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Nonlinear Properties of Lamb Waves under Modulation of Fatigue Damage: Finite Element Simulation with Experimental Validation

机译:疲劳损伤调制下兰姆波的非线性特性:有限元模拟与实验验证

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Engineering structures under cyclic loads experience continuous accumulation of fatigue damage, deteriorating at an alarming rate. Most existing structural health monitoring (SHM) techniques use linear signal features, which may be unwieldy to the detection of fatigue damage in an initial stage. A dedicated finite element (FE) modeling technique for simulating nonlinear properties of ultrasonic Lamb waves under the modulation of fatigue cracks in metallic materials was established. Piezoelectric wafers were included in the model for exciting Lamb waves and capturing nonlinear characteristics. A nonlinearity parameter was constructed to calibrate the extracted wave nonlinear properties. Feasibility of the FE technique was experimentally validated, and the results showed satisfactory consistency in between, both revealing that (ⅰ) the developed FE modeling technique is able to faithfully simulate fatigue crack-induced nonlinear properties in Lamb waves, providing repeatable characterization for fatigue cracks; (ⅱ) the defined nonlinear parameter decreases when the direct wave path offsets from the fatigue crack, nonlinearly subject to the offset distance from the crack to a sensing path; and (ⅲ) a cumulative growth of the nonlinearity parameter against the wave propagation distance exists. All the observations enable quantitative characterization of micro-fatigue cracks using embeddable piezoelectric wafers, facilitating development of SFM technique with a capacity of quantitatively detecting damage small in dimension.
机译:承受周期性载荷的工程结构会不断累积疲劳损伤,并以惊人的速度恶化。大多数现有的结构健康监测(SHM)技术都使用线性信号特征,这些特征在最初阶段对疲劳损伤的检测可能不方便。建立了一种专用的有限元(FE)建模技术,用于模拟金属材料疲劳裂纹调制下的超声波兰姆波的非线性特性。压电晶片包括在模型中,用于激发兰姆波并捕获非线性特性。构造非线性参数以校准提取的波非线性特性。实验验证了有限元技术的可行性,结果表明两者之间具有令人满意的一致性,都表明(ⅰ)所开发的有限元建模技术能够如实地模拟Lamb波中疲劳裂纹引起的非线性特性,从而为疲劳裂纹提供可重复的特征描述。 ; (ⅱ)当直达波路径从疲劳裂纹偏移时,非线性地受从裂纹到感测路径的偏移距离的影响,定义的非线性参数减小; (ⅲ)存在非线性参数相对于波传播距离的累积增长。所有观察结果都可以使用可嵌入的压电晶片对微疲劳裂纹进行定量表征,从而促进了SFM技术的发展,具有定量检测小尺寸损伤的能力。

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