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Analytical Method to Determine Press-fit Tolerance between Torque Carrying Members

机译:测定扭矩承载构件之间的压配公差的分析方法

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This paper deals with an analytical method to calculate the press-fit tolerance and fits between gears and shaft for automotive applications. The relative interferences increase sharply in the small diameter range, therefore one must be especially careful when designing small diameter joints. The strength of press-fit depends on the amount of relative interference; extreme interference leads to excessive contact stresses between the gear and shaft eventually leading to failure. Too little interference leads to slippage of gear on the shaft. In the press fit connection a shaft's spline rolling operation and gear internal broaching is eliminated. It is more economical than a conventional spline connection. Press fit connections are used in various transmission between a shaft and a gear. They are used in 6 speed transmission to 9-speed transmission for (German based Vehicle Manufacturer) heavy and light commercial vehicle company. In India 5-speed transmission to 9-speed transmission for heavy and light commercial vehicle companies, also uses press fit connections. The strength of the press fit joint is directly proportional to the coefficient of the friction between the mating parts. The strength depends upon the pressure at the contacting surface, surface micro irregularities and material properties. Adequate surface finish of the mating component is an essential condition for the strength of the pressed connection. For connections undergoing heating during the operation, the influence of the temperature upon the fit must be considered. Therefore it is challenge to design an optimum press fit joint; a fine balance need to be determined while calculating interferences for the press-fit connection.
机译:本文涉及一种分析方法,用于计算压力拟合公差,适合汽车应用的齿轮和轴。相对干扰在小直径范围内急剧增加,因此在设计小直径接头时必须特别小心。压配合强度取决于相对干扰的量;极端干扰导致齿轮和轴之间的过度接触应力最终导致失败。干扰太少导致轴上的齿轮滑动。在压紧配合连接中,消除了轴的花键滚动操作和齿轮内部拉削。它比传统的样条连接更经济。压配合连接用于轴和齿轮之间的各种传输。它们用于6速传递到9速传输(德国汽车制造商)重型和轻型商用车公司的9速传输。在印度5速传输到9速传输为重型和轻型商用车公司,也使用压配合连接。压配合接头的强度与配合部件之间的摩擦系数成正比。强度取决于接触表面的压力,表面微观不规则性和材料特性。配合部件的足够表面光洁度是压制连接强度的必要条件。对于在操作期间进行加热的连接,必须考虑温度对拟合时的影响。因此,设计最佳压力配合关节是挑战;在计算压力配合连接的干扰时需要确定精细平衡。

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