JP2008031137A - Composite organic powder and cosmetic - Google Patents
Composite organic powder and cosmetic Download PDFInfo
- Publication number
- JP2008031137A JP2008031137A JP2006231252A JP2006231252A JP2008031137A JP 2008031137 A JP2008031137 A JP 2008031137A JP 2006231252 A JP2006231252 A JP 2006231252A JP 2006231252 A JP2006231252 A JP 2006231252A JP 2008031137 A JP2008031137 A JP 2008031137A
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- JP
- Japan
- Prior art keywords
- powder
- organic
- hemispherical
- oil
- treated
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Pending
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- 239000002537 cosmetic Substances 0.000 title claims abstract description 24
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- 238000000576 coating method Methods 0.000 claims abstract description 12
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Images
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- Cosmetics (AREA)
Abstract
Description
本発明は、半球状〜略半球状の有機粉末の表面をオクチルトリアルコキシシラン処理された着色顔料及び/または同処理有機色素で被覆することにより、より均一に有機粉末表面が着色顔料及び/または有機色素で被覆されており、顔や立体物の輪郭を強調する効果に優れた複合有機粉末及び化粧料に関する。 In the present invention, the surface of an organic powder having a hemispherical shape to a substantially hemispherical surface is coated with a colored pigment and / or an organic coloring matter treated with octyltrialkoxysilane, so that the surface of the organic powder is more uniformly colored and / or The present invention relates to a composite organic powder and a cosmetic that are coated with an organic pigment and are excellent in the effect of enhancing the outline of a face or a three-dimensional object.
我々は、半球状〜略半球状の形態を持った有機粉末の表面を無機、有機材料で被覆すると、光の入射角に対して70〜80度程度離れた角度の明度が強調されるような光学材料が得られることを見いだしている。 When we coat the surface of organic powder having a hemispherical to almost hemispherical shape with an inorganic or organic material, the brightness at an angle of 70 to 80 degrees away from the incident angle of light is emphasized. It has been found that optical materials can be obtained.
しかしながら、半球状の形態の有機粉末の上を着色顔料及び/または有機色素で均一に被覆しようとしても特定の色素は均一に被覆可能だが、他の色素や着色顔料は不均一にしかできないといったことが発生する。こうした現象がなぜ発生するのかについては不明であり、対策が必要となっていた。 However, even when trying to coat the organic powder in a hemispherical form uniformly with colored pigments and / or organic dyes, specific dyes can be coated uniformly, but other dyes and colored pigments can only be unevenly coated. Will occur. It is unclear why such a phenomenon occurs, and countermeasures have been required.
そこで本発明人らは鋭意検討した結果、本現象には静電気が関与していることを認めた。そこで静電気を利用して機械的な被覆処理を実施すると半球状〜略半球状の形態を持った有機粉末の表面を容易に、かつ均一に、着色顔料及び/または有機色素で被覆することが可能となった。すなわち、母粒子である半球状の形態の有機粉末の上に帯電特性に優れた表面処理をした着色顔料及び/または有機色素を被覆処理することで均一処理が成しえることを見いだした。そこで各種の表面処理剤を検討した結果、各種の表面処理の内、特に有機色素に処理が可能であり、効果の高いものとして、オクチルトリアルコキシシランで表面処理しておくとマイナスの帯電量が増加し、容易に均一な被覆状態になることを見いだした。さらに、容易に処理が成しえるので、機械的に被覆処理していても半球状の形態を持った有機粉末に与えるダメージが少なく、その形態がきちんと維持されることもわかった。そして、こうした手法を用いて得られる複合有機粉末は、顔や立体物の輪郭を強調する効果に優れた性能を示した。 As a result of intensive studies, the present inventors have found that this phenomenon involves static electricity. Therefore, when mechanical coating treatment is performed using static electricity, the surface of the organic powder having a hemispherical to substantially hemispherical shape can be easily and uniformly coated with the color pigment and / or the organic dye. It became. That is, the present inventors have found that a uniform treatment can be achieved by coating a hemispherical organic powder, which is a base particle, with a color pigment and / or an organic dye having a surface treatment excellent in charging characteristics. Therefore, as a result of examining various surface treatment agents, it is possible to treat organic dyes among various surface treatments, and as a highly effective one, negative surface charge can be obtained by surface treatment with octyltrialkoxysilane. It has been found that it increases and easily becomes a uniform coating state. Furthermore, since the treatment can be easily performed, it has been found that even when mechanically coated, the organic powder having a hemispherical shape has little damage and the shape is properly maintained. And the composite organic powder obtained using such a method showed the performance excellent in the effect which emphasizes the outline of a face and a solid object.
本願に記載された発明は、基本的には以下の構成よりなる。
〔1〕半球状〜略半球状の有機粉末の表面をオクチルトリアルコキシシランにて処理された着色顔料及び/または同処理有機色素で被覆することによって被覆したことを特徴とする複合有機粉末。
〔2〕上記〔1〕に記載の複合有機粉末を配合したことを特徴とする化粧料。The invention described in the present application basically includes the following configuration.
[1] A composite organic powder, wherein the surface of a hemispherical to substantially hemispherical organic powder is coated with a color pigment treated with octyltrialkoxysilane and / or the treated organic dye.
[2] A cosmetic comprising the composite organic powder according to [1] above.
本発明では、半球状〜略半球状の有機粉末の表面をオクチルトリアルコキシシラン処理された着色顔料及び/または同処理有機色素で被覆することにより、より均一に有機粉末表面が着色顔料及び/または有機色素で被覆されており、顔や立体物の輪郭を強調する効果に優れた複合有機粉末とその配合化粧料を提供することは明らかである。 In the present invention, the surface of the hemispherical to substantially hemispherical organic powder is coated with the octyltrialkoxysilane-treated color pigment and / or the treated organic dye, so that the surface of the organic powder is more uniformly colored and / or It is obvious to provide a composite organic powder coated with an organic pigment and excellent in the effect of enhancing the contour of a face or a three-dimensional object, and a combination cosmetic thereof.
以下、本発明を詳細に説明する。
本発明の構成は、半球状〜略半球状の有機粉末の表面をオクチルトリアルコキシシラン処理した着色顔料及び/または同処理有機色素で被覆することを特徴とする複合有機粉末にある。本発明で用いる有機粉末は、平均一次粒子径が1〜1000μmの範囲にあり、略レンズ状の形態を含む半球状〜略半球状の形態を有するものであれば、特に限定はないが、その内部には顔料や色素を含有していてもいなくてもよく、合成、天然を問わず、例えば工業的に供給されている積水化成品工業社製の非球状微粒子ポリマーLMX等が知られており(http://www.tech−p.com/product/development/biconvex.html参照。2005年4月29日検索)、また、小麦澱粉、タピオカ澱粉も同様の形態を持ち有用である。
なお、本発明で言う平均一次粒子径とは、レーザー光を用いて粒度分布を測定した際の(体積)平均粒子径や電顕写真から粒子径を実測したもの等を用いて測定したものを意味する。Hereinafter, the present invention will be described in detail.
The constitution of the present invention resides in a composite organic powder characterized in that the surface of a hemispherical to substantially hemispherical organic powder is coated with a colored pigment and / or an organic dye that has been treated with octyltrialkoxysilane. The organic powder used in the present invention is not particularly limited as long as it has an average primary particle diameter in the range of 1 to 1000 μm and has a hemispherical to substantially hemispherical form including a substantially lens-like form. It may or may not contain pigments or pigments inside, for example, non-spherical fine particle polymer LMX made by Sekisui Plastics Co., Ltd., which is supplied industrially, whether synthetic or natural, is known. (Refer to http://www.tech-p.com/product/development/biconvex.html. Searched on April 29, 2005) Also, wheat starch and tapioca starch have similar forms and are useful.
In addition, the average primary particle diameter referred to in the present invention is a value measured using (volume) average particle diameter or particle diameter measured from an electron micrograph when measuring the particle size distribution using laser light. means.
半球状〜略半球状とすることで特異な光学効果を得ることができる以外に、化粧料に配合する場合、球状粉末はすべり性が高すぎるために製品中への配合量が限定されてしまう結果、実効効果がでにくい問題があるが、半球状〜略半球状の形態であると製剤への配合量に実質的な制限がなくなることから、感触と効果が両立しやすいメリットがある。 In addition to being able to obtain a peculiar optical effect by making it hemispherical to substantially hemispherical, when blended into cosmetics, the amount of blended into the product is limited because the spherical powder is too slippery As a result, there is a problem that the effective effect is difficult to be obtained, but since there is no substantial limitation on the blending amount in the preparation when it is in a hemispherical to substantially hemispherical form, there is a merit that it is easy to achieve both feel and effect.
本発明で用いる半球状の有機粉末として、樹脂粉末を使用するときには、アクリル系樹脂、メタクリル系樹脂、スチレン系樹脂のようなビニル系樹脂等の合成樹脂やシリコーン樹脂から形成されたものを使用することができるが、その外に小麦澱粉やタピオカ澱粉を使用することができる。 When resin powder is used as the hemispherical organic powder used in the present invention, a resin formed from a synthetic resin such as an acrylic resin, a methacrylic resin, a vinyl resin such as a styrene resin, or a silicone resin is used. In addition, wheat starch and tapioca starch can be used.
