序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
1 化妆品用普鲁士蓝球形颜料及其制备方法 CN201610653836.0 2016-08-11 CN106280570A 2017-01-04 莫峰; 林正交; 熊小寒; 章梦令; 余慧忠; 林敏立; 丁苏扬; 黄志仁
发明涉及一种化妆品用普鲁士蓝球形颜料及其制备方法,涉及精细化工材料技术领域,以平均粒径D50为1μm~50μm的球形基材作为颜料基材,在所述基材的表面至少包覆有SnO2、Al2O3和Fe4[Fe(CN)6]3金属化物涂层,其方法为先将基材投入离子中,制成悬浮液,将SnCl4溶液、AlCl3溶液及FeCl3溶液、K4Fe(CN)6溶液加入悬浮液中,当悬浮液的颜色达到所需色相时,继续恒温搅拌,然后将悬浮液过滤、干燥、煅烧,与现有技术相比,本发明制备方法简单,制备得的产品其涂层不易脱落,具有柔光效果、肤感极佳、吸油量低的效果。
2 化妆品红球形颜料及其制备方法 CN201610653809.3 2016-08-11 CN106280568A 2017-01-04 章梦令; 林正交; 熊小寒; 周扬; 黄志仁; 林敏立; 郑国旺; 甘蓉芳
发明涉及一种化妆品红球形颜料及其制备方法,涉及精细化工材料技术领域,以平均粒径D50为1μm~100μm的SiO2球形基材作为颜料基材,在所述SiO2球形基材的表面至少包覆有SnO2、Fe2O3金属化物涂层;其中,SnO2涂层直接包裹在所述SiO2球形基材表面,其方法为先将基材投入离子中,制成悬浮液,将SnCl4·5H2O溶液、FeCl3溶液依次加入悬浮液中,当悬浮液的颜色达到设定色相时,继续恒温搅拌,然后将悬浮液过滤、干燥、煅烧,与现有技术相比,本发明制备方法简单,制备得的产品其涂层不易脱落,具有优良的肤感、柔光和哑光效果以及视觉淡化的效果,且其吸油量较低。
3 含有芯或铝合金芯的效应颜料及其制造方法和应用 CN200480034349.1 2004-11-19 CN1882662B 2011-04-13 F·亨莱因; H·伯讷; M·格吕纳
发明涉及效应颜料,所述效应颜料具有芯或铝合金芯以及含有化铝或含有氧化铝/氢氧化铝的层,所述含有氧化铝或含有氧化铝/氢氧化铝的层包覆住所述铝芯或铝合金芯,所述铝芯或铝合金芯通过化学湿法氧化薄片铝颜料或铝合金颜料而获得,以颜料的总重计,所述铝芯或铝合金芯中金属铝的含量不超过90重量%,其中氧化的铝颜料或铝合金颜料具有至少一层折射率大于1.95的高度折射的金属硫属化物(chalcogenide)层,在所述高度折射的硫属化物层和含有氧化铝或含有氧化铝/氢氧化铝的包覆层之间形成混合层。本发明还涉及这些效应颜料的制造方法及其应用。
4 含有芯或铝合金芯的效应颜料及其制造方法和应用 CN200480034349.1 2004-11-19 CN1882662A 2006-12-20 F·亨莱因; H·伯讷; M·格吕纳
发明涉及效应颜料,所述效应颜料具有芯或铝合金芯以及含有化铝或含有氧化铝/氢氧化铝的层,所述含有氧化铝或含有氧化铝/氢氧化铝的层包覆住所述铝芯或铝合金芯,所述铝芯或铝合金芯通过化学湿法氧化薄片铝颜料或铝合金颜料而获得,以颜料的总重计,所述铝芯或铝合金芯中金属铝的含量不超过90重量%,其中氧化的铝颜料或铝合金颜料具有至少一层折射率大于1.95的高度折射的金属硫属化物(chalcogenide)层,在所述高度折射的硫属化物层和含有氧化铝或含有氧化铝/氢氧化铝的包覆层之间形成混合层。本发明还涉及这些效应颜料的制造方法及其应用。
5 化妆品用白色球形颜料及其制备方法 CN201610653909.6 2016-08-11 CN106280571A 2017-01-04 周扬; 林正交; 熊小寒; 莫峰; 郑国旺; 谢思维; 黄志仁; 甘蓉芳
发明涉及一种化妆品用白色球形颜料及其制备方法,其以平均粒径D50为1μm~10μm的球形SiO2作为基材,且在所述基材的表面至少包覆有SnO2和TiO2涂层;其中,与所述基材表面接触的是SnO2;具体包括将球形SiO2制成悬浮液,然后分别依次加入SnCl4、TiCl4、以及AlCl3和二甲基油或硅酸钠或偶联剂中的一种,最后经过滤、干燥、煅烧而制得。本发明制得的产物具有柔光效果、肤感极佳、低吸油量的优点,其广泛适用于化妆品、油墨等领域。
6 化妆品用黑色球形颜料及其制备方法 CN201610653810.6 2016-08-11 CN106280569A 2017-01-04 余慧忠; 林正交; 甘蓉芳; 章梦令; 熊小寒; 林敏立; 韦贝佩; 周扬
发明涉及一种化妆品用黑色球形颜料及其制备方法,其以平均粒径D50为1μm~10μm的球形SiO2作为基材,在所述基材的表面至少包覆有SnO2、Fe3O4涂层;其中,与所述基材表面接触的是SnO2;具体包括将球形SiO2制成悬浮液,然后分别依次加入SnCl4、还原性助剂、FeSO4、AlCl3以及二甲基油或硅酸钠或偶联剂中的一种,最后经过滤、干燥而制得。本发明制得的产物具有肌肤粘腻感低、肤感极佳、亲肤效果明显的优点,且具有遮盖淡化效果的黑色球形功能颜料,使其广泛适用于化妆品,特别是眼霜、眼影中。
7 具有高遮盖的干涉颜料 CN200480012127.X 2004-05-05 CN100482747C 2009-04-29 H·B·克尼斯; G·普法夫
发明涉及一种具有高遮盖的干涉颜料,其在薄片状无机基材上具有其厚度和吸收能力可被精确地调节的至少一个含FeTiO3的层;涉及该颜料的制备方法及其用途。
8 具有高遮盖的干涉颜料 CN200480012127.X 2004-05-05 CN1784476A 2006-06-07 H·B·克尼斯; G·普法夫
