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公开(公告)号:GB2392781B
公开(公告)日:2005-09-07
申请号:GB0324079
申请日:2002-04-09
Applicant: MICROCOATING TECHNOLOGIES INC , NGIMAT CO
Inventor: HUNT ANDREW TYE , FAGUY PETER W , OLJACA MIODRAG , FLANAGAN SCOTT , DESHPANDE GIRISH , LEE STEIN
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公开(公告)号:AU777249B2
公开(公告)日:2004-10-07
申请号:AU7832200
申请日:2000-09-21
Applicant: MICROCOATING TECHNOLOGIES INC
Inventor: OLJACA MIODRAG , HUNT ANDREW TYE , REESE BRIAN T , NEUMAN GEORGE A
Abstract: The present invention involves controlled atomization of liquids for various applications such as part/droplet seeding for laser-based measurements of flow velocity, temperature, and concentration; flame and a plasma based elemental analysis; nano-powder production; spray drying for generation of small-sized particles; nebulizers in the production of sub-micron size droplets and for atomizing fuel for use in combustion chambers. In these and other atomizer applications the control of droplet and/or particle size is very critical In some applications extremely small droplets are preferred (less than a micron), while in others, droplet diameters on the scale of several microns are required. The present invention has the flexibility of forming droplets within a particular range of diameters, wherein not only the size of the average droplet can be adjusted, but the range of sizes may be adjusted as well. The atomizer (4) itself is in the form of a heated tube (44) having an inlet end (48) and an outlet end (50). As liquid travels through the tube it is heated and upon exiting the tube and entering a reduced pressure area the liquid atomizes to form very fine droplets. By electrically heating the tube by passing a current therethrough, the heating adjustment can be performed on-the-fly allowing size adjustment during operation of the atomizer. Several different embodiments of the atomization device are disclosed.
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公开(公告)号:AU9635101A
公开(公告)日:2002-04-22
申请号:AU9635101
申请日:2001-09-27
Applicant: MICROCOATING TECHNOLOGIES INC
Inventor: HUNT ANDREW TYE , SCHWERZEL ROBERT E , POLLEY TODD
Abstract: Optical waveguide composite materials and integrated optical subsystems with low loss connection to optical fibers, are disclosed. The waveguide material has a varying thickness and/or refractive index from one portion ( 816 ) to another ( 820 ) and can be varied in all three directions. Methods of producing the composite materials and waveguides are also disclosed.
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公开(公告)号:AU745998B2
公开(公告)日:2002-04-11
申请号:AU3989999
申请日:1999-05-13
Applicant: MICROCOATING TECHNOLOGIES INC
Inventor: HUNT ANDREW TYE , HWANG TZYY JIUAN , HENDRICK MICHELLE R , SHAO HONG , THOMAS JOSEPH R
Abstract: A corrosion-resistant coating for a substrate is described. The corrosion-resistant coating comprises a first distinct layer of a first composition disposed over the substrate, wherein the first distinct layer has a thickness that is not greater than about 10 microns, and a second distinct layer of a second composition disposed over the first distinct layer, wherein the second distinct layer has a thickness that is not greater than about 10 microns and either the first distinct layer or the second distinct layer is corrosion-resistant. Preferably, the thickness of each distinct layer is less than about 1 or 2 microns, more preferably, less than about 0.4 microns. The coating may comprise additional layers. Corrosion-resistant articles, methods of protecting an articles, and methods of depositing corrosion-resistant coatings are also described.
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公开(公告)号:AU8472401A
公开(公告)日:2002-02-18
申请号:AU8472401
申请日:2001-08-02
Applicant: MICROCOATING TECHNOLOGIES INC
Inventor: SCHMITT JEROME , CUI GEORGE GUANG-JI , LUTEN HENRY A III , YANG FANG , GLADDEN FE ALMA , FLANAGAN SCOTT , JIANG YONGDONG , HUNT ANDREW TYE
Abstract: Epitaxial and reduced grain boundary materials are deposited on substrates for use in electronic and optical applications. A specific material disclosed is epitaxial barium strontium titanate ( 14 ) deposited on the C-plane of sapphire ( 12 ).
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公开(公告)号:AU7024501A
公开(公告)日:2002-01-14
申请号:AU7024501
申请日:2001-06-27
Applicant: MICROCOATING TECHNOLOGIES INC
Inventor: SHANMUGHAM SUBRAMANIAM , HUNT ANDREW TYE , DESHPANDE GIRISH , HWANG TZYY-JIUAN JAN , MOORE ERIKA , JIANG YONGDONG
IPC: B05D1/08 , B05D1/34 , B05D3/02 , B05D3/08 , C03C17/00 , C03C17/32 , C03C17/42 , C09D7/12 , C09D183/04 , C23C4/12 , C23C26/00 , B05D1/24
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:AU6790400A
公开(公告)日:2001-03-13
申请号:AU6790400
申请日:2000-08-17
Applicant: MICROCOATING TECHNOLOGIES INC
Inventor: HUNT ANDREW TYE , LUTEN HENRY A III
IPC: C23C16/01 , C23C16/18 , C23C16/448 , C23C16/453 , H05K3/02 , H05K3/38 , B32B15/00
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公开(公告)号:EP1303360A4
公开(公告)日:2004-04-07
申请号:EP01948815
申请日:2001-06-27
Applicant: MICROCOATING TECHNOLOGIES INC
Inventor: SHANMUGHAM SUBRAMANIAM , HUNT ANDREW TYE , DESHPANDE GIRISH , HWANG TZYY-JIUAN JAN , MOORE ERIKA , JIANG YONGDONG
IPC: B05D1/08 , B05D1/34 , B05D3/02 , B05D3/08 , C03C17/00 , C03C17/32 , C03C17/42 , C09D7/12 , C09D183/04 , C23C4/12 , C23C26/00 , B05D1/24
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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公开(公告)号:EP1386333A4
公开(公告)日:2007-12-12
申请号:EP02734358
申请日:2002-05-09
Applicant: MICROCOATING TECHNOLOGIES INC
Inventor: HUNT ANDREW TYE , ALLEN MARK G , KIESLING DAVID
IPC: H01G4/012 , H01G4/255 , H01G7/06 , H01L21/02 , H01L23/522 , H01L27/08 , H01G4/005 , H01G4/06 , H01G4/228 , H01G4/38
CPC classification number: H01G4/012 , H01G4/255 , H01G7/06 , H01L23/5223 , H01L27/0805 , H01L28/55 , H01L28/82 , H01L28/86 , H01L2924/0002 , Y10T428/24917 , Y10T428/265 , Y10T428/31678 , H01L2924/00
Abstract: Capacitor material for use in forming capacitors, is disclosed. More specifically, the invention is directed to capacitors formed from this material that have one or more discrete electrodes (314), each electrode (314) being exposed to at least two thicknesses of dielectric material (300). These electrodes (314) are surrounded by wider insulative material (312) such that the material can be cut, or patterned into capacitors having specific values. A single electrode can form a small value capacitor while still providing a larger conductive area for attaching the capacitor to associated circuitry. The thin dielectric (310) can be a tunable material so that the capacitance can be varied with voltage. The tunability can be increased by adding thin electrodes that interact with direct current.
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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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