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Variation Analysis of Tooth Engagement and Loads in Involute Splines

机译:渐开线花键的齿啮合和载荷变化分析

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Involute spline couplings are used to transmit torque from a shaft to a hub or other rotating component. In theory, all teeth of the spline share the load equally. In practice, due to manufacturing variations, the teeth are unequally loaded. A new model for tooth engagement, based on statistics, predicts that the teeth engage in a sequence, determined by the individual clearances. As the shaft load is applied, the tooth pair with the smallest clearance engages first, then deflects as the load increases, until the second pair engage. The two engaged pairs deflect together until the third pair engage, and so on, until the full load is reached. The statistical model predicts the average number of teeth which will engage for a specified load, plus or minus the expected variation. It also quantitatively predicts the load and stress in each engaged pair. Critical factors in the model are the stiffness and deflection of a single tooth pair and the characterization of the clearance. Detailed finite element analyses were conducted to verify the tooth deflections and engagement sequence.
机译:渐开线花键联轴器用于将扭矩从轴传递到轮毂或其他旋转部件。理论上,花键的所有齿均等地分担载荷。在实践中,由于制造上的变化,牙齿的负载不均匀。一种新的牙齿啮合模型,基于统计数据,可以预测牙齿按单个间隙确定的顺序啮合。在施加轴负载时,具有最小间隙的齿对首先啮合,然后随着负载的增加而偏转,直到第二对啮合。两对啮合的对偏转在一起,直到第三对啮合,依此类推,直到达到满负荷。统计模型可预测在指定负载下(正负预期变化)啮合的平均齿数。它还可以定量预测每个接合对中的载荷和应力。模型中的关键因素是单个齿对的刚度和挠度以及间隙的特性。进行了详细的有限元分析,以验证齿的变形和啮合顺序。

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