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    • 2. 发明申请
    • FLUID-FLOW-THROUGH COOLING OF CIRCUIT BOARDS
    • 电流板流体流动冷却
    • WO2015120182A3
    • 2015-10-29
    • PCT/US2015014667
    • 2015-02-05
    • LOCKHEED CORP
    • KAPLUN BRIAN WEICHE JAMES SVOS DAVID L
    • H05K7/20B23P15/26
    • H05K7/20563B23P15/26H05K7/20272H05K7/2039H05K7/20763Y10T29/4935
    • A disclosed apparatus for use with a conduction-cooled card assembly may include a frame comprising first and second thermally conductive portions adapted to engage respective thermal management interfaces on opposite sides of a conduction cooling frame for at least one circuit card. The apparatus may also include a passageway extending between first and second openings in the frame so as to allow cooling fluid to flow into the first opening, through the passageway, and out of the second opening. According to a disclosed method, an insert may be installed between components of a mezzanine connector so as to increase a height of the connector. In some implementations, the installing of the insert may be performed while the first and second components of the mezzanine connector are mounted on a host card and a mezzanine card, respectively, so that installation of the insert between the first and second components increases a spacing between the host card and the mezzanine card.
    • 用于传导冷却卡组件的公开的装置可以包括框架,该框架包括适于接合用于至少一个电路卡的导电冷却框架的相对侧上的相应热管理接口的第一和第二导热部分。 该装置还可以包括在框架中在第一和第二开口之间延伸的通道,以便使冷却流体流入第一开口,通过该通道,并流出第二开口。 根据所公开的方法,插入件可以安装在夹层连接器的部件之间,以便增加连接器的高度。 在一些实施方式中,可以在夹层连接器的第一和第二部件分别安装在主机卡和夹层卡上的同时执行插入件的安装,使得插入件在第一和第二部件之间的安装增加间隔 主机卡和夹层卡之间。
    • 8. 发明申请
    • MANUFACTURING METHOD FOR HEAT EXCHANGER, DEVICE FOR SAME, AND AIR CONDITIONER AND/OR EXTERNAL UNIT THEREOF EQUIPPED WITH HEAT EXCHANGER MANUFACTURED USING SAID METHOD
    • 热交换器的制造方法,相同的装置以及使用方法制造的换热器的空调器和/或外部装置
    • WO2014098258A3
    • 2014-08-14
    • PCT/JP2013084775
    • 2013-12-18
    • KYOSHIN KOGYO KK
    • TOKURA KENJI
    • B21D53/08F28F9/16
    • B23P15/26B21D39/20B21D53/06B21D53/085F28D2021/0068F28F1/12F28F1/32F28F2275/125Y10T29/4935Y10T29/53122
    • The present invention addresses the issue of efficiently manufacturing heat exchangers without requiring a mechanism for adjusting the stop position of a flare plate (B) or adjustment work, whereby flares (7j) of the same shape and a constantly fixed depth are formed at the tube openings of various types of heat exchanger, even when the position of tube openings (7b) of tubes (7) of heat exchangers (5) varies according to the type of heat exchanger. The heat exchanger manufacturing method is characterized by manufacturing a heat exchanger by using a connecting and tensile force generating means (Xb) that connects a flare base (B), the tip of which is equipped with a flare punch (10) for flaring, to a gripping body base (3h) and generates a tensile force in a directions so that both are drawn towards each other across a fixed distance, in order to draw the flare base (B) towards the gripping body base (3h), which is held and fixed to a reference platform (A) by means of a locking means (Ab), thereby pressing the flare punch (10) into the expansion part (7d) on the tube opening side and implementing prescribed flaring, after which the flare base (B), the gripping body base (3h) and a sliding base (3d) are withdrawn from the heat exchanger.
    • 本发明解决了在不需要用于调节火炬板(B)或调节工件的停止位置的机构的情况下有效地制造热交换器的问题,由此在管子上形成相同形状和恒定的深度的火炬(7j) 即使当热交换器(5)的管(7)的管开口(7b)的位置根据热交换器的类型而变化时,各种热交换器的开口也不同。 热交换器制造方法的特征在于,通过使用连接张力发生装置(Xb)来制造热交换器,所述连接拉力产生装置将其顶端配备有用于扩口的火炬冲头(10)的火炬基座(B)连接到 夹持体基部(3h),并且沿着使得两者在固定距离上彼此相互拉伸的方向产生拉伸力,以便朝向被保持的夹持体基部(3h)拉出喇叭形底座(B) 并通过锁定装置(Ab)固定在参考平台(A)上,从而将火炬冲头(10)压入管开口侧的膨胀部分(7d)并执行规定的扩口,然后将火炬基座 B),把持体基座(3h)和滑动基座(3d)从热交换器排出。