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首页> 外文期刊>Physica, B. Condensed Matter >Ultrawide band gap design of phononic crystals based on topological optimization
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Ultrawide band gap design of phononic crystals based on topological optimization

机译:基于拓扑优化的帖子晶体超广域带隙设计

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In this paper, based on the combined finite element method and bidirectional evolutionary structural optimization algorithm, we perform the topological optimization of phononic crystals to obtain ultrawide band gap between two special adjacent bands for both the in-plane and out-of-plane wave modes. The influences of matrix/scatter materials, material volume fraction, and initial topological design on the unit cell optimization are discussed in detail. The results show that the strategy proposed in this paper is effective and efficient to obtain better optimization results under the similar optimization condition, solutions with ultrawide band gaps can be easily obtained within 30 iterations. Several new patterns for phononic band gap crystals with optimized band gaps are presented. This work provides useful guidance in topological optimization design of phononic crystals.
机译:本文基于组合的有限元方法和双向进化结构优化算法,我们执行声子晶体的拓扑优化,以获得两种特殊相邻频段之间的超宽度带隙,包括平面内和平面外波模式 。 详细讨论了基质/散射材料,材料体积分数和初始拓扑设计对单元电池优化的影响。 结果表明,本文提出的策略是有效且有效的,以获得更好的优化结果,在类似的优化条件下,可以在30次迭代中容易地获得具有超空带隙差距的溶液。 提出了具有优化带间隙的张素带隙晶体的几种新图案。 这项工作提供了封晶晶体拓扑优化设计的有用指导。

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