THIN HEAT SINK
    2.
    发明申请
    THIN HEAT SINK 有权
    细加热

    公开(公告)号:US20130126125A1

    公开(公告)日:2013-05-23

    申请号:US13303484

    申请日:2011-11-23

    CPC classification number: F28D15/0275 F28D15/0233 F28F9/00

    Abstract: The heat sink includes a fastener and a heat pipe. The fastener has a receiving space, an upper claw and a lower claw. The upper claw and the lower claw are formed in the receiving space. The heat pipe has a first end and a second end. The first end is received in the receiving space and clipped between the upper claw and the second claw, and the upper claw or the lower claw is partially embedded in the heat pipe to be flush with each other.

    Abstract translation: 散热器包括紧固件和热管。 紧固件具有容纳空间,上爪和下爪。 上爪和下爪形成在容纳空间中。 热管具有第一端和第二端。 第一端被容纳在接收空间中并夹在上爪和第二爪之间,并且上爪或下爪部分地嵌入热管中以彼此齐平。

    Vane type electric heater and vane structure thereof
    3.
    发明授权
    Vane type electric heater and vane structure thereof 失效
    叶片式电加热器及其叶片结构

    公开(公告)号:US08431873B2

    公开(公告)日:2013-04-30

    申请号:US12239883

    申请日:2008-09-29

    CPC classification number: F24H3/004

    Abstract: A vane type electric heater includes a heat generator and a vane structure, and the heat generator includes a rod, and the vane structure includes a plate and at least one heat pipe attached on a surface of the plate, and the plate includes a through hole for passing the rod, and the heat pipe surrounds the periphery of the through hole for enhancing the speed of thermal conduction and the effect of uniform temperature, so as to improve the heat output performance of the invention.

    Abstract translation: 叶片型电加热器包括发热体和叶片结构,发热体包括杆,叶片结构包括板和安装在板的表面上的至少一个热管,该板包括通孔 为了提高热传导的速度和均匀的温度的作用,热管围绕通孔的周边,从而提高本发明的热输出性能。

    LIGHTWEIGHT HEAT PIPE AND METHOD OF MAKING THE SAME
    4.
    发明申请
    LIGHTWEIGHT HEAT PIPE AND METHOD OF MAKING THE SAME 审中-公开
    轻质热管及其制造方法

    公开(公告)号:US20130043004A1

    公开(公告)日:2013-02-21

    申请号:US13277090

    申请日:2011-10-19

    Abstract: In a lightweight heat pipe and a method for making the lightweight heat pipe, a first hollow pipe and a second hollow pipe making of two different materials are provided. The first hollow pipe is disposed into the second hollow pipe along an axial direction of the second hollow pipe. An inner wall surface of the second hollow pipe is attached on an outer wall surface of the first hollow pipe to combine the first and the second hollow pipes as a pipe body of the heat pipe. An inner space of the first hollow pipe is then vacuumed, and the pipe body is sealed after the working fluid is filled in the inner space of the first hollow pipe to finish the heat pipe.

    Abstract translation: 在轻质热管和制造轻质热管的方法中,提供了两种不同材料的第一空心管和第二中空管制造。 第一中空管沿着第二中空管的轴向配置在第二中空管内。 第二中空管的内壁面安装在第一中空管的外壁面上,将作为热管的管体的第一和第二中空管组合起来。 然后将第一中空管的内部空间抽真空,并且在工作流体填充在第一中空管的内部空间中之后密封管体,以完成热管。

    HEAT PLATE WITH CAPILLARY SUPPORTING STRUCTURE AND MANUFACTURING METHOD THEREOF
    7.
    发明申请
    HEAT PLATE WITH CAPILLARY SUPPORTING STRUCTURE AND MANUFACTURING METHOD THEREOF 审中-公开
    具有毛细支撑结构的热板及其制造方法

    公开(公告)号:US20090260785A1

    公开(公告)日:2009-10-22

    申请号:US12104622

    申请日:2008-04-17

    Abstract: In a heat plate having a hollow plate and capillary supporting structures, the plate body includes a capillary tissue attached on an internal wall of the plate body, and each of the capillary supporting structures is erected, supported and distributed in the plate body. Each capillary supporting structure is in a cylindrical shape and has a capillary object made of sintered powder and disposed on the circumferential surface of the cylindrical capillary supporting structure and contacted with the capillary tissue to form a continuous capillary channel and provide a capillary action to the capillary supporting structures in the heat plate.

