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Investigation of rolling contact fatigue damage process of the coating by acoustics emission and vibration signals

机译:通过声发射和振动信号研究涂层的滚动接触疲劳损伤过程

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摘要

The objective of present study is to investigate rolling contact fatigue (RCF) damage process of the sprayed coating by acoustics emission (AE) and vibration signals. Fe-based alloy coating was prepared on 1045 steel using the plasma spraying technology. The results show that RCF damage process is composed of four stages. The AE with higher sensitivity can detect fatigue damage details, such as the material deformation, crack initiation and growth. While the vibration can only reflect the final failure, such as extensive and deeper pittings. The analysis of AE waveform and frequency are effective methods for studying RCF damage process.
机译:本研究的目的是通过声发射(AE)和振动信号研究喷涂层的滚动接触疲劳(RCF)损伤过程。使用等离子喷涂技术在1045钢上制备了铁基合金涂层。结果表明,RCF破坏过程包括四个阶段。具有更高灵敏度的AE可以检测疲劳损伤细节,例如材料变形,裂纹萌生和扩展。而振动只能反映出最终的故障,例如广泛且更深的点蚀。声发射波形和频率的分析是研究RCF损伤过程的有效方法。

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