ROTOR FLANGE WITH NON-UNIFORM SHAPE
    167.
    发明申请
    ROTOR FLANGE WITH NON-UNIFORM SHAPE 审中-公开
    转子法兰与非均匀形状

    公开(公告)号:US20170058966A1

    公开(公告)日:2017-03-02

    申请号:US14835809

    申请日:2015-08-26

    Inventor: Alfred Lim Poy

    Abstract: A rotor for an electromagnetic clutch assembly includes a substantially cylindrical main body extending from a first end to a second end. The first end of the main body is configured to engage an armature of the electromagnetic clutch assembly and includes a first flange formed around a circumference thereof. The second end of the main body includes a second flange formed around a circumference thereof. One of the first flange or the second flange has a non-uniform cross-sectional shape as the one of the first flange or the second flange extends circumferentially around the main body, wherein the cross-sectional shape of the one of the first flange or the second flange taken through a plane extending parallel to an axis of rotation of the main body.

    Abstract translation: 用于电磁离合器组件的转子包括从第一端延伸到第二端的基本上圆柱形的主体。 主体的第一端构造成与电磁离合器组件的衔铁接合,并且包括围绕其圆周形成的第一凸缘。 主体的第二端包括围绕其圆周形成的第二凸缘。 第一凸缘或第二凸缘中的一个具有不均匀的横截面形状,因为第一凸缘或第二凸缘中的一个围绕主体周向延伸,其中第一凸缘或第二凸缘中的一个的横截面形状 所述第二凸缘通过平行于所述主体的旋转轴线延伸的平面。

    Control method of air conditioner system for electric vehicle
    168.
    发明授权
    Control method of air conditioner system for electric vehicle 有权
    电动汽车空调系统控制方法

    公开(公告)号:US09579950B2

    公开(公告)日:2017-02-28

    申请号:US14279050

    申请日:2014-05-15

    CPC classification number: B60H1/00764 B60H1/00392 B60H1/00885

    Abstract: A control method of an air conditioner system for an electric vehicle may include circulating the refrigerant by sensing actuation of the air conditioner system while driving the electric vehicle in a state where a start of the electric vehicle is turned on, circulating and cooling the cooling water through actuation of a water pump and a cooling fan in a cooling module that includes an engine radiator, the intercooler radiator, the water-cooled condenser, and the air-cooled condenser, and controlling actuation speeds of the water pump and the cooling fan based on whether the electric vehicle stops after suddenly accelerating in a state where the air conditioner system is actuated or stops in a state where the air conditioner system is turned off after travelling, and/or based on whether an air conditioner pressure and a cooling water temperature are within predetermined set values.

    Abstract translation: 电动车辆的空调系统的控制方法可以包括:在电动车辆的起动开启的状态下驱动电动车辆时,通过感测空调系统的动作来循环制冷剂,循环冷却冷却水 通过在包括发动机散热器,中间冷却器散热器,水冷冷凝器和风冷冷凝器的冷却模块中的水泵和冷却风扇的致动,以及控制水泵和冷却风扇的致动速度 关于在空调系统在行驶后关闭的状态下,在空调系统被启动或停止的状态下,电动车是否停止,和/或基于空调压力和冷却水温度 在预定的设定值内。

    Block fitting for metal seal structures
    169.
    发明授权
    Block fitting for metal seal structures 有权
    金属密封结构的嵌件

    公开(公告)号:US09556993B2

    公开(公告)日:2017-01-31

    申请号:US14180781

    申请日:2014-02-14

    Abstract: A block fitting for an air conditioning system includes a male block portion and a female block portion. The male block portion has a first annular pilot. The female block portion has a first annular collar that receives the first annular pilot of the male block portion. The first aperture of the male block portion and the first aperture of the female block portion are substantially concentrically aligned. A first seal structure is disposed between the first annular pilot of the male block portion and the first annular collar of the female block portion. A fastener engages the male block portion with the female block portion to form a substantially fluid tight seal. One of the of the male block portion and the female block portion has a stabilizing heel formed adjacent a side surface thereof. The stabilizing heel militates against transverse dynamic loading of the seal structure in operation.

    Abstract translation: 用于空调系统的块配件包括阳块部分和阴块部分。 阳块部分具有第一环形导频。 阴块部分具有接收阳块部分的第一环形引导件的第一环形环。 阳块部分的第一孔和阴块部分的第一孔基本上同心对准。 第一密封结构设置在阳块部分的第一环形引导件和阴块部分的第一环形凸缘之间。 紧固件将阳块部分与阴块部分接合以形成基本上流体密封的密封。 阳块部分和阴块部分之一具有邻近其侧表面形成的稳定脚跟。 稳定脚跟在操作中抵抗了密封结构的横向动态载荷。

    Manufacturing process for tube-in-tube internal heat exchanger
    170.
    发明授权
    Manufacturing process for tube-in-tube internal heat exchanger 有权
    管内管式换热器的制造工艺

    公开(公告)号:US09539631B2

    公开(公告)日:2017-01-10

    申请号:US14163020

    申请日:2014-01-24

    CPC classification number: B21D7/028 B21D15/02 B21D53/06 F28D7/106

    Abstract: A method of bending a tube arrangement including an inner tube disposed within an outer tube is performed using a bending die having a concave groove including a curved portion extending around a peripheral surface of the bending die, the curved portion of the concave groove having at least one ridge projecting therefrom. The tube arrangement is located within the concave groove and a force is applied to the tube arrangement in a direction toward the curved portion of the bending die to cause the tube arrangement to conform to the shape of the concave groove. The at least one ridge projecting from the concave groove causes the outer tube to deform such that an interior surface of the outer tube contacts an exterior surface of the inner tube, securing a position of the inner tube within the outer tube.

    Abstract translation: 使用具有凹槽的弯曲模具进行弯曲包括设置在外管内管的管装置的方法,该凹槽包括围绕弯曲模具的周面延伸的弯曲部分,凹槽的弯曲部分至少具有 一个从其突出的脊。 管装置位于凹槽内,并且在朝向弯曲模具的弯曲部分的方向上向管装置施加力,以使管装置符合凹槽的形状。 从凹槽突出的至少一个脊使得外管变形,使得外管的内表面接触内管的外表面,从而将内管的位置固定在外管内。

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