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Tensile stress fatigue life model of silicon nitride ceramic balls

机译:氮化硅陶瓷球的拉伸应力疲劳寿命模型

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The RCF (rolling contact fatigue) life of ceramic balls is a reliable technique to assess whether or not they are suitable to be used in rolling bearings. The relation expression between failure probability and RCF life was deduced with Weibull fracture statistic method for the silicon nitride ceramic ball in ball-cylinder geometric model. The tensile stress life model about silicon nitride ceramic balls was set up between RCF life and contact stress on the basis of the correlative numerical solution between the rating life and the maximum contact stress. It is conceived basing on maximum principal tensile stress. The failure cause, fatigue phenomenon and mechanics of balls are analyzed. The analysis shows that considering the maximum tensile stress as fatigue failure critical stress is reasonable. It is indicated that the tensile stress life model is feasible through RCF test with different stress level. It is verified by the tensile stress life model that silicon nitride ceramic balls failed by the maximum principal tensile stress, not by the maximum shear stress. In comparison with the L-P shear stress life model, the tensile stress life model is reasonable for RCF life prediction of silicon nitride ceramic balls.
机译:陶瓷球的RCF(滚动接触疲劳)寿命是评估其是否适合用于滚动轴承的可靠技术。利用球圆柱几何模型中的氮化硅陶瓷球的威布尔断裂统计方法,推导了失效概率与RCF寿命的关系表达式。根据额定寿命与最大接触应力的相关数值解,建立了RCF寿命与接触应力之间的氮化硅陶瓷球拉伸应力寿命模型。它基于最大主拉伸应力来构思。分析了球的失效原因,疲劳现象和力学。分析表明,将最大拉伸应力视为疲劳破坏临界应力是合理的。通过不同应力水平的RCF试验表明,张应力寿命模型是可行的。通过拉伸应力寿命模型可以证明氮化硅陶瓷球是通过最大主拉伸应力而不是通过最大剪切应力破坏的。与L-P剪切应力寿命模型相比,拉伸应力寿命模型对于氮化硅陶瓷球的RCF寿命预测是合理的。

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