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A study of wear and rolling contact fatigue on a wheel steel in alternated dry-wet contact aided by innovative measurement systems

机译:通过创新测量系统辅助交替干湿接触磨损磨损疲劳磨损疲劳研究

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Wear and rolling contact fatigue are competing phenomena in railway wheels, as wear tends to shorten or remove surface cracks nucleated by ratcheting. The presence of water at the contact interface can enhance crack propagation leading to fatigue failure. This topic was studied taking advantage of innovative measurement systems developed for assessing the damage in bi-disc rolling contact tests, including a vision system for the acquisition and elaboration of surface images and a machine-learning technique for vibration measurement and analysis. Tests of different total duration with alternated dry and wet contact phases were carried out. The analysis of the collected measurements allowed identifying when crack propagation begins to prevail on wear: this occurred well earlier than the visible emergence of fatigue damage. If short dry and wet contact sessions are alternated, the onset of fluid driven crack propagation is delayed, because initially the dry sessions are not long enough to allow surface cracks to form by ratcheting, and in the subsequent wet session ratcheting is suspended due to low friction. If the alternated dry-wet contact sessions are longer, the onset of fluid driven crack propagation is accelerated, as in the dry sessions ratcheting proceeds more forming longer surface cracks, which are able to propagate in the subsequent wet phase.
机译:磨损和滚动接触疲劳是铁路车轮中的竞争现象,因为磨损倾向于缩短或去除通过棘轮成核的表面裂缝。接触界面存在水可以增强导致疲劳失效的裂缝繁殖。研究了该主题利用开发的创新测量系统,用于评估双盘滚动接触测试的损坏,包括用于采集和制定表面图像的视觉系统和用于振动测量和分析的机器学习技术。进行了用交替的干燥和湿接触相的不同总持续时间的测试。允许识别收集的测量的分析识别裂纹繁殖开始于磨损时占用:这比疲劳损坏的可见效果良好。如果交替的短干和湿触点会话,则延迟流体驱动的裂纹裂纹传播的开始,因为最初干燥的会话不足以使表面裂缝通过棘轮形成形成表面裂缝,并且在随后的潮湿会话中由于低而悬挂棘轮棘轮摩擦。如果交替的干湿接触次会话更长,则加速流体驱动裂纹传播的发作,如干燥的会话中,棘轮进入更多的形成较长的表面裂缝,其能够在随后的湿相中传播。

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