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CHARACTERIZATION OF RESIDUAL STRESSES IN FERROUS COMPONENTS BY MAGNETIC ANISOTROPY MEASUREMENTS USING A HALL EFFECT SENSOR ARRAY PROBE

机译:使用霍尔效应传感器阵列探头通过磁各向异性测量来表征铁质部件中的残余应力

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摘要

A new surface sensor probe comprising an angular array of Hall effect sensors has been developed for characterization of residual stresses in ferrous materials by means of stress‐induced magnetic anisotropy measurements. The sensor probe applies a radially spreading ac magnetic field to a test sample, and detects stray fields in different directions simultaneously to determine the principal stress axes. In situ measurements were conducted on a annealed steel plate under four‐point bending stresses to evaluate the probe performance. The ratio of stray field signals measured along and perpendicular to the stress axis varies linearly with the surface stress, indicating the possibility of characterizing residual stresses in ferrous components using the sensor array probe.
机译:已开发出一种新型的由霍尔效应传感器角阵列构成的表面传感器探头,用于通过应力感应磁各向异性测量来表征含铁材料中的残余应力。传感器探头向测试样本施加一个径向扩展的交流磁场,并同时检测不同方向上的杂散磁场以确定主应力轴。在四点弯曲应力下对退火钢板进行原位测量,以评估探头性能。沿应力轴并垂直于应力轴测量的杂散场信号的比率随表面应力线性变化,这表明使用传感器阵列探头可以表征铁质部件中的残余应力。

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