (C) Wax 3-10% by mass A stick-type cosmetic preparation containing component (D) a liquid oil containing silicone oil, wherein the spherical powder contained in component (A) accounts for 60 mass % or more of component (A). [2] The silicone oil contained in the component (D) is 60 to 90% by mass in the component (D). [3] The spherical powder contained in the component (A) includes two or more types, one with an average particle size of less than 10 μm and the other with an average particle size of 10 μm or more. [4] The spherical powder contained in the component (A) includes approximately spherical powder having irregularities on the surface. [Effects of the Invention]

[0007] The present invention can provide a stick-type cosmetic that combines a smooth finish, smooth spreadability, adhesion, and other usability benefits. DETAILED DESCRIPTION OF THE INVENTION

[0008] The present invention will be described in detail below. In the present specification, the term "mass %" may be simply referred to as "%", but this refers to mass % and "to" refers to a range including the numerical values before and after it. The average particle size in this application is measured as the volume average particle size (D50) using a laser diffraction / scattering particle size distribution analyzer (LA-910, manufactured by Horiba, Ltd.).

[0009] The powder component (A) of the present invention can be any powder acceptable as a cosmetic ingredient, and is not particularly limited. Specific examples include inorganic powders such as titanium oxide, black titanium oxide, cerium oxide, ferrous iron oxide, ultramarine blue, red iron oxide, yellow iron oxide, black iron oxide, zinc oxide, aluminum oxide, silicic anhydride, magnesium oxide, zirconium oxide, magnesium carbonate, calcium carbonate, calcium sulfate, chromium oxide, chromium hydroxide, carbon black, aluminum silicate, magnesium silicate, magnesium aluminum silicate, mica, synthetic mica, sericite, talc, kaolin, silicon carbide, barium sulfate, and boron nitride; Red No. 201; Red No. 202; Organic pigment powders such as Red No. 205, Red No. 226, Red No. 228, Orange No. 203, Orange No. 204, Blue No. 404, Yellow No. 401, Black No. 401, Brown No. 201, Purple No. 401, Blue No. 1, Blue No. 2, Blue No. 203, Blue No. 205, Green No. 3, Green No. 201, Green No. 204, Green No. 205, Green No. 401, Green No. 402, Yellow No. 4, Yellow No. 5, Yellow No. 202(1), Yellow No. 202(2), Yellow No. 203, Yellow No. 402, Yellow No. 403(1), Yellow No. 406, Yellow No. 407, Orange No. 205, Orange No. 402, Red No. 2, Red No. 3, Red Zirconium powders such as Red No. 102, Red No. 104 (1), Red No. 105 (1), Red No. 106, Red No. 227, Red No. 230 (1), Red No. 231, Red No. 401, Red No. 502, Red No. 503, Red No. 504, Red No. 506, organic pigment powders such as barium or aluminum lake, bismuth oxychloride, titanium oxide-coated mica, iron oxide-coated mica, iron oxide-coated mica titanium, organic pigment-coated mica titanium, titanium oxide-coated glass flakes, aluminum powder, glittering powders such as polyethylene terephthalate laminated powder, nylon powder , Polymethyl methacrylate powder, Acrylonitrile-methacrylic acid copolymer powder, Vinylidene chloride-methacrylic acid copolymer powder, Polyethylene powder, Polystyrene powder, (Dimethicone / vinyl dimethicone) crosspolymer powder, (Vinyl dimethicone / methicone silsesquioxane) crosspolymer powder, (Diphenyl dimethicone / vinyl diphenyl dimethicone / silsesquioxane) crosspolymer powder, Polymethyl silsesquioxane powder, Polyurethane powder, Wool powder,Examples include organic powders such as silk powder and N-acyl lysine, and composite powders such as fine particle titanium dioxide-coated mica titanium, fine particle zinc oxide-coated mica titanium, barium sulfate-coated mica titanium, titanium oxide-containing silica, and zinc oxide-containing silica, and one or more of these can be used. These powders can also be surface-treated. The surface treatment agent is not particularly limited as long as it is one that is normally used in cosmetics, and commonly known agents such as fluorine compounds, silicone compounds, hydrocarbons, higher fatty acids, higher alcohols, metal soaps, surfactants, and water-soluble polymers can be used.

