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公开(公告)号:US12054634B2
公开(公告)日:2024-08-06
申请号:US17447783
申请日:2021-09-15
Applicant: AXALTA COATING SYSTEMS IP CO., LLC
Inventor: John R. Moore , Michael R. Koerner , Christian Jackson , Bradley A. Jacobs , Shih-Wa Wang , Matthew Irwin , Matthew Boland , Joanne Hardy , Daniel Naugle , Kevin O'Connor , Barry Snyder
IPC: B05D1/00 , B05B1/02 , B05B12/14 , B05C5/02 , B05C11/10 , B05D1/02 , B05D1/26 , B05D5/06 , B05D7/00 , B41J2/14 , B41M7/00 , C08G18/42 , C08G18/44 , C08G18/75 , C09D5/08 , C09D5/33 , C09D7/20 , C09D7/41 , C09D7/43 , C09D7/61 , C09D11/102 , C09D11/104 , C09D11/322 , C09D11/324 , C09D11/328 , C09D167/00 , C09D167/02 , C09D175/04 , C09D175/06 , B41M5/00 , C08K3/04 , C08K3/34 , C08K5/3465
CPC classification number: C09D175/04 , B05B1/02 , B05B12/1472 , B05C5/02 , B05C5/027 , B05C11/1034 , B05D1/02 , B05D1/26 , B05D5/063 , B05D7/53 , B41J2/14 , B41M7/0036 , C08G18/4216 , C08G18/44 , C08G18/755 , C09D5/004 , C09D5/084 , C09D7/20 , C09D7/41 , C09D7/43 , C09D7/61 , C09D11/102 , C09D11/104 , C09D11/322 , C09D11/324 , C09D11/328 , C09D167/00 , C09D167/02 , C09D175/06 , B41M5/0023 , C08K3/04 , C08K3/346 , C08K5/3465 , C08K2201/019
Abstract: A coating composition for application to a substrate utilizing a high transfer efficiency applicator. The coating composition includes a carrier, a binder, a corrosion inhibiting pigment. The coating composition has an Ohnesorge number (Oh) of from about 0.01 to about 12.6. The coating composition has a Reynolds number (Re) of from about 0.02 to about 6,200. The coating composition has a Deborah number (De) of from greater than 0 to about 1730.
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公开(公告)号:US11813129B2
公开(公告)日:2023-11-14
申请号:US17439327
申请日:2020-03-12
Applicant: ORALCOL ASSETS HOLDING B.V.
Inventor: Hong-Vu Dang
CPC classification number: A61C13/082 , B41M5/007 , B41M5/0047 , B41M5/0088 , B41M7/0036 , G01J3/463 , G01J3/508
Abstract: Method for providing a natural colour and optical depth to a dental object comprising the steps: providing a framework of the dental object, taking an object colour picture of an adjacent dental object or reference dental object, and uploading the object colour picture into a computing device, calibrating and adjusting the uploaded object colour picture into a target object colour picture in a computing device, (pre)determining the thickness profile of the enamel material to be applied on the framework, correcting in a computing device of the digital picture elements of the target object colour picture for the thickness profile of the enamel material to be applied on the position of the digital picture elements and providing a print colour picture of the corrected digital picture elements, printing the print colour picture as a print layer on the framework, applying the enamel material in the predetermined profile-thickness upon the print layer upon the framework.
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3.
