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公开(公告)号:US12109585B2
公开(公告)日:2024-10-08
申请号:US18072935
申请日:2022-12-01
Applicant: RTX Corporation
Inventor: Tahany El-Wardany , Timothy C. Davenport , Thomas P. Filburn , Eric W. Stratton
CPC classification number: B05D3/06 , B05B17/06 , B05D3/062 , B05D3/065 , B05D5/005 , B05D5/02 , B23K26/355 , B23K26/36 , B25J15/0019 , F01D5/005
Abstract: Methods and systems for treating components are described. The methods include using a system having a controller, a laser applicator, a coating applicator, and a sensor array. The laser applicator, the coating applicator, and the sensor array are arranged on a treatment arm that is controlled by the controller. The method includes scanning a surface to be treated of the component using the sensor array, cleaning the surface to be treated using the laser applicator, defining surface texture patterns, applying laser texturing, and applying a new coating to the surface to be treated using the coating applicator.
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公开(公告)号:US12083555B2
公开(公告)日:2024-09-10
申请号:US17771738
申请日:2020-10-27
Applicant: SAFRAN AIRCRAFT ENGINES
Inventor: Anthony Cyrille Grunenwald , Romaric Jean-Marie Piette
CPC classification number: B05D3/06 , B05D1/02 , B05D5/12 , B05D7/14 , F02C7/36 , F05D2230/90 , F05D2260/95
Abstract: A method compacts an anti-corrosive paint having metal particles of a mechanical part such as a turbine engine part. The mechanical part extends along a longitudinal axis X and has a radially outer surface covered with a first layer of anti-corrosive paint. The method includes at least one step of generating a laser beam on the first layer of anti-corrosive paint to bring the metal particles into contact and to render the anti-corrosive paint electrically conductive.
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公开(公告)号:US12048948B2
公开(公告)日:2024-07-30
申请号:US16427723
申请日:2019-05-31
Applicant: APPLIED MATERIALS, INC.
Inventor: Yueh Sheng Ow , Yue Cui , Arvind Sundarrajan , Nuno Yen-Chu Chen , Guan Huei See , Felix Deng
CPC classification number: B05D3/06 , H01L24/03 , H01L24/05 , H01L2224/03515 , H01L2224/0401 , H01L2224/05024 , H01L2924/19031 , H01L2924/19032 , H01L2924/3511 , H01P3/08 , H01P11/003
Abstract: Methods of curing a polymer layer on a substrate using variable microwave frequency are provided herein. In some embodiments, methods of curing a polymer layer on a substrate using variable microwave frequency include (a) forming a first thin-film polymer layer on a substrate, the first thin-film polymer layer including at least one first base dielectric material and at least one microwave tunable material, (b) applying a variable frequency microwave energy to the substrate and the first thin-film polymer layer to heat the substrate and the first thin-film polymer layer to a first temperature, and (c) adjusting the variable frequency microwave energy applied to the substrate and the first thin-film polymer layer to tune at least one material property of the first thin-film polymer layer.
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公开(公告)号:US20240027915A1
公开(公告)日:2024-01-25
申请号:US18453594
申请日:2023-08-22
Applicant: ASML NETHERLANDS B.V.
Inventor: Raymond Wilhelmus Louis LAFARRE , Sjoerd Nicolaas Lambertus Donders , Nicolaas TEN KATE , Nina Vladimirovna DZIOMKINA , Yogesh Pramod KARADE , Elisabeth Corinne RODENBURG
IPC: G03F7/00 , B23K26/354 , B23K26/342 , B22F10/00 , B22F10/20 , B23Q3/18 , G03F7/20 , B05D3/06 , B05D5/00 , B33Y10/00 , B33Y80/00 , B22F7/06
CPC classification number: G03F7/70341 , B23K26/354 , B23K26/342 , G03F7/70416 , G03F7/707 , G03F7/70708 , B22F10/00 , B22F10/20 , B23Q3/18 , G03F7/20 , G03F7/70716 , B05D3/06 , B05D5/00 , G03F7/70733 , B33Y10/00 , B33Y80/00 , B22F7/062 , G03F7/708 , B22F10/25
Abstract: An object holder for a lithographic apparatus has a main body having a surface. A plurality of burls to support an object are formed on the surface or in apertures of a thin-film stack. At least one of the burls is formed by laser-sintering. At least one of the burls formed by laser-sintering may be a repair of a damaged burl previously formed by laser-sintering or another method.
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公开(公告)号:US20230374329A1
公开(公告)日:2023-11-23
申请号:US18199739
申请日:2023-05-19
Applicant: Asahi Kasei Kabushiki Kaisha
Inventor: Masanori Tsuruta , Toru Yumoto
IPC: C09D11/52 , B05D3/06 , B05D3/14 , C09D11/033 , C09D11/037 , H01Q1/38
CPC classification number: C09D11/52 , B05D3/06 , B05D3/145 , C09D11/033 , C09D11/037 , H01Q1/38
Abstract: In the present invention, a conductive film having low resistance is formed on a substrate, said film having excellent storage stability and high dispersion stability as an ink. A copper oxide ink (1) contains a copper oxide (2), a dispersant (3), and a reducing agent. The content of the reducing agent is in the range of formula (1), and the content of the dispersant is in the range of formula (2). (1) 0.00010≤(reducing agent mass/copper oxide mass)≤0.10 (2) 0.0050≤(dispersant mass/copper oxide mass)≤0.30 The reducing agent content promotes the reduction of copper oxide to copper during firing, and promotes the sintering of copper.
