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首页> 外文期刊>International Journal of Engineering Science >Rayleigh waves in micro-structured elastic systems: Non-reciprocity and energy symmetry breaking
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Rayleigh waves in micro-structured elastic systems: Non-reciprocity and energy symmetry breaking

机译:瑞利波在微结构的弹性系统中:非互惠和能量对称断裂

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Rayleigh waves are analysed in elastic lattices incorporating inertial devices that couple in-plane displacements. The vector problems of elasticity for a triangular lattice and its long-wavelength/low-frequency continuum approximation are considered. The analytical procedure for the derivation of the Rayleigh dispersion relation is fully detailed and, remarkably, explicit solutions for the Rayleigh waves for both the discrete and continuous systems are found. The dispersion at low wavenumbers and the softening induced by the presence of in-plane inertial coupling are shown. Despite the symmetry of the dispersion curves with respect to the wavenumber, the introduction of the inertial coupling breaks the symmetry of the eigenmodes and makes the system non-reciprocal. Such an uncommon effect is demonstrated in a set of numerical computations, where a point force applied on the boundary generates surface and bulk waves that do not propagate symmetrically from the source. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在掺入面内位移的惯性装置的弹性晶格中分析了瑞利波。考虑了三角形格子弹性的矢量问题及其长波长/低频连续近似。瑞利色散关系推导的分析过程是完全详细的,并且可以显着地,找到用于双离散和连续系统的瑞利波的显式解决方案。示出了低挥虫物处的分散和通过面内惯性耦合引起的软化。尽管对波数具有色散曲线的对称性,但是惯性耦合的引入破坏了特征幅度的对称性,并使系统不倒数。在一组数值计算中证明了这种不常见的效果,其中施加在边界上的点力产生表面和散波,其不会从源对称地对称地传播。 (c)2020 elestvier有限公司保留所有权利。

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