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Assessment on speed and amplitude of elastic wave propagation in square-packed circular honeycombs

机译:方形包装圆形蜂窝中弹性波传播速度和幅度的评估

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摘要

In contrast to the dynamic response characteristics, few propagation characteristics of elastic waves have been described on cellular materials, to date. In view of the development trend of emerging metamaterials on multi-functional, detailed characterization of elastic wave in honeycombs becomes an important task in order to assess their performances. This study investigates the propagation characteristics of elastic wave in square-packed circular honeycombs through combining theoretical analysis and numerical simulation. We also establish a one-dimensional circular chain model to discuss the influence mechanism of impact velocities, material parameters, and structural parameters on the elastic wave propagation characteristics in square-packed circular honeycombs. The influence relations are quantified and a semi-empirical theoretical expression for assessing characterization is presented, which extends theory of elastic wave propagation speed from solid materials to square-packed circular honeycombs. The assessment equation fully describes the elastic wave propagation speed and stress amplitude variation with location during propagation in square-packed circular honeycombs, and the results are consistent with the experimental data from the literature. The findings herein are aimed at providing an assessment equation with simple form for engineering applications easily and providing theoretical basis for elastic wave control and multi-functional combination design of metamaterials.
机译:与动态响应特性相比,迄今为止已经在蜂窝材料上描述了一些弹性波的传播特性。鉴于新兴超材料的发展趋势,蜂窝中弹性波的详细表征成为重要任务,以评估其性能。本研究通过组合理论分析和数值模拟来研究方形包装圆形蜂窝中弹性波的传播特性。我们还建立了一维循环链模型,讨论了冲击速度,材料参数和结构参数对方形填充圆形蜂窝中弹性波传播特性的影响机理。呈现影响关系,提出了用于评估表征的半经验理论表达,其从固体材料延伸到方形填充圆形蜂窝的弹性波传播速度。评估方程完全描述了在方形填充圆形蜂窝中的传播期间具有位置的弹性波传播速度和应力幅度变化,结果与来自文献的实验数据一致。本文的发现旨在提供具有简单形式的评估方程,用于容易和为超材料的弹性波控制和多功能组合设计提供理论依据。

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