[0010] The spherical powder contained in component (A) includes not only true spheres but also nearly spherical, ellipsoidal, and nearly spherical spheres with irregularities on part or all of the spherical surface, with a major axis / minor axis ratio preferably ranging from 1.5 / 1 to 1 / 1, more preferably from 1.2 / 1 to 1 / 1. Furthermore, as long as the powder is spherical, it can be composed entirely of a single component, a core-shell type in which the inner core and outer shell are composed of different components, a powder with different components dispersed inside, a hollow powder with an internal cavity, or even a powder containing or impregnated with a beneficial component, without any particular limitation. Specific examples include organic powders such as polyurethane powder, cellulose powder, nylon powder, polymethyl methacrylate powder, polyethylene powder, and silicone resin powder, and inorganic powders such as silica powder and aluminosilicate powder. Commercially available products include KSP-100 (Shin-Etsu Chemical Co., Ltd.), TOSPEARL 3000A (Momentive Performance Materials Japan), Sunsphere NP-100 (AGC Si-Tech Co., Ltd.), and TOSPEARL 150KA (Momentive Performance Materials Japan).

[0011] The average particle size of the spherical powder contained in component (A) is not particularly limited, but those with an average particle size of 2 to 30 μm are preferably used. Furthermore, the spherical powder is preferably a combination of spherical powders with an average particle size of less than 10 μm (small spherical powders) and spherical powders with an average particle size of 10 μm or more (large spherical powders), and it is more preferable that the small spherical powders be 5 μm or less. The content ratio of the large spherical powders to the small spherical powders is preferably 0.8:1 to 1.2:1, and more preferably 0.8:1 to 1:1. This improves the loosening of the cosmetic during use, achieving a smooth finish and smooth spreadability.

[0012] Inclusion of spherical powders that are not only perfectly spherical but also roughly spherical can further improve the loosening of cosmetics and smooth spreading. Among these, roughly spherical particles with microprotrusions covering the entire particle surface are preferred. These particles have multiple microprotrusions covering the entire surface of a spherical core particle, and the protrusions are not easily removed. The circumscribed circle connecting the vertices of the protrusions is roughly spherical, and the average particle diameter refers to the diameter of the circumscribed circle. In the present invention, polyorganosiloxane-based particles are preferred because they are compatible with the silicone oil contained in components (B) and (C), described below. Commercially available products include TOSPEARL 150KA (manufactured by Momentive Performance Materials), in which both the core spherical particles and the protrusions are polymethylsilsesquioxane, and Silcrusta MK03 (manufactured by Nikko Rica Corporation), in which the core spherical particles are methyl methacrylate crosspolymer and the surface protrusions are polymethylsilsesquioxane.

[0013] The content of component (A) in the present invention is 30 to 50% in the cosmetic, more preferably 35% or more, even more preferably 40% or more, and preferably 45% or less. This range is favorable in terms of a smooth feel when used and moldability into a stick. Furthermore, the spherical powder contained in component (A) is 60% or more in component (A), more preferably 65% or more, and even more preferably 70% or more. This range is favorable in terms of a smooth finish.

[0014] The crosslinked organopolysiloxane (component (B)) of the present invention is a polymer having a three-dimensional crosslinked structure in part, obtained by crosslinking an organopolysiloxane. For example, it can be obtained by addition polymerization of an organohydrogenpolysiloxane containing an average of 1.5 or more silicon-bonded hydrogen atoms per molecule, as shown in (a) below, with a compound having an average of 1.5 or more vinyl reactive sites per molecule, as shown in (b).

