首页> 外文会议>Proceedings of the ASME Design Engineering Division 2003 >BAND-GAP ENGINEERING OF ELASTIC WAVEGUIDES USING PERIODIC MATERIALS
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BAND-GAP ENGINEERING OF ELASTIC WAVEGUIDES USING PERIODIC MATERIALS

机译:周期材料的弹性带隙工程

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Within periodically heterogeneous materials, wave scattering takes place across constituent material interfaces in such a way that an overall wave attenuation effect arises at certain frequency ranges known as band gaps. This phenomenon can be utilized in developing structures with tailored dynamic characteristics. In this work, periodic materials are used to synthesize elastic waveguides within bounded structures. The underlying local-global design process is described, and the effect of the number of periodic cells used to form the guide "wall" is studied. Using forced vibration analysis, it is shown that with only three or four periodic unit cells, the desired wave attenuation capacity required to form a guide is attained.
机译:在周期性的异质材料中,波散射会在组成材料的界面上发生,从而在一定的频率范围内(称为带隙)会出现整体的波衰减效应。这种现象可用于开发具有定制动态特性的结构。在这项工作中,使用周期性材料来合成边界结构内的弹性波导。描述了底层的局部全局设计过程,并研究了用于形成引导“墙”的周期单元数的影响。使用强制振动分析表明,只有三个或四个周期性单位晶胞,才能达到形成波导所需的所需波衰减能力。

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