本発明では、上記の半球状〜略半球状の有機粉末の表面をオクチルトリアルコキシシラン処理した着色顔料及び/または同処理有機色素で被覆するが、被覆の方法としては、機械的に被覆する方法、噴霧乾燥、流動層乾燥、湿式被覆処理、乾式被覆処理などの方法が挙げられるが、特に機械的に被覆することが好ましい。機械的とは、ボールミル、アトライタ(例えば三井鉱山社製のアトライタが挙げられる)、ビーズミルなどの媒体攪拌型ミルや磨砕装置を用いて被覆することを指す。媒体としては、ジルコニア、アルミナ、セラミックス、ステンレスなどのビーズやリングを用いることが可能であり、その大きさは装置に合わせて適宜選択すれば良い。また、装置の回転速度は、媒体の大きさ、充填率などによって変化するが、処理によって半球状〜略半球状の有機粉末の形態が変わらないようにすることが肝要である。半球状という形態は不安定であるため、処理条件が強いとどうしても周辺部が欠けて微粉が発生し、光学特性や感触が悪くなる問題が発生する。 In the present invention, the surface of the hemispherical to substantially hemispherical organic powder is coated with a colored pigment and / or an organic dye that has been treated with octyltrialkoxysilane. The coating method is a mechanical coating method. , Spray drying, fluidized bed drying, wet coating treatment, dry coating treatment, and the like, and mechanical coating is particularly preferable. The term “mechanical” refers to coating using a medium stirring type mill such as a ball mill, an attritor (for example, an attritor manufactured by Mitsui Mining Co., Ltd.), a bead mill, or a grinding device. As the medium, beads or rings such as zirconia, alumina, ceramics, and stainless steel can be used, and the size may be appropriately selected according to the apparatus. Further, the rotational speed of the apparatus varies depending on the size of the medium, the filling rate, etc., but it is important that the shape of the hemispherical to substantially hemispherical organic powder is not changed by the treatment. Since the shape of the hemisphere is unstable, there is a problem that if the processing conditions are strong, the peripheral portion is lost and fine powder is generated, resulting in poor optical characteristics and feel.
ここで参考までに上記アトライタを用いた場合の試験条件の例を以下に示す。試験は乾式の場合の例である。充填剤として直径5.5mmのアルミナビーズを用いる。容積5Lのベッセルの場合、充填剤を7.7Kg投入し、そこに半球状〜略半球状の有機粉末とオクチルトリアルコキシシラン処理した着色顔料及び/または同処理有機色素を合計で0.5Kg投入し、300rpmの条件にて10分間混合する。この条件で実施すると半球状の有機粉末の形態はきちんと維持したまま、オクチルトリアルコキシシラン処理した着色顔料及び/または同処理有機色素が有機粉末の表面に均一に被覆した粉末が得られる。 For reference, an example of test conditions when the above-described attritor is used is shown below. The test is an example of a dry type. Alumina beads having a diameter of 5.5 mm are used as the filler. In the case of a vessel having a volume of 5 L, 7.7 kg of filler is charged, and 0.5 kg of hemispherical to approximately hemispherical organic powder and octyltrialkoxysilane-treated color pigment and / or the same organic pigment are charged in total. And mixing for 10 minutes at 300 rpm. When carried out under these conditions, a powder in which the surface of the organic powder is uniformly coated with the colored pigment and / or the organic pigment treated with the octyltrialkoxysilane is obtained while maintaining the shape of the hemispherical organic powder properly.
本発明で用いるオクチルトリアルコキシシラン処理した着色顔料及び/または同処理有機色素の大きさは一次粒子径が1μm未満であることが好ましい。オクチルトリアルコキシシランを選択した理由は、オクチルトリアルコキシシラン処理した際の帯電特性が優れているためである。非接触式の静電気測定機を用いて、各種表面処理顔料を接触帯電させた際の電位を調べると、シリコーン処理、N−アシル化アミノ酸処理、有機チタネート処理、パーフルオロアルキルリン酸エステル塩処理(フッ素処理)、未処理などと比べてオクチルトリアルコキシシラン処理やされたものは帯電電位量が大きい特徴がある。そして、上記の半球状〜略半球状の有機粉末と複合化した場合、帯電電位の大きいもの程、半球状樹脂粉末の表面に均一に処理できる特徴がある。本発明で用いるオクチルトリアルコキシシランのアルコキシ基としては、メトキシ基、エトキシ基、プロポキシ基、イソプロポキシ基から選ばれることが好ましく、特に処理時の安全性やコストなどを考慮すると、エトキシ基が最も好ましい。また、オクチルトリアルコキシシラン表面処理時には加熱処理が行ってあることが好ましい。 The primary particle diameter of the color pigment and / or organic pigment treated with octyltrialkoxysilane used in the present invention is preferably less than 1 μm. The reason for selecting octyltrialkoxysilane is that it has excellent charging characteristics when treated with octyltrialkoxysilane. When the potential when various surface-treated pigments were contact-charged using a non-contact type static electricity measuring device was examined, silicone treatment, N-acylated amino acid treatment, organic titanate treatment, perfluoroalkyl phosphate ester salt treatment ( Those treated with octyltrialkoxysilane treatment are characterized by a large amount of charged potential compared with fluorine treatment) and untreated. When combined with the above hemispherical to substantially hemispherical organic powder, the larger the charging potential, the more uniform the surface of the hemispherical resin powder is. The alkoxy group of the octyltrialkoxysilane used in the present invention is preferably selected from a methoxy group, an ethoxy group, a propoxy group, and an isopropoxy group, and the ethoxy group is the most preferable in view of safety and cost during processing. preferable. In addition, it is preferable that a heat treatment is performed during the octyltrialkoxysilane surface treatment.
オクチルトリアルコキシシランの着色顔料及び/または有機色素無機顔料に対する処理量としては、着色顔料及び/または同処理有機色素の質量に対して0.1〜15質量%の範囲にあることが好ましく、さらに好ましくは1〜12質量%の範囲が挙げられる。オクチルトリアルコキシシランを着色顔料及び/または同処理有機色素に処理する方法としては、例えばミキサーやビーズミルを用いてオクチルトリアルコキシシランを着色顔料及び/または同処理有機色素と混合した後、加熱処理する方法や、溶剤にオクチルトリアルコキシシランを溶解したものと着色顔料及び/または同処理有機色素のスラリーをミキサーやビーズミルを用いて形成した後、溶剤を除去し、加熱処理する方法、着色顔料及び/または同処理有機色素の水性スラリーにオクチルトリアルコキシシランを添加した後、ろ過、乾燥及び加熱処理する方法などが挙げられる。 The treatment amount of the octyltrialkoxysilane with respect to the color pigment and / or the organic dye inorganic pigment is preferably in the range of 0.1 to 15% by mass with respect to the mass of the color pigment and / or the treated organic dye, Preferably the range of 1-12 mass% is mentioned. As a method of treating octyltrialkoxysilane with a colored pigment and / or the same treated organic dye, for example, the octyltrialkoxysilane is mixed with the colored pigment and / or the treated organic dye using a mixer or a bead mill, and then heated. And a method of forming a slurry of octyltrialkoxysilane dissolved in a solvent and a colored pigment and / or the same treated organic dye using a mixer or bead mill, then removing the solvent and heat-treating, a colored pigment and / or Alternatively, there may be mentioned a method of adding octyltrialkoxysilane to the aqueous slurry of the treated organic dye, followed by filtration, drying and heat treatment.
