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Modeling nonlinearities of ultrasonic waves for fatigue damage characterization: Theory, simulation, and experimental validation

机译:用于疲劳损伤表征的超声波非线性建模:理论,仿真和实验验证

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摘要

A dedicated modeling technique for comprehending nonlinear characteristics of ultrasonic waves traversing in a fatigued medium was developed, based on a retrofitted constitutive relation of the medium by considering the nonlinearities originated from material, fatigue damage, as well as the ‘‘breathing’’ motion of fatigue cracks. Piezoelectric wafers, for exciting and acquiring ultrasonic waves, were integrated in the model. The extracted nonlinearities were calibrated by virtue of an acoustic nonlinearity parameter. The modeling technique was validated experimentally, and the results showed satisfactory consistency in between, both revealing: the developed modeling approach is able to faithfully simulate fatigue crack-incurred nonlinearities manifested in ultrasonic waves; a cumulative growth of the acoustic nonlinearity parameter with increasing wave propagation distance exists; such a parameter acquired via a sensing path is nonlinearly related to the offset distance from the fatigue crack to that sensing path; and neither the incidence angle of the probing wave nor the length of the sensing path impacts on the parameter significantly. This study has yielded a quantitative characterization strategy for fatigue cracks using embeddable piezoelectric sensor networks, facilitating deployment of structural health monitoring which is capable of identifying small-scale damage at an embryo stage and surveilling its growth continuously.
机译:在考虑到材料的非线性,疲劳损伤以及材料的“呼吸”运动引起的非线性本构关系的基础上,开发了一种用于理解在疲劳介质中传播的超声波非线性特性的专用建模技术。疲劳裂纹。该模型中集成了用于激发和获取超声波的压电晶片。提取的非线性度通过声学非线性度参数进行校准。实验验证了建模技术的有效性,结果表明两者之间具有令人满意的一致性,这两者都表明:开发的建模方法能够忠实地模拟超声波中出现的疲劳裂纹引起的非线性;声非线性参数随着波传播距离的增加而累积增长;通过感测路径获取的该参数与从疲劳裂纹到该感测路径的偏移距离非线性相关。探测波的入射角和感测路径的长度均不会对参数产生显着影响。这项研究提出了使用可嵌入的压电传感器网络的疲劳裂纹的定量表征策略,有助于部署结构健康监测,该监测能够识别胚胎阶段的小规模损伤并对其生长进行连续监测。

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