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Smart Soft Composite: An Integrated 3D Soft Morphing Structure Using Bend-Twist Coupling of Anisotropic Materials

机译:智能软复合材料:使用各向异性材料的弯扭耦合的集成3D软变形结构

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摘要

Traditionally, hard or high-stiffness materials are used to achieve morphing but only with limited magnitudes of deformation. Soft and low-stiffness materials are required to implement soft morphing with large deformations. In this paper, a novel concept for soft morphing structures that makes use of smart soft composites (SSC) is introduced. These materials have the following characteristics: 1) Large deformations from smart actuators and soft anisotropic materials embedded in a soft matrix material, 2) Utilization of the coupling effect for in-plane/bending/twisting deformations of the morphing structure to achieve complex morphed shapes, 3) Semi-automated three-dimensional (3D) fabrication via 3D printing processes. Classical lamination theory is used to express in-plane deformation, out-of-plane deformation, and twisting and coupling of these deformations. 3D-printed-scaffold and/or weaving methods can be used to fabricate anisotropic materials for SSCs. An integrated SSC in a cantilever shape is fabricated using SMA (Shape memory alloy)/ABS/PDMS and tested as an example to show large deformation with bend/twist coupling effect.
机译:传统上,硬或高刚度的材料用于实现变形,但变形幅度有限。需要软而低刚度的材料来实现具有大变形的软变形。本文介绍了利用智能软复合材料(SSC)的软变形结构的新概念。这些材料具有以下特性:1)智能执行器和嵌入软基质材料中的软各向异性材料引起的大变形,2)利用变形结构的面内/弯曲/扭曲变形的耦合效应来获得复杂的变形形状,3)通过3D打印过程进行半自动3D制造。经典层压理论用于表示面内变形,面外变形以及这些变形的扭曲和耦合。 3D打印支架和/或编织方法可用于制造SSC的各向异性材料。使用SMA(形状记忆合金)/ ABS / PDMS制造出悬臂形状的集成SSC,并进行了示例测试,以显示具有大的弯曲/扭转耦合效应的变形。

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