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    • 1. 发明申请
    • MOLDING METHOD OF A HEAT PIPE FOR CAPILLARY STRUCTURE WITH CONTROLLABLE SINTERING POSITION
    • 用于可控制烧结位置的毛细结构的热管的模制方法
    • US20130174966A1
    • 2013-07-11
    • US13348161
    • 2012-01-11
    • Sin-Wei HeJhong-Yan ChangYen-Chen Chen
    • Sin-Wei HeJhong-Yan ChangYen-Chen Chen
    • C03B29/00
    • F28D15/046B22F5/006B22F7/002
    • A molding method of the heat pipe for capillary structure with controllable sintering position wherein said heat pipe is fabricated by said pipe body, grid-sintered composite capillary structure, core rod, evaporation section sintered capillary structure and powder limiting grid. This allows fabrication of the evaporation section sintered capillary structure with the help of the powder limiting grid, such that the capillary structure could be molded more easily while controlling accurately the sintering position and range. Moreover, with embedding of said grid-sintered composite capillary structure, the steam flow channel of the heat pipe could be further expanded and adapted to the flexible processing of the pipe wall, thus facilitating the fabrication and improving the vaporization efficiency of the working fluid with better applicability and industrial benefits.
    • 一种用于具有可控烧结位置的毛细管结构的热管的成型方法,其中所述热管由所述管体,网格烧结复合毛细管结构,芯棒,蒸发段烧结毛细结构和粉末限制网格制成。 这允许借助于粉末限制栅格来制造蒸发段烧结毛细管结构,使得毛细管结构可以更容易地模制,同时精确地控制烧结位置和范围。 此外,通过嵌入所述网格烧结复合毛细管结构,可以进一步扩大热管的蒸汽流动通道,适应管壁的柔性加工,从而有助于制造和提高工作流体的蒸发效率, 更好的适用性和工业效益。
    • 2. 发明授权
    • Molding method for a thin-profile composite capillary structure
    • 薄型复合毛细管结构的成型方法
    • US08720062B2
    • 2014-05-13
    • US13346261
    • 2012-01-09
    • Sin-Wei HeJhong-Yan ChangYen-Chen Chen
    • Sin-Wei HeJhong-Yan ChangYen-Chen Chen
    • B21D53/02
    • B22F7/002H01L21/4871H01L23/427H01L2924/0002Y10T29/49353H01L2924/00
    • A molding method for a thin-profile composite capillary structure includes the steps of preparing a metal grid and metal powder separately; attaching a liquid medium onto the metal grid by means of spraying or brushing or steeping; attaching uniformly the metal powder onto the grid with the liquid medium; and fixing the metal powder onto the surface of the grid by means of sintering, such that a sintered powder layer is formed onto the surface of the grid. The structure includes a metal grid, which is of planar grid pattern made of woven metal wires. A sintered powder layer is sintered onto a lateral surface of the metal grid from the metal powder. The thickness of the sintered powder layer is 0.1 mm-0.7 mm. The total thickness of the thin-profile composite capillary structure is 0.2 mm-0.8 mm, thus presenting flexibility. The thin-profile composite capillary structure is particularly suitable for a heat pipe.
    • 薄型复合毛细结构的成型方法包括分别制备金属网格和金属粉末的步骤; 通过喷涂或刷洗或浸泡将液体介质附着到金属网格上; 用液体介质将金属粉末均匀地附着在栅格上; 并通过烧结将金属粉末固定在电网的表面上,使得烧结粉末层形成在电网的表面上。 该结构包括由编织金属线制成的平面网格图案的金属格栅。 将烧结的粉末层从金属粉末烧结到金属网格的侧表面上。 烧结粉末层的厚度为0.1mm-0.7mm。 薄型复合毛细结构的总厚度为0.2mm-0.8mm,因此具有柔性。 薄型复合毛细结构特别适用于热管。
    • 3. 发明申请
    • HEAT PIPE STRUCTURE
    • 热管结构
    • US20090071633A1
    • 2009-03-19
    • US11855040
    • 2007-09-13
    • Sin-Wei HEJhong-Yan Chang
    • Sin-Wei HEJhong-Yan Chang
    • F28D15/00
    • F28D15/0233F28D15/046
    • The heat pipe structure includes a pipe body, hollow groove and capillary tissue. The pipe body contains a heat-conducting end and a radiating end. The capillary tissue of a predefined thickness is adapted to an inner wall of the pipe body. The inner surface of capillary tissue is located correspondingly to the section of the heat-conducting end, where a portion with greater thickness is shaped from another section of the capillary tissue. The portion is of single side, a plurality of sides or annular structure. Thus, the heat conduction efficiency of the heat-conducting end greatly improves. The non heat-conducting sections of the capillary tissue remain still with respect to thickness, and the guide space expands to facilitate guiding of gaseous working fluid to the radiating end, thus achieving an optimum heat radiation effect.
