首页> 外文期刊>Research in nondestructive evaluation: a journal of the American Society for Nondestructive Testing >Applicability of the Magnetic Barkhausen Noise Method for Nondestructive Measurement of Residual Stresses in the Carburized and Tempered 19CrNi5H Steels
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Applicability of the Magnetic Barkhausen Noise Method for Nondestructive Measurement of Residual Stresses in the Carburized and Tempered 19CrNi5H Steels

机译:磁性巴克孔噪声法适用于渗碳和回火19CrNi5H钢中残余应力的非破坏性测量

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摘要

There exist no materials and/or structures of technical importance without residual stresses. The residual stress management concept has gained importance in industrial applications aiming to improve service performance and useful life of the product. Thus, the industry requests rapid, reliable, and nondestructive methods to determine residual stress state. The aim of this article is to investigate the applicability of the Magnetic Barkhausen Noise (MBN) method to measurement of surface residual stresses in the carburized steels. To comprehend the differences in the surface residual stress state, 19CrNi5H steel samples were carburized at 900 degrees C for 8 and 13 hours, and then, tempered in the range of 180 degrees C and 600 degrees C. The MBN measurement results were correlated with those obtained by the X-ray diffraction (XRD) measurements. Microstructural investigations and hardness measurements were also conducted. For this particular study, it was concluded that both techniques give similar qualitative results for monitoring of the residual stress variations in the carburized and tempered steels. Since the MBN method is much faster than the XRD method, from the industrial point of view it is a very strong candidate for qualitative monitoring of residual stress variations. With an appropriate pre-calibration by considering the effect of microstructure, the MBN method may give reliable quantitative results for residual stress.
机译:没有残留应力的技术重要性没有材料和/或结构。残余应力管理概念在工业应用中,旨在提高产品的服务性能和使用寿命的工业应用。因此,该行业要求快速,可靠,无损的方法来确定残留应力状态。本文的目的是探讨磁性Barkhausen噪声(MBN)方法对渗碳钢中表面残余应力的适用性。要理解表面残留应力状态的差异,将19crni5h钢样品在900℃下渗碳8和13小时,然后在180℃和600℃的范围内回火。MBN测量结果与那些相关联通过X射线衍射(XRD)测量获得。还进行了微观结构研究和硬度测量。对于这种特定的研究,得出结论,两种技术都提供了类似的定性结果,以监测渗碳和钢化钢的残余应力变化。由于MBN方法比XRD方法快得多,因此从工业角度来看,它是对残留应力变化的定性监测的非常强大的候选者。通过考虑微观结构的效果,MBN方法可以提供适当的预校准,可以给予残余应力的可靠定量结果。

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