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    • 6. 发明申请
    • Constant velocity joint and method of manufacturing the same
    • 恒速接头及其制造方法
    • US20070105633A1
    • 2007-05-10
    • US10579673
    • 2004-07-28
    • Shouichi NakaoTsutomu KawakatsuMasanori Kosugi
    • Shouichi NakaoTsutomu KawakatsuMasanori Kosugi
    • F16D3/26
    • F16D3/205F16D3/385Y10T29/4984
    • A constant velocity joint, wherein all rolling elements annularly held by a tool are inserted into an inner diameter part from one end opposite to the flange part of a roller member along the axis of the inner diameter part of the roller member or the rolling elements remaining after one rolling element is removed from all rolling elements are charged into the inner diameter part and the removed one rolling element is inserted into a clearance between the rolling elements from the other end along the axis of the inner diameter part. After all rolling elements are fitted into the inner diameter part of the rolling member, a snap ring is fitted into an annular groove formed at the end part of the inner diameter part on the opposite side of the flange part to hold the rolling elements between the flange part and the snap ring.
    • 等速万向节,其中由工具环形地保持的所有滚动元件沿着滚轮构件的内径部分的轴线的一个与辊构件的凸缘部分相对的一端被插入到内径部分中,或者滚动元件保持 在从所有滚动元件移除一个滚动元件之后,将内径部分的轴线从另一端插入到滚动元件之间的间隙中。 将所有的滚动元件装配到滚动件的内径部分中之后,将卡环安装在形成在凸缘部相对侧的内径部的端部处的环形槽中,以将滚动元件保持在 法兰部分和卡环。
    • 10. 发明授权
    • Method for adjusting meshing position of hypoid gear
    • 调整准双曲面齿轮啮合位置的方法
    • US08813595B2
    • 2014-08-26
    • US12742824
    • 2008-11-12
    • Tsutomu KawakatsuYasuo TakeuchiHideki KomabaYutaka YoshibaNorikazu Hashimoto
    • Tsutomu KawakatsuYasuo TakeuchiHideki KomabaYutaka YoshibaNorikazu Hashimoto
    • F16H35/06F16H1/14G01M13/02F16H55/20F16H57/022
    • F16H1/145F16H55/20F16H57/022F16H2057/0221G01M13/021Y10T74/1956
    • A method for adjusting the meshing position of a hypoid gear having a first gear, and a second gear meshing with the first gear and transmitting the rotary motion thereof in the direction different from the extending direction of the axis of rotation of the first gear. The method for adjusting the meshing position comprises; a) a step for displacing the second gear a plurality of times along the axial direction of rotation while meshing with the first gear, b) a step for measuring the transmission error at each displacement position and plotting the relation of the displacement distance of the second gear and the measured transmission error, c) a step for evaluating the virtual transmission error between the measured transmission errors from the measured transmission error, d) a step for subtracting the measured transmission error and the virtual transmission error from a maximum allowable transmission error to determine the difference, e) a step for determining the area of a part surrounded by the difference and the maximum allowable transmission error by integrating the difference with the displacement distance of the second gear, and f) a step for dividing the part at a predetermined area ratio and setting a point where the division line intersects the displacement distance of the second gear at the meshing position of the second gear.
    • 一种用于调节具有第一齿轮的准双曲面齿轮的啮合位置的方法和与第一齿轮啮合的第二齿轮,并且沿与第一齿轮的旋转轴线的延伸方向不同的方向传递其旋转运动。 调整啮合位置的方法包括: a)在与所述第一齿轮啮合的同时使所述第二齿轮沿着轴向旋转多次的步骤,b)用于测量每个位移位置处的传动误差的步骤,并且绘制所述第二齿轮的位移距离的关系 齿轮和所测量的传输误差,c)根据测量的传输误差来评估所测量的传输误差之间的虚拟传输误差的步骤,d)从最大允许传输误差减去测量的传输误差和虚拟传输误差的步骤, 确定所述差异; e)通过将所述差与所述第二档位移距离进行积分来确定由所述差包围的部分的面积和所述最大允许传播误差的步骤,以及f)用于将所述部分划分为预定的步骤 并设定分割线与第二档位于距离的位移距离相交的点 第二档的铰接位置。