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Investigating the correlation between magnetic Barkhausen noise emission and the fatigue life of shot-peened AISI 4140 steel

机译:研究Barkhausen电磁噪声与喷丸AISI 4140钢的疲劳寿命之间的关系

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摘要

The performance of engineering components under conditions of fatigue can be improved by shot peening. The location and magnitude of the highest residual compressive stress, the depth of the compression zone and the stability of the residual stress state during cyclic loading are criticalparameters for maximum utilisation of the advantageous influence of shot peening on fatigue performance. For accurate assessment of fatigue lifetime, residual stresses should be considered because they are algebraically summed with applied stresses. Therefore, the development of a non-destructivetesting (NDT) method that has the ability to rapidly monitor surface residual stresses has industrial importance when verifying the achievement of the design goals of shot peening. The utilisation potential of the magnetic Barkhausen noise (MBN) technique in shot peening of ferromagnetic steelsincludes automated sorting of the components and measurement of surface residual stress. This study aims to establish the correlation between MBN emission and the fatigue life of shot-peened AISI 4140 steel.
机译:通过喷丸处理可以改善疲劳条件下工程部件的性能。在循环载荷过程中,最高残余压应力的位置和大小,压缩区的深度以及残余应力状态的稳定性是最大程度利用喷丸强化对疲劳性能的有利影响的关键参数。为了精确评估疲劳寿命,应考虑残余应力,因为它们是代数加外加应力的。因此,开发一种能够快速监测表面残余应力的无损检测(NDT)方法在验证喷丸设计目标的实现时具有工业重要性。 Barkhausen噪声(MBN)磁性技术在铁磁钢喷丸处理中的应用潜力包括对组件进行自动分选和测量表面残余应力。这项研究旨在建立MBN排放与喷丸AISI 4140钢疲劳寿命之间的相关性。

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