发明涉及一种具有高遮盖的干涉颜料,其在薄片状无机基材上具有其厚度和吸收能力可被精确地调节的至少一个含FeTiO3的层;涉及该颜料的制备方法及其用途。
9 Interference pigment with a high covering power US10555592 2004-05-05 US07611574B2 2009-11-03 Helge Kniess; Gerhard Pfaff; Klaus Bernhardt
The invention relates to an interference pigment with a high covering power, comprising at least one FeTiO3-containing layer, which is applied to a lamellar inorganic substrate and whose thickness and absorbing power can be precisely set. The invention also relates to a method for producing this interference pigment and to the use thereof.
10 Interference pigment with a high covering power US10555592 2004-05-05 US20070028799A1 2007-02-08 Helge Kniess; Gerhard Pfaff; Klaus Bernhardt
The invention relates to an interference pigment with a high covering power, comprising at least one FeTiO3-containing layer, which is applied to a lamellar inorganic substrate and whose thickness and absorbing power can be precisely set. The invention also relates to a method for producing this interference pigment and to the use thereof.
11 Pearlescent pigments containing ferrites US31925 1998-02-27 US06139615A 2000-10-31 Steven Alan Jones
A pearlescent pigment which is a ferrite-coated iron oxide-coated platy substrate in which the ferrite is substantially free of crystallites is obtained by adding metal ions to a slurry of hydrous iron compound and platy particles and then co-calcining in the metal and iron.
12 Multilayered systems having optical properties US10861524 2004-06-07 US20040219344A1 2004-11-04 Stephanie Andes; Gerald Fuchs-Pohl; Martin Friz; Ute Honeit; Gerhard Pfaff; Michael Uhlig
Multilayered systems having optical properties based on metallic substrates comprise both a layer (A) of at least two dielectric materials of different refractive index, where the refractive index at the lower side and the refractive index at the upper side of layer (A) are different, and a selectively or non-selectively absorbent layer (B).
13 Multilayered systems having optical properties US10166713 2002-06-12 US20030008120A1 2003-01-09 Stephanie Andes; Gerald Fuchs-Pohl; Martin Friz; Ute Honeit; Gerhard Pfaff; Michael Uhlig
Multilayered systems having optical properties based on metallic substrates comprise both a layer (A) of at least two dielectric materials of different refractive index, where the refractive index at the lower side and the refractive index at the upper side of layer (A) are different, and a selectively or non-selectively absorbent layer (B).
