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131.
公开(公告)号:US20180007914A1
公开(公告)日:2018-01-11
申请号:US15639717
申请日:2017-06-30
Applicant: Timilon Technology Acquisitions LLC
Inventor: Bill Sanford , Brandon Walker , Paul S. Malchesky , Kyle Knappenberger , Calvin Jeffrey Kissick , Eric Steward
IPC: A01N59/06 , A01N25/22 , C11D3/12 , C11D1/831 , C11D1/72 , C11D1/66 , C11D1/14 , C11D1/00 , C09D201/00 , C09D7/12 , C09D7/02 , C09D5/14 , C09D5/03 , C09D1/00 , A61Q19/10 , A61Q17/00 , C11D3/48 , A61K8/34 , A61K8/29 , A61K8/27 , A61K8/19 , A61K8/06 , A01N59/00 , C11D17/00
CPC classification number: A01N59/06 , A01N25/10 , A01N25/22 , A01N25/30 , A01N59/00 , A61K8/022 , A61K8/04 , A61K8/06 , A61K8/19 , A61K8/27 , A61K8/29 , A61K8/345 , A61K8/39 , A61K8/466 , A61K8/4993 , A61K8/8152 , A61K8/88 , A61K8/90 , A61K2800/413 , A61Q17/005 , A61Q19/10 , C08K3/22 , C09D1/00 , C09D5/031 , C09D5/036 , C09D5/14 , C09D7/45 , C09D7/61 , C09D7/62 , C09D7/63 , C09D7/65 , C09D201/00 , C11D1/008 , C11D1/146 , C11D1/667 , C11D1/72 , C11D1/74 , C11D1/831 , C11D3/0068 , C11D3/1213 , C11D3/2065 , C11D3/3707 , C11D3/3719 , C11D3/3761 , C11D3/382 , C11D3/43 , C11D3/48 , C11D17/0013 , C11D17/06 , A01N59/16
Abstract: Dry mixtures and liquid formulations are provided that comprise metal oxide and/or metal hydroxide nanocrystalline particles. The dry mixtures are advantageously formulated with select surfactants to be readily solubilized and stable in liquid carriers. Additional select components are provided in preferred combinations that are capable of achieving improved biocidal and chemical agent efficacy. Notably, the inventive formulations provided herein allow for easier delivery of the formulations and increased shelf stability.
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公开(公告)号:US20180002563A1
公开(公告)日:2018-01-04
申请号:US15541223
申请日:2015-12-16
Applicant: BASF SE
Inventor: James W. Taylor
IPC: C09D151/00 , C08J3/05 , C09D201/08 , C08F220/18 , C08F265/06 , C09D133/08
CPC classification number: C09D151/003 , C08F220/18 , C08F265/06 , C08F2220/1825 , C08J3/05 , C08J2333/06 , C08J2433/06 , C08L101/00 , C08L101/08 , C08L2201/54 , C09D133/08 , C09D201/00 , C09D201/08 , C08F220/14 , C08F220/34 , C08F2220/343 , C08F220/58 , C08F220/06
Abstract: Provided herein are aqueous dispersions. The aqueous dispersions can comprise a first copolymer derived from one or more ethylenically unsaturated monomers, and a second carboxy-functional copolymer derived from one or more carboxylic acid-containing monomers. The aqueous dispersions can be used to prepare low- or zero-VOC aqueous coating compositions that possess desirable properties, including good block resistance and scrub resistance. Coatings and coating formulations comprising the aqueous dispersion, as well as methods of making and using the same are also provided.
