Federal Institute for Materials Research and Testing, 12200 Berlin, Germany.
J Acoust Soc Am. 2012 Sep;132(3):1358-67. doi: 10.1121/1.4740478.
The scaled boundary finite element method is applied to the simulation of Lamb waves for ultrasonic testing applications. With this method, the general elastodynamic problem is solved, while only the boundary of the domain under consideration has to be discretized. The reflection of the fundamental Lamb wave modes from cracks of different geometry in a steel plate is modeled. A test problem is compared with commercial finite element software, showing the efficiency and convergence of the scaled boundary finite element method. A special formulation of this method is utilized to calculate dispersion relations for plate structures. For the discretization of the boundary, higher-order elements are employed to improve the efficiency of the simulations. The simplicity of mesh generation of a cracked plate for a scaled boundary finite element analysis is illustrated.
尺度边界有限元法被应用于超声检测应用中的兰姆波模拟。该方法求解一般的弹性动力学问题,仅需对所考虑域的边界进行离散化处理。模型模拟了不同几何形状裂纹对钢板中基本兰姆波模式的反射。通过与商业有限元软件的对比测试问题,展示了尺度边界有限元法的效率和收敛性。该方法的特殊公式被用于计算板结构的频散关系。为了边界的离散化,采用高阶元来提高模拟效率。说明了用于尺度边界有限元分析的裂纹板网格生成的简单性。