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FEM simulation and experimental study of fatigue damage measurement in magnesium using nonlinear ultrasonic

机译:非线性超声测量镁合金疲劳损伤的有限元模拟与实验研究

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Based on the theory of nonlinear ultrasonic, material early mechanical degradation is associated with the microstructural changes such as dislocation and slip band. When a single sinusoidal ultrasonic wave is launched to a nonlinear medium, the higher harmonics will be generated. A FEM model of nonlinear was established by a special element which account for a nonlinear stress-strain relation. Calculation was performed for the influence of the micro-defect with different length and quantity to ultrasonic nonlinearity parameter. This research develops a robust experimental procedure. There is linear relationship between amplitudes of the second-harmonic waves and the squared fundamental waves as a function of increasing input voltage amplitude. Using this system, ultrasonic nonlinearity parameters of a magnesium sample were measured. The experimental results show that there is a significant increase in nonlinearity parameters linked to fatigue degree; Ultrasonic nonlinearity parameters can characterize the early fatigue damage of magnesium.
机译:基于非线性超声理论,材料的早期机械降解与位错和滑带等微观结构变化有关。当将单个正弦波超声波发射到非线性介质时,将产生更高的谐波。通过考虑非线性应力-应变关系的特殊元素建立了非线性有限元模型。计算了不同长度和数量的微缺陷对超声非线性参数的影响。这项研究开发了一个强大的实验程序。二次谐波波的振幅和平方基波之间的线性关系随输入电压振幅的增加而变化。使用该系统,测量了镁样品的超声非线性参数。实验结果表明,与疲劳程度有关的非线性参数显着增加。超声波非线性参数可以表征镁的早期疲劳损伤。

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