本発明で用いるオクチルトリアルコキシシランを処理した着色顔料及び/または同処理有機色素における、着色顔料、有機色素の例としては、酸化鉄、水酸化鉄、チタン酸鉄の無機赤色顔料、γー酸化鉄等の無機褐色系顔料、黄酸化鉄、黄土等の無機黄色系顔料、黒酸化鉄、カーボンブラック等の無機黒色顔料、マンガンバイオレット、コバルトバイオレット等の無機紫色顔料、水酸化クロム、酸化クロム、酸化コバルト、チタン酸コバルト等の無機緑色顔料、紺青、群青等の無機青色系顔料、タール系色素、タール系色素をレーキ化したもの、天然色素、天然色素をレーキ化したもの等が挙げられ、タール色素としては、赤色3号、赤色104号、赤色106号、赤色201号、赤色202号、赤色204号、赤色205号、赤色220号、赤色226号、赤色227号、赤色228号、赤色230号、赤色401号、赤色505号、黄色4号、黄色5号、黄色202号、黄色203号、黄色204号、黄色401号、青色1号、青色2号、青色201号、青色404号、緑色3号、緑色201号、緑色204号、緑色205号、橙色201号、橙色203号、橙色204号、橙色206号、橙色207号等が挙げられ、また天然色素としては、カルミン酸、ラッカイン酸、カルサミン、ブラジリン、クロシン等が挙げられる。 Examples of color pigments and organic dyes in the color pigments and / or organic dyes treated with octyltrialkoxysilane used in the present invention include iron oxide, iron hydroxide, iron titanate inorganic red pigments, γ-oxidation Inorganic brown pigments such as iron, inorganic yellow pigments such as yellow iron oxide and ocher, inorganic black pigments such as black iron oxide and carbon black, inorganic purple pigments such as manganese violet and cobalt violet, chromium hydroxide, chromium oxide, Inorganic green pigments such as cobalt oxide and cobalt titanate, inorganic blue pigments such as bitumen and ultramarine blue, tar dyes, tar dyes raked, natural dyes, natural dyes raked, etc. As tar pigments, Red No. 3, Red No. 104, Red No. 106, Red No. 201, Red No. 202, Red No. 204, Red No. 205, Red No. 220 Red 226, Red 227, Red 228, Red 230, Red 401, Red 505, Yellow 4, Yellow 5, Yellow 202, Yellow 203, Yellow 204, Yellow 401, Blue 1 No. 2, Blue No. 2, Blue No. 201, Blue No. 404, Green No. 3, Green No. 201, Green No. 204, Green No. 205, Orange No. 201, Orange No. 203, Orange No. 204, Orange No. 206, Orange No. 207, etc. Natural pigments include carminic acid, laccaic acid, calsamine, bradylin, crocin and the like.
本発明の複合有機粉末における半球状〜略半球状の有機粉末と、オクチルトリアルコキシシラン処理着色顔料及び/または同処理有機色素の被覆量の範囲としては、それぞれの質量比で、50:50〜95:5の範囲にあることが好ましい。 The coverage of the hemispherical to substantially hemispherical organic powder in the composite organic powder of the present invention and the octyltrialkoxysilane-treated colored pigment and / or the treated organic dye is in a mass ratio of 50:50 to It is preferably in the range of 95: 5.
本発明では、こうして得られた複合有機粉末を化粧料を始め、樹脂、塗料、紙、インキ、塗料、偽造防止材料等に配合することができる。 In the present invention, the composite organic powder thus obtained can be blended in cosmetics, resins, paints, paper, inks, paints, anti-counterfeiting materials and the like.
本発明の化粧料では、上記の複合有機粉末以外に、化粧料に用いられる各種の顔料、紫外線吸収剤、油剤、界面活性剤、フッ素化合物、樹脂、粘剤、防腐剤、香料、保湿剤、塩類、溶媒、酸化防止剤、キレート剤、中和剤、pH調整剤、昆虫忌避剤、重合開始剤、可塑剤、生理活性成分、触媒又は増粘剤等の成分を使用することができる。 In the cosmetic of the present invention, in addition to the above composite organic powder, various pigments used in cosmetics, ultraviolet absorbers, oils, surfactants, fluorine compounds, resins, adhesives, preservatives, fragrances, moisturizers, Components such as salts, solvents, antioxidants, chelating agents, neutralizing agents, pH adjusting agents, insect repellents, polymerization initiators, plasticizers, physiologically active components, catalysts, or thickeners can be used.
本発明の化粧料で用いる顔料としては、例えば酸化チタン、酸化ジルコニウム、酸化亜鉛、酸化セリウム、酸化マグネシウム、硫酸バリウム、硫酸カルシウム、硫酸マグネシウム、炭酸カルシウム、炭酸マグネシウム、タルク、マイカ、カオリン、セリサイト、白雲母、合成雲母、金雲母、紅雲母、黒雲母、リチア雲母、ケイ酸、無水ケイ酸、ケイ酸アルミニウム、ケイ酸マグネシウム、ケイ酸アルミニウムマグネシウム、ケイ酸カルシウム、ケイ酸バリウム、ケイ酸ストロンチウム、タングステン酸金属塩、ヒドロキシアパタイト、バーミキュライト、ハイジライト、ベントナイト、モンモリロナイト、ヘクトライト、ゼオライト、セラミックスパウダー、第二リン酸カルシウム、アルミナ、水酸化アルミニウム、窒化ホウ素、窒化ボロン、シリカ等;有機粉体としては、ポリアミドパウダー、ポリエステルパウダー、シリコーンエラストマー、シリコーンレジンパウダー、ポリエチレンパウダー、ポリプロピレンパウダー、ポリスチレンパウダー、ポリウレタンパウダー、ベンゾグアナミンパウダー、ポリメチルベンゾグアナミンパウダー、ポリテトラフルオロエチレンパウダー、ポリメチルメタクリレートパウダー、セルロースパウダー、シルクパウダー、12ナイロンや6ナイロン等のナイロンパウダー、ポリアクリルパウダー、ポリアクリルエラストマー、スチレン・アクリル酸共重合体、ジビニルベンゼン・スチレン共重合体、ビニル樹脂、尿素樹脂、フェノール樹脂、フッ素樹脂、ケイ素樹脂、アクリル樹脂、メラミン樹脂、エポキシ樹脂、ポリカーボネイト樹脂、微結晶繊維粉体、デンプン末、ラウロイルリジン等;界面活性剤金属塩粉体(金属石鹸)としては、ステアリン酸亜鉛、ステアリン酸アルミニウム、ステアリン酸カルシウム、ステアリン酸マグネシウム、ミリスチン酸亜鉛、ミリスチン酸マグネシウム、セチルリン酸亜鉛、セチルリン酸カルシウム、セチルリン酸亜鉛ナトリウム等;有色顔料としては、酸化鉄、水酸化鉄、チタン酸鉄の無機赤色顔料、γー酸化鉄等の無機褐色系顔料、黄酸化鉄、黄土等の無機黄色系顔料、黒酸化鉄、カーボンブラック等の無機黒色顔料、マンガンバイオレット、コバルトバイオレット等の無機紫色顔料、水酸化クロム、酸化クロム、酸化コバルト、チタン酸コバルト等の無機緑色顔料、紺青、群青等の無機青色系顔料、タール系色素をレーキ化したもの、天然色素をレーキ化したもの、及びこれらの粉体を複合化した合成有機粉末等;パール顔料としては、酸化チタン被覆雲母、酸化チタン被覆マイカ、オキシ塩化ビスマス、酸化チタン被覆オキシ塩化ビスマス、酸化チタン被覆タルク、魚鱗箔、酸化チタン被覆着色雲母、酸化チタン・酸化鉄被覆マイカ等;金属粉末顔料としては、アルミニウムパウダー、カッパーパウダー、ステンレスパウダー等;微粒子金属酸化物顔料としては、微粒子酸化チタン、微粒子酸化亜鉛、微粒子酸化セリウム等;タール色素としては、赤色3号、赤色104号、赤色106号、赤色201号、赤色202号、赤色204号、赤色205号、赤色220号、赤色226号、赤色227号、赤色228号、赤色230号、赤色401号、赤色505号、黄色4号、黄色5号、黄色202号、黄色203号、黄色204号、黄色401号、青色1号、青色2号、青色201号、青色404号、緑色3号、緑色201号、緑色204号、緑色205号、橙色201号、橙色203号、橙色204号、橙色206号、橙色207号等;天然色素としては、カルミン酸、ラッカイン酸、カルサミン、ブラジリン、クロシン等から選ばれる顔料が挙げられる。これらの顔料の一次粒子径は1nm〜30μmの範囲にあれば特に限定されず、その形態も球状、板状、棒状、紡錘状、不定形状など特に限定されない。 Examples of the pigment used in the cosmetic of the present invention include titanium oxide, zirconium oxide, zinc oxide, cerium oxide, magnesium oxide, barium sulfate, calcium sulfate, magnesium sulfate, calcium carbonate, magnesium carbonate, talc, mica, kaolin, and sericite. , Muscovite, synthetic mica, phlogopite, saucite, biotite, lithia mica, silicic acid, anhydrous silicic acid, aluminum silicate, magnesium silicate, magnesium aluminum silicate, calcium silicate, barium silicate, strontium silicate , Metal tungstate, hydroxyapatite, vermiculite, hydrite, bentonite, montmorillonite, hectorite, zeolite, ceramic powder, dicalcium phosphate, alumina, aluminum hydroxide, boron nitride, boron nitride Silica etc .; Organic powders include polyamide powder, polyester powder, silicone elastomer, silicone resin powder, polyethylene powder, polypropylene powder, polystyrene powder, polyurethane powder, benzoguanamine powder, polymethylbenzoguanamine powder, polytetrafluoroethylene powder, polymethyl Methacrylate powder, cellulose powder, silk powder, nylon powder such as 12 nylon and 6 nylon, polyacryl powder, polyacryl elastomer, styrene / acrylic acid copolymer, divinylbenzene / styrene copolymer, vinyl resin, urea resin, phenol Resin, fluorine resin, silicon resin, acrylic resin, melamine resin, epoxy resin, polycarbonate resin, Crystal fiber powder, starch powder, lauroyl lysine, etc .; surfactant metal salt powder (metal soap) includes zinc stearate, aluminum stearate, calcium stearate, magnesium stearate, zinc myristate, magnesium myristate, cetyl lin Zinc oxide, calcium cetyl phosphate, sodium cetyl phosphate, etc .; colored pigments include iron oxide, iron hydroxide, inorganic red pigments of iron titanate, inorganic brown pigments such as γ-iron oxide, yellow iron oxide, loess, etc. Inorganic yellow pigments, inorganic black pigments such as black iron oxide and carbon black, inorganic purple pigments such as manganese violet and cobalt violet, inorganic green pigments such as chromium hydroxide, chromium oxide, cobalt oxide and cobalt titanate, bitumen and ultramarine blue Inorganic blue pigments such as raked tar pigments, Dye raked and synthetic organic powders made by combining these powders; Pearl pigments include titanium oxide coated mica, titanium oxide coated mica, bismuth oxychloride, titanium oxide coated bismuth oxychloride, titanium oxide coated Talc, fish scale foil, titanium oxide-coated colored mica, titanium oxide / iron oxide-coated mica, etc .; as metal powder pigments, aluminum powder, copper powder, stainless steel powder, etc .; as fine metal oxide pigments, fine particle titanium oxide, fine particle oxidation Zinc, fine particle cerium oxide, etc .; As tar pigments, Red No. 3, Red No. 104, Red No. 106, Red No. 201, Red No. 202, Red No. 204, Red No. 205, Red No. 220, Red No. 226, Red No. 227 No., Red No. 228, Red No. 230, Red No. 401, Red No. 505, Yellow No. 4, Yellow No. 5, Yellow No. 202, Yellow No. 203, Yellow No. 204, Yellow No. 401, Blue No. 1, Blue No. 2, Blue No. 201, Blue No. 404, Green No. 3, Green No. 201, Green No. 204, Green No. 205 Orange 201, orange 203, orange 204, orange 206, orange 207, etc. Examples of natural pigments include pigments selected from carminic acid, lacqueric acid, calsamine, bradylin, crocin and the like. The primary particle diameter of these pigments is not particularly limited as long as it is in the range of 1 nm to 30 μm, and the form thereof is not particularly limited, such as a spherical shape, a plate shape, a rod shape, a spindle shape, and an indefinite shape.
