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首页> 外文期刊>International Journal of Fatigue >Critical stresses and strains at the spall edge of a case hardened bearing due to ball impact
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Critical stresses and strains at the spall edge of a case hardened bearing due to ball impact

机译:滚珠撞击会导致表面硬化轴承的剥落边缘产生临界应力和应变

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摘要

Short spall propagation times of failing main shaft ball bearings of aircraft engines are a serious safety concern for single engine aircraft. Bearing designers would like to understand the impact of four variables namely (ⅰ) ball material density, (ⅱ) subsurface residual stress, (ⅲ) gradient in yield strength with depth (case hardening), and (ⅳ) raceway surface hardness/yield strength that are thought to affect spall propagation. Extensive spall propagation experiments have been conducted at AFRL, Ohio in the past few years to address this issue. However, a detailed mechanistic analysis of these experiments has not been performed. This work presents an elastic-plastic finite element (FE) model that simulates a ball impacting a spall edge to determine the relative contributions of the four material variables on spall propagation. The magnitude and extent of damage of the spall edge material is determined based on critical stresses and plastic strains induced by the ball impact. The results indicate that the influence of ball density is greatest on inducing damage at the impacted spall edge when compared to the other three properties, which also agrees with the hybrid bearing spall propagation tests conducted at AFRL.
机译:对于单引擎飞机来说,飞机发动机主轴球轴承失效的短时间散布传播是严重的安全问题。轴承设计人员想了解四个变量的影响,即(ⅰ)球材料密度,(ⅱ)表面残余应力,(ⅲ)屈服强度随深度的梯度(表面硬化)和(ⅳ)滚道表面硬度/屈服强度被认为会影响剥落的传播。为了解决这个问题,过去几年在俄亥俄州AFRL进行了广泛的剥落传播实验。但是,尚未对这些实验进行详细的机械分析。这项工作提出了一个弹塑性有限元(FE)模型,该模型模拟了一个撞击剥落边缘的球,以确定四种材料变量对剥落传播的相对贡献。剥落边缘材料的损坏程度和程度是根据球撞击引起的临界应力和塑性应变确定的。结果表明,与其他三个特性相比,球密度对受影响的剥落边缘处的损伤的影响最大,这也与AFRL进行的混合轴承剥落传播测试相吻合。

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