[0015] (a) is SiO2 unit, HSiO 1.5 Units, RSiO 1.5 Units, RHSiO units, R2SiO units, R3SiO 0.5 Units and RHSiO 0.5 The organohydrogenpolysiloxane is composed of at least one structural unit selected from the group consisting of units (in the formula, R is a substituted or unsubstituted monovalent hydrocarbon group having 1 to 30 carbon atoms, excluding aliphatic unsaturated groups. The monovalent hydrocarbon group is an alkyl group such as a methyl group, an ethyl group, or a propyl group; an aryl group such as a phenyl group or a tolyl group; an aliphatic unsaturated group such as a vinyl group; an aralkyl group in which a hydrogen atom of a methyl group, an ethyl group, or a propyl group is substituted with an aryl group such as a phenyl group or a tolyl group; a cycloalkyl group such as a cyclohexyl group; a halogenated hydrocarbon group containing a fluoro group; and a hydrocarbon group containing an ethylene oxide group), and contains an average of 1.5 or more hydrogen atoms bonded to silicon atoms per molecule.

[0016] (b) is one or more selected from the following (b-1) to (b-3). (b-1) is the SiO2 unit, (CH2=CH)SiO 1.5 Units, RSiO 1.5 Unit, R(CH2=CH)SiO unit, RSiO unit, RSiO 0.5 Units and R(CH2=CH)SiO 0.5units (wherein R is a substituted or unsubstituted monovalent hydrocarbon group having 1 to 30 carbon atoms, excluding aliphatic unsaturated groups. Examples of monovalent hydrocarbon groups include alkyl groups such as methyl, ethyl, and propyl; aryl groups such as phenyl and tolyl; aliphatic unsaturated groups such as vinyl; aralkyl groups in which a hydrogen atom of a methyl, ethyl, or propyl group is substituted with an aryl group such as phenyl or tolyl; cyclohexyl; halogenated hydrocarbon groups containing a fluoro group; and hydrocarbon groups containing an ethylene oxide group), and the organopolysiloxane contains an average of 1.5 or more vinyl groups bonded to silicon atoms per molecule. (b-2) is a polyoxyalkylene represented by the following general formula (I). C m H 2m-1 O(C2H4O) h (C3H6O) i C m H 2m-1 (I) (In the formula, h is an integer of 2 to 200, i is an integer of 0 to 200, h+i is an integer of 3 to 200, and m is an integer of 2 to 6.) (b-3) is a polyoxyalkylene represented by the following general formula (II). C n H 2n-1 (CH2) j C n H 2n-1 (II) (where n is an integer of 2 to 6, and j is an integer of 1 or more.)

[0017] Specific examples of component (B), by INCI name, include (dimethicone / vinyl dimethicone) crosspolymer, (dimethicone / phenyl vinyl dimethicone) crosspolymer, (dimethicone / lauryl dimethicone) crosspolymer, (dimethicone / (PEG-10 / 15)) crosspolymer, (PEG-15 / lauryl dimethicone) crosspolymer, (dimethicone / polyglycerin-3) crosspolymer, and (lauryl dimethicone / polyglycerin-3) crosspolymer. Although the crosslinked organopolysiloxane can be incorporated in a solid state, it is preferable in terms of film uniformity to incorporate it into the cosmetic in a state swollen with component (A) or another oil. Furthermore, this crosslinked organopolysiloxane is often sold commercially as a mixture with an oil, in which case it is in a state swollen with the oil. This commercially available product can also be used in the present invention. Examples of commercially available products include mixtures of crosslinked methylpolysiloxane and dimethylpolysiloxane such as KSG-6, KSG-16, and KSG-016F, mixtures of crosslinked methylpolysiloxane and decamethylcyclopentasiloxane such as KSG-7 and KSG-15, and KSG-310 and KSG-710 (all manufactured by Shin-Etsu Chemical Co., Ltd.).

[0018] The content of component (B) in the cosmetic is preferably 3% or more, more preferably 4% or more, even more preferably 5% or more, and is preferably 9% or less, more preferably 8% or less, and even more preferably 7% or less. This range is favorable in terms of a smooth feel when used and the moldability of the stick.