さらに、これらの顔料は撥水性、親水性の各種の表面処理が行われていてもいなくても構わない。表面処理の例としては、例えばメチルハイドロジェンポリシロキサン処理、シリコーンレジン処理、シリコーンガム処理、アクリルシリコーン処理、フッ素化シリコーン処理等のオルガノシロキサン処理、ステアリン酸亜鉛処理等の金属石鹸処理、シランカップリング剤処理、アルキルシラン処理等のシラン処理、有機チタネート処理、有機アルミネート処理、パーフルオロアルキルシラン、パーフルオロアルキルリン酸エステル塩、パーフルオロポリエーテル、フッ素化アクリレート処理等のフッ素化合物処理、N−ラウロイル−L−リジン処理等のアミノ酸処理、スクワラン処理等の油剤処理、アクリル酸アルキル処理等のアクリル処理、シリカ、アルミナ、ジルコニア処理などの無機酸化物処理、寒天処理等が挙げられ、これらの1種以上を組み合わせて使用することが可能である。 Further, these pigments may or may not be subjected to various surface treatments for water repellency and hydrophilicity. Examples of surface treatments include, for example, methylhydrogenpolysiloxane treatment, silicone resin treatment, silicone gum treatment, acrylic silicone treatment, organosiloxane treatment such as fluorinated silicone treatment, metal soap treatment such as zinc stearate treatment, silane coupling, etc. Silane treatment such as agent treatment, alkylsilane treatment, organic titanate treatment, organic aluminate treatment, perfluoroalkylsilane, perfluoroalkyl phosphate ester salt, perfluoropolyether, fluorine compound treatment such as fluorinated acrylate treatment, N- Amino acid treatment such as lauroyl-L-lysine treatment, oil agent treatment such as squalane treatment, acrylic treatment such as alkyl acrylate treatment, inorganic oxide treatment such as silica, alumina, zirconia treatment, agar treatment, etc. seed It is possible to use a combination of above.
また、本発明の化粧料ではワックス、樹脂、ペースト、ガム、増粘剤など化粧料塗布時に粘着性を示す成分を配合することが好ましい。半球〜略半球状の形態を持つ複合有機粉末は、これらの成分が配合されていると肌の上で配向して、凸面を肌の外側に並べたような構造を自発的に作りやすい特性があり、これらの成分が化粧料中に製剤の総量に対して0.1〜15質量%程度の範囲、より好ましくは0.3〜5質量%の範囲で含まれていると、光学特性がより得られやすいメリットがある。 Moreover, it is preferable to mix | blend the component which shows adhesiveness at the time of cosmetics application | coating, such as wax, resin, paste, gum, and a thickener, in the cosmetics of this invention. A composite organic powder having a hemispherical to substantially hemispherical shape has a characteristic that, when these components are blended, it is easy to spontaneously make a structure in which convex surfaces are arranged outside the skin by orienting on the skin. If these components are contained in the cosmetic in the range of about 0.1 to 15% by mass, more preferably in the range of 0.3 to 5% by mass, based on the total amount of the preparation, the optical properties are more There is an advantage that can be easily obtained.
例えば増粘剤の例としては、アラビアゴム、トラガカント、アラビノガラクタン、ローカストビーンガム(キャロブガム)、グアーガム、カラヤガム、カラギーナン、ペクチン、寒天、クインスシード(マルメロ)、デンプン(コメ、トウモロコシ、バレイショ、コムギ)、アルゲコロイド、トラントガム、ローカストビーンガム等の植物系高分子、キサンタンガム、デキストラン、サクシノグルカン、プルラン等の微生物系高分子、コラーゲン、カゼイン、アルブミン、ゼラチン等の動物系高分子、カルボキシメチルデンプン、メチルヒドロキシプロピルデンプン等のデンプン系高分子、メチルセルロース、エチルセルロース、メチルヒドロキシプロピルセルロース、カルボキシメチルセルロース、ヒドロキシメチルセルロース、ヒドロキシプロピルセルロース、ニトロセルロース、セルロース硫酸ナトリウム、カルボキシメチルセルロースナトリウム、結晶セルロース、セルロース末のセルロース系高分子、アルギン酸ナトリウム、アルギン酸プロピレングリコールエステル等のアルギン酸系高分子、ポリビニルメチルエーテル、ポリビニルピロリドン、カルボキシビニルポリマー等のビニル系高分子、ポリエチレングリコール等のポリオキシエチレン系高分子、ポリオキシエチレンポリオキシプロピレン共重合体系高分子、ポリアクリル酸ナトリウム、ポリエチルアクリレート、ポリアクリル酸アミド等のアクリル系高分子、ポリエチレンイミン、カチオンポリマー、ベントナイト、ケイ酸アルミニウムマグネシウム、ラポナイト、スメクタイト、サポナイト、ヘクトライト、無水ケイ酸等の無機系増粘剤等が挙げられ、また油溶性ゲル化剤としては、アルミニウムステアレート、マグネシウムステアレート、ジンクミリステート等の金属セッケン、N−ラウロイル−L−グルタミン酸、α,γ−ジ−n−ブチルアミン等のアミノ酸誘導体、デキストリンパルミチン酸エステル、デキストリンステアリン酸エステル、デキストリン2−エチルヘキサン酸パルミチン酸エステル等のデキストリン脂肪酸エステル、ショ糖パルミチン酸エステル、ショ糖ステアリン酸エステル等のショ糖脂肪酸エステル、モノベンジリデンソルビトール、ジベンジリデンソルビトール等のソルビトールのベンジリデン誘導体、ジメチルベンジルドデシルアンモニウムモンモリロナイトクレー、ジメチルジオクタデシルアンモニウムモンモリナイトクレー等の有機変性粘土鉱物等から選ばれるゲル化剤が挙げられる。これらは必要に応じて1種、または2種以上を用いることができる。 Examples of thickeners include gum arabic, tragacanth, arabinogalactan, locust bean gum (carob gum), guar gum, caraya gum, carrageenan, pectin, agar, quince seed (malmello), starch (rice, corn, potato, wheat) ), Plant polymers such as algae colloids, tant gum and locust bean gum, microbial polymers such as xanthan gum, dextran, succinoglucan and pullulan, animal polymers such as collagen, casein, albumin and gelatin, carboxymethyl starch , Starch-based polymers such as methylhydroxypropyl starch, methylcellulose, ethylcellulose, methylhydroxypropylcellulose, carboxymethylcellulose, hydroxymethylcellulose, hydroxy Propylcellulose, nitrocellulose, sodium cellulose sulfate, sodium carboxymethylcellulose, crystalline cellulose, cellulose polymers such as cellulose powder, alginic acid polymers such as sodium alginate and propylene glycol alginate, polyvinyl methyl ether, polyvinylpyrrolidone, carboxyvinyl polymer, etc. Vinyl polymer, polyoxyethylene polymer such as polyethylene glycol, polyoxyethylene polyoxypropylene copolymer polymer, acrylic polymer such as sodium polyacrylate, polyethyl acrylate, polyacrylamide, polyethylene Imine, cationic polymer, bentonite, magnesium aluminum silicate, laponite, smectite, saponite, hectorite Examples include inorganic thickeners such as silicic anhydride, and oil-soluble gelling agents include metal soaps such as aluminum stearate, magnesium stearate, zinc myristate, N-lauroyl-L-glutamic acid, α, amino acid derivatives such as γ-di-n-butylamine, dextrin palmitate, dextrin stearate, dextrin fatty acid ester such as dextrin 2-ethylhexanoate palmitate, sucrose palmitate, sucrose stearate, etc. Benzylidene derivatives of sorbitol such as sucrose fatty acid ester, monobenzylidene sorbitol, dibenzylidene sorbitol, dimethylbenzyl dodecyl ammonium montmorillonite clay, dimethyl dioctadecyl ammonium montmorillo Gelling agent selected from organic modified clay minerals such as Itokure like. These may be used alone or in combination of two or more as required.
