COUPLING ASSEMBLIES FOR CONNECTING FLUID-CARRYING COMPONENTS

    公开(公告)号:US20180368286A1

    公开(公告)日:2018-12-20

    申请号:US16111375

    申请日:2018-08-24

    IPC分类号: H05K7/20 F16L37/107 F16L15/08

    摘要: Coupling assemblies for connecting fluid-carrying components are provided. The coupling assemblies include, for instance: a socket fitting with a first opening and a second opening in fluid communication through the fitting, the first opening being sized to accommodate a first fluid-carrying component, and the second opening being sized to accommodate a second fluid-carrying component; a sleeve, the sleeve encircling the socket fitting and being rotatable relative to the fitting, and the sleeve including a first locking feature; and a second locking feature associated with one of the fluid-carrying components. The second locking feature is positioned and sized to engage the first locking feature of the sleeve when the one fluid-carrying component is inserted into the socket fitting. Once engaged, rotating of the sleeve locks the first and second locking features together to secure the one fluid-carrying component to the socket fitting.

    LIQUID-COOLED, COMPOSITE HEAT SINK ASSEMBLIES
    6.
    发明申请
    LIQUID-COOLED, COMPOSITE HEAT SINK ASSEMBLIES 审中-公开
    液体冷却,复合散热装置

    公开(公告)号:US20170045300A1

    公开(公告)日:2017-02-16

    申请号:US14824492

    申请日:2015-08-12

    IPC分类号: F28D7/00 B23P15/26

    摘要: Liquid-cooled heat sink assemblies are provided which include: a heat transfer element including a heat transfer base with opposite first and second sides and a plurality of thermally conductive fins extending from the first side, and with the second side of the heat transfer base to couple to a component(s) to be cooled. The heat sink assembly further includes a coolant-carrying structure attached to the heat transfer element. The coolant-carrying structure includes a coolant-carrying base, and a coolant-carrying compartment through which liquid coolant flows. The coolant-carrying base includes a plurality of fin-receiving openings sized and positioned for the plurality of thermally conductive fins to extend therethrough. The plurality of thermally conductive fins extend into the coolant-carrying compartment through which the liquid coolant flows. In one or more embodiments, the heat transfer element is a metal structure and the coolant-carrying structure is a plastic structure.

    摘要翻译: 提供了液冷式散热器组件,其包括:传热元件,其包括具有相对的第一和第二侧的传热基部和从第一侧延伸的多个导热翅片,以及传热基座的第二侧至 耦合到要冷却的部件。 散热器组件还包括附接到传热元件的冷却剂承载结构。 冷却剂承载结构包括冷却剂承载基座和液体冷却剂流过的冷却剂输送室。 冷却剂承载基座包括多个翅片接收开口,其大小和定位用于多个导热翅片延伸穿过其中。 多个导热翅片延伸到液体冷却剂流过的冷却剂供给室中。 在一个或多个实施例中,传热元件是金属结构,并且冷却剂承载结构是塑料结构。

    COUPLING ASSEMBLIES FOR CONNECTING FLUID-CARRYING COMPONENTS
    7.
    发明申请
    COUPLING ASSEMBLIES FOR CONNECTING FLUID-CARRYING COMPONENTS 审中-公开
    用于连接流体传动部件的联接组件

    公开(公告)号:US20160341342A1

    公开(公告)日:2016-11-24

    申请号:US14846905

    申请日:2015-09-07

    IPC分类号: F16L21/08 F16L15/08 F16L15/04

    摘要: Coupling assemblies for connecting fluid-carrying components are provided. The coupling assemblies include, for instance: a socket fitting with a first opening and a second opening in fluid communication through the fitting, the first opening being sized to accommodate a first fluid-carrying component, and the second opening being sized to accommodate a second fluid-carrying component; a sleeve, the sleeve encircling the socket fitting and being rotatable relative to the fitting, and the sleeve including a first locking feature; and a second locking feature associated with one of the fluid-carrying components. The second locking feature is positioned and sized to engage the first locking feature of the sleeve when the one fluid-carrying component is inserted into the socket fitting. Once engaged, rotating of the sleeve locks the first and second locking features together to secure the one fluid-carrying component to the socket fitting.