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公开(公告)号:US20230357846A1
公开(公告)日:2023-11-09
申请号:US18324708
申请日:2023-05-26
Applicant: Illumina, Inc.
Inventor: Wayne N. George , Andrew A. Brown , Daniel Bratton , Hongji Ren , Ryan Christopher Smith
IPC: C12Q1/6874 , B05D3/06 , C09D133/26 , C09D135/00 , C12Q1/6806
CPC classification number: C12Q1/6874 , B05D3/065 , B05D3/06 , C09D133/26 , C09D135/00 , C12Q1/6806 , Y10T428/24917 , Y10T428/24802 , Y10T428/24926 , Y10T428/2998 , Y10T428/31536 , Y10T428/31935
Abstract: The present disclosure relates to polymer coatings covalently attached to the surface of a substrate and the preparation of the polymer coatings, such as poly(N-(5-azidoacetamidylpentyl)acrylamide-co-acrylamide) (PAZAM), in the formation and manipulation of substrates, such as molecular arrays and flow cells. The present disclosure also relates to methods of preparing a substrate surface by using beads coated with a covalently attached polymer, such as PAZAM, and the method of determining a nucleotide sequence of a polynucleotide attached to a substrate surface described herein.
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公开(公告)号:US11781023B2
公开(公告)日:2023-10-10
申请号:US16747092
申请日:2020-01-20
Applicant: Illinois Tool Works Inc.
Inventor: Helena Twardowska , Carlton G. Seaboldt , David J. McKinney
IPC: B05D3/10 , C09D5/29 , C09D5/00 , C09D133/04 , C09D167/06 , C09D4/06 , B05D3/06 , B05D3/00 , B05D3/04
CPC classification number: C09D5/29 , B05D3/00 , B05D3/04 , B05D3/0406 , B05D3/06 , B05D3/107 , B05D3/108 , C09D4/06 , C09D5/002 , C09D133/04 , C09D167/06 , B05D2508/00
Abstract: A free radical curable automotive body primer is provided that has a color change corresponding to the progress of the cure process until a dry to sand condition has been attained and an internal colored guide coat that does not change color given its exposure to ambient air and as a result, has a different color on the surface of the primer than when in bulk, allowing for the detection and removal of low spots or other imperfections from a vehicle body by additional sanding of the inventive primer to remove oxidized guide coat colorant surface regions. The cure color change is achieved through resort to at least one color changing dye that reacts with a free radical cure initiator during the vehicle body priming process and changes color to indicate when the primer composition has achieved a level of cure so as to be dry enough to sand.
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公开(公告)号:US11778698B2
公开(公告)日:2023-10-03
申请号:US16639350
申请日:2017-08-24
Applicant: MITSUBISHI HEAVY INDUSTRIES, LTD.
Inventor: Toshikatsu Nohara , Takashi Shibutani , Shigenari Horie , Makoto Tamura
CPC classification number: H05B3/0038 , B05D3/06 , H05B1/0236 , H05B2203/032
Abstract: An infrared heating device that appropriately sets positions of infrared lamps and a radiation thermometer relative to an object to be heated and is easily positioned includes: an infrared irradiator that irradiates infrared rays to an object to be heated to heat the object to be heated; a holding member that holds the infrared irradiator; a radiation thermometer that measures a temperature of a surface of the object; and a pair of laser pointers that irradiate laser beams to the surface of the object from different positions. The pair of laser pointers are disposed to cause the respective laser beams to be coincident in position with each other at one point on the surface of the object when a distance between the surface of the object and the infrared irradiator is a predetermined distance.
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公开(公告)号:US20230243496A1
公开(公告)日:2023-08-03
申请号:US18162911
申请日:2023-02-01
Applicant: GEW (EC) Limited
Inventor: Malcolm Rae , James Hicks , Robert Rae
CPC classification number: F21V29/76 , F21V29/717 , B41J11/00218 , B05D3/06
Abstract: A cooling module, which is securable to one or more thermal transfer members for an LED curing apparatus, wherein the cooling module comprises a first finned heat sink and a second finned heat sink; wherein the first finned heat sink is removably securable to the second finned heat sink to provide at least one aperture therebetween, wherein each of a plurality of fins protrude from the first finned heat sink and from the second finned heat sink and each fin is substantially perpendicular to the length of the or each aperture, wherein the first finned heat sink is removably secured proximal to the second finned heat sink by at least one locking member, and wherein the or each locking member is inserted such that its length is parallel to the length of the or each aperture.
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公开(公告)号:US11702695B2
公开(公告)日:2023-07-18
申请号:US17662124
申请日:2022-05-05
Applicant: Illumina, Inc.
Inventor: Yir-Shyuan Wu , Yan-You Lin , M. Shane Bowen , Cyril Delattre , Fabien Abeille , Tarun Khurana , Arnaud Rival , Poorya Sabounchi , Dajun Yuan , Maria Candelaria Rogert Bacigalupo
IPC: B05D3/06 , G03F7/00 , G03F7/20 , C12Q1/6874 , C12Q1/6806
CPC classification number: C12Q1/6874 , B05D3/06 , C12Q1/6806 , G03F7/0002 , G03F7/20
Abstract: Embodiments provided herewith are directed to self-assembled methods of preparing a patterned surface for sequencing applications including, for example, a patterned flow cell or a patterned surface for digital fluidic devices. The methods utilize photolithography to create a patterned surface with a plurality of microscale or nanoscale contours, separated by hydrophobic interstitial regions, without the need of oxygen plasma treatment during the photolithography process. In addition, the methods avoid the use of any chemical or mechanical polishing steps after the deposition of a gel material to the contours.
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