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    • 2. 发明授权
    • Method for manufacturing a plate-type heat pipe
    • 板式热管的制造方法
    • US08246902B2
    • 2012-08-21
    • US12551433
    • 2009-08-31
    • Chuen-Shu Hou
    • Chuen-Shu Hou
    • B22F7/02
    • F28D15/046B22F1/0011B22F3/225B22F7/06F28D15/0233F28F3/022F28F2255/18H01L21/4871H01L23/427H01L2924/0002H01L2924/00
    • A method for manufacturing a plate-type heat pipe includes providing a mold including a first cavity and a plurality of second cavities and depositing cores into the mold. Each core has a first portion in the first cavity and a second portion in a corresponding second cavity. First and second metal powder are filled into the mold. The cores are then removed from the mold to form a green piece by the first and second metal powder, which has first and second chambers therein. The green piece is sintered, whereby the first metal powder forms an outer wall of the heat pipe and the second metal powder forms a wick structure. The heat pipe has a heat absorbing portion having the first chambers and fins having the second chambers communicating with the first chambers.
    • 制造板式热管的方法包括提供包括第一腔和多个第二腔的模具,并将芯沉积到模具中。 每个芯具有第一腔中的第一部分和相应的第二腔中的第二部分。 将第一和第二金属粉末填充到模具中。 然后通过第一和第二金属粉末从模具中取出芯以形成绿色片,该金属粉末在其中具有第一和第二腔室。 生坯被烧结,由此第一金属粉末形成热管的外壁,第二金属粉末形成芯结构。 热管具有具有第一腔室和散热片的吸热部分,其具有与第一腔室连通的第二腔室。
    • 5. 发明授权
    • Heat pipe
    • 热管
    • US07726384B2
    • 2010-06-01
    • US11309435
    • 2006-08-04
    • Chuen-Shu HouTay-Jian LiuChao-Nien Tung
    • Chuen-Shu HouTay-Jian LiuChao-Nien Tung
    • F28D15/04
    • F28D15/046F28D15/0233
    • A heat pipe includes a hollow metal casing (100) and a honeycombed wick structure (200) arranged at an inner surface of the hollow metal casing. The wick structure includes a plurality of slices (210, 220) stacked together. Each of the slices has a plurality of pores therein and a plurality of protrusions (222) formed thereon along a longitudinal direction of the heat pipe to form a plurality of liquid channels (230) in the wick structure along the longitudinal direction of the heat pipe. Each liquid channel has alternate large and small sections (232, 231) along a length thereof.
    • 热管包括中空金属壳体(100)和布置在中空金属壳体的内表面处的蜂窝芯结构(200)。 芯结构包括堆叠在一起的多个切片(210,220)。 每个切片在其中具有多个孔,并且沿着热管的纵向形成有多个突起(222),以沿着热管的纵向方向在油绳结构中形成多个液体通道(230) 。 每个液体通道沿其长度具有交替的大小部分(232,231)。
    • 6. 发明申请
    • METHOD FOR MANUFACTURING A PLATE-TYPE HEAT PIPE AND A PLATE-TYPE HEAT PIPE OBTAINED THEREBY
    • 制造板式热管和板式热管的方法
    • US20100071879A1
    • 2010-03-25
    • US12233602
    • 2008-09-19
    • CHUEN-SHU Hou
    • CHUEN-SHU Hou
    • F28D15/00B21D53/04
    • F28D15/046F28D15/0233Y10T29/49353
    • A method for manufacturing a plate-type heat pipe includes providing an elongated engaging plate and a base plate. A plurality of supporting members is secured on a top surface of the base plate. A second and third metal powders are filled onto the base plate, surrounding lower ends of the supporting members. The second and third metal powders are heated to obtain a first wick structure and a second wick structure. The first wick structure adheres to the top surface of the base plate and the second wick structure adheres to the top surface of the first wick structure. The base plate and the supporting members are secured to a bottom surface of the engaging plate to obtain a workpiece. A working fluid is injected into the workpiece and the workpiece is vacuumed to obtain the plate-type heat pipe.
    • 板式热管的制造方法包括:设置细长的接合板和基板。 多个支撑构件固定在基板的顶表面上。 将第二和第三金属粉末填充到基板上,围绕支撑构件的下端。 第二和第三金属粉末被加热以获得第一芯结构和第二芯结构。 第一芯结构粘附到基板的顶表面,并且第二芯结构粘附到第一芯结构的顶表面。 基板和支撑构件固定到接合板的底表面以获得工件。 将工作流体注入工件,将工件抽真空,得到板式热管。
    • 7. 发明授权
    • Performance testing apparatus for heat pipes
    • 热管性能试验装置
    • US07611276B2
    • 2009-11-03
    • US11309599
    • 2006-08-29
    • Tay-Jian LiuChuen-Shu HouChao-Nien TungQian-Hua He
    • Tay-Jian LiuChuen-Shu HouChao-Nien TungQian-Hua He
    • G01K1/16G01N25/00
    • G01K1/143F28F2200/005G01K17/00
    • A performance testing apparatus for a heat pipe includes an immovable portion having a first heating member located therein for heating an evaporating section of a heat pipe requiring testing. A movable portion is capable of moving relative to the immovable portion and has a second heating member located therein for heating the evaporating section of the heat pipe. A receiving structure is defined between the immovable portion and the movable portion for receiving the evaporating section of the heat pipe therein. Temperature sensors are attached to the immovable portion and the movable portion for detecting temperature 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第一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,并且具有位于其中的用于加热热管的蒸发部分的第二加热部件。 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。 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。 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。
    • 9. 发明授权
    • Performance testing apparatus for heat pipes
    • 热管性能试验装置
    • US07553074B2
    • 2009-06-30
    • US11309391
    • 2006-08-03
    • Tay-Jian LiuChih-Hsien SunChao-Nien TungChuen-Shu Hou
    • Tay-Jian LiuChih-Hsien SunChao-Nien TungChuen-Shu Hou
    • G01K1/16G01K25/00
    • 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, 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. An enclosure encloses the immovable portion and the movable portions therein, and defines a space therein for movement the movable portion relative to the immovable portion.
    • 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。 外壳将不可移动部分和可移动部分包围在其中,并且在其中限定用于相对于不可移动部分移动可移动部分的空间。
    • 10. 发明授权
    • Performance testing apparatus for heat pipes
    • 热管性能试验装置
    • US07527426B2
    • 2009-05-05
    • US11309324
    • 2006-07-26
    • Tay-Jian LiuChih-Hsien SunChao-Nien TungChuen-Shu Hou
    • Tay-Jian LiuChih-Hsien SunChao-Nien TungChuen-Shu Hou
    • G01N25/20G01K17/06G01K1/14
    • G01K17/00F28F2200/005
    • A performance testing apparatus for a heat pipe includes an immovable portion having a cooling structure defined therein for cooling the heat pipe. 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 concavo-convex cooperating structure is defined in the immovable portion and the movable portion for ensuring the receiving structure being capable of precisely receiving the heat pipe. Temperature sensors are attached to 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 to provide a thermally stable environment for the heat pipe during test.
    • 一种用于热管的性能测试装置包括具有限定在其中用于冷却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。 在不动部和可动部中限定有凹凸配合结构,用于确保接收结构能够精确地接收热管。 温度传感器附接到不动部和可动部,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,以在测试期间为热管提供热稳定的环境。