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Evaluation of Piezoresistivity in Heat Treated 5A06 Al-Mg alloy Due to Applied Stress Using Eddy Current Method

机译:涡流法引起施加应力的热处理5A06 Al-Mg合金中压电渗透性评价

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Eddy current method can be used for non-destructive assessment of residual stress. In order to relate electrical conductivity change to the residual stresses in the welded joints, piezoresistivity of 5A06 has been investigated using samples heat treated at 250°C and 400°C. These samples represent weld zones with different thermal exposure. A directional eddy current probe with a Hall Effect sensor was used to evaluate stress coefficient of electrical conductivity due to applied uniaxial tensile load on the samples. The electromagnetic forward model was solved using FEM package and linear conductivity inversion was formulated to express probe output in terms of electrical conductivity. The piezoresistivity coefficients of samples, calculated from the derivative of stress-conductivity relation, were compared. The results indicate that coefficients vary inversely with annealing temperature.
机译:涡流法可用于对残余应力的非破坏性评估。为了将导电性改变与焊接接头中的残余应力相关,使用在250℃和400℃下热处理的样品进行5A06的压阻性。这些样品代表具有不同热曝光的焊接区域。具有霍尔效应传感器的定向涡流探针用于评估由于样品上的应用单轴拉伸负荷引起的导电率的应力系数。使用有限元封装解决电磁前进模型,并配制线性导电性转化以表达在电导率方面表达探针输出。比较来自应力导率关系的衍生物的样品的压阻性系数。结果表明系数与退火温度相同。

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