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Numerical Modelling of Propagation of the Fundamental Symmetric Lamb Mode through a Metal Composite Adhesive Joint

机译:基本对称羊肉模式通过金属复合胶粘剂展开的数值模拟

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The interaction of the fundamental SoLamb mode with adhesive joint considered between GFRP composite laminate and aluminium was studied through numerical modelling carried out using FEM. The numerical simulations were carried out by exciting the fundamental A0 Lamb mode at metal end in the frequency range of 150- 225 kHz by varying the adhesive orientation in the range of 1 in 20 to 90~0. When S0 Lamb mode interacts with adhesive, reflection, transmission and generation of A0 takes place. The incident Soand generated A0 modes propagate in the model as S0S0 and S0A0 modes. The ToF of reflected and transmitted S0S0 and S0A0 modes at receiving points were calculated analytically and compared with those obtained from numerical simulations. Further, RF and TF of Lamb modes S0S0 and S0A0 propagating through the sample were estimated. It is observed that, RF and TF values are depending on the adhesive orientation and the excitation frequency. The detailed study oh variation of RF and TF was made by exciting at metal and composite end with excitation frequency in the above range. Further, It was found that, scattered (transmitted and reflected) S0S0 and S0A0 Lamb modes are sensitive to the adhesive and hence, it can be used for detection of disband in metal-composite adhesive joint
机译:通过使用FEM进行的数值建模研究了GFRP复合层压板和铝之间考虑的粘合剂与粘合剂的相互作用。通过在150-225kHz的频率范围的频率范围的频率范围内激发粘合剂取向在20至90〜0的范围内,通过激励在150-225kHz的金属端的基本A0羊肉模式进行数值模拟。当S0 LAMB模式与粘合剂相互作用时,发生反射,传输和A0的产生。事件索收生成的A0模式在模型中传播为S0S0和S0A0模式。在分析地计算接收点处的反射和发送的S0S0和S0A0模式的TOF,并与从数值模拟中获得的那些进行比较。此外,估计通过样本传播的羊肉模式S0S0和S0A0的RF和TF。观察到,RF和TF值取决于粘合剂取向和激发频率。通过在上述范围内的激发频率激发金属和复合末端,通过在上述范围内激发金属和复合末端来进行RF和TF的详细研究OH变化。此外,发现散射(传输和反射的)S0S0和SO 40A0距离粘合剂敏感,因此可用于在金属复合粘合剂接头中检测分配

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