首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Non-destructive evaluation of the railway wheel surface damage after long-term operation via Barkhausen noise technique
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Non-destructive evaluation of the railway wheel surface damage after long-term operation via Barkhausen noise technique

机译:通过Barkhausen噪声技术进行长期操作后铁路轮表面损坏的无损评估

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摘要

This paper reports the non-destructive evaluation of railway wheels via the Barkhausen noise technique across the wheel width. This study correlates non-destructive Barkhausen noise parameters with conventional destructive analyses expressed in terms of metallographic and SEM observations, microhardness profiles, residual stress, and average grain size measurements. The condition of the wheel surface was altered remarkably due to the real and long-term wheel operation. The results of investigations indicate non-homogenous distribution of Barkhausen noise emission as well as the corresponding surface state with respect to the wheel width. Severe plastic deformation and superimposed elevated temperatures alter the grain size considerably in the near-surface as well as the subsurface region. It was found that Barkhausen noise is strongly correlated with the average grain size within the Barkhausen noise sensitive depth, whereas the correlation with the residual stress distribution is quite poor.
机译:本文通过横跨车轮宽度报告了通过Barkhausen噪声技术的铁路车轮的非破坏性评估。本研究将非破坏性巴克豪森噪声参数与常规破坏性分析相关联,以金相和SEM观察,微硬度谱,残余应力和平均晶粒尺寸测量表达。由于实际和长期的车轮操作,车轮表面的状况显着改变。调查结果表明巴克豪森噪声发射的非均匀分布以及相对于车轮宽度的相应表面状态。严重的塑性变形和叠加的升高温度在近表面以及地下区域中显着改变晶粒尺寸。结果发现,巴克豪森噪音与巴卡森噪声敏感深度内的平均晶粒块强烈相关,而与残余应力分布的相关性相当差。

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