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PREDICTIONS OF WEAR AND TRANSMISSION ERRORS OF CYLINDRICAL WORM GEARS

机译:圆柱齿轮的磨损和传递误差的预测

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Transmission error (TE) is an important transmission parameter for precision worm gears. Modem cutting methods in conjunction with modern software allow manufacturers to deliver worm gear products of high accuracy to the highly competitive market. However, the initial shape of a bronze wheel tooth changes dramatically due to bedding-in and wear when gears mesh under load, and hence transmission characteristics change. A computer program is being developed to predict wear during bedding-in and constant wear rate stages for involute worm gears. A progressive wear over given number of tooth engagements is estimated using both the available experimental wear data and theoretical considerations. Being subtracted from an "as-cut" geometry, a new shape of worm wheel tooth surface can be predicted. The calculations can be executed iteratively for as many wear steps as necessary. The model takes load sharing and contact stress distribution into account to estimate the lubrication oil film thickness and wear intensity. Contact patterns, TE, load cycles and meshing stiffness are also modeled. A comparison between theoretical wear predictions and experimental wear data is made. Predictions of wear and transmission errors are useful for optimization of existing worm gear design and for development of worm gears of new designs.
机译:传输误差(TE)是精密蜗轮的重要传输参数。现代切割方法与现代软件相结合,使制造商能够向竞争激烈的市场提供高精度的蜗轮产品。但是,由于齿轮在负载下啮合时的磨合和磨损,青铜轮齿的初始形状发生了巨大变化,因此传动特性发生了变化。正在开发一种计算机程序,以预测渐开线蜗轮蜗杆副的渐进磨损和恒定磨损率阶段的磨损。使用现有的实验磨损数据和理论考虑因素,可以估算出在给定数量的齿啮合情况下的渐进磨损。从“切割”的几何形状中减去,可以预测出蜗轮齿表面的新形状。对于必要的磨损步骤,可以迭代执行计算。该模型考虑了负载分担和接触应力分布,以估计润滑油膜的厚度和磨损强度。还对接触方式,TE,载荷循环和啮合刚度进行了建模。将理论磨损预测值与实验磨损数据进行了比较。磨损和传动误差的预测对于优化现有蜗轮设计和开发新设计的蜗轮非常有用。

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