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公开(公告)号:US08080499B2
公开(公告)日:2011-12-20
申请号:US12252518
申请日:2008-10-16
Applicant: Hung-Tu Lu , Sergey Uvarov
Inventor: Hung-Tu Lu , Sergey Uvarov
IPC: C10M125/00 , C10M125/02
CPC classification number: C10M169/06 , B82Y30/00 , C09K5/14 , C10M171/06 , C10M2201/0406 , C10M2201/041 , C10M2201/056 , C10M2201/0616 , C10M2201/0626 , C10M2201/1056 , C10M2203/102 , C10M2205/022 , C10M2205/024 , C10M2207/022 , C10M2207/126 , C10M2207/40 , C10M2209/04 , C10M2209/062 , C10M2209/084 , C10M2209/10 , C10M2209/103 , C10M2229/02 , C10N2210/02 , C10N2210/03 , C10N2210/04 , C10N2210/08 , C10N2230/00 , C10N2240/20 , C10N2250/10 , H01L23/42 , H01L2924/0002 , H01L2924/00
Abstract: The present invention discloses a nanodiamond thermal grease, which comprises a nanodiamond powder, a thermal powder and a substrate. The nanodiamond powder has volume percentage of 5% to 30%, the thermal powder has volume percentage of 40% to 90%, and the substrate has volume percentage of 5% to 30%. The nanodiamond powder and the thermal powder are distributed uniformly in the substrate to form the nanodiamond thermal grease having high thermal conductivity.
Abstract translation: 本发明公开了一种纳米金刚石导热油脂,其包含纳米金刚石粉末,热粉末和基材。 纳米金刚石粉末的体积百分比为5〜30%,热粉的体积百分比为40〜90%,底材的体积百分比为5〜30%。 纳米金刚石粉末和热粉末均匀分布在基材中,形成具有高导热性的纳米金刚石导热油脂。
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公开(公告)号:US20100022423A1
公开(公告)日:2010-01-28
申请号:US12252518
申请日:2008-10-16
Applicant: Hung-Tu LU , Sergey Uvarov
Inventor: Hung-Tu LU , Sergey Uvarov
IPC: C10M125/02 , C10M125/26 , C10M125/10 , C10M125/08
CPC classification number: C10M169/06 , B82Y30/00 , C09K5/14 , C10M171/06 , C10M2201/0406 , C10M2201/041 , C10M2201/056 , C10M2201/0616 , C10M2201/0626 , C10M2201/1056 , C10M2203/102 , C10M2205/022 , C10M2205/024 , C10M2207/022 , C10M2207/126 , C10M2207/40 , C10M2209/04 , C10M2209/062 , C10M2209/084 , C10M2209/10 , C10M2209/103 , C10M2229/02 , C10N2210/02 , C10N2210/03 , C10N2210/04 , C10N2210/08 , C10N2230/00 , C10N2240/20 , C10N2250/10 , H01L23/42 , H01L2924/0002 , H01L2924/00
Abstract: The present invention discloses a nanodiamond thermal grease, which comprises a nanodiamond powder, a thermal powder and a substrate. The nanodiamond powder has volume percentage of 5% to 30%, the thermal powder has volume percentage of 40% to 90%, and the substrate has volume percentage of 5% to 30%. The nanodiamond powder and the thermal powder are distributed uniformly in the substrate to form the nanodiamond thermal grease having high thermal conductivity.
Abstract translation: 本发明公开了一种纳米金刚石导热油脂,其包含纳米金刚石粉末,热粉末和基材。 纳米金刚石粉末的体积百分比为5〜30%,热粉的体积百分比为40〜90%,底物的体积百分比为5〜30%。 纳米金刚石粉末和热粉末均匀分布在基材中,形成具有高导热性的纳米金刚石导热油脂。
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