[0019] The wax component (C) used in the present invention is not particularly limited as long as it is suitable for use in cosmetics, and may be either a synthetic hydrocarbon wax or a natural or synthetic wax. Its melting point is preferably 70°C or higher, more preferably 80°C or higher, in order to achieve a light, non-sticky feel and high-temperature stability. Specific examples include paraffin wax, ceresin wax, ozokerite wax, microcrystalline wax, Fischer-Tropsch wax, polyethylene wax, ethylene-propylene copolymer, candelilla wax, carnauba wax, beeswax, rice wax, Japan wax, jasmine wax, montan wax, stearyl-modified methylpolysiloxane, and behenyl-modified methylpolysiloxane. One or more of these may be used.

[0020] The content of component (C) in the present invention is 3 to 10%, more preferably 4% or more, particularly preferably 5% or more, and preferably 8% or less, more preferably 7% or less, particularly preferably 6% or less in the cosmetic. This range is preferable because it can be molded into a stick shape and can be smoothly spread.

[0021] The liquid oil component (D) of the present invention is an oil agent that contains silicone oil and is liquid at 25°C. Component (D) can be any oil that is acceptable as a cosmetic ingredient, and specific examples include silicone oils as well as hydrocarbons, fats and oils, hydrogenated oils, ester oils, fatty acid oils, and fluorine-based oils, regardless of their origin, such as animal oils, vegetable oils, and synthetic oils. Specific examples include silicone oils such as methylpolysiloxane and phenyl-modified silicone, hydrocarbons such as liquid paraffin and squalane, fats and oils such as olive oil and jojoba oil, ester oils such as isotridecyl isononanoate and triethylhexanoin, fatty acids such as isostearic acid and oleic acid, and fluorine-based oils such as perfluoropolyethers, and one or more of these can be used.

[0022] The silicone oil contained in component (D) is preferably present in an amount of 60 to 90% in (D) in terms of smooth spreadability and a light feel when used. Examples of such silicone oils include dimethylpolysiloxane, phenyl-modified silicone oil, and fluoro-modified silicone. Furthermore, a viscosity of 6 to 100 mPa·s at 25°C is preferred in terms of smooth spreadability. Commercially available products include KF-96-6cs, KF-96-10cs, KF-96-20cs, and KF-96-100cs (all manufactured by Shin-Etsu Chemical Co., Ltd.).

[0023] The liquid oil other than silicone oil (component (D)) preferably contains an ester oil with a weight-average molecular weight of 500 or less, as this oil has good compatibility with silicone oil and component (C) and allows for the formation of a uniform cosmetic film. Specific examples include isotridecyl isononanoate, triethylhexanoin, and cetyl 2-ethylhexanoate. Commercially available products include Salacos 913 (The Nisshin Oillio Group, Ltd.), SUPER REFINED CRODAMOL TN-LQ-(JP) (Croda Japan Co., Ltd.), MYRITOL GTEH (BASF Japan Ltd.), TIO (TAIWAN) (The Nisshin Oillio Group, Ltd.), Salacos 816T (The Nisshin Oillio Group, Ltd.), and CETIOL SN-1 (BASF Japan).

[0024] The content of component (D) in the present invention is not particularly limited, but is preferably 35% or more, more preferably 40% or more, even more preferably 45% or more, and is preferably 60% or less, more preferably 55% or less, even more preferably 50% or less in the cosmetic. Within this range, a good product can be obtained in terms of obtaining a smooth feel when used.

[0025] In addition to the above-mentioned components (A) to (D), the stick-type cosmetic preparation of the present invention may contain components commonly used in cosmetics, such as coloring components, surfactants, aqueous components, anti-fading agents, antioxidants, antifoaming agents, cosmetic ingredients, preservatives, and fragrances, within limits that do not impair the effects of the present invention.

