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    • 13. 发明申请
    • LOOP-TYPE HEAT EXCHANGE MODULE
    • 环型热交换模块
    • US20070006992A1
    • 2007-01-11
    • US11306358
    • 2005-12-25
    • Tay-Jian LiuChao-Nien TungChuen-Shu HouChih-Hao Yang
    • Tay-Jian LiuChao-Nien TungChuen-Shu HouChih-Hao Yang
    • F28D15/00F28F13/12
    • F28D15/0266F28D15/0275F28D15/046F28F3/022H01L23/427H01L23/467H01L2924/0002H01L2924/00
    • A loop-type heat exchange module (10) is disclosed, which includes an evaporator (11), a vapor conduit (12), a condenser (13), a liquid conduit (14), a cooling fan (16), a fastening seat (151) and a fan cover (152). The evaporator contains therein a working fluid. The working fluid evaporates into vapor after absorbing heat in the evaporator, and the generated vapor flows, via the vapor conduit, to the condenser where the vapor releases the heat and is condensed into condensate. The condensate then returns back, via the liquid conduit, to the evaporator to thereby form a heat transfer loop. The cooling fan is applied to produce a forced airflow towards the condenser. The fastening seat is used for fastening the evaporator to have an intimate contact with a heat-generating electronic component. The fan cover extends from one side of the fastening seat and receives the cooling fan and the condenser therein.
    • 公开了一种环形热交换模块(10),其包括蒸发器(11),蒸汽导管(12),冷凝器(13),液体导管(14),冷却风扇(16) 座(151)和风扇罩(152)。 蒸发器包含工作流体。 在蒸发器中吸收热量之后,工作流体蒸发成蒸汽,并且所产生的蒸气经由蒸汽导管流到冷凝器,蒸气释放热量并冷凝成冷凝物。 冷凝液然后通过液体导管返回到蒸发器,从而形成传热回路。 施加冷却风扇以产生朝向冷凝器的强制气流。 紧固座用于紧固蒸发器以与发热电子部件紧密接触。 风扇盖从紧固座的一侧延伸,并接收冷却风扇和冷凝器。
    • 14. 发明授权
    • Integrated liquid cooling system for electronic components
    • 电子元件集成液体冷却系统
    • US07537048B2
    • 2009-05-26
    • US11308276
    • 2006-03-15
    • Tay-Jian LiuChih-Hao YangChao-Nien TungChuen-Shu Hou
    • Tay-Jian LiuChih-Hao YangChao-Nien TungChuen-Shu Hou
    • H05K7/20
    • F28D1/05366H01L23/473H01L2924/0002H01L2924/00
    • An integrated liquid cooling system (100) includes a heat absorbing member (10), a heat dissipating member (20) and a pump (15). The heat absorbing member defines therein a fluid flow channel (115) for passage of a coolant and a pump receiving housing (120) adjacent to the fluid flow channel. The heat dissipating member is mounted to and maintained in fluid communication with the heat absorbing member. The pump is received in the pump receiving housing of the heat absorbing member. The pump is configured for driving the coolant to circulate through the heat absorbing member and the heat dissipating member. The heat absorbing member, the heat dissipating member and the pump of the liquid cooling system are combined together to form an integrated structure without utilizing any connecting pipes.
    • 集成液体冷却系统(100)包括吸热构件(10),散热构件(20)和泵(15)。 吸热构件在其中限定有用于使冷却剂通过的流体流动通道(115)和邻近流体流动通道的泵接收壳体(120)。 散热构件安装在该吸热构件上并保持与吸热构件的流体连通。 泵被容纳在吸热构件的泵接收壳体中。 泵构造成用于驱动冷却剂循环通过吸热构件和散热构件。 吸热构件,散热构件和液体冷却系统的泵组合在一起以形成一体结构,而不用任何连接管。
    • 15. 发明授权
    • Heat pipe
    • 热管
    • US07891413B2
    • 2011-02-22
    • US11309560
    • 2006-08-22
    • Tay-Jian LiuChao-Nien TungChuen-Shu Hou
    • Tay-Jian LiuChao-Nien TungChuen-Shu Hou
    • F28D15/00
    • F28D15/046Y10T29/49353
    • A heat pipe includes a shell containing a working fluid therein, a capillary wick arranged within the shell and a vapor channel. The shell includes an evaporating section, a condensing section and an adiabatic section located between the evaporating section and the condensing section. The capillary wick includes a first segment occupying the whole of the evaporating section, a second segment and a third segment received in the condensing section and connected to the first segment by the second segment. The vapor channel is defined between the second segment of the capillary wick and the shell.