油剤の例としては、例えばアボガド油、アマニ油、アーモンド油、イボタロウ、エノ油、オリーブ油、カカオ脂、カポックロウ、カヤ油、カルナウバロウ、肝油、キャンデリラロウ、キョウニン油、鯨ロウ、硬化油、小麦胚芽油、ゴマ油、コメ胚芽油、コメヌカ油、サトウキビロウ、サザンカ油、サフラワー油、シアバター、シナギリ油、シナモン油、ジョジョバロウ、セラックロウ、タートル油、大豆油、茶実油、ツバキ油、月見草油、トウモロコシ油、ナタネ油、日本キリ油、ヌカロウ、胚芽油、パーシック油、パーム油、パーム核油、ヒマシ油、硬化ヒマシ油、ヒマシ油脂肪酸メチルエステル、ヒマワリ油、ブドウ油、ベイベリーロウ、ホホバ油、マカデミアナッツ油、ミツロウ、綿実油、綿ロウ、モクロウ、モクロウ核油、モンタンロウ、ヤシ油、硬化ヤシ油、トリヤシ油脂肪酸グリセライド、落花生油、ラノリン、液状ラノリン、還元ラノリン、ラノリンアルコール、硬質ラノリン、酢酸ラノリン、ラノリン脂肪酸イソプロピル、ラウリン酸ヘキシル、POEラノリンアルコールエーテル、POEラノリンアルコールアセテート、ラノリン脂肪酸ポリエチレングリコール、POE水素添加ラノリンアルコールエーテル、卵黄油等;炭化水素油として、オゾケライト、スクワラン、スクワレン、セレシン、パラフィン、パラフィンワックス、流動パラフィン、プリスタン、ポリイソブチレン、マイクロクリスタリンワックス、ワセリン等;高級脂肪酸としては、ラウリン酸、ミリスチン酸、パルミチン酸、ステアリン酸、ベヘン酸、ウンデシレン酸、オレイン酸、リノール酸、リノレン酸、アラキドン酸、エイコサペンタエン酸(EPA)、ドコサヘキサエン酸(DHA)、イソステアリン酸、12−ヒドロキシステアリン酸等;高級アルコールとしては、ラウリルアルコール、ミリスチルアルコール、パルミチルアルコール、ステアリルアルコール、ベヘニルアルコール、ヘキサデシルアルコール、オレイルアルコール、イソステアリルアルコール、ヘキシルドデカノール、オクチルドデカノール、セトステアリルアルコール、2−デシルテトラデシノール、コレステロール、フィトステロール、POEコレステロールエーテル、モノステアリルグリセリンエーテル(バチルアルコール)、モノオレイルグリセリルエーテル(セラキルアルコール)等;エステル油としては、アジピン酸ジイソブチル、アジピン酸2−ヘキシルデシル、アジピン酸ジ−2−ヘプチルウンデシル、モノイソステアリン酸N−アルキルグリコール、イソステアリン酸イソセチル、トリイソステアリン酸トリメチロールプロパン、ジ−2−エチルヘキサン酸エチレングリコール、2−エチルヘキサン酸セチル、トリ−2−エチルヘキサン酸トリメチロールプロパン、テトラ−2−エチルヘキサン酸ペンタエリスリトール、オクタン酸セチル、オクチルドデシルガムエステル、オレイン酸オレイル、オレイン酸オクチルドデシル、オレイン酸デシル、ジカプリン酸ネオペンチルグリコール、クエン酸トリエチル、コハク酸2−エチルヘキシル、酢酸アミル、酢酸エチル、酢酸ブチル、ステアリン酸イソセチル、ステアリン酸ブチル、セバシン酸ジイソプロピル、セバシン酸ジ−2−エチルヘキシル、乳酸セチル、乳酸ミリスチル、パルミチン酸イソプロピル、パルミチン酸2−エチルヘキシル、パルミチン酸2−ヘキシルデシル、パルミチン酸2−ヘプチルウンデシル、12−ヒドロキシステアリル酸コレステリル、ジペンタエリスリトール脂肪酸エステル、ミリスチン酸イソプロピル、ミリスチン酸オクチルドデシル、ミリスチン酸2−ヘキシルデシル、ミリスチン酸ミリスチル、ジメチルオクタン酸ヘキシルデシル、ラウリン酸エチル、ラウリン酸ヘキシル、N−ラウロイル−L−グルタミン酸−2−オクチルドデシルエステル、リンゴ酸ジイソステアリル等;グリセライド油としては、アセトグリセリル、トリイソオクタン酸グリセリル、トリイソステアリン酸グリセリル、トリイソパルミチン酸グリセリル、モノステアリン酸グリセリル、ジ−2−ヘプチルウンデカン酸グリセリル、トリミリスチン酸グリセリル、ミリスチン酸イソステアリン酸ジグリセリル等が挙げられる。 Examples of oils include, for example, avocado oil, linseed oil, almond oil, ibotarou, eno oil, olive oil, cacao butter, kapok wax, kaya oil, carnauba wax, liver oil, candelilla wax, kyounin oil, whale wax, hardened oil, wheat germ Oil, sesame oil, rice germ oil, rice bran oil, sugarcane wax, sasanqua oil, safflower oil, shea butter, cinnamon oil, cinnamon oil, jojoballow, shellac wax, turtle oil, soybean oil, tea seed oil, camellia oil, evening primrose oil Corn oil, rapeseed oil, Japanese Kiri oil, Nukarou, germ oil, Persic oil, palm oil, palm kernel oil, castor oil, hydrogenated castor oil, castor oil fatty acid methyl ester, sunflower oil, grape oil, bayberry wax, jojoba oil, Macadamia nut oil, beeswax, cottonseed oil, cotton wax, molasses, mollusc kernel oil, montan C, palm oil, hydrogenated palm oil, tricoconut oil fatty acid glyceride, peanut oil, lanolin, liquid lanolin, reduced lanolin, lanolin alcohol, hard lanolin, lanolin acetate, lanolin fatty acid isopropyl, hexyl laurate, POE lanolin alcohol ether, POE lanolin alcohol Acetate, lanolin fatty acid polyethylene glycol, POE hydrogenated lanolin alcohol ether, egg yolk oil, etc .; hydrocarbon oils such as ozokerite, squalane, squalene, ceresin, paraffin, paraffin wax, liquid paraffin, pristane, polyisobutylene, microcrystalline wax, petrolatum, etc. Higher fatty acids include lauric acid, myristic acid, palmitic acid, stearic acid, behenic acid, undecylenic acid, oleic acid, linol Linolenic acid, arachidonic acid, eicosapentaenoic acid (EPA), docosahexaenoic acid (DHA), isostearic acid, 12-hydroxystearic acid, etc .; higher alcohols include lauryl alcohol, myristyl alcohol, palmityl alcohol, stearyl alcohol, behenyl alcohol, Hexadecyl alcohol, oleyl alcohol, isostearyl alcohol, hexyl decanol, octyldodecanol, cetostearyl alcohol, 2-decyltetradecinol, cholesterol, phytosterol, POE cholesterol ether, monostearyl glycerol ether (batyl alcohol), monooleyl glyceryl Ether (ceralkyl alcohol), etc .; ester oils include diisobutyl adipate, adipic acid 2-hexyldecyl, di-2-heptylundecyl adipate, N-alkyl glycol monoisostearate, isocetyl isostearate, trimethylolpropane triisostearate, ethylene glycol di-2-ethylhexanoate, cetyl 2-ethylhexanoate Trimethylolpropane tri-2-ethylhexanoate, pentaerythritol tetra-2-ethylhexanoate, cetyl octanoate, octyldodecyl gum ester, oleyl oleate, octyldodecyl oleate, decyl oleate, neopentyl glycol dicaprate, Triethyl citrate, 2-ethylhexyl succinate, amyl acetate, ethyl acetate, butyl acetate, isocetyl stearate, butyl stearate, diisopropyl sebacate, di-2 sebacate Ethylhexyl, cetyl lactate, myristyl lactate, isopropyl palmitate, 2-ethylhexyl palmitate, 2-hexyldecyl palmitate, 2-heptylundecyl palmitate, cholesteryl 12-hydroxystearylate, dipentaerythritol fatty acid ester, isopropyl myristate, Octyldodecyl myristate, 2-hexyldecyl myristate, myristyl myristate, hexyldecyl dimethyloctanoate, ethyl laurate, hexyl laurate, N-lauroyl-L-glutamic acid-2-octyldodecyl ester, diisostearyl malate, etc. Glyceride oils include acetoglyceryl, glyceryl triisooctanoate, glyceryl triisostearate, glyceryl triisopalmitate, Glyceryl stearate, di-2-heptyl undecanoic acid, glyceryl trimyristate, diglyceryl, and the like myristyl isostearate.
