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Acoustic metamaterial behavior of three-dimensional periodic architectures assembled by robocasting

机译:通过机器人广播组装的三维周期结构的声学超材料行为

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Ultrasonic measurements combined with numerical modelling are used to analyze the elastic and acoustic properties of morphologically complex ceramic bodies assembled by the Robocasting technique. It is shown that the micromechanics of the robocast periodic scaffolds leads to several metamaterial-like wave propagation phenomena. Besides the expectable prominent elastic anisotropy and the frequency band structure resulting from the periodicity of the scaffold, a wave-mode mixing is observed that disables the conventional distinguishing between quasi-longitudinal, quasi-shear, and pure shear modes for propagation in the symmetry planes of the structure. This paper proves the capability of Robocasting, as a versatile three-dimensional (3D) printing method, to produce tailored acoustic metamaterials with very low damping and outstandingly strong acoustic anomalies.
机译:超声测量与数值建模相结合,用于分析通过Robocasting技术组装的形态复杂的陶瓷体的弹性和声学特性。结果表明,机器人周期性脚手架的微观力学导致了几种类似超材料的波传播现象。除了可以预期的突出的弹性各向异性和由脚手架的周期性产生的频带结构外,还观察到了一种波模混合,使常规的准纵向,准剪切和纯剪切模式无法在对称平面中传播,从而无法进行常规区分。结构。本文证明了Robocasting作为一种通用的三维(3D)打印方法,能够生产具有非常低的阻尼和非常强的声学异常的量身定制的声学超材料。

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