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Effect of Wear on Surface Crack Propagation in Rail-Wheel Wet Contact

机译:磨损对轨道轮湿触头表面裂纹传播的影响

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The interaction between wear and rolling contact fatigue in wet contact was investigated by means of experiments on a two-disk test bench. Specimens of various railway wheel steels were coupled with specimens of the same rail steel, subjected to rolling and sliding wet contact with varying sliding/rolling ratio. Some tests with a dry rolling-sliding contact phase preceding wet contact were carried out as well (dry-wet tests). The pressurization of the fluid entrapped in the surface cracks was the cause of a rapid and severe damage in the dry-wet tests, due to the nucleation of surface cracks by ratcheting in the dry phase, which subsequently propagate in the wet phase. In the wet tests, the fluid pressurization effect was much mitigated due to the absence of initial surface cracks; the specimens subjected to higher sliding/rolling ratio showed the best performance against rolling contact fatigue, due to the effect of wear in reducing the length of surface cracks. A model for assessing the interaction between wear and rolling contact fatigue was proposed, based on the correction of the classical Paris law for crack propagation by taking into account the effect of wear on crack length reduction. The application of the model to the experimental tests allowed finding a correlation between the model predictions and the occurrence of fatigue failure.
机译:通过对双盘试验台上的实验研究了湿触点中耐磨和滚动接触疲劳之间的相互作用。各种铁路轮钢的标本与同一导轨钢的标本相结合,经受与不同的滑动/轧制比的轧制和滑动湿接触。在湿触点之前的具有干轧制滑动接触相位的一些测试也是如此(干湿试验)。捕获在表面裂缝中的流体的加压是干湿试验中快速且严重损伤的原因,由于表面裂缝通过在干阶段棘轮搅动,随后在湿相中繁殖。在湿试验中,由于没有初始表面裂缝,流体加压效果很大;经过更高的滑动/轧制比的标本表明,由于磨损在降低表面裂缝长度的效果,因此抗滚动接触疲劳的最佳性能。提出了一种用于评估磨损和滚动接触疲劳之间的相互作用的模型,基于经典巴黎法律进行裂纹传播的校正,考虑磨损对裂缝长度减少的影响。该模型在实验测试中的应用允许在模型预测和疲劳失败的发生之间找到相关性。

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