また、各種のシリコーン系化合物も好適に用いられ、例えばジメチルポリシロキサン、メチルフェニルポリシロキサン,メチルハイドロジェンポリシロキサン、ジメチルシロキサン・メチルフェニルシロキサン共重合体等の低粘度から高粘度のオルガノポリシロキサン、オクタメチルシクロテトラシロキサン、デカメチルシクロペンタシロキサン、ドデカメチルシクロヘキサシロキサン,テトラメチルテトラハイドロジェンシクロテトラシロキサン、テトラメチルテトラフェニルシクロテトラシロキサン等の環状シロキサン、高重合度のガム状ジメチルポリシロキサン、ガム状のジメチルシロキサン・メチルフェニルシロキサン共重合体等のシリコーンガム、及び該シリコーンガムの環状ポリシロキサン溶液、トリメチルシロキシケイ酸、トリメチルシロキシケイ酸の環状ポリシロキサン溶液、ステアロキシリコーン等の高級アルコキシ変性シリコーン、高級脂肪酸変性シリコーン、アルキル変性シリコーン、アミノ変性シリコーン、シリコーン樹脂、シリコーンレジン、メチルトリメチコン等が挙げられる。 Various silicone compounds are also preferably used. For example, dimethylpolysiloxane, methylphenylpolysiloxane, methylhydrogenpolysiloxane, dimethylsiloxane / methylphenylsiloxane copolymer, etc. Cyclic siloxanes such as octamethylcyclotetrasiloxane, decamethylcyclopentasiloxane, dodecamethylcyclohexasiloxane, tetramethyltetrahydrogencyclotetrasiloxane, tetramethyltetraphenylcyclotetrasiloxane, etc., highly polymerized gum-like dimethylpolysiloxane, gum Silicone gum such as a dimethylsiloxane / methylphenylsiloxane copolymer, and a cyclic polysiloxane solution of the silicone gum, trimethylsiloxysilicate, Cyclic polysiloxane solution siloxy silicic acid, higher alkoxy-modified silicones such as stearoxysilicone silicone, higher fatty acid-modified silicones, alkyl-modified silicones, amino-modified silicone, silicone resin, silicone resin, methyl trimethicone and the like.
本発明の化粧料で使用される紫外線吸収剤としては、例えばサリチル酸ホモメンチル、オクトクリレン、ジパラメトキシケイ皮酸モノ−2−エチルヘキサン酸グリセリル、パラアミノ安息香酸及びそのエステル、4−tert−ブチル−4’−メトキシジベンゾイルメタン、4−(2−β−グルコピラノシロキシ)プロポキシ−2−ヒドロキシベンゾフェノン、サリチル酸オクチル、2,5−ジイソプロピルケイ皮酸メチル、2−[4−(ジエチルアミノ)−2−ヒドロキシベンゾイル]安息香酸ヘキシルエステル、シノキサート、ジヒドロキシジメトキシベンゾフェノン、ジヒドロキシジメトキシベンゾフェノンジスルホン酸ナトリウム、ジヒドロキシベンゾフェノン、ジメチコジエチルベンザルマロネート、1−(3,4−ジメトキシフェニル)−4,4−ジメチル−1,3−ペンタンジオン、ジメトキシベンジリデンジオキソイミダゾリジンプロピオン酸2−エチルヘキシル、テトラヒドロキシベンゾフェノン、テレフタリリデンジカンフルスルホン酸、2,4,6−トリス[4−(2−エチルヘキシルオキシカルボニル)アニリノ]−1,3,5−トリアジン、トリメトキシケイ皮酸メチルビス(トリメチルシロキシ)シリルイソペンチル、ドロメトリゾールトリシロキサン、パラジメチルアミノ安息香酸アミル、パラジメチルアミノ安息香酸2−エチルヘキシル、パラメトキシケイ皮酸オクチル、パラメトキシケイ皮酸イソプロピル・ジイソプロピルケイ皮酸エステル混合物、2−ヒドロキシ−4−メトキシベンゾフェノン、ヒドロキシメトキシベンゾフェノンスルホン酸及びその三水塩、ヒドロキシメトキシベンゾフェノンスルホン酸ナトリウム、フェニルベンズイミダゾールスルホン酸、フェルラ酸、2,2’−メチレンビス(6−(2H−ベンゾトリアゾール−2−イル)−4−(1,1,3,3−テトラメチルブチル)フェノール)等が挙げられる。 Examples of the ultraviolet absorber used in the cosmetic of the present invention include homomenthyl salicylate, octocrylene, diparamethoxycinnamate mono-2-ethylhexanoate glyceryl, paraaminobenzoic acid and its ester, 4-tert-butyl-4 '-Methoxydibenzoylmethane, 4- (2-β-glucopyranosyloxy) propoxy-2-hydroxybenzophenone, octyl salicylate, methyl 2,5-diisopropylcinnamate, 2- [4- (diethylamino) -2- Hydroxybenzoyl] benzoic acid hexyl ester, sinoxate, dihydroxydimethoxybenzophenone, dihydroxydimethoxybenzophenone sodium disulfonate, dihydroxybenzophenone, dimethicodiethylbenzalmalonate, 1- (3,4-dimethoxyphenyl) Nyl) -4,4-dimethyl-1,3-pentanedione, dimethoxybenzylidenedioxoimidazolidinepropionate 2-ethylhexyl, tetrahydroxybenzophenone, terephthalylidene dicanfursulfonic acid, 2,4,6-tris [4- (2-Ethylhexyloxycarbonyl) anilino] -1,3,5-triazine, methylbis (trimethylsiloxy) silylisopentyl trimethoxycinnamate, drometrizol trisiloxane, amyl paradimethylaminobenzoate, paradimethylaminobenzoic acid 2-ethylhexyl, octyl paramethoxycinnamate, isopropyl dimethoxycinnamate / diisopropyl cinnamate ester mixture, 2-hydroxy-4-methoxybenzophenone, hydroxymethoxybenzophenonesulfonic acid And trihydrate thereof, sodium hydroxymethoxybenzophenonesulfonate, phenylbenzimidazolesulfonic acid, ferulic acid, 2,2′-methylenebis (6- (2H-benzotriazol-2-yl) -4- (1,1,3) , 3-tetramethylbutyl) phenol) and the like.
また、アルコール類としては、エタノール、プロパノール、イソプロパノール等の低級アルコール、ソルビトール、マルトース、マルチトール等の糖アルコール等、ステロールとして、コレステロール、シトステロール、フィトステロール、ラノステロール等、ブドウ糖、ショ糖、乳糖、ラフィノース、トレハロース、キシリトール、グリセリン、プロピレングリコール、ジプロピレングリコール、トリプロピレングリコール、ポリプロピレングリコール、1,3−ブチレングリコール、エチレングリコール、ジエチレングリコール、トリエチレングリコール、ポリグリセリン、ヒアルロン酸、コンドロイチン硫酸、ピロリドンカルボン酸塩、ポリオキシエチレンメチルグルコシド、ポリオキシプロピレンメチルグルコシド、エチルグルコシド等が挙げられる。 Further, as alcohols, lower alcohols such as ethanol, propanol, isopropanol, sugar alcohols such as sorbitol, maltose, maltitol, etc., sterols, cholesterol, sitosterol, phytosterols, lanosterol, etc., glucose, sucrose, lactose, raffinose, Trehalose, xylitol, glycerin, propylene glycol, dipropylene glycol, tripropylene glycol, polypropylene glycol, 1,3-butylene glycol, ethylene glycol, diethylene glycol, triethylene glycol, polyglycerin, hyaluronic acid, chondroitin sulfate, pyrrolidone carboxylate, Polyoxyethylene methyl glucoside, polyoxypropylene methyl glucoside, ethyl glucosi Etc. The.
本発明の化粧料では、上記の複合有機粉末を化粧料の総量に対して1〜99.9質量%の範囲で配合することが可能である。実効効果を得るために、なるべく高濃度で複合有機粉末を配合することが好ましく、より好ましくは化粧料の総量に対して25〜99.9質量%の範囲で配合することが好ましい。 In the cosmetics of this invention, it is possible to mix | blend said composite organic powder in the range of 1-99.9 mass% with respect to the total amount of cosmetics. In order to obtain an effective effect, it is preferable to mix the composite organic powder at a concentration as high as possible, more preferably 25 to 99.9% by mass with respect to the total amount of the cosmetic.