[0026] The surfactant may be any surfactant commonly used in cosmetics, including nonionic surfactants, anionic surfactants, cationic surfactants, amphoteric surfactants, etc. Examples include nonionic surfactants such as glycerin fatty acid esters, polyglycerin fatty acid esters, propylene glycol fatty acid esters, sorbitan fatty acid esters, sorbitol fatty acid esters, sucrose fatty acid esters, and other esters and alkylene glycol adducts thereof, polyoxyalkylene alkyl-co-modified silicones, and polyether-modified silicones; fatty acids and salts thereof that are paste-like to solid at 25°C, such as stearic acid and lauric acid; anionic surfactants such as polyoxyethylene alkyl ether sulfates, polyoxyethylene alkyl ether phosphates, amino acid-type, sulfate ester-type, sulfonic acid-type, and phosphate ester-type; cationic surfactants such as alkylamine salts, polyamine and alkanolamine fatty acid derivatives, and alkyl quaternary ammonium salts; and amphoteric surfactants such as betaine-type and lecithin.

[0027] The aqueous component may be any component that is soluble in water, and may contain, in addition to water, other moisturizing agents such as glycols such as propylene glycol, 1,3-butylene glycol, dipropylene glycol, and polyethylene glycol; glycerols such as glycerin, diglycerin, and polyglycerin; plant extracts such as aloe vera, lavender, and rose; water-soluble polymers such as sodium hyaluronate, gum arabic, sodium alginate, carrageenan, celluloses, carboxyvinyl polymers, alkyl-added carboxyvinyl polymers, and sodium polyacrylate; and proteins, mucopolysaccharides, collagen, elastin, and keratin. Examples of antioxidants include α-tocopherol and ascorbic acid, examples of cosmetic ingredients include vitamins, anti-inflammatory agents, and herbal medicines, and examples of preservatives include paraoxybenzoic acid esters, phenoxyethanol, and 1,2-pentanediol.

[0028] The stick-type cosmetic preparation of the present invention can achieve a smooth feel even without containing a volatile oil. From the viewpoint of feel, it is desirable that the cosmetic contain no more than 5% of a volatile oil, and even more preferably no more than 1%. The volatile oil referred to here is an oil having a boiling point of 260°C or less at normal pressure.

[0029] The stick-type cosmetic preparation of the present invention is a solid stick-type preparation as long as the oily component is the continuous phase. There are no particular limitations on the shape, and the preparation may be cylindrical, prismatic, polygonal, or any other shape. The optimal shape for use as a cosmetic preparation is one in which the circumscribed circle of the base is 8 to 25φ and the length is 4 to 6 cm or more.

[0030] The method for producing the stick-type cosmetic preparation of the present invention is not particularly limited, and a general production method can be used. For example, the stick-type cosmetic preparation can be obtained by, without particular limitation, heating and uniformly mixing the oily components containing components (B) to (D), followed by uniformly mixing component (A) and other components, filling the mixture into a container, and cooling and solidifying. In the present invention, it is preferable to pour the cosmetic preparation containing components (A) to (D) into a mold in a heated state, and then cooling and solidifying the cosmetic preparation to obtain a stick-type cosmetic preparation. [Example]

[0031] The present invention will be described in detail below with reference to examples, but the present invention is not limited to these examples. Examples 1 to 21 and Comparative Examples 1 to 5: Stick-type cosmetics Examples 1 to 21 and Comparative Examples 1 to 5 having the compositions shown in Tables 1 to 4 were prepared according to the following manufacturing method. The obtained stick-type cosmetic preparations were evaluated using the following evaluation methods for a. "Moldability," b. "Lack of powderiness during use," c. "Smooth spreadability," d. "Light finish," and e. "Adhesion." The results are also shown in the tables.

[0032] [Table 1]

[0033] *1: AEROSIL R972 (manufactured by Nippon Aerosil Co., Ltd.) *2: Sunsphere NP-30 (AGC Si-Tech) *3: Sunsphere NP-100 (AGC Si-Tech) *4: TOSPEARL 145A (Momentive Performance Materials Japan) *5: TOSPEARL 150KA (Momentive Performance Materials Japan)

[0034] [Table 2]

[0035] [Table 3]

[0036] [Table 4]

[0037] (Manufacturing method) A: Components (1) to (11) are heated to 100°C and dissolved. B: Add ingredients (12) to (18) to A and mix evenly. C: B was heated to 100°C to dissolve, degassed, and then poured directly into a stick container, which was then cooled and solidified to obtain a stick-type cosmetic preparation.

