论文标题
使用层次结构在周期性帧中增强频带隙
Band gap enhancement in periodic frames using hierarchical structures
论文作者
论文摘要
近年来,对具有较大频率频带差异的轻质音调晶体和弹性超材料的新颖设计的追求已成为近年来的重大挑战。在这种情况下,晶格型材料代表了一种有前途的解决方案,提供了轻巧的特性,也提供了定制机械和动态特性的重要可能性。此外,晶格结构还可以产生分层体系结构,其中可以将具有不同特征长度尺度的基本本构元组合在一起。在这项工作中,我们提出了一个由基于蜘蛛网的体系结构启发的空间框架制成的1d和2d-periodic语音晶体。具体而言,提出并利用基于可变横截面的框架组合的层次平面结构,以相对于其非层次的对应物,以打开和增强带隙。我们的结果表明,层次结构可有效扩大现有的频段差距,并在非层次结构中打开新的完整频段差距。
The quest for novel designs for lightweight phononic crystals and elastic metamaterials with wide lowfrequency band gaps has proven to be a significant challenge in recent years. In this context, lattice-type materials represent a promising solution, providing both lightweight properties and significant possibilities of tailoring mechanical and dynamic properties. Additionally, lattice structures also enable the generation of hierarchical architectures, in which basic constitutive elements with different characteristic length scales can be combined. In this work, we propose 1D- and 2D-periodic phononic crystals made of spatial frames inspired by a spider web-based architecture. Specifically, hierarchical plane structures based on a combination of frames with a variable cross-section are proposed and exploited to open and enhance band gaps with respect to their non-hierarchical counterparts. Our results show that hierarchy is effective in broadening existing band gaps as well as opening new full band gaps in non-hierarchical periodic structures.