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PNAS Plus: Theoretical search for heterogeneously architected 2D structures

机译:PNAS Plus:理论搜索异构架构的2D结构

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摘要

Architected 2D structures are of growing interest due to their unique mechanical and physical properties for applications in stretchable electronics, controllable phononic/photonic modulators, and switchable optical/electrical devices; however, the underpinning theory of understanding their elastic properties and enabling principles in search of emerging structures with well-defined arrangements and/or bonding connections of assembled elements has yet to be established. Here, we present two theoretical frameworks in mechanics—strain energy-based theory and displacement continuity-based theory—to predict the elastic properties of 2D structures and demonstrate their application in a search for novel architected 2D structures that are composed of heterogeneously arranged, arbitrarily shaped lattice cell structures with regulatory adjacent bonding connections of cells, referred to as heterogeneously architected 2D structures (HASs). By patterning lattice cell structures and tailoring their connections, the elastic properties of HASs can span a very broad range from nearly zero to beyond those of individual lattice cells by orders of magnitude. Interface indices that represent both the pattern arrangements of basic lattice cells and local bonding disconnections in HASs are also proposed and incorporated to intelligently design HASs with on-demand Young’s modulus and geometric features. This study offers a theoretical foundation toward future architected structures by design with unprecedented properties and functions.
机译:由于2D结构具有独特的机械和物理特性,可用于可伸缩电子设备,可控声子/光子调制器和可切换光/电设备中,因此受到越来越多的关注。然而,尚需建立理解其弹性特性并启用原理以寻找具有明确定义的布置和/或组装元件的粘结连接的新兴结构的基础理论。在这里,我们介绍了力学中的两个理论框架-基于应变能的理论和基于位移连续性的理论-来预测2D结构的弹性特性,并演示它们在寻找由异质排列,任意组成的新颖2D结构中的应用形状规则的晶格单元结构,具有规则的相邻单元粘合连接,称为异质结构2D结构(HAS)。通过对晶格单元结构进行构图并调整其连接,HAS的弹性范围可以从几乎零到超出单个晶格单元的弹性范围大几个数量级。还提出了既代表基本晶格单元的图案排列又代表HAS中局部键合断开的界面指数,并将其结合到具有按需杨氏模量和几何特征的HAS智能设计中。这项研究通过具有前所未有的性能和功能的设计,为未来的建筑结构提供了理论基础。

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