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Evaluating the Rolling Contact Fatigue Properties of Surface-Densified PM Gears

机译:评估表面致密化PM齿轮的滚动接触疲劳性能

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Surface densification technology allows powdered metal (PM) manufacturing methods to be considered for use in highly stressed product groups such as automotive transmission gears. The paper shows that rolling contact fatigue performance is defined by the interaction of the applied subsurface shear stress profile and the material shear fatigue strength profile. Previous work has shown that surface-densified PM gears can provide rolling contact fatigue durability which is at least equivalent to that of wrought steel gears. In respect to the provision of appropriate rolling contact fatigue design data, it is shown that cylinder-based test parameters need to be diligently selected, reference in particular needs to be made to actual automotive transmission gear geometrical features, and to the microstructure of the proposed material. It is shown that in the application of cylinder test data to actual components, the maximum surface compressive stress, the peak shear stress and the depth of the shear stress profile, need to be considered as design criteria.
机译:表面致密化技术允许考虑粉末金属(PM)制造方法用于高压的产品组,例如汽车传动齿轮。本文显示,滚动接触疲劳性能由应用的地下剪切应力曲线和材料剪切疲劳强度剖面的相互作用来定义。以前的工作表明,表面致密化的PM齿轮可以提供滚动接触疲劳耐久性,其至少相当于锻造钢齿轮。关于提供适当的滚动接触疲劳设计数据,表明需要努力选择基于气缸的测试参数,特别需要参考实际的汽车传动齿轮几何特征,以及提出的微观结构。材料。结果表明,在将气缸测试数据的应用到实际部件中,最大表面压缩应力,峰值剪切应力和剪切应力曲线的深度,需要被认为是设计标准。

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