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公开(公告)号:US12104241B2
公开(公告)日:2024-10-01
申请号:US18177549
申请日:2023-03-02
Applicant: Continental Reifen Deutschland GmbH
Inventor: Andrew Grant , Michael E. Stazinski , Hilton Pryce Lewis , Martin Klein , Ryan Spoering , W. Shannan O'Shaughnessy
IPC: C23C14/50 , B05B1/14 , B29C33/56 , B29C33/58 , B29C33/62 , B29D30/06 , C23C14/56 , C23C16/30 , C23C16/44 , C23C16/458 , C23C16/54 , C23C16/56 , H01L21/687 , B05D1/00 , B05D1/02 , B05D5/08
CPC classification number: C23C14/50 , B05B1/14 , B29C33/56 , B29C33/58 , B29C33/62 , B29D30/0662 , C23C14/562 , C23C16/30 , C23C16/44 , C23C16/458 , C23C16/54 , C23C16/56 , H01L21/68764 , B05D1/02 , B05D1/60 , B05D5/08 , B05D2518/10
Abstract: Systems for depositing coatings onto surfaces of molds and other articles are generally provided. In some embodiments, a system is adapted and arranged to cause gaseous species to flow parallel to a filament array. In some embodiments, a system comprises one or more mold supports that are translatable.
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72.
公开(公告)号:US12037251B2
公开(公告)日:2024-07-16
申请号:US17223546
申请日:2021-04-06
Inventor: Daeyeon Lee , R. Bharath Venkatesh
CPC classification number: C01B33/149 , B05D1/286 , B05D3/007 , B05D5/00 , C08J5/18 , B05D2203/00 , B05D2518/10 , B82Y30/00 , B82Y40/00 , C08J2383/04
Abstract: Provided are methods for forming polymer-infiltrated nanoparticle films by using capillary action to draw mobile molecular chains into the pores of a bed of nanoparticles. The chains can spread across the entire bed of nanoparticles. The disclosed methods also provide the formation of patterned polymer-infiltrated nanoparticle film compositions, as well as laterally graded compositions and compositions that feature a polymer gradient through the composition's thickness. Articles can be formed that include a plurality of polymer types infiltrated into the bed of nanoparticles.
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公开(公告)号:US20240001402A1
公开(公告)日:2024-01-04
申请号:US18253414
申请日:2021-12-09
Applicant: KOLON INDUSTRIES, INC
Inventor: Ah Reum HAN , Chang Won
IPC: B05D7/00 , C09D183/08 , C09D7/63
CPC classification number: B05D7/52 , C09D183/08 , C09D7/63 , B05D2201/02 , B05D2503/00 , B05D2518/10
Abstract: The present invention relates to a moisture and oxygen barrier laminate with improved durability and flexibility. According to the present invention, there is provided a laminate, comprising: an inorganic barrier layer and a protective layer sequentially formed on one surface of a transparent substrate, wherein the protective layer includes an organic copolymer containing a repeating unit derived from a siloxane compound. The laminate according to the present invention can maintain excellent interlayer adhesion even when deformation such as bending is applied, thereby exhibiting excellent moisture and oxygen barrier properties.
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公开(公告)号:US11788227B2
公开(公告)日:2023-10-17
申请号:US17146276
申请日:2021-01-11
Inventor: Tatsuhiro Ooshiro , Takashi Tsuruta
IPC: D06M11/79 , C01B33/16 , C08J5/04 , C08J9/26 , D06M13/513 , D06M11/11 , D06M13/507 , D06M11/07 , F16L59/04 , B05D3/06 , B05D1/18 , D06M101/32 , D06M101/06 , D06M101/34
CPC classification number: D06M11/07 , B05D1/18 , B05D3/067 , C01B33/16 , C08J5/04 , C08J9/26 , D06M11/11 , D06M13/507 , D06M13/513 , F16L59/04 , B05D2518/10 , D06M2101/06 , D06M2101/32 , D06M2101/34 , D06M2400/02
Abstract: A thermal insulation sheet is used that includes a fiber, a silica aerogel contained in the fiber, and a fibrous cavity. A method for manufacturing a thermal insulation sheet is used that includes: an impregnation step of impregnating a silica aerosol in a nonwoven fabric substrate containing a fiber that is insoluble in an acidic solution, and a fiber that is soluble in the acidic solution; a gelling step of gelling the silica aerosol; a hydrophobizing step of hydrophobizing the gel; and a drying step of drying the gel. The fiber that is soluble in the acidic solution is dissolved in the hydrophobizing step.
