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Numerical Investigation on the Effects of Machining-induced White Layer during Rolling Contact

机译:滚动接触中加工引起的白层影响的数值研究

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摘要

It is well known that a thin phase-transformed white layer can be formed on component surfaces produced by hard machining. However, it is not clear as to how the white layer affects component performance, for example, in rotting contact fatigue. This study aims to determine the effects of white layer and associated residual stress on rolling contact stresses and strains. It is nearly impossible for an experimental study to identify the effects of white layer alone on rolling contact. Furthermore, small-scale contact stresses and strains (less than 30 μm) of the phase-transformed region are difficult to measure using the current experimental techniques. Therefore, a finite element analysis simulation model of rolling contact incorporating machining-induced surface integrity has been developed in this study. Three cases were investigated to decouple the effects of surface integrity factors: surface with white layer only, surface with residual stress only, and surface with white layer and residual stress. The simulation results show that distinct material properties of the white layer significantly influence the magnitudes and distributions of near-surface stresses and strains instead of those in the subsurface. Furthermore, it can be inferred that the white layer would affect near-surface fatigue damage instead of subsurface fatigue damage. The simulated near-surface fatigue damage mechanisms have been substantiated by the fatigue test data.
机译:众所周知,可以在通过硬加工产生的部件表面上形成薄的相变白色层。然而,不清楚白色层如何影响部件性能,例如在腐烂的接触疲劳中。这项研究旨在确定白层和相关残余应力对滚动接触应力和应变的影响。一项实验研究几乎不可能确定仅白色层对滚动接触的影响。此外,使用当前的实验技术难以测量相变区域的小规模接触应力和应变(小于30μm)。因此,本研究开发了一种结合加工引起的表面完整性的滚动接触的有限元分析仿真模型。研究了三种情况以解耦表面完整性因子的影响:仅具有白层的表面,仅具有残余应力的表面以及具有白层和残余应力的表面。仿真结果表明,白层的独特材料特性显着影响了近表面应力和应变的大小和分布,而不是次表面应力和应变的大小和分布。此外,可以推断出,白层将影响近表面疲劳损伤而不是次表面疲劳损伤。模拟的近表面疲劳破坏机理已由疲劳测试数据证实。

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