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The influence of the micro-topology on the phononic band gaps in 2D porous phononic crystals

机译:微观拓扑对二维多孔声子晶体中声子带隙的影响

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The phononic band structures of two-dimensional metal porous phononic crystals consisting of different lattices (the lattice structures transformed from square to triangle). and pores of various shapes (circle, square, and triangle) and sizes are studied numerically by using Finite Difference Time Domain (FDTD) scheme. It is found that for x-y mode waves, the absolute phononic band gaps (PBGs) rely more on the pore shapes. For triangular pores, the PBG is opening in the whole process of the lattice transformation, and for circular ones, the PBG is closed after a certain lattice structure. No PBG forms in the crystals with square pores. The PBG can be varied by adjusting the size of the pores. But a critical porosity exists for the opening of the PBG. (C) 2008 Elsevier B.V. All rights reserved.
机译:由不同晶格组成的二维金属多孔声子晶体的声带结构(晶格结构从正方形变为三角形)。使用有限时域(FDTD)方案对各种形状(圆形,正方形和三角形)和尺寸的孔进行了数值研究。发现对于x-y模式波,绝对声子带隙(PBG)更加依赖于孔的形状。对于三角形孔,PBG在整个晶格转变过程中都是打开的;对于圆形孔,PBG在一定的晶格结构之后是闭合的。在具有方孔的晶体中没有形成PBG。 PBG可以通过调整孔的大小来改变。但是,PBG的打开存在严重的孔隙率。 (C)2008 Elsevier B.V.保留所有权利。

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