Coupling mechanism of highly nonlinear solitary waves with damaged composite material plates

Jie Zhao, Y. Wang, Hao Wu, Miao Ruan
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Abstract

The coupling interaction between nonlinear solitary waves in one-dimensional granular chains and damaged composite material plates is considered. Based on Hertz contact law and meso-mechanical model of stiffness reduction of composite material plates when the fiber breakage is the main damage mode, the coupled differential equations of particle chains and damaged composite material plates are derived. By solving the differential equations with Runge–Kutta method to get the velocity and displacement curves of particles and analyzing the delays and amplitude ratios of reflected waves, it is found that the damage quantity, fiber volume fraction, and thickness of damaged composite material plates as well as gravity have an effect on solitary waves. The preliminary research results provide a theoretical basis for nondestructive testing of damaged composite material plates by using solitary waves.
高度非线性孤立波与损伤复合材料板的耦合机理
考虑了一维颗粒链中非线性孤立波与复合材料损伤板之间的耦合相互作用。基于赫兹接触定律和纤维断裂为主要损伤方式时复合材料板刚度降低细观力学模型,推导了颗粒链与复合材料板损伤的耦合微分方程。利用龙格-库塔法求解微分方程,得到颗粒的速度和位移曲线,分析反射波的延迟和振幅比,发现损伤量、纤维体积分数、损伤复合材料板的厚度以及重力对孤立波有影响。初步研究结果为利用孤立波对复合材料损伤板进行无损检测提供了理论依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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