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    • 33. 发明申请
    • HEAT PIPE AND METHOD FOR MAKING THE SAME
    • 热管及其制造方法
    • US20070095506A1
    • 2007-05-03
    • US11309083
    • 2006-06-16
    • CHUEN-SHU HOUCHAO-NIEN TUNGTAY-JIAN LIU
    • CHUEN-SHU HOUCHAO-NIEN TUNGTAY-JIAN LIU
    • F28D15/00
    • F28D15/046
    • A heat pipe includes a casing (100) receiving working fluid therein, and a wick structure (200) formed at an inner wall of the casing. The casing includes an evaporating section (120) and a condensing section (140). The wick structure at the evaporating section has a thickness larger than that of the wick structure at the condensing section. A method for manufacturing the wick structure includes the following steps: providing a hollow casing (10) arranged aslant to horizon; filling a slurry (40) of powders into the casing; rotating the casing with the slurry and heating the slurry to form a green layer (60) held against an inner wall of the casing; and sintering the green layer in the casing to form the wick structure.
    • 热管包括在其中容纳工作流体的壳体(100)和形成在壳体的内壁处的芯结构(200)。 壳体包括蒸发部分(120)和冷凝部分(140)。 蒸发部分的芯体结构的厚度大于冷凝部分的芯体结构的厚度。 一种油绳结构的制造方法,其特征在于,具备如下的工序:提供与水平线平行排列的中空壳体(10) 将粉末的浆料(40)填充到所述壳体中; 用浆料旋转壳体并加热浆料以形成保持在壳体的内壁上的生坯层(60); 并且将壳体中的绿色层烧结以形成芯结构。
    • 34. 发明申请
    • PERFORMANCE TESTING APPARATUS FOR HEAT PIPES
    • 热管性能测试装置
    • US20070286258A1
    • 2007-12-13
    • US11309567
    • 2006-08-24
    • TAY-JIAN LIUCHUEN-SHU HOUXIAO-LONG LICHAO-NIEN TUNG
    • TAY-JIAN LIUCHUEN-SHU HOUXIAO-LONG LICHAO-NIEN TUNG
    • G01K1/14G01N17/00
    • F28D15/02F28F2200/005
    • A performance testing apparatus for a heat pipe includes an immovable portion and a movable portion each having a heating member located therein for heating an evaporating section of the heat pipe. The 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 therein. A positioning structure extends from the immovable portion toward the movable portion to ensure the receiving structure being capable of precisely receiving the heat pipe. Temperature sensors are attached to the immovable and movable portions 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 of the movable portion relative to the immovable portion.
    • 一种用于热管的性能测试装置包括不可移动部分和可移动部分,每个都具有位于其中的加热部件,用于加热热管的蒸发部分。 可移动部分能够相对于不可移动部分移动。 接收结构被限定在不可移动部分和可移动部分之间,用于在其中接收蒸发部分。 定位结构从不动部朝向可动部延伸,以确保接收结构能够精确地接收热管。 温度传感器连接到不可移动和可移动部分,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,并且在其中限定可移动部分相对于不可移动部分移动的空间。
    • 38. 发明申请
    • HEAT PIPE
    • 热管
    • US20070240851A1
    • 2007-10-18
    • US11309312
    • 2006-07-25
    • TAY-JIAN LIUCHAO-NIEN TUNGCHUEN-SHU HOUJi-Feng WangQian-Hua He
    • TAY-JIAN LIUCHAO-NIEN TUNGCHUEN-SHU HOUJi-Feng WangQian-Hua He
    • F28D15/00
    • F28D15/0275
    • A heat pipe includes a hollow metal casing (10). The casing has an evaporating section (120) and a condensing section (160) at respective opposite ends thereof, and an adiabatic section (140) located between the evaporating section and the condensing section. A capillary wick structure (12) is arranged at an inner surface of the hollow metal casing. A sealed heat reservoir (20) is mounted on the evaporating section of the heat pipe to increase heat absorbing area of the heat pipe. The heat reservoir has working fluid and a capillary wick structure (22) therein. Heat generated by a heat source is first absorbed by the heat reservoir and then transferred to the evaporating section of the metal casing.
    • 热管包括中空金属外壳(10)。 壳体在其各自的相对端处具有蒸发部分(120)和冷凝部分(160),以及位于蒸发部分和冷凝部分之间的绝热部分(140)。 毛细管芯结构(12)布置在中空金属外壳的内表面。 密封的储热器(20)安装在热管的蒸发部分上,以增加热管的吸热面积。 蓄热器具有工作流体和毛细管芯结构(22)。 由热源产生的热量首先被储热器吸收,然后转移到金属壳体的蒸发部分。