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Nonlinear dynamics of an origami wheel with shape memory alloy actuators

机译:带形状记忆合金致动器的折纸轮的非线性动力学

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摘要

Origami generates three-dimensional structures from two-dimensional sources and is inspiring engineers to design systems related to different applications as robotics, biomedical and aerospace engineering. The use of smart materials increases the range of applicability of origami systems exploiting adaptive behavior. In this regard, shape memory alloy (SMA) actuators are being used to promote geometrical changes in origami structures. This paper deals with the nonlinear dynamics of an origami wheel with SMA actuators. The origami wheel has strong geometric and constitutive nonlinearities presenting a complex dynamical response. Symmetry assumptions related to waterbomb folding pattern allow one to develop a single degree of freedom reduced-order model system that describes origami dynamics. Based on that, numerical simulations are carried out representing different operational conditions presenting a general comprehension of the origami dynamical response. Origami complex behavior is of concern showing chaotic motions and strong parameter sensitivity. (C) 2019 Elsevier Ltd. All rights reserved.
机译:折纸从二维来源产生三维结构,并鼓励工程师设计与不同应用相关的系统作为机器人,生物医学和航空航天工程。使用智能材料的使用增加了折纸系统利用自适应行为的适用性。在这方面,形状记忆合金(SMA)致动器用于促进折纸结构的几何变化。本文涉及带SMA执行器的折纸轮的非线性动力学。折纸轮具有强大的几何和本构非线性,呈现复杂的动态响应。与水上折叠模式相关的对称假设允许人们开发一个描述折纸动态的单一自由度阶数模型系统。基于此,执行数值模拟,其代表不同的操作条件,其呈现折纸动态响应的一般理解。折纸复杂行为是令人担忧的混乱动作和强大的参数灵敏度。 (c)2019年elestvier有限公司保留所有权利。

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