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Analysis of Tribological Characteristics between Plastic and Steel Helical Gear

机译:塑料钢螺旋齿轮之间的摩擦学特性分析

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The application of plastic gear is becoming more and more widespread due to its advantages of low noise, shock and vibration absorption and self-lubrication. Friction heat of plastic gear is an important reason for their failure, because the thermal conductivity of plastic is smaller than the metal and the heat generated by friction is an important factor for temperature rising of plastic gear. This paper established a tribology and temperature model of plastic gear transmission by the way of theoretical analysis and finite element simulation of plastic and steel helical gear transmission. The result of finite element analysis shows that friction heat of plastic gears generated during meshing is comparatively large, but the friction of plastic gear and steel gear during the process of meshing is small. The analysis conclusion, contrapose the tribological properties between plastic and steel helical gear, enriched and improved the research in this field and provided some ready-made experiences.
机译:由于其低噪声,冲击和振动吸收和自润滑的优点,塑料齿轮的应用变得越来越广泛。塑料齿轮的摩擦热是它们失败的重要原因,因为塑料的导热率小于金属,摩擦产生的热量是塑料齿轮温度升高的重要因素。本文通过塑料和钢螺旋齿轮传动的理论分析和有限元模拟建立了塑料齿轮传输的摩擦学和温度模型。有限元分析的结果表明,在啮合期间产生的塑料齿轮的摩擦热相对较大,但塑料齿轮和钢齿轮在啮合过程中的摩擦是小的。分析结论,对塑料和钢螺旋齿轮之间的摩擦学特性,富集和改进了该领域的研究,提供了一些现成的经验。

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