本発明の化粧料としては、ファンデーション、コンシーラー、頬紅、白粉、アイシャドウ、マスカラ、アイライナー、フェースパウダー、口紅、リップグロス、ネイルカラー等のメイクアップ化粧料や、ボディパウダー、ボディミルク又はボディローション等の全身用化粧料、サンスクリーン、化粧下地、乳液、クリーム、ミルク、エッセンス等の基礎化粧料、染毛料、ヘアマニュキュア又はヘアスプレー等の頭髪化粧料等が挙げられるが、特にファンデーション、コンシーラー、口紅、化粧下地が本複合有機粉末の意匠効果が得られやすいメリットがある。 The cosmetics of the present invention include makeup cosmetics such as foundation, concealer, blusher, white powder, eye shadow, mascara, eyeliner, face powder, lipstick, lip gloss, nail color, body powder, body milk or body lotion. And other basic cosmetics such as sunscreen, makeup base, emulsion, cream, milk, essence and other basic cosmetics, hair dyes, hair cosmetics such as hair manicure or hair spray, etc. Lipsticks and makeup bases have the advantage that the design effect of the composite organic powder can be easily obtained.
以下、実施例及び比較例によって本発明を更に詳細に説明する。 Hereinafter, the present invention will be described in more detail with reference to Examples and Comparative Examples.
有機色素の一種である黄色4号アルミニウムレーキ100質量部とオクチルトリエトキシシラン5質量部をミキサーを用いて混合した後、100℃にて3時間加熱処理し、オクチルトリエトキシシラン5質量%処理黄色4号アルミニウムレーキを得た。次いで、半球状有機粉末(積水化成品工業製テクポリマー 平均一次粒子径10μm、架橋ポリメタクリル酸メチル)70質量部と、前記オクチルトリエトキシシラン5質量%処理黄色4号アルミニウムレーキ30質量部を粗混合した。これを乾式アトライタ(三井鉱山社製、容積5L)を用い、充填剤として直径5.5mmのアルミナビーズを7.7Kg投入し、そこに上記粗混合原料を0.5Kg投入し、300rpmの条件にて10分間混合した。得られた粉末を走査型電子顕微鏡を用いて粉末の表面状態を観察した結果、図1に示すように半球状有機粉末の表面はきれいにオクチルトリエトキシシラン処理黄色4号アルミニウムレーキに覆われていることが判った。 After mixing 100 parts by weight of yellow No. 4 aluminum lake, which is a kind of organic dye, and 5 parts by weight of octyltriethoxysilane using a mixer, the mixture is heat treated at 100 ° C. for 3 hours, and treated with 5% by weight of octyltriethoxysilane. A No. 4 aluminum lake was obtained. Next, 70 parts by mass of hemispherical organic powder (Techpolymer average
この複合有機粉末10質量部をエチルアルコール40質量部と混合し、それをクリアラッカー160質量部と混ぜた後、超音波で5分粉砕したものをスリット幅0.1mmのアプリケーターを用いてポリエチレンテレフタレートフィルムに塗工し、乾燥させたところ、このフィルムは入射角から60度以上離れた角度において色、明度が強調される特徴を有していた。 10 parts by weight of this composite organic powder is mixed with 40 parts by weight of ethyl alcohol, mixed with 160 parts by weight of clear lacquer, and then pulverized with ultrasonic waves for 5 minutes using an applicator with a slit width of 0.1 mm to polyethylene terephthalate When the film was applied to the film and dried, the film was characterized in that color and brightness were emphasized at an angle of 60 degrees or more from the incident angle.
実施例1の黄色4号アルミニウムレーキの代わりに黄色5号アルミニウムレーキを用いた他は全て実施例1と同様にして製品を得た。得られた粉末を走査型電子顕微鏡を用いて粉末の表面状態を観察した結果、図2に示すように半球状有機粉末の表面はきれいにオクチルトリエトキシシラン処理黄色5号アルミニウムレーキに覆われていることが判った。この複合有機粉末を前記同様フィルムに塗工して光学特性の評価を実施した結果、このフィルムは入射角から60度以上離れた角度において色、明度が強調される特徴を有していた。 A product was obtained in the same manner as in Example 1 except that Yellow No. 5 aluminum lake was used instead of Yellow No. 4 aluminum lake in Example 1. As a result of observing the surface state of the obtained powder using a scanning electron microscope, the surface of the hemispherical organic powder was cleanly covered with octyltriethoxysilane-treated yellow No. 5 aluminum lake as shown in FIG. I found out. As a result of applying the composite organic powder to the film as described above and evaluating the optical characteristics, the film was characterized in that the color and brightness were emphasized at an angle of 60 degrees or more from the incident angle.
実施例1のオクチルトリエトキシシラン処理黄色4号アルミニウムレーキの代わりに、未処理の黄色4号アルミニウムレーキを用い、実施例1と同様にして製品を得た。得られた粉末を走査型電子顕微鏡を用いて粉末の表面状態を観察した結果、図3に示すように半球状有機粉末の表面は未処理面が露出し、オクチルトリエトキシシラン処理黄色4号アルミニウムレーキには不均一にしか覆われていなかった。また、この試料をフィルムに加工したところ、このフィルムは入射角から60度以上離れた角度において色、明度がわずかに強調される効果を有していたが、その程度は実施例1と比べてかなり弱いものであった。 An untreated yellow No. 4 aluminum lake was used in place of the octyltriethoxysilane-treated yellow No. 4 aluminum lake of Example 1, and a product was obtained in the same manner as in Example 1. As a result of observing the surface state of the obtained powder using a scanning electron microscope, the surface of the hemispherical organic powder was exposed as shown in FIG. 3, and the octyltriethoxysilane-treated yellow No. 4 aluminum was exposed. The rake was only covered unevenly. Further, when this sample was processed into a film, this film had an effect of slightly enhancing the color and lightness at an angle of 60 degrees or more from the incident angle. It was quite weak.
実施例2のオクチルトリエトキシシラン処理黄色5号アルミニウムレーキの代わりに、未処理の黄色5号アルミニウムレーキを用い、実施例2と同様にして製品を得た。得られた粉末を走査型電子顕微鏡を用いて粉末の表面状態を観察した結果、図4に示すように半球状有機粉末の表面は未処理面が露出し、オクチルトリエトキシシラン処理黄色5号アルミニウムレーキには不均一にしか覆われていなかった。また、この試料をフィルムに加工したところ、このフィルムは入射角から60度以上離れた角度において色、明度がわずかに強調される効果を有していたが、その程度は実施例2と比べてかなり弱いものであった。 An untreated yellow No. 5 aluminum lake was used in place of the octyltriethoxysilane-treated yellow No. 5 aluminum lake of Example 2, and a product was obtained in the same manner as in Example 2. As a result of observing the surface state of the obtained powder using a scanning electron microscope, the surface of the hemispherical organic powder was exposed as shown in FIG. 4, and the octyltriethoxysilane treated yellow No. 5 aluminum was exposed. The rake was only covered unevenly. Further, when this sample was processed into a film, this film had an effect of slightly enhancing the color and lightness at an angle of 60 degrees or more from the incident angle. It was quite weak.
実施例1の半球状有機粉末とオクチルトリエトキシシラン処理黄色4号アルミニウムレーキの混合質量比率を70:30から85:15に変更した他は全て実施例1と同様にして製品を得た。得られた粉末の表面を走査型電子顕微鏡を用いて観察したところ、表面は均一に被覆されていることが確認された。また、この試料をフィルムに加工したところ、このフィルムは入射角から60度以上離れた角度において色、明度が強調される効果を有していた。 A product was obtained in the same manner as in Example 1 except that the mixing mass ratio of the hemispherical organic powder of Example 1 and the octyltriethoxysilane-treated yellow No. 4 aluminum lake was changed from 70:30 to 85:15. When the surface of the obtained powder was observed using a scanning electron microscope, it was confirmed that the surface was uniformly coated. Further, when this sample was processed into a film, this film had an effect of enhancing color and brightness at an angle of 60 degrees or more from the incident angle.
実施例2の半球状有機粉末とオクチルトリエトキシシラン処理黄色5号アルミニウムレーキの混合質量比率を70:30から90:10に変更した他は全て実施例2と同様にして製品を得た。得られた粉末の表面を走査型電子顕微鏡を用いて観察したところ、表面は均一に被覆されていることが確認された。また、この試料をフィルムに加工したところ、このフィルムは入射角から60度以上離れた角度において色、明度が強調される効果を有していた。 A product was obtained in the same manner as in Example 2 except that the mixing mass ratio of the hemispherical organic powder of Example 2 and the octyltriethoxysilane-treated yellow No. 5 aluminum lake was changed from 70:30 to 90:10. When the surface of the obtained powder was observed using a scanning electron microscope, it was confirmed that the surface was uniformly coated. Further, when this sample was processed into a film, this film had an effect of enhancing color and brightness at an angle of 60 degrees or more from the incident angle.
