Band Gap Mechanism and Design of a New Type of Six-Ligament Chiral Structure

IF 1.7 4区 物理与天体物理 Acoustics Australia Pub Date : 2021-08-27 DOI:10.1007/s40857-021-00249-y
Yajun Xin, Ran Wang, Yongtao Sun, Qian Ding, Shuliang Cheng
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引用次数: 2

Abstract

Achieving low-frequency and wide band gaps with a simple and small structure can be a challenging task. In this paper, a new type of six-ligament chiral structure with simple geometric parameters and smaller geometric dimensions is designed. The side length of the chiral unit cell is only 20 mm. The proposed structure and the design idea it embodies may be of assistance to deal with the challenges mentioned above. A numerical simulation is performed to analyze the relationship between the geometric parameters and band gap characteristics of the structure. Based on this relationship, a geometrically optimized structure is proposed and the simulation results show it has better band gap characteristics which can achieve low-frequency and wide band gaps. Moreover, frequency response analysis is used to verify the accuracy of the simulation. Finally, the band gap mechanism is analyzed by analyzing the mode diagrams of the structure.

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一种新型六韧带手性结构的带隙机理及设计
用简单小巧的结构实现低频和宽带隙可能是一项具有挑战性的任务。本文设计了一种几何参数简单、几何尺寸较小的新型六韧带手性结构。手性晶胞的边长仅为20mm。所提出的结构及其所体现的设计思想可能有助于应对上述挑战。通过数值模拟分析了结构的几何参数与带隙特性之间的关系。基于这种关系,提出了一种几何优化结构,仿真结果表明,该结构具有较好的带隙特性,可以实现低频带隙和宽频带隙。此外,通过频率响应分析验证了仿真的准确性。最后,通过对结构模式图的分析,对带隙机制进行了分析。
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来源期刊
Acoustics Australia
Acoustics Australia ACOUSTICS-
自引率
5.90%
发文量
24
期刊介绍: Acoustics Australia, the journal of the Australian Acoustical Society, has been publishing high quality research and technical papers in all areas of acoustics since commencement in 1972. The target audience for the journal includes both researchers and practitioners. It aims to publish papers and technical notes that are relevant to current acoustics and of interest to members of the Society. These include but are not limited to: Architectural and Building Acoustics, Environmental Noise, Underwater Acoustics, Engineering Noise and Vibration Control, Occupational Noise Management, Hearing, Musical Acoustics.
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