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公开(公告)号:US20230302491A1
公开(公告)日:2023-09-28
申请号:US17800209
申请日:2021-02-18
Applicant: DOW SILICONES CORPORATION , DOW GLOBAL TECHNOLOGIES LLC
Inventor: Timothy MORLEY , Kshitish PATANKAR , Bradley W. TUFT , Thomas J. PARSONS , David SHAWL , Kaila M. MATTSON , Veronika IRKHA , Torrey CLARK , Dimitris KATSOULIS , Mark F. SONNENSCHEIN
CPC classification number: B05D7/146 , B05D3/108 , B05D5/005 , F16L59/15 , B05D2254/02 , B05D2518/10 , B05D2601/22
Abstract: This disclosure relates to a method for the in-situ encapsulation and/or insulation of piping using silicone-based compositions such as liquid silicone rubber materials and/or silicone foams. The method is useful for encapsulation and/or insulation of underground piping, particularly underground piping carrying high temperature (e.g., >120° C.) fluids, such as steam. The in-situ encapsulation and/or insulation may be done by inserting a hose into a pipe cavity so that a first end of the hose is remotely positioned next to the pipe and a second end of the hose is attached to a pumping system. A silicone composition is pumped through the hose and into the cavity surrounding from the remote first end of the tubing at a first predefined rate, and the hose is gradually withdrawn from the cavity at a second predefined rate. The silicone material is allowed to cure and become rigid, thereby encapsulating and/or insulating the pipe.
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公开(公告)号:US20230250293A1
公开(公告)日:2023-08-10
申请号:US18135921
申请日:2023-04-18
Applicant: VIAVI SOLUTIONS INC.
Inventor: Kangning LIANG
IPC: C09C1/00 , B05D5/06 , B05D1/38 , B05D3/06 , B05D3/02 , C08K5/06 , C08K5/07 , C08K5/45 , C08K5/14 , C08K5/23 , C08K3/30 , C09C3/10
CPC classification number: C09C1/0021 , B05D5/068 , B05D1/38 , B05D3/067 , B05D3/0254 , C08K5/06 , C08K5/07 , C08K5/45 , C08K5/14 , C08K5/23 , C08K3/30 , C09C3/10 , C08K2003/3045 , B05D2202/25 , B05D2202/45 , B05D2202/30 , B05D2401/30 , B05D2502/00 , B05D2503/00 , B05D2518/10 , B05D2504/00 , B05D2506/00 , B05D2401/10
Abstract: A method of making pigments, such as special effect pigment includes forming a first slurry including a substrate, a polymer precursor, and a radical initiator; forming a solution including an emulsifier; and combining the first slurry and the solution so that the substrate is encapsulated by a first coating. Special effect pigments formed by the method are also disclosed.
