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Simulation of guided-wave ultrasound propagation in composite laminates: Benchmark comparisons of numerical codes and experiment

机译:复合材料层压板中导波超声传播的模拟:数字代码和实验的基准比较

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摘要

Ultrasonic wave methods constitute the leading physical mechanism for nondestructive evaluation (NDE) and structural health monitoring (SHM) of solid composite materials, such as carbon fiber reinforced polymer (CFRP) laminates. Computational models of ultrasonic wave excitation, propagation, and scattering in CFRP composites can be extremely valuable in designing practicable NDE and SHM hardware, software, and methodologies that accomplish the desired accuracy, reliability, efficiency, and coverage. The development and application of ultrasonic simulation approaches for composite materials is an active area of research in the field of NDE. This paper presents comparisons of guided wave simulations for CFRP composites implemented using four different simulation codes: the commercial finite element modeling (FEM) packages ABAQUS, ANSYS, and COMSOL, and a custom code executing the Elastodynamic Finite Integration Technique (EFIT). Benchmark comparisons are made between the simulation tools and both experimental laser Doppler vibrometry data and theoretical dispersion curves. A summary is given of the accuracy of simulation results and the respective computational performance of the four different simulation tools.
机译:超声波方法构成了固体复合材料(例如碳纤维增强聚合物(CFRP)层压板)的无损评估(NDE)和结构健康监测(SHM)的主要物理机制。 CFRP复合材料中超声波激发,传播和散射的计算模型在设计可行的NDE和SHM硬件,软件和方法学方面具有非常重要的价值,这些硬件,软件和方法可实现所需的准确性,可靠性,效率和覆盖范围。复合材料超声模拟方法的开发和应用是无损检测领域的一个活跃领域。本文介绍了使用四种不同的仿真代码实现的CFRP复合材料导波仿真的比较:商用有限元建模(FEM)程序包ABAQUS,ANSYS和COMSOL,以及执行弹性动态有限积分技术(EFIT)的自定义代码。在仿真工具与实验性激光多普勒测振数据和理论色散曲线之间进行基准比较。给出了仿真结果的准确性以及四种不同仿真工具各自的计算性能的摘要。

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