论文标题
具有广泛可调的机械特性和声学带盖的磁机械超材料
Magneto-Mechanical Metamaterials with Widely Tunable Mechanical Properties and Acoustic Bandgaps
论文作者
论文摘要
机械超材料是构建的人造材料,允许自然界观察到独特的行为,使它们成为广泛应用的有前途的候选人。现有的超材料缺乏可调节性,因为制造后只能在有限的程度上更改其性能。在本文中,我们提出了一种新的磁机械超材料,该材料通过新颖的变形模式分支概念允许进行出色的可调性。这种新型超材料的结构采用硬磁性软活动材料采用了不对称的关节设计,该材料允许在相反方向的磁场下两种不同的致动模式(弯曲和折叠)。随后的机械力应用导致变形模式分支,其中超材料结构转变为两个截然不同的形状,它们表现出非常不同的变形,并在机械刚度和声学带盖等性能中具有出色的可调性。此外,这种超材料设计可以与具有全局刚度可调性的磁性记忆聚合物结合在一起,这进一步实现了声学行为的全局变化。磁性和机械作用以及形状记忆效应的组合,将无与伦比的可调特性与新的超材料范式相结合。
Mechanical metamaterials are architected manmade materials that allow for unique behaviors not observed in nature, making them promising candidates for a wide range of applications. Existing metamaterials lack tunability as their properties can only be changed to a limited extent after the fabrication. In this paper, we present a new magneto-mechanical metamaterial that allows great tunability through a novel concept of deformation mode branching. The architecture of this new metamaterial employs an asymmetric joint design using hard-magnetic soft active materials that permits two distinct actuation modes (bending and folding) under opposite-direction magnetic fields. The subsequent application of mechanical forces leads to the deformation mode branching where the metamaterial architecture transforms into two distinctly different shapes, which exhibit very different deformations and enable great tunability in properties such as mechanical stiffness and acoustic bandgaps. Furthermore, this metamaterial design can be incorporated with magnetic shape memory polymers with global stiffness tunability, which further enables the global shift of the acoustic behaviors. The combination of magnetic and mechanical actuations, as well as shape memory effects, imbue unmatched tunable properties to a new paradigm of metamaterials.