    • 热管结构包括管体,中空槽和毛细管组织。 管体包含导热端和辐射端。 预定厚度的毛细管组织适于管体的内壁。 毛细管组织的内表面对应于导热端的部分,其中较大厚度的部分从毛细管组织的另一部分成形。 该部分是单侧,多个侧面或环形结构。 因此,导热端的导热效率大大提高。 毛细管组织的非导热部分相对于厚度保持静止,并且引导空间膨胀以便于将气态工作流体引导到辐射端,从而实现最佳的散热效果。
    • 6. 发明授权
    • End-side heat extraction light emitting diode (LED) lamp
    • 端侧散热发光二极管(LED)灯
    • US08057071B2
    • 2011-11-15
    • US12347224
    • 2008-12-31
    • Sin-Wei HeJhong-Yan Chang
    • Sin-Wei HeJhong-Yan Chang
    • F21V29/00
    • F21V29/83F21K9/233F21V3/00F21V29/677F21V29/74F21Y2115/10Y10S362/80
    • The present invention provides an end-side heat extraction light emitting diode or LED lamp. The LED lamp includes a lamp housing, a cooling module, and an LED lighting set. The cooling module is configured inside the housing space of the lamp housing, having a cooling fan and a cooling base. The LED lighting set is configured on the LED joint surface of the cooling base. The end-side heat extraction LED lamp also includes a circular frame and an end-side heat extraction airflow guidance passage. The circular frame forms a space extending and expanding to the end side. The end-side heat extraction airflow guidance passage forms an airflow guidance space extending and expanding to the end side, forming a heat radiating path where the heat extraction airflow generated by the running cooling fan of the LED lamp can be exhausted from the light projection end of the lamp housing.
    • 本发明提供一种端侧散热发光二极管或LED灯。 LED灯包括灯壳,冷却模块和LED照明组。 冷却模块配置在灯壳体的容纳空间内,具有冷却风扇和冷却基座。 LED灯具配置在冷却底座的LED接头表面。 端侧散热LED灯还包括圆形框架和端部侧热导气道引导通道。 圆形框架形成向端部侧延伸并扩展的空间。 端侧排热气流引导通路形成向端侧延伸扩张的气流引导空间,形成由LED灯的行驶冷却风扇产生的散热气流能够从光投射端排出的散热路径 的灯壳。
    • 7. 发明申请
    • PANEL-TYPE HEAT SINK MODULE
    • 面板式散热模块
    • US20080253080A1
    • 2008-10-16
    • US11744421
    • 2007-05-04
    • Sin-Wei HEJhong-Yan Chang
    • Sin-Wei HEJhong-Yan Chang
    • H05K7/20
    • H05K7/20972F21K9/00F21V29/677F21V29/717F21V29/76F21Y2105/10F21Y2115/10F28D15/0233F28D15/0266F28F3/02G02F1/133385H05K7/2099
    • The panel-type heat sink module combines the heat-conducting panel, fin heat sink, diversion tank, fan and heat pipe into a single module. There is a heat-conducting surface and an assembly surface of the heat-conducting panel. The fin heat sink is assembled onto the assembly surface. The diversion tank is adapted onto the assembly surface and located nearby the fin heat sink. The diversion tank includes a fan container and a diversion channel. The fan is assembled into the fan container, and the heat pipe is assembled between the assembly surface and the fin heat sink. The heat pipe penetrates through the diversion tank; thus, the heat sources guided by the heat-conducting panel will be uniformly guided into the fin heat sink and diversion tank via the heat pipe. An air stream generated by the fan flows towards the fin heat sink, improving heat-radiation, and reducing assembly space.
    • 面板式散热模块将导热板,散热片散热器,导流槽,风扇和热管组合成一个模块。 导热面板有导热表面和组装表面。 翅片散热器组装在组件表面上。 导流槽适用于装配表面,位于散热片散热片附近。 引水箱包括风扇容器和分流通道。 将风扇组装到风扇容器中,并且将热管组装在组装表面和散热片散热片之间。 热管穿透分流槽; 因此,由导热板引导的热源将通过热管被均匀地引导到散热片和导流槽中。 由风扇产生的空气流朝翅片式散热器流动,改善散热,减少组装空间。
    • 10. 发明申请
    • END-SIDE HEAT EXTRACTION LIGHT EMITTING DIODE (LED) LAMP
    • 端面热提取发光二极管(LED)灯
    • US20100020537A1
    • 2010-01-28
    • US12347224
    • 2008-12-31
    • Sin-Wei HEJhong-Yan Chang
    • Sin-Wei HEJhong-Yan Chang
    • F21V29/02
    • F21V29/83F21K9/233F21V3/00F21V29/677F21V29/74F21Y2115/10Y10S362/80
    • The present invention provides an end-side heat extraction light emitting diode or LED lamp. The LED lamp includes a lamp housing, a cooling module, and an LED lighting set. The cooling module is configured inside the housing space of the lamp housing, having a cooling fan and a cooling base. The LED lighting set is configured on the LED joint surface of the cooling base. The end-side heat extraction LED lamp also includes a circular frame and an end-side heat extraction airflow guidance passage. The circular frame forms a space extending and expanding to the end side. The end-side heat extraction airflow guidance passage forms an airflow guidance space extending and expanding to the end side, forming a heat radiating path where the heat extraction airflow generated by the running cooling fan of the LED lamp can be exhausted from the light projection end of the lamp housing.
    • 本发明提供一种端侧散热发光二极管或LED灯。 LED灯包括灯壳,冷却模块和LED照明组。 冷却模块配置在灯壳体的容纳空间内,具有冷却风扇和冷却基座。 LED灯具配置在冷却底座的LED接头表面。 端侧散热LED灯还包括圆形框架和端部侧热导气道引导通道。 圆形框架形成向端部侧延伸并扩展的空间。 端侧排热气流引导通路形成向端侧延伸扩张的气流引导空间,形成由LED灯的行驶冷却风扇产生的散热气流能够从光投射端排出的散热路径 的灯壳。