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公开(公告)号:CA2393531C
公开(公告)日:2011-02-15
申请号:CA2393531
申请日:2000-12-21
Applicant: MICROCOATING TECHNOLOGIES INC
Inventor: HUNT ANDREW T , DESHPANDE GIRISH , HWANG JAN TZYY-JIUAN , LAYE NII SOWA , OLJACA MIODRAG , SHANMUGHAM SUBRAMANIAM , SHOUP SHARA S , TOMOV TRIFON , DALZELL WILLIAM J JR , PODA AIMEE , HENDRICK MICHELLE
IPC: C23C16/452 , B05B7/00 , B05D1/08 , B32B9/04 , B32B15/08 , C23C16/04 , C23C16/18 , C23C16/30 , C23C16/40 , C23C16/453
Abstract: A modified chemical vapor deposition (CVD) method and various coatings formed by this method are disclosed. A uniform coating is obtained by the disclosed CVD method by redirecting the energy source and/or the hot gasses produced thereby. The methods disclosed are particularly useful for forming thin film, insulative, oxide coatings on the surface of conductive or super-conductive wires. The redirect methods are also useful for producing powders that can be collected for further processing. Metal oxide barrier coatings for polymer food containers are also disclosed.
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公开(公告)号:AU7163801A
公开(公告)日:2002-01-14
申请号:AU7163801
申请日:2001-06-27
Applicant: MICROCOATING TECHNOLOGIES INC
Inventor: DESHPANDE GIRISH , HUNT ANDREW TYE , SHANMUGHAM SUBRAMANIAM , YURTKURAN ERIC J , POLLEY TODD , OLJACA MIODRAG , HWANG TZYY-JIUAN JAN , PODA AIMEE , NEUMAN GEORGE ANDREW
IPC: B05D1/08 , B05D1/34 , B05D3/02 , B05D3/08 , C03C17/00 , C03C17/32 , C03C17/42 , C09D7/12 , C09D183/04 , C23C4/12 , C23C26/00 , B32B27/06 , B32B27/08 , B32B27/28 , B32B27/30 , B32B27/32 , B32B27/34 , B32B27/36 , B32B27/38 , B32B27/40 , C23C4/04 , C23C16/00
Abstract: A coherent material is formed on a substrate ( 10 ) by providing a precursor suspension ( 14 ) in which particulates are suspended in a carrier fluid, and directing the precursor suspension ( 14 ) at the substrate ( 10 ) from a first source ( 12 ). Generally contemporaneously with application of the deposited precursor suspension ( 14 ) to the surface, hot gases, e.g. hot gases produced by a flame ( 16 ), are directed at the substrate ( 10 ) from a remote second source ( 18 ) to fuse the particulates into the coherent material.
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公开(公告)号:AU771864B2
公开(公告)日:2004-04-01
申请号:AU2740201
申请日:2000-12-21
Applicant: MICROCOATING TECHNOLOGIES INC
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公开(公告)号:CA2393531A1
公开(公告)日:2001-07-05
申请号:CA2393531
申请日:2000-12-21
Applicant: MICROCOATING TECHNOLOGIES INC
Inventor: PODA AIMEE , DALZELL WILLIAM J JR , HUNT ANDREW T , HWANG JAN TZYY-JIUAN , TOMOV TRIFON , LAYE NII SOWA , HENDRICK MICHELLE , DESHPANDE GIRISH , SHANMUGHAM SUBRAMANIAM , OLJACA MIODRAG , SHOUP SHARA S
IPC: C23C16/04 , C23C16/18 , C23C16/30 , C23C16/40 , C23C16/453 , B32B5/16 , B05B7/00 , B05B7/16 , B05D1/08 , B05D1/36 , B32B5/00 , B32B9/00 , B32B9/04 , B32B13/12 , B32B15/08 , B32B27/00 , B32B27/08 , B32B27/36 , C23C4/04 , C23C4/08 , C23C4/10
Abstract: A modified chemical vapor deposition (CVD) method and various coatings forme d by this method are disclosed. A uniform coating is obtained by the disclosed CVD method by redirecting the energy source and/or the hot gasses produced thereby. The methods disclosed are particularly useful for forming thin film , insulative, oxide coatings on the surface of conductive or superconductive wires. The redirect methods are also useful for producing powders that can b e collected for further processing. Metal oxide barrier coatings for polymer food containers are also disclosed.
