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A New Method for Evaluation of Mechanical Stress Using the Reciprocal Amplitude of Magnetic Barkhausen Noise

机译:利用巴克豪森磁噪声的倒数来评估机械应力的新方法

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This paper describes a method for detecting stress in the surface of magnetic materials, such as steels, based on the measurement of magnetic Barkhausen emissions. The paper presents a simple practical linear calibration curve that can be used to determine stress, and also provides a theoretical explanation of the reason for such a relationship. The influence of elastic tensile and compressive stresses of various magnitudes on the magnetic Barkhausen emissions was studied, with the objective of developing a technique for quantitative measurements of surface stress in machined steels. The peak amplitude of the Barkhausen emissions was found to correlate with both residual and applied stress, showing a clear rising trend for transition from compressive to tensile stress. The relationship between stress dependence of the maximum differential anhysteretic susceptibility and Barkhausen peak amplitude was observed. Plots of reciprocal values $1/chi_{max}^{prime}$ and $1/{rm V}_{{rm MBN} max}$ against stress showed a linear relationship providing a convenient method for detecting stress levels in near-surface regions from Barkhausen measurements.
机译:本文介绍了一种基于Barkhausen磁性发射测量的检测磁性材料(例如钢)表面应力的方法。本文提出了一种简单实用的线性校准曲线,可用于确定应力,并提供了这种关系的理论解释。研究了各种大小的弹性拉伸和压缩应力对Barkhausen磁辐射的影响,目的是开发一种定量测量机加工钢中表面应力的技术。发现巴克豪森排放的峰值与残余应力和外加应力都相关,显示出从压缩应力到拉应力的明显上升趋势。观察到最大微分迟滞敏感性的应力依赖性与巴克豪森峰振幅之间的关系。相对于应力的倒数$ 1 / chi_ {max} ^ {prime} $和$ 1 / {rm V} _ {{rm MBN} max} $的线性关系显示了线性关系,为检测近表面区域的应力水平提供了一种方便的方法来自Barkhausen的测量。

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