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公开(公告)号:US09799238B2
公开(公告)日:2017-10-24
申请号:US14728242
申请日:2015-06-02
Inventor: Joseph M Daley , Robert Starling , Osman N. Tanrikulu
IPC: B41M3/12 , G09F3/10 , C09D201/00 , C09J201/00 , C09J7/02 , B41M5/025 , B44C1/17 , D06Q1/12 , G09F3/02 , G09F3/00
CPC classification number: G09F3/10 , B41M3/12 , B41M5/025 , B44C1/1712 , C09D201/00 , C09J7/40 , C09J201/00 , C09J2400/22 , C09J2400/225 , D06Q1/12 , G09F3/0291 , G09F2003/0211 , G09F2003/023 , G09F2003/0257 , G09F2003/0282
Abstract: A digitally printed heat transfer label and method of manufacture is disclosed. The heat transfer label and method of manufacture provides a more efficient process with less waste, as well as prevents halos. The method comprises adding adhesive powder to a digital image printed on a substrate to produce a high stretch, multi-color photographic quality label for the apparel industry.
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公开(公告)号:US09783455B2
公开(公告)日:2017-10-10
申请号:US14659945
申请日:2015-03-17
Applicant: Asahi Glass Company, Limited
Inventor: Hirokazu Kodaira , Yutaka Hayami , Takashige Yoneda
IPC: C03C17/28 , G02B5/22 , C09D5/32 , C03C17/32 , B32B15/01 , C09D7/12 , C09D133/08 , C09D133/10 , C09D135/00 , C09D163/00 , C09D201/00 , C09D1/00 , C03C17/00 , C08K3/00 , C08K5/00 , F21V9/06 , C09D183/06 , C08K3/22 , C08K5/07 , C08K9/02
CPC classification number: C03C17/324 , B32B15/01 , C03C17/009 , C03C17/28 , C03C2217/29 , C03C2217/475 , C03C2217/476 , C03C2217/48 , C03C2217/74 , C08G77/14 , C08K3/00 , C08K3/22 , C08K5/00 , C08K5/07 , C08K9/02 , C08K2003/2231 , C08K2003/2258 , C09D1/00 , C09D5/32 , C09D7/48 , C09D133/08 , C09D133/10 , C09D135/00 , C09D163/00 , C09D183/06 , C09D201/00 , Y10T428/265
Abstract: There are provided a liquid composition capable of forming a coating film securing colorless transparency, being excellent in weather resistance, suppressing occurrence of bleedout, and having sufficiently ultraviolet absorbing function and the infrared absorbing function, and a glass article having a coating film formed by this composition. A liquid composition for forming a coating film contains an infrared absorbent selected from a tin-doped indium oxide, an antimony-doped tin oxide, and a composite tungsten oxide; an ultraviolet absorbent selected from a benzophenone-based compound, a triazine-based compound, and a benzotriazole-based compound; predetermined amount of a dispersing agent having a molecular weight of 1,000 to 100,000; predetermined amount of a chelating agent relative forming a complex with the infrared absorbent and having a molecular weight of 1,000 to 100,000, the complex exhibiting substantially no absorption with respect to light having a visible wavelength; a binder component; and a liquid medium.
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135.
公开(公告)号:US20170275497A1
公开(公告)日:2017-09-28
申请号:US15512404
申请日:2015-04-17
Applicant: TOYO ALUMINIUM KABUSHIKI KAISHA
Inventor: Katsuhiro KURODA , Akihiko IKEYA , Hiromitsu MINAMIOKA
CPC classification number: C09D201/00 , C01P2004/51 , C01P2004/54 , C01P2004/61 , C01P2006/12 , C01P2006/62 , C01P2006/64 , C08K3/08 , C08K3/346 , C08K9/02 , C08K2201/006 , C08K2201/016 , C09C1/0015 , C09C1/0081 , C09C1/64 , C09C2200/102 , C09D1/00 , C09D5/36 , C09D7/40 , C09D7/61
Abstract: A paint composition of the present invention contains an aluminum pigment and a mica pigment. The content of the aluminum pigment is equal to or higher than the content of the mica pigment. The aluminum pigment has a specific surface area, determined by the BET method, of not more than 55000 cm2/g, an average thickness of not less than 0.3 μm, and an aspect ratio of not more than 50.
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公开(公告)号:US20170274594A1
公开(公告)日:2017-09-28
申请号:US15510122
申请日:2014-09-30
Applicant: Hewlett-Packard Development Company, L.P.