    Abstract translation: 在具有中空板和毛细管支撑结构的加热板中,板体包括附着在板体内壁上的毛细管组织,并且每个毛细管支撑结构被竖立,支撑并分布在板体中。 每个毛细管支撑结构是圆柱形的,并且具有由烧结粉末制成的毛细管物体,并且设置在圆柱形毛细管支撑结构的圆周表面上并与毛细管组织接触以形成连续的毛细管通道并为毛细管提供毛细作用 热板支撑结构。

    HEAT-DISSIPATING DEVICE OF PORTABLE ELECTRONIC APPARATUS
    8.
    发明申请
    HEAT-DISSIPATING DEVICE OF PORTABLE ELECTRONIC APPARATUS 审中-公开
    便携式电子设备的散热装置

    公开(公告)号:US20090109620A1

    公开(公告)日:2009-04-30

    申请号:US11930864

    申请日:2007-10-31

    Abstract: A heat-dissipating device of a portable electronic apparatus includes a heat-conducting plate disposed on a heat-generating element. One end of a heat-conducting pipe is disposed on the heat-conducting plate, and the other end of the heat-conducting pipe is disposed on a surface of a power generator to form a high-temperature source. The opposite surface of the power generator is fixedly disposed on a heat-dissipating body to form a low-temperature source. A heat-dissipating fan is provided on one side of the heat-dissipating body. The positive and negative lines of the heat-dissipating fan are electrically connected to the positive and negative lines of the power generator. Via the above arrangement, after the heat-conducting plate conducts the heat source to the heat-conducting pipe to perform a heat exchange, the heat source is then conducted to the other end of the heat-conducting pipe, so that the surface of the power generator contacting the end of the heat-conducting pipe becomes a high-temperature source, while the other surface acts as a low-temperature source. Thus, the heat due to the temperature difference can be converted into electricity correspondingly, thereby providing the necessary power for the operation of the heat-dissipating fan. Therefore, a self-powered heat-dissipating device can be achieved.

    Abstract translation: 便携式电子设备的散热装置包括设置在发热元件上的导热板。 导热管的一端设置在导热板上,导热管的另一端设置在发电机的表面上,形成高温源。 发电机的相对表面固定地设置在散热体上以形成低温源。 在散热体的一侧设有散热风扇。 散热风扇的正极和负极线与发电机的正极和负极电连接。 通过上述结构,在导热板将导热管传导到导热管进行热交换之后,将热源传导到导热管的另一端,使得 与导热管的端部接触的发电机成为高温源,而另一个表面用作低温源。 因此,由于温度差导致的热量可以相应地转换成电力,从而为散热风扇的运转提供必要的电力。 因此,可以实现自供电的散热装置。

    Heat dissipating structure
    9.
    发明授权
    Heat dissipating structure 失效
    散热结构

    公开(公告)号:US06657865B1

    公开(公告)日:2003-12-02

    申请号:US10316841

    申请日:2002-12-12

    CPC classification number: H01L23/467 H01L23/3672 H01L2924/0002 H01L2924/00

    Abstract: A heat dissipating structure is formed via the assembly of metallic fins. An upper side, an inner side, and a lower side of each fin respectively form a first, second, and third folded edge. At least each first folded edge includes a groove through one rim and a hooking projection on an opposite rim. The metallic fins thereby assemble with one another by engagement of the hooking projection of one fin with the groove of one neighboring fin. Below the first folded edge, each fin further forms an inclined edge. The second folded edges of the fins are further in contact with a highly thermal conductive body. With the metallic fins being assembled with one another, a plurality of gaps are constituted between their inclined edges. Via a fan, the air circulation through the gaps is thereby promoted to rapidly dissipate the heat and prevent the hothouse effect.

    Abstract translation: 散热结构通过金属翅片的组装形成。 每个翅片的上侧,内侧和下侧分别形成第一,第二和第三折叠边缘。 至少每个第一折叠边缘包括通过一个边缘的凹槽和在相对边缘上的钩形突起。 金属翅片因此通过一个翅片的钩形突起与一个相邻翅片的凹槽的接合彼此组装。 在第一折叠边缘下方,每个翅片还形成倾斜边缘。 翅片的第二折叠边缘进一步与高导热体接触。 金属翅片彼此组装在一起,在它们的倾斜边缘之间构成多个间隙。 通过风扇,由此促进通过间隙的空气循环,以快速消散热量并防止温室效应。

    HEAT PIPE WITH A DUAL CAPILLARY STRUCTURE AND MANUFACTURING METHOD THEREOF
    10.
    发明申请
    HEAT PIPE WITH A DUAL CAPILLARY STRUCTURE AND MANUFACTURING METHOD THEREOF 审中-公开
    具有双毛细结构的热管及其制造方法

    公开(公告)号:US20090308576A1

    公开(公告)日:2009-12-17

    申请号:US12140394

    申请日:2008-06-17

    Abstract: A heat pipe with a dual capillary structure includes a metal tube, a first capillary, a second capillary and a working fluid. The metal tube forms a chamber and a heat-absorption part. The first capillary is formed by sintering a metal powder, and its corresponding heat-absorption part is disposed in the chamber and the second capillary is contained in the chamber and connected to an end of the first capillary. The second capillary includes an internal tube, a capillary tissue installed between inner walls of the internal tube and the metal tube, and a working fluid filled into the chamber. The invention further provides a method of manufacturing the heat pipe with a dual capillary structure.

    Abstract translation: 具有双毛细结构的热管包括金属管,第一毛细管,第二毛细管和工作流体。 金属管形成室和吸热部。 第一毛细管是通过烧结金属粉末形成的,并且其相应的吸热部分设置在腔室中,第二毛细管被容纳在腔室中并且连接到第一毛细管的一端。 第二毛细管包括内管,安装在内管的内壁和金属管之间的毛细管组件和填充到腔室中的工作流体。 本发明还提供一种制造具有双毛细管结构的热管的方法。

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