APPARATUS AND METHOD FOR MANUFACTURING A SEAMLESS PIPE
    2.
    发明申请
    APPARATUS AND METHOD FOR MANUFACTURING A SEAMLESS PIPE 有权
    用于制造无缝管的装置和方法

    公开(公告)号:US20150059426A1

    公开(公告)日:2015-03-05

    申请号:US14368034

    申请日:2012-12-21

    Abstract: Provided is an apparatus of manufacturing a seamless pipe. The apparatus includes a container receiving a work therein, a stem pressing one end of the work within the container, a die installed in a direction opposite to the stem, and having an extrusion hole comprised of a plurality of ports, a rotation member installed on a front end of the die, having a stirring tip inserted into a joint surface formed by abutting a plurality of metal pieces to each other on one surface, and rotating to perform a friction stir bonding in a state in which the one surface contacts the joint surface, and a correction mold including a metal pipe discharging path receiving a metal pipe manufactured by the friction stir bonding and discharging the metal pipe to an outside.

    Abstract translation: 提供一种制造无缝管的装置。 该装置包括容纳工件的容器,将工件的一端压入容器内的模具,沿与杆相反的方向安装的模具,并具有由多个端口组成的挤压孔,旋转构件安装在 模具的前端具有插入到通过在一个表面上彼此抵靠多个金属片而形成的接合表面中的搅拌尖端,并且在一个表面接触接头的状态下旋转以进行摩擦搅拌接合 表面,以及具有金属管排出路径的修正模具,该金属管排出路径容纳通过摩擦搅拌接合制造的金属管,并将金属管排出到外部。

    APPARATUS FOR CONTROLLING TEMPERATURE OF BATTERY
    7.
    发明申请
    APPARATUS FOR CONTROLLING TEMPERATURE OF BATTERY 审中-公开
    控制电池温度的装置

    公开(公告)号:US20150311572A1

    公开(公告)日:2015-10-29

    申请号:US14646839

    申请日:2013-11-05

    Abstract: The present invention provides an apparatus for controlling the temperature of a battery, which is capable of cooling a battery such as a lithium ion battery and the like by using the circulation of a liquid refrigerant and controlling the temperature of the battery through an endothermic reaction or an exothermic reaction caused by a phase transformation process of the corresponding supersaturated liquid refrigerant. To this end, the present invention comprises: at least one temperature sensor for sensing the temperature of a battery pack so as to generate a temperature detection signal; a refrigerant pipe which is extended between arrangement spaces of a plurality of battery cells included in the battery pack and circulates the supersaturated liquid refrigerant through the inside thereof; a refrigerant circulation driving unit which drives a cooling operation by circulating the supersaturated liquid refrigerant through the refrigerant pipe when the temperature of the battery pack rises; and a control unit for driving and controlling the refrigerant circulation driving unit when the rise in the temperature of the battery pack is detected according to a temperature detection signal received from at least one temperature sensor.

    Abstract translation: 本发明提供了一种用于控制电池的温度的装置,其能够通过使用液体制冷剂的循环并且通过吸热反应来控制电池的温度来冷却诸如锂离子电池等的电池,或 由相应的过饱和液体制冷剂的相变过程引起的放热反应。 为此,本发明包括:用于感测电池组的温度的至少一个温度传感器,以产生温度检测信号; 在包含在电池组中的多个电池单体的配置空间之间延伸的制冷剂配管,使过饱和液体制冷剂通过其内部循环; 制冷剂循环驱动单元,其在电池组的温度升高时通过使制冷剂配管循环来驱动冷却运转; 以及控制单元,用于根据从至少一个温度传感器接收的温度检测信号来检测电池组的温度升高时驱动和控制制冷剂循环驱动单元。

    Extrusion-type connecting rod, extrusion apparatus for connecting rod and manufacturing method for extrusion-type connecting rod

    公开(公告)号:US09885381B2

    公开(公告)日:2018-02-06

    申请号:US14782228

    申请日:2014-04-04

    CPC classification number: F16C7/023 B21C23/142 F16C2220/48

    Abstract: The present invention relates to an extrusion-type connecting rod which is installed between a piston and a crank and can convert the reciprocating motion of the piston into the rotary motion of a crank shaft, an extrusion apparatus for a connecting rod, and a manufacturing method for the extrusion-type connecting rod. The extrusion-type connecting rod may comprise: a first big end having a portion of a crank shaft hole formed on one side and having a seam-line divided surface, which comprises a seam line formed at the time of extrusion, formed on the other side; a second big end, being extrusion-molded simultaneously with the first big end, having the other portion of the crank shaft hole formed on one side, and having a seam-line divided surface, which comprises a seam line formed at the time of extrusion, formed so as to contact the seam-line divided surface of the first big end; a connection part which is extrusion-molded integrally with the second big end; and a small end which is extrusion-molded integrally with the connection part.

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