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Finite element predictions for the dynamic response of thermo-viscoelastic material structures

机译:热粘弹性材料结构动力响应的有限元预测

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摘要

In this paper, constitutive relations are solved in the Fourier domain using a finite-element-based commercial software. The dynamic responses of viscoelastic bars or plates to either thermal or mechanical loads are predicted by considering complex moduli (Young, Poisson, stiffness moduli) as input data. These moduli are measured in the same frequency domain as that which is chosen for modeling the wave propagation. This approach is simpler since it suppresses the necessity of establishing a rheological model. Specific output processing then allows the numerical predictions to be compared to analytical solutions, in the absence of scatterers. The performances of this technique and its potential for simulating more complicated problems like diffraction of waves or for solving inverse problems are finally discussed.
机译:在本文中,使用基于有限元的商业软件在傅立叶域中求解本构关系。通过考虑复数模量(杨氏,泊松,刚度模量)作为输入数据,可以预测粘弹性条或板对热载荷或机械载荷的动态响应。这些模量在与为波传播建模选择的频域相同的频域中测量。该方法更简单,因为它抑制了建立流变模型的必要性。然后,在没有散射体的情况下,特定的输出处理可将数值预测与分析解决方案进行比较。最后讨论了该技术的性能及其在模拟更复杂的问题(如波的衍射)或解决反问题方面的潜力。

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