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公开(公告)号:US20200156216A1
公开(公告)日:2020-05-21
申请号:US16635332
申请日:2018-07-09
发明人: Lijun Zu , Andrew C. Anderson , Sarah L. Hagen , Jesse D. Lund , Qihong Nie , David C. Raithel , Kim C. Sachs, JR.
摘要: A surface-treating article, comprising a circular substrate (100) comprising a first major surface, an abrasive disposed on the first major surface, the abrasive having a first concentration at a first radius (110) measured from the center of the substrate, the abrasive having a second concentration not equal to the first concentration at a second radius (120) measured from the center of the substrate, wherein the first radius (110) and the second radius (120) are different lengths.
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公开(公告)号:USD854768S1
公开(公告)日:2019-07-23
申请号:US29613302
申请日:2017-08-09
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公开(公告)号:US11806838B2
公开(公告)日:2023-11-07
申请号:US16635332
申请日:2018-07-09
发明人: Lijun Zu , Andrew C. Anderson , Sarah L. Hagen , Jesse D. Lund , Qihong Nie , David C. Raithel , Kim C. Sachs, Jr.
摘要: A surface-treating article, comprising a circular substrate (100) comprising a first major surface, an abrasive disposed on the first major surface, the abrasive having a first concentration at a first radius (110) measured from the center of the substrate, the abrasive having a second concentration not equal to the first concentration at a second radius (120) measured from the center of the substrate, wherein the first radius (110) and the second radius (120) are different lengths.
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公开(公告)号:US11067455B2
公开(公告)日:2021-07-20
申请号:US16064745
申请日:2015-12-21
发明人: Sihua Yuan , Justin M. Johnson , Ryan D. Erickson , Christopher D. Sebesta , Zheng Huang , Jia Hu , Tongyong Li , Gaofei Guo , Tao Yang , Qihong Nie
摘要: A temperature-sensing apparatus for sensing the temperature of an electrical conductor (31), comprising a sensor frame (210) including a frame body (2101) and a channel (2102) adapted to accommodate the electrical conductor (31). At least a portion of a temperature sensor is received in a chamber (2103) of the sensor frame (210). At least a portion of a thermal contact member is disposed between the electrical conductor (31) and the temperature sensor and configured to enhance thermal-contact therebetween. At least a portion of the thermal contact member is radially pressable against the electrical conductor (31).
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公开(公告)号:US20190003901A1
公开(公告)日:2019-01-03
申请号:US16064745
申请日:2015-12-21
发明人: Sihua Yuan , Justin M. Johnson , Ryan D. Erickson , Christopher D. Sebesta , Zheng Huang , Jia Hu , Tongyong Li , Gaofei Guo , Tao Yang , Qihong Nie
摘要: A temperature-sensing apparatus for sensing the temperature of an electrical conductor (31), comprising a sensor frame (210) including a frame body (2101) and a channel (2102) adapted to accommodate the electrical conductor (31). At least a portion of a temperature sensor is received in a chamber (2103) of the sensor frame (210). At least a portion of a thermal contact member is disposed between the electrical conductor (31) and the temperature sensor and configured to enhance thermal-contact therebetween. At least a portion of the thermal contact member is radially pressable against the electrical conductor (31).
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公开(公告)号:US20240130077A1
公开(公告)日:2024-04-18
申请号:US18547194
申请日:2022-02-18
发明人: Qihong Nie , Steven D. Solomonson , Vadim N. Savvateev , Nicholas A. Proite , Myron K. Jordan , Glendon D. Kappel , Elizaveta Y. Plotnikov , Dylan T. Cosgrove , Andrew K. Penning , Sung Moon
IPC分类号: H05K7/20
CPC分类号: H05K7/20254 , H05K7/20272
摘要: A multichannel manifold cold plate with microchannels for cooling electronics. A main inlet is on a side of the microchannels opposite the cold plate and includes inlet channels with nozzles adjacent the microchannels. A main outlet is on a side of the microchannels opposite the cold plate and includes outlet channels with nozzles adjacent the microchannels. The inlet channels are interleaved with the outlet channels. In operation, the main inlet delivers a cooling fluid to the cold plate microchannels via the inlet channels and nozzles, and the main outlet receives the cooling fluid from the microchannels via the outlet channels and nozzles. This configuration provides a cooling fluid distribution pattern for efficient cooling of the electronics.
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公开(公告)号:US20160326741A1
公开(公告)日:2016-11-10
申请号:US15105735
申请日:2014-12-16
发明人: Christopher S. Lyons , Donna W. Bange , Cedric Bedoya , Paul T. Engen , Peter B. Hogerton , Joseph M. Pieper , Amy Preszler Prince , Ta-Hua Yu , Qihong Nie , Donald J. McClure
CPC分类号: E04B1/80 , B32B37/16 , B32B38/0008 , B32B2607/00 , C23C14/081 , C23C14/10 , C23C14/205 , C23C14/34 , E04B1/803 , E04B1/942 , E04B2001/7679 , E04C2/296 , Y02A30/242 , Y02B80/12
摘要: There is provided a vacuum insulation panel envelope having a substrate, a low thermal conductivity organic layer and a low thermal conductivity inorganic stack. The low thermal conductivity inorganic stack will include low thermal conductivity non-metallic inorganic materials and/or low thermal conductivity metallic materials.
摘要翻译: 提供了一种具有基底,低热导率有机层和低热导率无机层的真空绝热面板外壳。 低热导率无机堆叠将包括低热导率非金属无机材料和/或低导热性金属材料。
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公开(公告)号:US20150273405A1
公开(公告)日:2015-10-01
申请号:US14428831
申请日:2013-09-17
发明人: John W. Henderson , Brady P. Haislet , Brent R. Hansen , Jonathan F. Hester , Gregory M. Jellum , Qihong Nie , John F. Reed , John B. Scheibner , David F. Slama , Steven E. Turch
IPC分类号: B01D71/68 , B01D19/00 , B01D67/00 , B01D71/10 , B01D71/34 , B01D71/58 , B01D71/50 , B01D71/26 , B01D71/38 , B01D71/32 , B01D53/22 , B01D71/56
CPC分类号: B01D71/68 , B01D19/0031 , B01D53/228 , B01D61/08 , B01D61/18 , B01D63/082 , B01D65/003 , B01D67/0002 , B01D71/10 , B01D71/26 , B01D71/32 , B01D71/34 , B01D71/38 , B01D71/50 , B01D71/56 , B01D71/58 , B01D2053/221 , B01D2313/08 , B01D2313/14
摘要: Described herein is a membrane separation module and articles and methods thereof, wherein the membrane separation module has a series of repeating layers, each layer comprising (a) a selectively permeable membrane; and (b) at least one support layer, wherein the support layer comprises a plurality of flow channels and a plurality of rails extending from the support layer, wherein the sides of two adjacent rails form a flow channel, wherein the plurality of rails on the support layer comprise a thermoplastic polymer at the distal end of at least a portion of the plurality of rails, and wherein the distal end of the plurality of rails contacts the selectively permeable membrane to form a bonded stack.
摘要翻译: 本文描述的是膜分离模块及其制品和方法,其中膜分离模块具有一系列重复层,每层包括(a)选择性渗透膜; 和(b)至少一个支撑层,其中所述支撑层包括多个流动通道和从所述支撑层延伸的多个轨道,其中两个相邻导轨的侧面形成流动通道,其中所述多个轨道 支撑层在多个轨道的至少一部分的远端处包括热塑性聚合物,并且其中多个轨道的远端接触选择性渗透膜以形成键合叠层。
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