Inventor: Hou T. Ng , Ali Emamjomeh , Alejandro Manuel De Pena , Edward Dale Davis
IPC: B29C67/00 , B33Y30/00 , B33Y80/00 , B33Y50/02 , C09D7/12 , B33Y70/00 , B33Y40/00 , B33Y10/00 , C09D201/00
CPC classification number: C09D7/61 , B29C64/165 , B29C64/35 , B29C64/386 , B33Y10/00 , B33Y30/00 , B33Y40/00 , B33Y50/02 , B33Y70/00 , B33Y80/00 , C08K3/36 , C08L75/04 , C09D201/00
Abstract: Provided in one example herein is a three-dimensional printing method, comprising: (A) forming a layer comprising a comprising particles comprising a polymer and cavities between the particles, wherein the particles have an average diameter of between about 5 μm and about 250 ρm; (B) disposing a liquid suspension over at least a portion of the layer such that the liquid suspension infiltrates into the cavities, wherein the liquid suspension comprises a radiation-absorbing coalescent agent and nanoparticles having an average diameter of less than or equal to about 500 nm; (C) forming an object slice by exposing the infiltrated layer to a radiant energy, wherein the object slice comprises a polymeric matrix comprising the polymeric particles, at least some of which are fused to one another, and the nanoparticles within the polymeric matrix; and (D) repeating (A) to (C) to form the three-dimensional object comprising multiple object slices bound depth-wise to one another.
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公开(公告)号:US20170239637A1
公开(公告)日:2017-08-24
申请号:US15587601
申请日:2017-05-05
Applicant: IMMUNOLIGHT, LLC.
Inventor: Frederic A. BOURKE, JR.
IPC: B01J19/12 , A61N5/10 , A61N5/06 , A61K41/00 , C08J3/24 , C08J3/28 , A61L2/10 , B01J19/08 , C02F1/30 , C02F1/32 , C02F1/72 , A23L3/26 , A23L3/28 , C12H1/06 , A23L2/50 , A61M1/36
CPC classification number: B01J19/123 , A23L2/50 , A23L3/26 , A23L3/263 , A23L3/28 , A23L5/32 , A23V2002/00 , A61K41/0057 , A61K41/0066 , A61L2/0011 , A61L2/0047 , A61L2/0076 , A61L2/082 , A61L2/088 , A61L2/10 , A61L2/16 , A61L2202/21 , A61L2202/22 , A61M1/3683 , A61N5/062 , A61N5/0624 , A61N5/10 , A61N2005/0661 , A61N2005/0662 , A61N2005/1087 , A61N2005/1089 , A61N2005/1098 , B01J19/082 , B01J19/085 , B01J19/12 , B01J19/125 , B01J19/127 , B01J19/128 , B01J23/50 , B01J23/52 , B01J31/0275 , B01J31/2295 , B01J35/0006 , B01J35/0013 , B01J35/004 , B01J37/0072 , B01J37/0221 , B01J2219/0877 , B01J2219/0879 , B01J2219/0892 , B01J2219/1203 , B01J2231/005 , B01J2531/005 , B01J2531/008 , B82Y20/00 , B82Y30/00 , B82Y40/00 , C02F1/30 , C02F1/302 , C02F1/305 , C02F1/307 , C02F1/32 , C02F1/725 , C02F2305/10 , C08J3/24 , C08J3/28 , C08J7/18 , C08J2300/00 , C09D201/00 , C09J5/00 , C09J201/00 , C09J2205/31 , C12H1/06 , G02B5/008 , G21K5/00 , Y02W10/37 , Y10S977/774 , Y10S977/777 , Y10S977/896 , Y10S977/915 , Y10T156/10
Abstract: A method and a system for producing a change in a medium. The method places in a vicinity of the medium at least one energy modulation agent. The method applies an initiation energy to the medium. The initiation energy interacts with the energy modulation agent to directly or indirectly produce the change in the medium. The system includes an initiation energy source configured to apply an initiation energy to the medium to activate the energy modulation agent.
