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Detailed Barkhausen noise and microscopy characterization of Jominy end-quench test sample of CF53 steel

机译:详细的Barkhausen噪声和显微镜表征CF53钢的Jominy端骤冷试验样品

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摘要

Jominy end-quench test samples from CF53 were used for studying the relationship of microstructural changes with the magnetic Barkhausen noise (BN) response. As the Barkhausen noise method is sensitive to both stress and microstructural state, it can be applied for material characterization. This study presents observations from BN measurements with different sensors and from different locations (as-quenched and ground) on the sample surface. Detailed microstructural characterization with a scanning electron microscope and a transmission electron microscope was carried out to correlate the BN responses with the microstructural features. In addition, residual stresses were measured by X-ray diffraction. The results indicate that the ground surface displayed mainly the effect of the grinding compressive stress state, while the as-quenched surface had variations due to higher microstructure sensitivity. An important finding of the results was that the sensitivity of BN to different surface conditions varied: The BN response in the ground area was mainly generated by both the residual stress and the microstructural effect, whereas for the as-quenched surface the microstructural effect was more evident.
机译:来自CF53的Jominy终止试验样品用于研究微观布哈森噪声(BN)响应的微观结构变化的关系。随着Barkhausen噪声法对所述应力和微观结构状态敏感,它可以应用于材料表征。该研究介绍了来自不同传感器的BN测量和来自样品表面上的不同位置(如淬火和研磨)的观察结果。进行了用扫描电子显微镜和透射电子显微镜的微观结构表征,以将BN响应与微观结构特征相关联。此外,通过X射线衍射测量残留应力。结果表明,地面主要显示研磨压缩应力状态的效果,而当较高的微观结构灵敏度导致的淬火表面具有变化。结果的重要发现是,BN对不同表面条件的敏感性变化:地面区域中的BN响应主要由残余应力和微观结构效果产生,而对于淬火表面的微观结构效应更多明显。

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