公开(公告)号:US20230227691A1
公开(公告)日:2023-07-20
申请号:US18190653
申请日:2023-03-27
Applicant: AXALTA COATING SYSTEMS GMBH
Inventor: John R. Moore , Michael R. Koerner , Christian Jackson , Bradley A. Jacobs , Shih-Wa Wang , Matthew Irwin , Matthew Boland , Joanne Hardy , Daniel Naugle , Kevin O’Connor , Barry Snyder
IPC: C09D175/04 , B05C5/02 , B05D1/02 , C09D167/00 , C09D7/43 , B05B12/14 , B05C11/10 , C09D175/06 , C09D11/104 , C09D11/324 , C09D11/328 , B05B1/02 , B41J2/14 , C09D11/102 , C09D11/322 , C09D167/02 , B05D5/06 , C09D5/33 , C08G18/42 , C08G18/44 , C08G18/75 , B05D7/00 , B41M7/00 , C09D7/61 , C09D7/41 , B05D1/26 , C09D7/20 , C09D5/08
CPC classification number: C09D175/04 , B05C5/027 , B05D1/02 , C09D167/00 , C09D7/43 , B05B12/1472 , B05C11/1034 , C09D175/06 , C09D11/104 , C09D11/324 , C09D11/328 , B05B1/02 , B41J2/14 , C09D11/102 , C09D11/322 , C09D167/02 , B05D5/063 , C09D5/004 , B05C5/02 , C08G18/4216 , C08G18/44 , C08G18/755 , B05D7/53 , B41M7/0036 , C09D7/61 , C09D7/41 , B05D1/26 , C09D7/20 , C09D5/084 , B41M5/0023
Abstract: A method of applying a coating composition to a substrate utilizing a high transfer efficiency applicator include the steps of providing the high transfer efficiency applicator comprising an array of nozzles wherein each nozzle defines a nozzle orifice having a diameter of from 0.00002 m to 0.0004, providing the coating composition, and applying the coating composition to the substrate through the nozzle orifice without atomization such that at least 99.9% of the applied coating composition contacts the substrate to form a coating layer having a wet thickness of at least 5 microns, wherein the coating composition includes a carrier, a binder, and a radar reflective pigment or a LiDAR reflective pigment. The coating composition has an Ohnesorge number (Oh) of from about 0.01 to about 12.6, a Reynolds number (Re) of from about 0.02 to about 6,200, and a Deborah number (De) of from greater than 0 to about 1730.
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4.
公开(公告)号:US10038814B2
公开(公告)日:2018-07-31
申请号:US15376148
申请日:2016-12-12
Applicant: CANON KABUSHIKI KAISHA
Inventor: Tetsuya Suzuki
CPC classification number: H04N1/32325 , B41J2/2114 , B41J29/38 , B41M3/10 , B41M5/382 , B41M7/0036 , H04N2201/3242 , H04N2201/3271
Abstract: In one or more embodiments, a control unit reads image data and date information of a main image from a memory card into a RAM. When a watermark printing is set, the control unit combines characters of the date information having a high gradation value with overcoat layer data having a mixture pattern in which pixels having a high gradation value and pixels having a low gradation value are located randomly or alternately in rows and columns to generate overcoat layer print data and stores the data in an overcoat layer data storage area. The control unit generates CMY print data from the image data of the main image to print it on image-receiving paper by using a print processing section. After printing of the main image, the control unit prints the overcoat layer print data so that it is superimposed on the main image on the image-receiving paper.
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公开(公告)号:US20180079222A1
公开(公告)日:2018-03-22
申请号:US15825874
申请日:2017-11-29
Applicant: Seiko Epson Corporation
Inventor: Takeshi YANO , Ippei OKUDA , Mitsuaki KOSAKA
CPC classification number: B41J2/2107 , B41M5/0017 , B41M7/0036 , C09D11/10 , C09D11/322 , C09D11/38 , C09D11/40 , C09D11/54
Abstract: An ink jet recording method according to the invention includes attaching a reaction liquid including a reactant for aggregating or thickening a coloring ink component including a coloring material to a recording medium; attaching the coloring ink by an ink jet method to an area where the reaction liquid is attached, in a state where a residual rate of a volatile component of the reaction liquid attached on the recording medium is 25% by mass or more after attaching of the reaction liquid; and attaching a clear ink including a resin to the area where the coloring ink is attached.
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公开(公告)号:US09821577B1
公开(公告)日:2017-11-21
申请号:US15271781
申请日:2016-09-21
Applicant: Scientific Games International, Inc.
Inventor: Kenneth A. Stephens
CPC classification number: B41J15/04 , A63F3/0655 , B41J2/01 , B41J3/543 , B41M3/005 , B41M5/0011 , B41M5/0023 , B41M7/0036 , B42D15/025 , C09D11/322 , C09D11/328 , G07B1/00 , G07B1/06
Abstract: A method for producing scratch-off lottery tickets in a high speed printing line is provided, wherein the printing line includes one or more inkjet printing machines that print lottery tickets on a continuously running paper stock. One or more primer layers are applied to a surface of the paper stock in a defined game play area on each lottery ticket. With the inkjet printing machines game play indicia is printed over the primer layers in the game play area on each lottery ticket at a resolution of at least 600 dpi. The running paper stock is conveyed through the inkjet printing machines at a rate of at least 950 ft./min. The ink jet printing machines use a specially formulated dye-based ink.
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公开(公告)号:US09802425B2
公开(公告)日:2017-10-31
申请号:US15028025
申请日:2014-10-08
Applicant: MIMAKI ENGINEERING CO., LTD.