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公开(公告)号:US09737906B2
公开(公告)日:2017-08-22
申请号:US14420818
申请日:2013-04-18
Applicant: NIPPON PAINT CO., LTD. , Mazda Motor Corporation
Inventor: Hiroaki Fujii , Yoshiko Aoki , Hiroshi Kubota , Masafumi Shinoda , Tatsuo Tsuneoka , Fumi Hirano , Sakura Nakano
CPC classification number: B05D5/066 , B05D1/38 , B05D3/0254 , B05D5/063 , B05D5/068 , B05D7/14 , B05D7/57 , C09D5/28 , C09D7/41 , C09D201/00
Abstract: The purpose of the present invention is to obtain a method for forming an excellent multi-layer coating film of high chroma and brightness and a rich color. With the method, color mottling does not occur easily in the coating film and the design obtained is homogeneous even without strict control of variations in film thickness during coating. The method for forming the excellent multi-layer coating film comprises: forming a metallic base coating film on the surface of the object to be coated by applying a metallic base coating containing a shiny material; then forming a color base coating film by applying a color base coating; subsequently forming a clear coating film by applying a clear coating on the color base coating film; and heat-curing the metallic base coating film, the color base coating film and the clear coating film obtained. In the method, the light reflectance of the metallic base coating film is in a specified range and the light transmittance of the single color base coating film obtained by heat-curing the color base coating film as a single film is adjusted to a specified range.
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公开(公告)号:US20170218206A1
公开(公告)日:2017-08-03
申请号:US15514791
申请日:2015-11-02
Applicant: MAZDA MOTOR CORPORATION
Inventor: Takakazu YAMANE , Keiichi OKAMOTO , Kouji TERAMOTO
IPC: C09D5/33 , C09D167/00 , C09D7/12 , C09D133/00 , C23C14/14 , C23C14/58
CPC classification number: C09D5/004 , B32B27/20 , C08K3/04 , C08K7/00 , C08K2003/2227 , C08K2201/005 , C09D5/29 , C09D7/61 , C09D7/68 , C09D7/70 , C09D133/00 , C09D167/00 , C09D201/00 , C23C14/14 , C23C14/5886
Abstract: A multilayer coating film 12 includes a bright layer 15 and a colored layer 16 superposed on the bright layer 15, the bright layer 15 including aluminum flakes 22, and the colored layer 16 including a black pigment 23 dispersed in the colored layer 16. The black pigment 23 in the colored layer 16 has a particle size distribution with a peak at a particle size of 200 nm or lower.
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公开(公告)号:US20170210912A1
公开(公告)日:2017-07-27
申请号:US15329408
申请日:2015-07-29
Inventor: Masato Fujita , Masakazu Uotani , Takeshi Kamiya , Tsunetoshi Honda , Daisuke Takano
IPC: C09D5/16 , B01D17/02 , C09D7/00 , C07C229/12 , C07C227/16 , C07C233/05 , C07C231/02 , C07C311/05 , C07C303/38 , C07C309/13 , C07C303/02 , C07D211/38 , C07D265/30 , C07D207/10 , C07D241/04 , C02F1/40
CPC classification number: C09D5/1625 , B01D17/02 , C02F1/40 , C07C227/06 , C07C227/08 , C07C227/16 , C07C227/18 , C07C229/06 , C07C229/12 , C07C231/02 , C07C231/12 , C07C233/05 , C07C233/08 , C07C303/02 , C07C303/22 , C07C303/38 , C07C303/40 , C07C309/04 , C07C309/13 , C07C309/29 , C07C311/03 , C07C311/05 , C07D207/10 , C07D211/38 , C07D241/04 , C07D265/30 , C08K5/17 , C08L101/00 , C09D5/16 , C09D7/20 , C09D7/40 , C09D201/00 , C09K3/00 , Y02W10/37
Abstract: The hydrophilic oil repellent includes one or more types of nitrogen-containing fluorine-based compounds. The nitrogen-containing fluorine-based compound includes any one hydrophilicity imparting group selected from the group consisting of anion type hydrophilicity imparting groups, cation type hydrophilicity imparting groups, and amphoteric type hydrophilicity imparting groups in the molecule.
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