论文标题
机械石墨烯中的零频角模式
Zero-frequency corner modes in mechanical graphene
论文作者
论文摘要
在不受限制的弹性体中,零固体频率的出现是由于人体纯粹翻译或旋转而没有结构变形的能力,这是一种预期的结果。文献的最新进展推动了这种常规定义,并证明了超越典型的零频模式的特性,例如在结构边缘或角落的变形定位。在本文中,带有弹性粉底的弹簧质量蜂窝状晶格(在此称为机械石墨烯)旨在展示零频的角模式。拟议设计中的一个核心元素是弹性基础,通过复杂的调制弹性调节的刚度,可以实现零频角模式。事实证明,这些模式的起源是由双原子链的动力学起源,该链链由带有自由边界的机械石墨烯的单个条制成。考虑了具有游离边界的有限机械石墨烯的不同形状,导致角模式表现的条件与角落角度和支撑它们的弹簧的刚度相关。最后,简要讨论了缺陷对零频率角模式的影响,证明了针对远离角落的结构缺陷的鲁棒性。
In an unconstrained elastic body, emergence of zero natural frequencies is an expectable outcome on account of the body's ability to purely translate or rotate with no structural deformation. Recent advances in literature have pushed such conventional definition and demonstrated properties transcending typical zero-frequency modes, such as localization of deformation at a structural edge or corner. In this paper, a spring-mass honeycomb lattice with an elastic foundation, referred to here as mechanical graphene, is designed to exhibit zero-frequency corner modes. A central element in the proposed design is the elastic foundation, and the zero-frequency corner modes are enabled by intricate modulation of the elastic-foundation's stiffness. These modes are proven to have their origins from the dynamics of a diatomic chain, made from a single strip of the mechanical graphene with free boundaries. Different shapes of finite mechanical graphene with free boundaries are considered and conditions leading to the manifestation of corner modes are correlated with the angle of corners and stiffness of springs supporting them. Finally, the effect of defects on zero-frequency corner modes is briefly discussed, demonstrating robustness against structural defects that are distant from corners.