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Evaluation of plastic damage for metallic materials under tensile load using nonlinear longitudinal waves

机译:使用非线性纵波评估拉伸载荷下金属材料的塑性损伤

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摘要

An experimental method based on nonlinear ultrasonic technique is presented for evaluating material damage due to plastic deformation in a metal plate. In this approach, specimens made from AZ31 magnesium-aluminum alloy are loaded to produce different levels of plastic strains. The ultrasonic harmonics generated in AZ31 magnesium-aluminum alloy, as a result of the interaction of ultrasonic waves with substructural changes, are measured precisely and the acoustic nonlinearity parameter (ANP) based on the fundamental and second harmonics is determined. The results show that the ANP increases monotonically with the level of plasticity (or the tensile stress). This research also shows the coincidence between the ANPs based on the microplasticity model and the measured results.
机译:提出了一种基于非线性超声技术的实验方法,用于评估金属板塑性变形引起的材料损伤。通过这种方法,将由AZ31镁铝合金制成的样品加载以产生不同水平的塑性应变。由于超声波与亚结构变化的相互作用,在AZ31镁铝合金中产生的超声波谐波被精确测量,并确定基于基波和二次谐波的声学非线性参数(ANP)。结果表明,随着可塑性(或拉伸应力)的水平,ANP单调增加。这项研究还显示了基于微塑性模型的ANP与测量结果之间的一致性。

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