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LOAD SHARING OF A WORM GEAR WITH A PLASTIC WHEEL

机译:带塑料轮的蜗轮蜗杆的负载共享

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摘要

The material of the wheel in a worm-gear has to be non-rigid due to very high sliding velocity. Such gears are currently made of plastic in the case of a small module. The present paper describes an original method for studying the quasi-static loaded behavior of a worm gear, with a steel worm and a nylon wheel. Plastics are viscoelastic materials and do not obey Hooke's law. This paper describes an elaborated method that is a generalization of Kelvin's model. The computation also uses experimental tests to obtain data relating to the plastic. The computation of the load sharing is described and uses the equation of displacement compatibility. The history of previous deformation and the effect of the nylon's structural damping are taken into account. At a given constant temperature, the load sharing, meshing stiffness and loaded transmission error depend on the driving torque and time, that is to say speed of rotation.
机译:由于很高的滑动速度,蜗轮中的车轮材料必须是非刚性的。在小模块的情况下,这样的齿轮当前由塑料制成。本文介绍了一种研究带有钢蜗杆和尼龙轮的蜗轮的准静态载荷行为的原始方法。塑料是粘弹性材料,不遵守胡克定律。本文介绍了一种详尽的方法,该方法是对Kelvin模型的推广。该计算还使用实验测试来获得与塑料有关的数据。描述了负载分担的计算,并使用了位移兼容性方程。考虑了先前变形的历史以及尼龙结构阻尼的影响。在给定的恒定温度下,载荷分配,啮合刚度和载荷传递误差取决于驱动扭矩和时间,即旋转速度。

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