[0038] (Evaluation method) For the stick-type cosmetics in Tables 1 to 4, a) "Moldability" was judged visually during filling and molding and the finished product. b) "Lack of powderiness during use," c) "Smooth spreadability," d) "Light finish," and e) "Adhesion" were evaluated in a usage test by a panel of 10 experts, who each evaluated the products according to the following evaluation criteria and the average of their scores was used to make a judgment. [Evaluation criteria] A. Formability Whether the fluidity during molding is good, the product pours easily into the mold, and whether the resulting stick-type cosmetic has a uniform, smooth surface. [Score]:[Evaluation result] 4 points: Good fluidity, can be poured evenly into the mold, and the surface is uniform and smooth. 3 points: The fluidity is somewhat poor, but the surface is uniform and smooth. 2 points: The fluidity is slightly poor, and the surface is slightly uneven. 1 point: Poor fluidity and unevenness on the surface. 0 points: Poor fluidity, unable to be poured evenly and unable to be molded into a stick shape. B. No powdery feeling when used Do you feel a dry, powdery texture in the applied film? [Score]:[Evaluation result] 4 points: No powdery feeling at all when used. 3 points: Not very powdery when used. 2 points: Feels slightly powdery when used. 1 point: Powdery feeling is clearly felt when using. 0 points: It feels very powdery when used. C. Smooth spread When applying, does it spread smoothly and can be applied smoothly without feeling heavy or tugging? [Score]:[Evaluation result] 4 points: Spreads very smoothly. 3 points: Spreads smoothly. 2 points: Slightly lacking in smoothness. 1 point: Feels a little heavy or catchy. 0 points: Feels heavy or catches. 2. Smooth finish When you touch the coating, does it feel smooth and not oily? [Score]:[Evaluation result] 4 points: Not oily and very smooth. 3 points: Not oily and smooth. 2 points: Feels a little oily, but is smooth. 1 point: The finished film feels slightly oily. 0 points: The finished film is oily and sticky. E. Close contact [Score]:[Evaluation result] Whether the makeup film adheres to the skin. 4 points: Feels very tight. 3 points: Feels like it's sticking to the skin. 2 points: Feels slightly tight. 1 point: Doesn't feel very tight. 0 points: No feeling of adhesion. [Judgment criteria] [Average score]: [Judgment] 3.5 or above: ◎ (Excellent) 2.5 or more to less than 3.5: ○ (Good) 1.0 or more to less than 2.5: △ (slightly unacceptable) Less than 1.0: × (not acceptable)

[0039] As can be seen from the results in the table, the stick-type cosmetics of Examples 1 to 21 were excellent in moldability, lack of powderiness during use, smooth spreadability, light finish, and adhesion. On the other hand, Comparative Example 1, which contained a small amount of powder, did not provide a particularly smooth feel, and Comparative Example 2, which contained a large amount of powder, could not be molded into a stick shape. Furthermore, Comparative Example 3, which contained a small amount of spherical powder in the powder, lacked moldability, lacked powdery feel during use, smooth spreadability, and lacked a smooth finish. Comparative Example 4, which contained a small amount of wax, lacked moldability, while Comparative Example 5, which contained a large amount of wax, was particularly lacking in smooth spreadability and a silky finish.

