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    • 4. 发明专利
    • Bearing fitting device and bearing fitting method
    • 轴承配套装置及轴承配套方法
    • JP2007015039A
    • 2007-01-25
    • JP2005197195
    • 2005-07-06
    • Yutaka Seimitsu Kogyo Ltd豊精密工業株式会社
    • IKETAKI SHIGETAKASATO SHOZONAKAJIMA YASUSHI
    • B23P21/00B25B27/06F16C19/18F16C19/38F16C35/067
    • F16C2361/61
    • PROBLEM TO BE SOLVED: To provide a bearing fitting device capable of speedily carrying out fitting work of an outer ring, which each of two bearings has, into a housing in which the ring is to be fitted. SOLUTION: This bearing fitting device is constituted to be furnished with two holders 152, 250 to hold each of the two outer rings 30, 32 so that it is respectively positioned on the outside of each of axes of bearing storage recessed parts 46, 48 provided in the housing 12 and a holder relative movement device 104 to relatively move these holders in a direction to approach each other, and the two outer rings are simultaneously fitted in the housing by making the two outer ring relatively approach each other by relatively moving the two holders by the holder relative movement device. It is possible to simultaneously fit the two outer rings and to speedily carry out the fitting work of the two outer rings by one motion of relative approaching movement of the two holders by using this bearing fitting device. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种能够将两个轴承中的每一个的外圈的装配工作快速地进行到安装环的壳体中的轴承装配装置。 解决方案:该轴承安装装置构造成具有两个保持器152,250以保持两个外环30,32中的每一个,使得其分别位于轴承存储凹部46的轴线的外侧上 ,48设置在壳体12中,以及保持器相对运动装置104,以使这些保持器沿彼此靠近的方向相对移动,并且通过使两个外环相对靠近彼此相对地彼此靠近而将两个外环同时装配在壳体中 通过支架相对移动装置移动两个支架。 通过使用这种轴承装置,可以通过两个保持器相对接近运动的一个运动,同时装配两个外圈并且快速地执行两个外圈的配合工作。 版权所有(C)2007,JPO&INPIT
    • 5. 发明专利
    • Backlash of gearing measuring device
    • 齿轮测量装置的背面
    • JP2006292498A
    • 2006-10-26
    • JP2005111877
    • 2005-04-08
    • Yutaka Seimitsu Kogyo Ltd豊精密工業株式会社
    • IKETAKI SHIGETAKAYOSHIDA TAKAAKI
    • G01B21/20
    • PROBLEM TO BE SOLVED: To easily measure the backlash of gearing transferring the rotation of pinion shaft to a gear shaft including equal to or more than a pair of gears which are meshing to each other.
      SOLUTION: The backlash of gearing 10 in which the rotation of a pinion shaft 14 is transferred to the gear shaft 16 and reduced by engaging the pinion 18 and the gear 20 is measured, wherein the pinion shaft 14 and gear shaft 16 are rotatably supported in the housing 12. The pinion shaft 14 is driven rotationally by an electric motor 26 while the gear shaft 16 is loaded by the loading device 30. The pinion shaft 14 is rotated in a forward direction and a backward direction while detecting the rotational angle of the pinion shaft 14 and the gear shaft 16 are detected by the rotary encoders 36 and 40. The backlash is calculated by calculating the rotation transfer error for the forward direction and the backward direction while making the one rotation phase of the gear shaft 16 as reference rotation phase by the analysis device 46 based on the output signal of the encoders 36 and 40.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:为了容易地测量将小齿轮轴的旋转传递到包括等于或大于彼此啮合的一对齿轮的齿轮轴的齿轮传动齿隙。

      解决方案:测量齿轮10的齿隙10,其中小齿轮轴14的旋转传递到齿轮轴16并通过啮合小齿轮18和齿轮20而减小,其中小齿轮轴14和齿轮轴16是 可旋转地支撑在壳体12中。小齿轮轴14由电动机26旋转驱动,而齿轮轴16由装载装置30装载。小齿轮轴14在向前方向和向后方向上旋转同时检测旋转 小齿轮轴14和齿轮轴16的角度由旋转编码器36和40检测。通过在使齿轮轴16的一个旋转相位同时计算正向和反向的旋转传递误差来计算齿隙 作为基于编码器36和40的输出信号的分析装置46的基准旋转相位。(C)2007,JPO&INPIT

    • 8. 发明专利
    • GEAR GENERATING METHOD
    • JPH04336914A
    • 1992-11-25
    • JP13835291
    • 1991-05-14
    • YUTAKA SEIMITSU KOGYO LTD
    • IKETAKI SHIGETAKASATO SHOZO
    • B23F5/20B23F9/10
    • PURPOSE:To shorten a gear cutting time for a spiral bevel type gear by performing a jump indexing for the predetermined gear generating position of a gear element. CONSTITUTION:Gear generation employs a gear generating cutter where a milling cutter 12 is caused to rotate and revolve, and a gear element 14 is caused to rotate interlocked with the revolution of the cutter 12. In this case, the cutter 12 is caused to revolve in a normal direction, according to the normal rotation of the gear element 14, thereby cutting one tooth space (tooth space shown by solid line) at the predetermined gear generating position of the element 14. Thereafter, the gear element 14 is caused to retreat from the cutter 12, and the cutter 12 is caused to revolve in a reverse direction for return to the initial position as illustrate. On the other hand, the gear element 14 is caused to rotate in a normal direction, and the next gear generating position (tooth space shown by broken line) away from the previous cutting position by a plurality of pitches is kept faced to a blade 10. This process is repeated, thereby manufacturing a spiral bevel type gear.