着色無機顔料の一種である黄色酸化鉄100質量部とオクチルトリエトキシシラン5質量部をイソプロピルアルコール1000質量部中に混合しよく攪拌した。溶媒を減圧、加熱留去した後、115℃にて6時間加熱処理し、オクチルトリエトキシシラン5質量%処理黄色酸化鉄を得た。次いで、半球状有機粉末(積水化成品工業製テクポリマー 平均一次粒子径10μm、架橋ポリメタクリル酸メチル)92質量部と、前記オクチルトリエトキシシラン5質量%処理黄色酸化鉄8質量部を粗混合した。これを乾式アトライタ(三井鉱山社製、容積5L)を用い、充填剤として直径5.5mmのアルミナビーズを7.7Kg投入し、そこに上記粗混合原料を0.5Kg投入し、300rpmの条件にて10分間混合した。得られた粉末を走査型電子顕微鏡を用いて粉末の表面状態を観察したところ、均一に被覆がされていることが確認された。また、この試料をフィルムに加工したところ、このフィルムは入射角から60度以上離れた角度において色、明度が強調される効果を有していた。 100 parts by mass of yellow iron oxide which is a kind of colored inorganic pigment and 5 parts by mass of octyltriethoxysilane were mixed in 1000 parts by mass of isopropyl alcohol and stirred well. After the solvent was distilled off under reduced pressure and heated, heat treatment was performed at 115 ° C. for 6 hours to obtain yellow iron oxide treated with 5% by mass of octyltriethoxysilane. Next, 92 parts by mass of hemispherical organic powder (Techpolymer average primary particle diameter of 10 μm, cross-linked polymethyl methacrylate manufactured by Sekisui Plastics Co., Ltd.) and 8 parts by mass of yellow iron oxide treated with 5% by mass of the octyltriethoxysilane were roughly mixed. . Using a dry attritor (Mitsui Mining Co., Ltd., volume 5 L), 7.7 Kg of alumina beads having a diameter of 5.5 mm were added as a filler, and 0.5 Kg of the above coarsely mixed raw material was added thereto, under the condition of 300 rpm. And mixed for 10 minutes. When the surface state of the obtained powder was observed using a scanning electron microscope, it was confirmed that the powder was uniformly coated. Further, when this sample was processed into a film, this film had an effect of enhancing color and brightness at an angle of 60 degrees or more from the incident angle.
有機色素の一種である赤色202号100質量部とオクチルトリエトキシシラン5質量部をミキサーを用いて混合した後、100℃にて3時間加熱処理し、オクチルトリエトキシシラン5質量%処理赤色201号を得た。次いで、半球状有機粉末(小麦澱粉)80質量部と、前記オクチルトリエトキシシラン5質量%処理赤色201号20質量部を粗混合した。これを乾式アトライタ(三井鉱山社製、容積5L)を用い、充填剤として直径5.5mmのアルミナビーズを7.7Kg投入し、そこに上記粗混合原料を0.5Kg投入し、300rpmの条件にて10分間混合した。得られた粉末を走査型電子顕微鏡を用いて粉末の表面状態を観察したところ、均一に被覆がされていることが確認された。また、この試料をフィルムに加工したところ、このフィルムは入射角から60度以上離れた角度において色、明度が強調される効果を有していた。 After mixing 100 parts by mass of red 202, which is a kind of organic dye, and 5 parts by mass of octyltriethoxysilane using a mixer, the mixture was heat treated at 100 ° C. for 3 hours, and treated with 5% by mass of octyltriethoxysilane, red 201. Got. Next, 80 parts by mass of hemispherical organic powder (wheat starch) and 20 parts by mass of Red Oct. 201 treated with 5% by mass of the octyltriethoxysilane were roughly mixed. Using a dry attritor (Mitsui Mining Co., Ltd., volume 5 L), 7.7 Kg of alumina beads having a diameter of 5.5 mm were added as a filler, and 0.5 Kg of the above coarsely mixed raw material was added thereto, under the condition of 300 rpm. And mixed for 10 minutes. When the surface state of the obtained powder was observed using a scanning electron microscope, it was confirmed that the powder was uniformly coated. Further, when this sample was processed into a film, this film had an effect of enhancing color and brightness at an angle of 60 degrees or more from the incident angle.
実施例6で用いた赤色202号の代わりに青色1号アルミニウムレーキを用いた他は全て実施例6と同様にして製品を得た。得られた粉末を走査型電子顕微鏡を用いて粉末の表面状態を観察したところ、均一に被覆がされていることが確認された。また、この試料をフィルムに加工したところ、このフィルムは入射角から60度以上離れた角度において色、明度が強調される効果を有していた。 A product was obtained in the same manner as in Example 6 except that Blue No. 1 aluminum lake was used instead of Red No. 202 used in Example 6. When the surface state of the obtained powder was observed using a scanning electron microscope, it was confirmed that the powder was uniformly coated. Further, when this sample was processed into a film, this film had an effect of enhancing color and brightness at an angle of 60 degrees or more from the incident angle.
実施例1の黄色4号アルミニウムレーキの代わりに青色1号アルミニウムレーキを用いた他は全て実施例1と同様にして製品を得た。得られた粉末を走査型電子顕微鏡を用いて粉末の表面状態を観察した結果、半球状有機粉末の表面はきれいにオクチルトリエトキシシラン処理青色1号アルミニウムレーキに覆われていることが判った。この複合有機粉末を前記同様フィルムに塗工して光学特性の評価を実施した結果、このフィルムは入射角から60度以上離れた角度において色、明度が強調される特徴を有していた。 A product was obtained in the same manner as in Example 1 except that the blue No. 1 aluminum lake was used instead of the yellow No. 4 aluminum lake in Example 1. As a result of observing the surface state of the obtained powder using a scanning electron microscope, it was found that the surface of the hemispherical organic powder was neatly covered with octyltriethoxysilane-treated blue No. 1 aluminum lake. As a result of applying the composite organic powder to the film as described above and evaluating the optical characteristics, the film was characterized in that the color and brightness were emphasized at an angle of 60 degrees or more from the incident angle.
実施例で製造した粉末を用いて表1の処方と製造方法にて化粧料を製造した。尚、配合量の単位は質量%である。 Cosmetics were manufactured with the formulation and manufacturing method shown in Table 1 using the powders manufactured in the examples. The unit of the blending amount is mass%.
粉体成分をミキサーにて混合した。そこに均一に溶解した液体成分を投入し、さらに混合した。得られた成分は容器に充填して製品とした。 The powder components were mixed with a mixer. The liquid component which melt | dissolved uniformly was thrown in there, and also mixed. The obtained component was filled in a container to obtain a product.
実施例8の製品は、顔の輪郭を強調する効果に優れていた。 The product of Example 8 was excellent in the effect of enhancing the contour of the face.
実施例で製造した粉末を用いて表2の処方と製造方法にて油中水型リクイドファンデーションを製造した。尚、配合量の単位は質量%である。
尚、ジメチコンコポリオール/デカメチルシクロペンタシロキサン溶液は東レ・ダウコーニング社のBY22−008Mを使用し、シリコーンゲルとしては信越化学工業社製KSG−16を使用し、球状ポリウレタンパウダーとしては、東色ピグメント社製のプラスチックパウダー D−800を使用した。A water-in-oil liquid foundation was produced using the powder produced in the examples according to the formulation and production method shown in Table 2. The unit of the blending amount is mass%.
The dimethicone copolyol / decamethylcyclopentasiloxane solution uses BY22-008M manufactured by Toray Dow Corning Co., Ltd., and KSG-16 manufactured by Shin-Etsu Chemical Co., Ltd. is used as the silicone gel. Pigment plastic powder D-800 was used.
成分Bをミキサーを用いて良く混合した。一方、成分Aを80℃に加温し、均一になるように良く混合した。ここに成分Bを攪拌下に除々に添加し、50℃まで徐冷した。ついで、成分Cを80℃に加温し、均一に溶解させた後、50℃にまで徐冷した。成分Aに成分Cを攪拌下に加え、さらに良く攪拌し、室温まで冷却した。得られた溶液を容器に充填し、製品を得た。 Component B was mixed well using a mixer. On the other hand, Component A was heated to 80 ° C. and mixed well so as to be uniform. To this, component B was gradually added with stirring and gradually cooled to 50 ° C. Next, Component C was heated to 80 ° C. and dissolved uniformly, and then slowly cooled to 50 ° C. Component C was added to component A under stirring, further stirred well, and cooled to room temperature. The obtained solution was filled in a container to obtain a product.
こうして得られた製品は顔の輪郭の強調効果に優れていた。また、光の当て方により、肌が明るく見える、シワ、キメが目立ちにくいなどの効果が観察された。 The product thus obtained was excellent in enhancing the contour of the face. In addition, depending on how the light was applied, effects such as making the skin look brighter, wrinkles and texture were less noticeable were observed.
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US8529923B2 (en) | 2009-08-04 | 2013-09-10 | Chanel Parfums Beaute | Cosmetic composition based on substantially hemispherical particles |
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