[0040] Example 22: Oily foundation (solid) Ingredients (wt%) 1. Polyethylene wax (melting point 85°C) 2.0 2. Candelilla wax (melting point 75°C) 1.0 3. Ceresin wax (melting point 70°C) 1.0 4. (Dimethicone / Polyglycerin-3) Crosspolymer*6 4.0 5. Dimethylpolysiloxane (25°C kinematic viscosity 1.5 mm2 / s) 5.0 6. Dimethylpolysiloxane (kinematic viscosity at 25°C: 6 mm2 / s) 25.0 7. Cetyl ethylhexanoate remaining amount 8. Isononyl isononanoate 10.0 9. Jojoba Oil 1.0 10. Lavender oil 0.5 11. Macadamia Nut Oil 1.0 12. Polymethyl methacrylate (True spherical powder, average particle diameter 28μm) *7 10.0 13. (Vinyl dimethicone / methyl sesquioxane) crosspolymer (True spherical powder, average particle size 5μm) *8 16.0 14. Bengala 0.15 15. Yellow iron oxide 0.6 16. Black iron oxide 0.04 17. Titanium dioxide 1.5 18. Synthetic mica (plate-like powder, average particle size 5 μm) 12.0 19. Dibutylene glycol 0.5 20. Ethylhexylglycerin 0.2 21.Fragrance 0.1 *6: KSG-710 (Shin-Etsu Chemical Co., Ltd.) *7: Ganz Pearl GM2800 (manufactured by Aica Kogyo Co., Ltd.) *8: KSP-100 (manufactured by Shin-Etsu Chemical Co., Ltd.) (Manufacturing method) A: Components (1) to (11) are heated to 100°C and dissolved. B: Add ingredients (12) to (21) to A and mix evenly. C: B was heated to 90°C to dissolve, degassed, poured into a rubber mold, cooled to solidify, and then loaded into a container to obtain a stick-type oily foundation (solid).

[0041] The oil-based foundation (solid) of Example 22 of the present invention had excellent moldability, was not powdery when used, spread smoothly, and had excellent adhesion to the skin, giving a smooth feel when blending after application.

[0042] Example 23: Antiperspirant Ingredients (wt%) 1. Polyethylene wax (melting point 85°C) 3.0 2. Paraffin wax (melting point 60°C) 2.0 3. Microcrystalline wax (melting point 80°C) 2.0 4. (PEG-15 / Lauryl Dimethicone) Crosspolymer*8 4.0 5. Decamethylcyclopentasiloxane 35.0 6. Cetyl ethylhexanoate 13.0 7. Triethylhexanoin remaining amount 8. Polyethylene Glycol 1.0 9. Sage oil 0.1 10. Peppermint extract 0.1 11. Methyl methacrylate crosspolymer-polymethylsiloxane copolymer (Candy-like, average particle size 3μm) *9 15.0 12. Silica (spherical, average particle size 19 μm) *10 6.0 13. Nylon powder (almost spherical, average particle diameter 14 μm) *11 12.0 14. Zinc oxide (irregular shape, average particle size 2 μm) 4.0 15.Dry potassium aluminum sulfate 4.0 16. 1,2-Pentanediol 0.1 17. Ascorbic acid 0.05 18.Fragrance 0.3 *8: KSG-310 (Shin-Etsu Chemical Co., Ltd.) *9: SILCRUSTA MK03 (manufactured by Nikko Rica Corporation) *10: Sunsphere NP-200 (AGC Si-Tech) *11: Orgasol 2002D (manufactured by Arkema) (Manufacturing method) A: Components (1) to (9) are heated and dissolved at 100°C. B: Add ingredients (10) to (18) in A and mix evenly. C: B was heated to 100°C to melt, degassed, and then poured directly into a stick container, which was then cooled and solidified to obtain a stick-type antiperspirant.

[0043] The antiperspirant of Example 23 of the present invention had excellent moldability, was not powdery when used, had a smooth, spreadable feel, had a light finish and was easy to spread on the skin, and also had excellent adhesion.

[0044] Example 24: Fragrance Stick Ingredients (wt%) 1. Ethylene propylene copolymer (melting point 95°C) 3.0 2. Candelilla wax (melting point 75°C) 2.0 3. Dibutylethylhexanoylglutamide 1.0 4. Dibutyl lauroyl glutamide 2.0 5. (Dimethicone / vinyl dimethicone) crosspolymer *12 2.0 6. Dimethylpolysiloxane (25°C kinematic viscosity 10 mm2 / s) 30.0 7. Octyldodecanol 5.0 8. Tridecyl trimellitate remaining amount 9. Polymethyl methacrylate (True spherical shape, average particle diameter 10.5μm) *13 30.0 10. Synthetic mica (plate-shaped, average particle size 20 μm) 10.0 11. Titanium oxide coated borosilicate (Ca / Al) 2.0 12. Tocopherol 0.1 13.Fragrance 10.0 *12: KSG-16 (25% solids, 75% dimethylpolysiloxane, manufactured by Shin-Etsu Chemical Co., Ltd.) *13: Matsumoto Microsphere M-101 (manufactured by Matsumoto Yushi Pharmaceutical Co., Ltd.) (Manufacturing method) A: Components (1) to (8) are heated and dissolved at 130°C to 150°C. B: Add ingredients (9) to (13) to A and mix evenly. C: B was heated to 110°C and melted, degassed, and then poured into a metal mold. After cooling and solidifying, the mixture was placed in a container to obtain a fragrance stick.

