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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology >Effects of surface defects on rolling contact fatigue of heavily loaded lubricated contacts
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Effects of surface defects on rolling contact fatigue of heavily loaded lubricated contacts

机译:表面缺陷对重载润滑触点滚动接触疲劳的影响

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摘要

Surface-initiated fatigue caused by surface defects is one of the most dominant failure modes for bearing contacts. In this study, a damage mechanics-based Voronoi finite-element model (VFEM) is developed and used to investigate the effects of surface defects (such as dents and fretting wear) in elastohydrodynamic lubricated line contacts. A line contact elastohydrodynamic lubricated model is used to calculate the pressure distributions acting over the surface defects, which are then employed by Voronoi finite-element model to determine subsurface stresses. Continuum damage mechanics-based approach is used to incorporate cyclic damage accumulation and progressive degradation of material properties with rolling contact cycling. The model also takes into account the effects of residual stresses generated during the debris denting process. Using this methodology, the model is used to simulate microcrack initiation, coalescence, and propagation stages, finally a fatigue spall. The locations and patterns of dent-initiated spalls are found to be consistent with experimental observations. The fatigue model is used to study the effects of the topology of the material microstructure, dent sharpness, and material properties on rolling contact fatigue (RCF) life and Weibull slopes.
机译:由表面缺陷引起的表面引发的疲劳是轴承接触最主要的失效模式之一。在这项研究中,基于损伤力学的Voronoi有限元模型(VFEM)被开发出来,并用于研究弹性流体动力润滑线触点中表面缺陷(例如凹痕和微动磨损)的影响。线接触弹性流体动力润滑模型用于计算作用于表面缺陷的压力分布,然后由Voronoi有限元模型用于确定地下应力。基于连续损伤力学的方法用于结合滚动接触循环的周期性损伤累积和材料性能的逐步退化。该模型还考虑了在碎片清除过程中产生的残余应力的影响。使用这种方法,该模型可用于模拟微裂纹的萌生,聚结和传播阶段,最后是疲劳剥落。发现凹痕引发的剥落的位置和模式与实验观察结果一致。疲劳模型用于研究材料微观结构,凹痕清晰度和材料特性对滚动接触疲劳(RCF)寿命和威布尔斜率的影响。

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