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    • 11. 发明授权
    • Method of designing and manufacturing cam device and three-dimensional design-support computer program for the same
    • 设计制造凸轮装置和三维设计支持计算机程序的方法
    • US08332062B2
    • 2012-12-11
    • US12941113
    • 2010-11-08
    • Hiroyoshi KakoSatoshi NakamuraAkihito Ishizaka
    • Hiroyoshi KakoSatoshi NakamuraAkihito Ishizaka
    • G06F19/00G06Q30/00
    • G06F17/50G06F2217/02
    • There is provided a method of designing and manufacturing a cam device using a three-dimensional design-support computer program including a customer setup program for customers and a manufacture setup program for cam device manufactures being configured to generate different finenesses in 3D models and characteristic values of cam performance as a result of design of the cam device, and being configured to obtain a result which indicates the same cam device except for fineness and the required calculation items when the same parameters are loaded. The customer setup program is lent from the cam device manufacture to the customer, and detailed design to constructional details of the cam device is performed using the manufacture setup program on the basis of design data created using the customer setup program and handed to the cam device manufacturer, whereby the cam device is manufactured on the basis of a detailed design drawing.
    • 提供了一种使用三维设计支持计算机程序来设计和制造凸轮装置的方法,所述三维设计支持计算机程序包括用于客户的客户设置程序和用于凸轮装置制造商的制造设置程序,其被配置为在3D模型和特征值中产生不同的细度 作为凸轮装置的设计的凸轮性能,并且被配置为获得指示相同的凸轮装置除了细度以外的结果以及当加载相同的参数时所需的计算项目。 客户设置程序从凸轮装置制造商借给客户,并且使用制造设置程序根据使用客户设置程序创建的设计数据并将其递送到凸轮装置来执行凸轮装置的详细设计到结构细节 制造商,由此在详细的设计图的基础上制造凸轮装置。
    • 14. 发明授权
    • Constant velocity universal joint
    • 恒速万向节
    • US4305263A
    • 1981-12-15
    • US075675
    • 1979-09-14
    • Hiroyoshi KakoToru TamanoToshiaki YamamotoSeiho Kawakami
    • Hiroyoshi KakoToru TamanoToshiaki YamamotoSeiho Kawakami
    • F16D3/20B24B19/02F16D3/2245F16D3/30
    • B24B19/02F16D3/224F16D2003/22309Y10S464/906
    • A constant velocity universal joint wherein its outer race has a larger radius of curvature than its inner race at the transverse sectional surface of the ball rolling groove at the point of contact between the ball and the ball rolling groove. Concave and convex surface portions of a ball rolling groove have a characteristic such that when the inner and outer races have the same radius of curvature at the transverse sectional surface of the ball rolling groove, the contact stress of the ball rolling groove of the outer race becomes lower than that of the inner race. By varying the radius of curvature on the transverse sectional surface of the ball rolling groove of the outer race from that of the inner race to render the contact stresses of the two grooves equal to each other, it is possible to facilitate working of the grooves and yet to achieve the same degree of precision finishes as has hitherto been achieved.
    • 一种等速万向接头,其中,在球和球滚动槽之间的接触点处,其外圈在球滚动槽的横截面处具有比其内圈更大的曲率半径。 滚珠滚动槽的凹凸面部具有这样的特性,即当内圈和外圈在滚珠槽的横截面具有相同的曲率半径时,外圈的滚珠滚动槽的接触应力 变得比内圈的低。 通过使外圈的滚珠滚动槽的横截面上的曲率半径与内圈的曲率半径相等,使两槽的接触应力相等,能够有利于槽的加工, 尚未达到迄今为止所完成的相同程度的精加工。