Packo Pawel, Uhl Tadeusz, Staszewski Wieslaw J
Department of Robotics and Mechatronics, AGH University of Science and Technology, Al. A. Mickiewicza 30, 30-059 Krakow, Poland.
J Acoust Soc Am. 2014 Sep;136(3):993. doi: 10.1121/1.4892778.
The paper presents an efficient and accurate method for dispersion curve calculation and analysis of numerical models for guided waves. The method can be used for any arbitrarily selected anisotropic material. The proposed approach utilizes the wave equation and through-thickness-only discretization of anisotropic, layered plates to obtain the Lamb wave characteristics. Thus, layered structures, such as composites, can be analyzed in a straightforward manner. A general framework for the proposed analysis is given, along with application examples. Although these examples are based on the local interaction simulation approach for elastic waves propagation, the proposed methodology can be easily adopted for other methods (e.g., finite elements). The method can be also used to study the influence of discretization parameters on dispersion curves estimates.
本文提出了一种高效且准确的方法,用于计算导波数值模型的频散曲线并进行分析。该方法可用于任意选定的各向异性材料。所提出的方法利用波动方程以及仅沿厚度方向对各向异性层合板进行离散化,以获得兰姆波特性。因此,诸如复合材料之类的层状结构能够以直接的方式进行分析。给出了所提出分析方法的通用框架以及应用实例。尽管这些实例基于弹性波传播的局部相互作用模拟方法,但所提出的方法学可轻松应用于其他方法(例如有限元法)。该方法还可用于研究离散化参数对频散曲线估计的影响。