    • 热管包括其中包含工作流体的壳体,布置在壳体内的毛细管芯和蒸汽通道。 壳体包括蒸发部分,冷凝部分和位于蒸发部分和冷凝部分之间的绝热部分。 毛细管芯包括占据整个蒸发部分的第一段,接收在冷凝段中的第二段和第三段,并通过第二段连接到第一段。 蒸汽通道限定在毛细管芯的第二段和壳体之间。
    • 17. 发明授权
    • Performance testing apparatus for heat pipes
    • 热管性能试验装置
    • US07637655B2
    • 2009-12-29
    • US11309247
    • 2006-07-19
    • Tay-Jian LiuChih-Hsien SunChao-Nien TungChuen-Shu Hou
    • Tay-Jian LiuChih-Hsien SunChao-Nien TungChuen-Shu Hou
    • G01K1/16G01K25/00
    • F28D15/0283F28F2200/005
    • A performance testing apparatus for a heat pipe includes an immovable portion having a heating member located therein for heating an evaporating section of the heat pipe, and a movable portion capable of moving relative to the immovable portion. A receiving structure is defined between the immovable portion and the movable portion for receiving the evaporating section of the heat pipe therein. A positioning structure extends from the immovable portion and slideably receives the movable portion therein for avoiding the movable portion from deviating from the immovable portion during movement of the movable portion relative the immovable portion. Temperature sensors are attached to the immovable portion and the movable portion for detecting temperature of the heat pipe.
    • 一种用于热管的性能测试装置包括一个不可移动部分,其具有位于其中的用于加热热管的蒸发部分的加热部件和能够相对于该不动部移动的可移动部分。 在不可移动部分和可移动部分之间限定接收结构,用于接收热管的蒸发部分。 定位结构从不可移动部分延伸并且可滑动地容纳可移动部分,以在可移动部分相对于不可移动部分移动期间避免可移动部分偏离不动部分。 温度传感器连接到不动部分和可移动部分,用于检测热管的温度。
    • 18. 发明授权
    • Performance testing apparatus for heat pipes
    • 热管性能试验装置
    • US07547138B2
    • 2009-06-16
    • US11309323
    • 2006-07-26
    • Tay-Jian LiuChao-Nien TungChih-Hsien SunChuen-Shu Hou
    • Tay-Jian LiuChao-Nien TungChih-Hsien SunChuen-Shu Hou
    • G01K16/00G01N25/00
    • F28D15/02F28F2200/005
    • A performance testing apparatus for a heat pipe includes an immovable portion having a cooling structure defined therein for cooling a heat pipe requiring test. A movable portion is capable of moving relative to the immovable portion. A receiving structure is defined between the immovable portion and the movable portion for receiving the heat pipe therein. A positioning structure extends from at least one of the immovable portion and the movable portion to ensure that the receiving structure is capable of precisely receiving the heat pipe therein. At least a temperature sensor is attached to at least one of the immovable portion and the movable portion to detect a temperature of the heat pipe. An enclosure encloses the immovable portion and the movable portions therein, and defines a space for movement of the movable portion relative to the immovable portion.
    • 用于热管的性能测试装置包括具有限定在其中的用于冷却需要测试的热管的冷却结构的不可移动部分。 可移动部分能够相对于不可移动部分移动。 在不可移动部分和可移动部分之间限定接收结构,用于在其中接收热管。 定位结构从不可移动部分和可移动部分中的至少一个延伸,以确保接收结构能够精确地接收热管。 至少一个温度传感器连接到不可移动部分和可移动部分中的至少一个,以检测热管的温度。 外壳将不可移动部分和可移动部分包围在其中,并且限定可移动部分相对于不可移动部分移动的空间。
    • 20. 发明授权
    • Performance testing apparatus for heat pipes
    • 热管性能试验装置
    • US07441947B2
    • 2008-10-28
    • US11309314
    • 2006-07-25
    • Tay-Jian LiuChao-Nien TungChih-Hsien SunChuen-Shu HouCheng-Chi Lee
    • Tay-Jian LiuChao-Nien TungChih-Hsien SunChuen-Shu HouCheng-Chi Lee
    • G01N25/20G01K17/06
    • F28D15/02F28F2200/005
    • A performance testing apparatus for a heat pipe includes an immovable portion having a heating member located therein for heating an evaporating section of the heat pipe requiring test. A movable portion is capable of moving relative to the immovable portion. A receiving structure is defined between the immovable portion and the movable portion for receiving the evaporating section of the heat pipe therein. At least one temperature sensor is attached to at least one of the immovable portion and the movable portion to detect the temperature of the evaporating section of the heat pipe. An enclosure encloses the immovable portion and the movable portion therein and has sidewalls thereof slidably contacting at least one of the immovable portion and the movable portion.
    • 一种用于热管的性能测试装置包括具有位于其中的加热构件的不可移动部分,用于加热需要测试的热管的蒸发部分。 可移动部分能够相对于不可移动部分移动。 在不可移动部分和可移动部分之间限定接收结构,用于接收热管的蒸发部分。 至少一个温度传感器附接到不可移动部分和可移动部分中的至少一个,以检测热管的蒸发部分的温度。 外壳将不可移动部分和可移动部分包围在其中,并且其侧壁可滑动地接触不动部分和可移动部分中的至少一个。