14 Iron oxide coated perlescent pigments US894138 1986-08-07 US4744832A 1988-05-17 Klaus D. Franz; Klaus Ambrosius
The application relates to a pearlescent pigments based on platelet-like substrates, such as mica, which are coated with metal oxides, the metal oxide layer containing titanium and also iron, wherein the pigment has a multi-layer structure in which a first layer of TiO.sub.2 in the rutile form is followed by a layer of pseudobrookite and an iron oxide layer.
15 INTERFERENZPIGMENT MIT HOMOGENER ILMENITSCHICHT EP04731144.4 2004-05-05 EP1620511A2 2006-02-01 KNIESS, Helge, Bettina; PFAFF, Gerhard
The invention relates to an interference pigment with a high covering power, comprising at least one FeTiO3-containing layer, which is applied to a lamellar inorganic substrate and whose thickness and absorbing power can be precisely set. The invention also relates to a method for producing this interference pigment and to the use thereof.
16 PEARLESCENT PIGMENTS CONTAINING FERRITES EP98963056.1 1998-12-10 EP1058714B1 2002-04-24 JONES, Steven, Alan
A pearlescent pigment which is a ferrite-coated iron oxide-coated platy substrate in which the ferrite is substantially free of crystallites is obtained by adding metal ions to a slurry of hydrous iron compound and platy particles and then co-calcining in the metal and iron.
17 Effect pigments having an aluminum core or aluminum alloy core, as well as preparation and use thereof JP2006540344 2004-11-19 JP5060132B2 2012-10-31 ヘングライン フランク; ビルナー ヘルマン; グリューナー ミヒャエル
18 Effect pigments having an aluminum core or aluminum alloy core, as well as preparation and use thereof JP2006540344 2004-11-19 JP2007511655A 2007-05-10 ヘングライン フランク; ビルナー ヘルマン; グリューナー ミヒャエル
【課題】
【解決手段】 本発明は、アルミニウムコア又はアルミニウム合金コア、及びそのアルミニウムコア又はアルミニウム合金コアを包み込む酸化アルミニウム含有層又は酸化/酸化アルミニウム含有層を有するエフェクト顔料であって、層状のアルミニウム顔料又はアルミニウム合金顔料を化学的湿式酸化することにより得られ、顔料の総重量に対するアルミニウムコア又はアルミニウム合金コア中の金属アルミニウムの量が90重量%以下であり、酸化されたアルミニウム顔料又はアルミニウム合金顔料は1.95を超える屈折率を持つ少なくとも一層の高屈折性金属カルコゲニド層を有し、且つ高屈折性金属カルコゲニド層と被覆酸化アルミニウム含有層又は酸化/水酸化アルミニウム含有層との間に混合層が形成されていれるエフェクト顔料に関する。 本発明は更にこのようなエフェクト顔料の製造方法、及びその使用に関する。
【選択図】 図1
19 Multilayer system having optical property JP2002170144 2002-06-11 JP2003113330A 2003-04-18 ANDES STEPHANIE; FUCHS-POHL GERALD; FRIZ MARTIN; HONEIT UTE; PFAFF GERHARD; UHLIG MICHAEL
PROBLEM TO BE SOLVED: To obtain a multilayer system having high hiding power, high color intensity and/or color of high luminance, angle dependence of interference color and optical properties based on a metallic substrate. SOLUTION: This multilayer system is composed of a metallic substrate as a base and a plurality of layers (A) and (B). The layer (A) comprises at least two dielectric materials of different refractive indexes in which the refractive index at the lower side and the refractive index at the upper side of the layer are different. The layer (B) is a selectively or non-selectively absorbent layer.
20 Pearlescent pigments having an iron oxide coating layer JP18436286 1986-08-07 JP2649913B2 1997-09-03 KURAUSU DEIITAA FURANTSU; KURAUSU AMUBUROSHIUSU
The application relates to a pearlescent pigments based on platelet-like substrates, such as mica, which are coated with metal oxides, the metal oxide layer containing titanium and also iron, wherein the pigment has a multi-layer structure in which a first layer of TiO2 in the rutile form is followed by a layer of pseudobrookite and an iron oxide layer.
QQ群二维码
意见反馈