    摘要翻译: 提供了用于连接流体承载部件的联接组件。 联接组件包括例如:具有第一开口的插座和通过配件流体连通的第二开口,第一开口的尺寸适于容纳第一流体承载部件,并且第二开口的尺寸适于容纳第二开口 流体携带部件; 套筒,所述套筒环绕所述插座配件并且可相对于所述配件旋转,并且所述套筒包括第一锁定特征; 以及与所述流体承载部件之一相关联的第二锁定特征。 当一个流体承载部件插入到插座配件中时,第二锁定特征被定位和定尺寸成接合套筒的第一锁定特征。 一旦接合,套筒的旋转将第一和第二锁定特征锁定在一起以将一个流体承载部件固定到插座配件上。

    LIQUID-COOLED HEAT SINK ASSEMBLIES
    8.
    发明申请
    LIQUID-COOLED HEAT SINK ASSEMBLIES 有权
    液体冷却散热器组件

    公开(公告)号:US20160143184A1

    公开(公告)日:2016-05-19

    申请号:US14828775

    申请日:2015-08-18

    IPC分类号: H05K7/20

    摘要: Liquid-cooled heat sink assemblies are provided which include: a thermally conductive base structure having a sidewall surface and a main heat transfer surface; and a manifold structure attached to the base structure, with the base structure residing at least in part within a recess in the manifold structure. Together, the base and manifold structures define a coolant-carrying compartment through which liquid coolant flows, at least in part, in a direction substantially parallel to the main heat transfer surface of the base structure, and at least one of the sidewall surface of the thermally conductive base structure or an opposing surface thereto of the manifold structure includes a continuous groove. A sealing member is disposed, at least in part, within the continuous groove, and provides a fluid-tight seal between the thermally conductive base structure and the manifold structure.

    摘要翻译: 提供了液冷式散热器组件,其包括:具有侧壁表面和主传热表面的导热基底结构; 以及附接到基部结构的歧管结构,其中基部结构至少部分地位于歧管结构中的凹部内。 基座和歧管结构一起限定了一个冷却剂供给室,液体冷却剂至少部分地沿基本上平行于基础结构的主传热表面的方向流动,并且至少一个侧壁表面 歧管结构的导热基底结构或其相对的表面包括连续的凹槽。 密封构件至少部分地设置在连续槽内,并且在导热基底结构和歧管结构之间提供流体密封的密封。

    RELEASABLE, THREADLESS CONDUIT CONNECTOR FOR LIQUID MANIFOLD

    公开(公告)号:US20160059367A1

    公开(公告)日:2016-03-03

    申请号:US14824515

    申请日:2015-08-12

    IPC分类号: B23P15/26 F28F9/02

    摘要: Conduit connectors for liquid manifolds and methods of fabrication are provided. In one embodiment, a conduit connector is integrated, at least in part, within a liquid manifold, and includes a conduit-receiving opening or socket and at least one releasable retention component. The conduit-receiving opening is disposed within the liquid manifold and in fluid communication with at least one liquid-carrying channel of the liquid manifold. The releasable retention component(s) is selectively operative to threadlessly secure in a fluid-tight manner a conduit within the conduit-receiving opening in fluid communication with the at least one liquid-carrying channel of the liquid manifold to facilitate flow of liquid through the liquid-carrying channel(s), or to release the conduit from the conduit-receiving opening of the conduit connector. The releasable retention component(s) resides at least partially within the liquid manifold when operatively holding the conduit within the conduit-receiving opening.

    DIRECT COOLANT CONTACT VAPOR CONDENSING
    10.
    发明申请
    DIRECT COOLANT CONTACT VAPOR CONDENSING 有权
    直接冷却液接触蒸汽冷凝

    公开(公告)号:US20150109730A1

    公开(公告)日:2015-04-23

    申请号:US14058546

    申请日:2013-10-21

    IPC分类号: H05K7/20 B23P15/26 F25B39/04

    摘要: Cooling apparatuses and methods are provided facilitating transfer of heat from a working fluid to a coolant. The cooling apparatus includes a vapor condenser which includes a condenser housing with a condensing chamber accommodating the working fluid and coolant, which are in direct contact within the condensing chamber and are immiscible fluids. The condensing chamber includes a working fluid vapor layer and a working fluid liquid layer; and a working fluid vapor inlet facilitates flow of fluid vapor into the condensing chamber, and a working fluid vapor outlet facilitates egress of working fluid liquid from the condensing chamber. A coolant inlet structure facilitates ingress of coolant into the working fluid vapor layer of the condensing chamber in direct contact with the working fluid vapor to facilitate condensing the vapor into working fluid liquid, and the coolant outlet structure facilitates subsequent egress of coolant from the condensing chamber.

    摘要翻译: 提供了冷却装置和方法,便于将热量从工作流体传递到冷却剂。 冷却装置包括蒸气冷凝器,其包括具有容纳工作流体和冷却剂的冷凝室的冷凝器壳体,其在冷凝室内直接接触并且是不混溶的流体。 冷凝室包括工作流体蒸汽层和工作流体液体层; 并且工作流体蒸气入口促进流体蒸汽流入冷凝室,并且工作流体蒸气出口便于从冷凝室排出工作流体液体。 冷却剂入口结构有助于将冷却剂进入冷凝室的工作流体蒸汽层,与工作流体蒸汽直接接触,以便于将蒸汽冷凝成工作流体液体,并且冷却剂出口结构便于后续从冷凝室排出冷却剂 。