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Numerical simulation of nonlinear elastic wave propagation in piecewise homogeneous media

机译:分段弹性均质介质中非线性弹性波传播的数值模拟

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Systematic experimental work [S. Zhuang, G. Ravichandran, D. Grady, J. Mech. Phys. Solids 51 (2003) 245-265] on laminated composites subjected to high velocity impact loading exhibits the dispersed wave field and the oscillatory behavior of waves with respect to a mean value. Such a behavior is absent in homogeneous solids. An approximate solution to the plate impact in layered heterogeneous solids has been developed in [X. Chen, N. Chandra, A.M. Rajendran, Int. J. Solids Struct. 41 (2004) 4635-4659]. The influence of the particle velocity on many process characteristics was demonstrated. Based on earlier results [A. Berezovski, J. Engelbrecht, G.A. Maugin, Arch. Appl. Mech. 70 (2000) 694—706], numerical simulations of one-dimensional wave propagation in layered nonlinear heterogeneous materials have been performed. The formulated problem follows a conventional experimental configuration of a plate impact. An extension of the high-resolution finite volume wave-propagation algorithm [R.J. LeVeque, Finite Volume Methods for Hyperbolic Problems, Cambridge University Press, 2002] is used. The speed of sound depends nonlinearly on a current stress value in each layer but also on the mismatch properties of layers. Results of numerical simulations capture the experimental data rather well.
机译:系统实验工作[S.庄,G。Ravichandran,D。格雷迪,J。机甲。物理经受高速冲击载荷的层压复合材料上的固体51(2003)245-265]显示出分散的波场和相对于平均值的波的振荡行为。在均质固体中不存在这种行为。在[X. Chen,N.Chandra,A.M.拉杰兰(Rajendran) J.固体结构。 41(2004)4635-4659]。证明了粒子速度对许多工艺特性的影响。根据早期结果[A. Berezovski,J.Engelbrecht,G.A。莫金,拱门。应用机甲70(2000)694-706],已经对层状非线性异质材料中的一维波传播进行了数值模拟。提出的问题遵循板碰撞的常规实验配置。高分辨率有限体积波传播算法的扩展[R.J. LeVeque,双曲问题的有限体积方法,剑桥大学出版社,2002]。声速非线性地取决于每一层中的当前应力值,还取决于层的失配特性。数值模拟的结果很好地捕获了实验数据。

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