[0045] The fragrance stick of Example 24 of the present invention had excellent moldability, was not powdery when used, had a smooth, spreadable feel, had a light finish that was easy to spread on the skin, and had excellent adhesion, allowing for the application of just the right amount to the skin, allowing for a pleasant fragrance to be worn.

[0046] Example 25: Stick lipstick Ingredients (wt%) 1. Ethylene propylene copolymer (melting point 95°C) 4.0 2. Candelilla wax (melting point 75°C) 2.0 3. Fischer-Tropsch wax (melting point 83°C) 2.0 4. Dimethicone Crosspolymer *14 8.0 5. Dimethylpolysiloxane (25°C kinematic viscosity 5mm2 / s) 20.0 6. Decyltetradecanol 8.0 7. Decaglyceryl decaisostearate remaining amount 8. Decaglyceryl Pentaisostearate 3.0 9. Vaseline 5.0 10. Polymethylsilsesquioxane (True spherical shape, average particle diameter 5μm) *4 15.0 11. Silica (hollow spheres, average particle size 18 μm) 10.0 12. Corn starch octenyl succinate Al (Amorphous, average particle size 15μm) 8.0 13. Red No. 202 2.0 14. Yellow No. 4 1.0 15. Black iron oxide 0.2 16. Titanium dioxide 2.5 17. Titanium dioxide-silica coated synthetic mica 2.0 18.1.2-Octanediol 0.2 19. Dibutylhydroxytoluene 0.02 20.Fragrance 0.1 *14:EL-9240 Silicone Elastomer Blend (14% solids, dimethylpolysiloxane solution, manufactured by Dow-Toray) (Manufacturing method) A: Components (1) to (8) are heated and dissolved at 100 to 110°C. B: Add ingredients (9) to (20) to A and mix evenly. C: B was heated to 95°C and melted, degassed, and then poured into a plastic capsule mold. After cooling and solidifying, the mixture was packed into a container to obtain a stick lipstick.

[0047] The stick lipstick of Example 25 of the present invention had excellent moldability, was not powdery when used, spread smoothly and felt great, had a smooth finish and was easy to spread on the lips, and could be applied in just the right amount on the lips, with excellent adhesion.

Claims

1. The following components (A) to (D): Component (A) powder 30-50% by mass Component (B) Crosslinked Organopolysiloxane Component (C) Wax 3 to 10% by mass Component (D) 35 to 60% by mass of liquid oil containing silicone oil The spherical powder contained in component (A) accounts for 60 mass % or more of (A), A stick-type cosmetic preparation, wherein the silicone oil contained in component (D) is 60 to 90% by mass in (D).

2. 2. The stick-type cosmetic preparation according to claim 1, wherein the spherical powder contained in component (A) includes powder with an average particle size of less than 10 μm and powder with an average particle size of 10 μm or more.

3. 3. The stick-type cosmetic preparation according to claim 1, wherein the spherical powder contained in component (A) comprises substantially spherical powder having an irregular surface.

4. A stick-type cosmetic preparation according to any one of claims 1 to 3, further comprising an ester oil having a weight-average molecular weight of 500 or less as a liquid oil other than the silicone oil.

5. A stick-type cosmetic preparation according to any one of claims 1 to 4, comprising at least one liquid oil selected from the group consisting of isotridecyl isononanoate, triethylhexanoin, and cetyl 2-ethylhexanoate as the liquid oil other than silicone oil.

Citation Information

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