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公开(公告)号:US11709156B2
公开(公告)日:2023-07-25
申请号:US16746031
申请日:2020-01-17
Applicant: Waters Technologies Corporation
Inventor: Xiaoxiao Liu , Anna Boardman , Mathew H. DeLano , Matthew A. Lauber
CPC classification number: G01N30/56 , B05D1/60 , G01N30/52 , G01N30/6052 , B05D2202/00 , B05D2203/35 , B05D2518/10 , G01N33/6803 , G01N33/74 , G01N33/92 , G01N2030/567
Abstract: A device for processing samples is disclosed. Interior surfaces of the device, which come in contact with fluids, define wetted surfaces. A portion of the wetted surfaces are coated with an alkylsilyl coating having the Formula I:
R1, R2, R3, R4, R5, and R6 are each independently selected from (C1-C6)alkoxy, —NH(C1-C6)alkyl, —N((C1-C6)alkyl)2, OH, ORA, and halo. RA represents a point of attachment to the interior surfaces of the fluidic system. At least one of R1, R2, R3, R4, R5, and R6 is ORA. X is (C1-C20)alkyl, —O[(CH2)2O]1-20—, —(C1-C10)[NH(CO)NH(C1-C10)]1-20—, or —(C1-C10)[alkylphenyl(C1-C10)alkyl]1-20—.-
公开(公告)号:US20190193115A1
公开(公告)日:2019-06-27
申请号:US16227442
申请日:2018-12-20
Applicant: UT-Battelle, LLC
Inventor: Linda LEWIS , Michael QUINN , Brent DIAL
CPC classification number: B05D7/24 , B05D3/007 , B05D5/00 , B05D2401/10 , B05D2506/10 , B05D2518/10 , B05D2601/22 , C07F7/081
Abstract: A composition useful for producing a superomniphobic coating on a substrate, the composition comprising a colloidal suspension of a fluorinated siloxane in a non-silicon-containing fluorinated solvent. In some embodiments, the composition further comprises particles of a hydrophobized metal oxide, e.g., silicon oxide, wherein the hydrophobized metal oxide may be fluorinated. In some embodiments, the composition further comprises a non-silicon-containing fluorinated polymer. The invention is also directed to methods for making the above composition. The invention is also directed to methods for using the above-described composition for rendering a substrate superomniphobic. The aforesaid method comprises depositing a liquid coating solution onto a substrate to form a coated substrate, followed by subjecting the coated substrate to a drying step to remove a liquid phase of the liquid coating solution, wherein the liquid coating solution comprises a colloidal suspension of a fluorinated siloxane in a non-silicon-containing fluorinated solvent.
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79.
公开(公告)号:US20170358445A1
公开(公告)日:2017-12-14
申请号:US15621879
申请日:2017-06-13
Applicant: GVD Corporation
Inventor: W. Shannan O'Shaughnessy , Scott W. Morrison , R. Austin Nowak
CPC classification number: H01L21/02274 , A61N1/00 , B05D1/62 , B05D2518/10 , C08G77/045 , C08J5/18 , C08J2383/07 , C08K5/14 , C23C16/401 , C23C16/50 , C23C16/505 , C23C2222/20 , H01L21/02118 , H01L21/02126 , H01L21/02216
Abstract: Methods for plasma depositing polymers comprising cyclic siloxanes and related articles and compositions are generally provided. In some embodiments, the methods comprise flowing a precursor gas in proximity to a substrate within a PECVD reactor, wherein the precursor gas comprises an initiator and at least one monomer comprising a cyclic siloxane and at least two vinyl groups, and depositing a polymer formed from the at least one monomer on the substrate.
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80.
公开(公告)号:US20170283943A1
公开(公告)日:2017-10-05
申请号:US15467564
申请日:2017-03-23
Applicant: SILCOTEK CORP.
Inventor: David A. SMITH
IPC: C23C16/30 , B32B15/18 , B32B15/20 , C22C38/58 , C22C38/44 , C22C38/00 , C22C38/42 , C22C38/02 , C22C38/06 , C22C38/50 , C22C38/04 , C22C38/46 , C22C21/08 , C22C19/05 , B32B15/04
CPC classification number: C23C16/30 , B05D1/60 , B05D3/044 , B05D5/083 , B05D7/146 , B05D2202/00 , B05D2506/10 , B05D2518/10 , B32B15/04 , B32B15/18 , B32B15/20 , C22C19/056 , C22C21/08 , C22C38/001 , C22C38/002 , C22C38/02 , C22C38/04 , C22C38/06 , C22C38/42 , C22C38/44 , C22C38/46 , C22C38/50 , C22C38/58 , C23C12/00 , C23C12/02
Abstract: Treated articles and a process of producing the treated articles, systems having treated articles, and processes incorporating treated articles are disclosed. The treated articles include a metal or metallic substrate, and a surface treatment of the metal or metallic substrate, the surface treatment having fluorine, silicon, and carbon. The systems include a flow path, with the surface treatment being within the flow path. The processes include flowing a fluid through the flow path.
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