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Numerical verification of an efficient coupled SAFE-3D FE analysis for guided wave ultrasound excitation

机译:高效耦合SAFE-3D有限元分析对导波超声激发的数值验证

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Numerical verification of a method to simulate piezoelectric transducers exciting infinite elastic waveguides is presented. The method, referred to as SAFE-3D, combines a 3D finite element (FE) model of a transducer with a 2D semi-analytical finite element (SAFE) model of the waveguide and accounts for the dynamics of the transducer. An interpolation procedure is employed to transfer forces and displacements between the SAFE and 3D FE models, and therefore nodes at the interface between the two models are not required to be coincident. An Abaqus/Explicit analysis, employing a thermal equivalent piezoelectric model and absorbing boundary conditions to prevent end reflections, is used to verify the accuracy of the SAFE-3D model. A piezoelectric transducer attached to the web of a rail and driven with frequency content which excites a mode cut-off is considered. A driving signal which does not contain cut-off frequencies is used for comparison. Time domain displacement results computed using Abaqus/Explicit and SAFE-3D are compared directly. Several methods to alleviate the numerical difficulties encountered by the SAFE-3D method, when transforming frequency domain displacements to the time domain, close to cut-off frequencies are evaluated. It is shown that post-processing methods have a similar effect to adding damping, but are less numerically expensive if iterative tuning of parameters is required. A SAFE-based method to extract modal amplitudes from Abaqus/Explicit time domain results is used to evaluate the accuracy of SAFE-3D in the frequency domain. Good agreement between the SAFE-3D method and results computed using Abaqus/Explicit is achieved, despite the Abaqus/Explicit and SAFE-3D models predicting slightly different cut-off frequencies.
机译:提出了一种模拟压电换能器激发无限弹性波导的方法的数值验证。称为SAFE-3D的方法将换能器的3D有限元(FE)模型与波导的2D半分析有限元(SAFE)模型结合在一起,并考虑了换能器的动力学问题。采用插值过程在SAFE和3D FE模型之间传递力和位移,因此不需要两个模型之间的界面处的节点重合。 Abaqus / Explicit分析采用热等效压电模型并吸收边界条件以防止端反射,用于验证SAFE-3D模型的准确性。考虑了一种压电换能器,该压电换能器安装在轨道的腹板上,并以激励模式截止的频率成分进行驱动。不包含截止频率的驱动信号用于比较。直接比较使用Abaqus / Explicit和SAFE-3D计算的时域位移结果。评估SAFE-3D方法遇到的数值困难的几种方法,当将频域位移转换为时域时,评估接近截止频率的方法。结果表明,后处理方法与增加阻尼具有相似的效果,但是如果需要迭代调整参数,则在数值上更省钱。基于SAFE的方法从Abaqus / Explicit时域结果中提取模态振幅,用于评估SAFE-3D在频域中的准确性。尽管Abaqus / Explicit和SAFE-3D模型预测的截止频率略有不同,但SAFE-3D方法与使用Abaqus / Explicit计算的结果之间实现了良好的一致性。

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