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Effect of plasticity on the dynamic capacity of modern bearing steels

机译:可塑性对现代轴承钢动态能力的影响

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摘要

Dynamic capacity, defined as the load under which rolling element bearing raceways will survive for 1 million revolutions with 90% probability of survival, is commonly used in bearing life-rating standards. This term was introduced by Lundberg and Palmgren to simplify life prediction equations, and was derived using the elastic Hertzian-theory of contact mechanics for earlier, relatively impure bearing materials. Modern ultra-clean steels with fewer impurities can survive for multi-millions of contact stress cycles, even under elastic-plastic loading conditions. Under such conditions, elastic-plastic stresses are significantly different from the elastic Hertz contact stresses. Current experimental and finite-element study, shows accounting for plastic deformation of the material necessitates significant correction in the material parameters used in the expressions for dynamic capacity calculations.
机译:动态容量,定义为滚动元件轴承滚道的负荷,其在90%的存活概率上存活100万次旋转,通常用于轴承寿命标准。 该术语由Lundberg和Palmgren引入以简化寿命预测方程,并使用较早,相对不纯的轴承材料的弹性偏振理论来源。 即使在弹性塑料负载条件下,现代超清洁钢的含量较少,含量较少,可用于多百万的接触应力循环。 在这种条件下,弹性塑性应力与弹性赫兹接触应力显着不同。 目前的实验和有限元研究表明,塑性变形的算法需要在动态容量计算表达式中使用的材料参数中的显着校正。

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