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公开(公告)号:AU2740201A
公开(公告)日:2001-07-09
申请号:AU2740201
申请日:2000-12-21
Applicant: MICROCOATING TECHNOLOGIES INC
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公开(公告)号:WO0202320B1
公开(公告)日:2002-03-21
申请号:PCT/US0120757
申请日:2001-06-27
Applicant: MICROCOATING TECHNOLOGIES INC , DESHPANDE GIRISH , HUNT ANDREW TYE , SHANMUGHAM SUBRAMANIAM , YURTKURAN ERIC J , POLLEY TODD , OLJACA MIODRAG , HWANG TZYY JIUAN JAN , PODA AIMEE , NEUMAN GEORGE ANDREW
Inventor: DESHPANDE GIRISH , HUNT ANDREW TYE , SHANMUGHAM SUBRAMANIAM , YURTKURAN ERIC J , POLLEY TODD , OLJACA MIODRAG , HWANG TZYY-JIUAN JAN , PODA AIMEE , NEUMAN GEORGE ANDREW
IPC: B05D1/08 , B05D1/34 , B05D3/02 , B05D3/08 , C03C17/00 , C03C17/32 , C03C17/42 , C09D7/12 , C09D183/04 , C23C4/12 , C23C26/00 , B32B27/06 , B32B27/08 , B32B27/28 , B32B27/30 , B32B27/32 , B32B27/34 , B32B27/36 , B32B27/38 , B32B27/40 , C23C4/04 , C23C16/00
CPC classification number: C03C17/001 , B05D1/08 , B05D1/34 , B05D3/0254 , B05D3/08 , B05D2518/10 , C03C17/007 , C03C17/009 , C03C17/32 , C03C17/42 , C03C2217/425 , C03C2217/445 , C03C2217/475 , C08K3/22 , C08K3/346 , C09D7/61 , C09D183/04 , C23C4/12 , C23C4/123 , C23C26/00 , Y10T428/12583 , Y10T428/31522
Abstract: Coatings, particularly thin films, of polymeric material are produced in accordance with the invention by applying a finely divided aerosol (N) of polymer solution to a substrate (30) and substantially simultaneously applying an energy source (38) to the applied solution to apply the solution. In cases where the polymer is cross-linking, the energy source assists in cross-linking of the polymer. The preferred energy source is a flame (38) that may optionally or desirably deposit material along with the polymer spray. One particular aspect of the invention is directed to production of polyimide films. In accordance with another aspect of the invention, the co-deposition process is used to provide thin polysiloxane coatings on glass and other substrates.
Abstract translation: 根据本发明,通过将细分散的气溶胶(N)聚合物溶液施加到基底(30)并基本上同时向所施加的溶液施加能量源(38)来施加聚合物材料的涂层,特别是薄膜, 解决方案。 在聚合物交联的情况下,能量源有助于聚合物的交联。 优选的能源是可以任选地或期望地与聚合物喷雾一起沉积物质的火焰(38)。 本发明的一个特定方面涉及聚酰亚胺膜的制备。 根据本发明的另一方面,共沉积方法用于在玻璃和其它基底上提供薄的聚硅氧烷涂层。
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公开(公告)号:EP1301341A4
公开(公告)日:2004-07-14
申请号:EP01950670
申请日:2001-06-27
Applicant: MICROCOATING TECHNOLOGIES INC
Inventor: DESHPANDE GIRISH , HUNT ANDREW TYE , SHANMUGHAM SUBRAMANIAM , YURTKURAN ERIC J , POLLEY TODD , OLJACA MIODRAG , HWANG TZYY-JIUAN JAN , PODA AIMEE , NEUMAN GEORGE ANDREW
IPC: B05D1/08 , B05D1/34 , B05D3/02 , B05D3/08 , C03C17/00 , C03C17/32 , C03C17/42 , C09D7/12 , C09D183/04 , C23C4/12 , C23C26/00 , B32B27/06 , B32B27/08 , B32B27/28 , B32B27/30 , B32B27/32 , B32B27/34 , B32B27/36 , B32B27/38 , B32B27/40 , C23C4/04 , C23C16/00
CPC classification number: C03C17/001 , B05D1/08 , B05D1/34 , B05D3/0254 , B05D3/08 , B05D2518/10 , C03C17/007 , C03C17/009 , C03C17/32 , C03C17/42 , C03C2217/425 , C03C2217/445 , C03C2217/475 , C08K3/22 , C08K3/346 , C09D7/61 , C09D183/04 , C23C4/12 , C23C4/123 , C23C26/00 , Y10T428/12583 , Y10T428/31522
Abstract: A coherent material is formed on a substrate ( 10 ) by providing a precursor suspension ( 14 ) in which particulates are suspended in a carrier fluid, and directing the precursor suspension ( 14 ) at the substrate ( 10 ) from a first source ( 12 ). Generally contemporaneously with application of the deposited precursor suspension ( 14 ) to the surface, hot gases, e.g. hot gases produced by a flame ( 16 ), are directed at the substrate ( 10 ) from a remote second source ( 18 ) to fuse the particulates into the coherent material.
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