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Ultrasonic lamb waves in a thin plate

机译:薄板中的超声波兰姆波

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摘要

The behavior of the wave field produced in a thin unidirectional graphite/epoxy composite plate by a dynamic point load is studied using an approximate shear deformation plate theory (S.D.P.T) and a finite element analysis (F.E.A). Comparisons are made for propagation at 0°, 45°, and 90° directions relative to the fibers showing excellent agreement between the two model approaches. The approximate method is then used to calculate the response of a composite plate as well as of an aluminum plate to a uniform dynamic surface load distributed in a circular region. A periodic reversal in the phase of the signal with propagation distance is observed. It is found that this is caused by the strong dispersion of the first antisymmetric waves at low frequencies. For clarification, the steepest descent method is applied to obtain a closed form analytical expression for the far field response in the aluminum plate for a Dirac delta source. It is shown that the waveform carries a singularity that reverses its phase at regular intervals. The present work should be helpful in understanding the nature of waveform signals produced by impact loads and in the detection and characterization of impact damage in composite structures.
机译:使用近似剪切变形板理论(S.D.P.T)和有限元分析(F.E.A)研究了动态点载荷在薄单向石墨/环氧树脂复合板中产生的波场的行为。相对于光纤在0°,45°和90°方向的传播进行了比较,显示出两种模型方法之间的出色一致性。然后使用近似方法来计算复合板以及铝板对分布在圆形区域中的均匀动态表面载荷的响应。观察到信号相位随传播距离的周期性反转。发现这是由于第一反对称波在低频下的强色散引起的。为了澄清起见,采用最速下降法获得狄拉克δ源铝板中远场响应的闭合形式解析表达式。可以看出,该波形带有奇异点,该奇点点以固定间隔反转其相位。当前的工作应有助于理解由冲击载荷产生的波形信号的性质,以及对复合结构中冲击损伤的检测和表征。

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