Inventor: Akifumi Seki , Kazuya Nozaki , Hironori Hashizume , Masaru Ohnishi
CPC classification number: B41J11/0015 , B41J2/21 , B41J11/002 , B41M7/0036 , B41M7/0054
Abstract: A printing device and a printing method, which are by ink-jet technique an overcoat layer using an ink consisting of more suitable ingredients, are provided. The printing device is for performing printing by ink-jet technique, including: a color ink head being an inkjet head that forms a color ink layer on a medium using a color ink; an overcoat head being an inkjet head that forms an overcoat layer that covers the color ink layer; and a curing agent head being an inkjet head that discharges ink droplets of a curing agent, the curing agent being a liquid for curing an ink in the overcoat layer. The overcoat head discharges ink droplets of an ink prepared by dispersing in an organic solvent a curable material that is cured in reaction to the curing agent.
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公开(公告)号:US09738808B2
公开(公告)日:2017-08-22
申请号:US15107908
申请日:2014-01-28
Applicant: Hewlett-Packard Development Company, L.P.
Inventor: Tienteh Chen , Elizabeth Ann Visnyak , Keshava A. Prasad
IPC: B41J2/015 , G01D11/00 , C09D11/54 , C09D11/40 , C09D11/10 , C09D11/322 , B41J11/00 , C09D11/107 , B41M5/00 , B41M7/00
CPC classification number: C09D11/54 , B41J11/0015 , B41M5/0017 , B41M7/0036 , C09D11/10 , C09D11/107 , C09D11/322 , C09D11/40
Abstract: A thermal inkjet ink set includes a pre-treatment fixing fluid, an ink, and a post-treatment fluid. The pre-treatment fixing fluid includes a metal salt. The ink includes an ink vehicle and a colorant. The post-treatment fluid includes a fluid vehicle and an anionic polyurethane acrylic hybrid polymer binder dispersed in the fluid vehicle. The anionic polyurethane acrylic hybrid polymer binder is present in an amount ranging from greater than 0 wt % to about 25 wt %. The anionic polyurethane acrylic hybrid polymer binder includes an acrylic polymer or copolymer, and an anionic polyurethane polymer encapsulating the acrylic polymer or copolymer.
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公开(公告)号:US20170210158A1
公开(公告)日:2017-07-27
申请号:US15328202
申请日:2015-07-21
Applicant: SEIKO EPSON CORPORATION
Inventor: Kazuaki SAKURADA , Kentaro MIYAZAKI , Satoru KATAGAMI , Yuichi WASHIO , Kazuya TAJIMA
CPC classification number: B41M5/502 , B41J2/01 , B41J2/1433 , B41J2/21 , B41J11/0015 , B41J11/002 , B41J2002/012 , B41M5/0017 , B41M7/0036 , B41M7/009
Abstract: A printing apparatus executes a continuous printing by a printing execution unit while transporting a belt-shaped printing base material by a transport path in a longer direction. The printing execution unit includes a reaction solution discharge head, an ink discharge head, and a head for overprinting. The reaction solution discharge head forms a reaction solution layer containing a flocculant on a printing face of the printing base material. The ink discharge head forms a printing image by discharging an ink containing a color material on the reaction solution layer. The head for overprinting forms an overprint layer so as to be positioned on the reaction solution layer.
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公开(公告)号:US20170173988A1
公开(公告)日:2017-06-22
申请号:US15450554
申请日:2017-03-06
Applicant: Seiko Epson Corporation
Inventor: Hitoshi OHTA , Kazuaki TSUKIANA
IPC: B41M7/00 , C09D11/107 , B41J11/00 , C09D11/102 , C09D11/12 , C09D11/36 , C09D11/322 , C09D11/03
CPC classification number: C09D11/30 , B41J2/2114 , B41J11/0015 , B41M5/0011 , B41M5/0047 , B41M5/0064 , B41M7/0027 , B41M7/0036 , C09D11/03 , C09D11/10 , C09D11/102 , C09D11/107 , C09D11/12 , C09D11/322 , C09D11/36 , C09D11/40 , Y10T428/24901
Abstract: An ink jet recording method includes recording an image by discharging an ink composition which contains water and a coloring material on a recording surface of a recording medium having low absorbency or non-absorbency to ink, and forming a protective layer, which contains first resin particles where a glass transition temperature is 50° C. or higher and second resin particles where a glass transition temperature is less than 50° C. and which substantially does not contain a coloring material, on the image.
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