HEAT EXCHANGER
    3.
    发明申请
    HEAT EXCHANGER 审中-公开
    热交换器

    公开(公告)号:US20160370127A1

    公开(公告)日:2016-12-22

    申请号:US15118918

    申请日:2015-02-12

    Abstract: In order to prevent deformation of a side member due to thermal stress in a heat exchanger in which water for cooling a high-temperature body circulates, a side member is formed in the shape of a groove, the cross section of which has side wall parts and a base part along the entire length in the lengthwise direction of a main body part, and both ends of the side member in the lengthwise direction are provided with a stepped part, which is formed as a step toward the outside of a core, and one or more brace-like ribs, which integrally connect the tip end and the base part of the stepped part in a slanting manner.

    Abstract translation: 为了防止在用于冷却高温体的水循环的热交换器中由于热应力引起的侧构件的变形,侧构件形成为凹槽的形状,其横截面具有侧壁部分 以及沿着主体部的长度方向的整个长度的基部,并且所述侧构件的长度方向的两端设置有台阶部,所述台阶形成为朝向所述芯的外侧的台阶,并且 一个或多个支撑状肋条,其以倾斜方式一体地连接台阶部分的末端和基部。

    Supporting structure for planar heat pipe
    4.
    发明授权
    Supporting structure for planar heat pipe 失效
    平面热管支撑结构

    公开(公告)号:US07025124B2

    公开(公告)日:2006-04-11

    申请号:US10691510

    申请日:2003-10-24

    Abstract: An improved supporting structure for a planar heat pipe, having a housing and a supporting member installed in the shell is disclosed. The housing has an upper lid and a lower lid engaged with each other to form a hollow chamber therein. The hollow chamber is filled with a working fluid. The supporting member is a planar member perforated with a plurality of holes. The supporting member is sintered with the upper and lower lids in the hollow chamber. Therefore, the housing and the supporting member are integrated together.

    Abstract translation: 公开了一种用于平面热管的改进的支撑结构,其具有壳体和安装在壳体中的支撑构件。 壳体具有彼此接合以在其中形成中空室的上盖和下盖。 中空室填充有工作流体。 支撑构件是穿孔有多个孔的平面构件。 支撑构件与中空室中的上盖和下盖烧结。 因此,壳体和支撑构件被集成在一起。

    Heat exchanger
    5.
    发明申请
    Heat exchanger 审中-公开
    热交换器

    公开(公告)号:US20020134535A1

    公开(公告)日:2002-09-26

    申请号:US10101981

    申请日:2002-03-20

    CPC classification number: F28F9/001 F28F2009/029 F28F2225/02

    Abstract: First depressed portions are formed on transverse sides of an insert so that the magnitude of depression of the first depressed portions increases as the first depressed portions approach toward the associated transverse side of the insert, whereby, as the first depressed portions are located to constitute a lower side of a core when brazing (in an oven), a brazing material, which is fused and is then allowed to flow into the first depressed portions in a brazing process, can be accumulated for retention within the first depressed portions by the surface tension of the brazing material so accumulated therein. Consequently, as the dispersion of more of the brazing material to outer fins, which constitute the lower side of the core when brazing, can be prevented, the erosion of the outer fins, which would otherwise occur due to the dispersion of the brazing material, can be prevented.

    Abstract translation: 第一凹陷部形成在插入物的横向侧上,使得第一凹陷部的凹陷的大小随着第一凹部朝向插入件的相关联的横向侧而增加,由此,由于第一凹陷部位于构成 在钎焊(在烘箱中)时的芯的下侧,在钎焊过程中被熔化并且然后允许其流入第一凹陷部的钎焊材料可以被累积以通过表面张力保持在第一凹部内 如此积累的钎焊材料。 因此,由于可以防止在钎焊时构成芯的下侧的外部翅片上的更多的钎焊材料的分散,否则由于钎焊材料的分散而会发生的外部翅片的侵蚀, 可以防止。

    MANUFACTURING METHOD FOR VAPOR CHAMBER, VAPOR CHAMBER AND MIDDLE FRAME VAPOR CHAMBER

    公开(公告)号:US20230366632A1

    公开(公告)日:2023-11-16

    申请号:US18026299

    申请日:2021-01-28

    CPC classification number: F28D15/0283 F28F2275/06 F28F2225/02 F28F2230/00

    Abstract: A manufacturing method for a vapor chamber, a vapor chamber and a middle frame vapor chamber are disclosed. The manufacturing method for a vapor chamber includes preparing different raw materials for various parts of the vapor chamber, and machining and molding the various parts according to predetermined shapes of the various parts by using corresponding raw materials, assembling the machined and molded various parts of the vapor chamber, and welding and sealing the assembled various parts of the vapor chamber, performing a surface heat treatment on the vapor chamber, performing a passivating treatment on the vapor chamber, assembling the vapor chamber, injecting water into the vapor chamber assembled with the liquid injection pipe, vacuumizing the vapor chamber injected with water, performing a sealing treatment on the vacuumized vapor chamber, and welding the vapor chamber with a reinforcing rib.

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