A Review on Origami Simulations: From Kinematics, To Mechanics, Toward Multiphysics

A Review on Origami Simulations: From Kinematics, To Mechanics, Toward Multiphysics
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折纸模拟综述:从运动学,到力学,再到多物理场

DOI:
10.1115/1.4055031
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发表时间:
2022
影响因子:
14.3
通讯作者:
Filipov, Evgueni T.
Filipov, Evgueni T.
中科院分区:
工程技术1区
文献类型:
--
作者:
Zhu, Yi;Schenk, Mark;Filipov, Evgueni T.

文献摘要

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以折纸为灵感的系统在创造结构和设备方面具有吸引力,这些结构和设备具有可调特性、多功能、高比例封装能力、易于制造和许多其他有利特性。在过去的几十年里,该社区开发了各种模拟技术来分析折纸系统的运动学运动、机械特性和多物理特性。这些不同的模拟技术是根据不同的假设制定的,并且通常是为特定的折纸设计量身定做的。因此,系统地回顾折纸模拟技术的最新进展是很有价值的。本文介绍了不同的折纸模拟方法,讨论了它们的优缺点,并指出了不同模拟技术的潜在应用场景。这项工作中提出的材料旨在帮助折纸研究人员更好地理解不同折纸模拟技术中的公式和潜在假设,从而能够选择和开发适当的折纸模拟。最后,我们展望了折纸模拟领域未来的挑战。
Origami-inspired systems are attractive for creating structures and devices with tunable properties, multiple functionalities, high-ratio packaging capabilities, easy fabrication, and many other advantageous properties. Over the past decades, the community has developed a variety of simulation techniques to analyze the kinematic motions, mechanical properties, and multiphysics characteristics of origami systems. These various simulation techniques are formulated with different assumptions and are often tailored to specific origami designs. Thus, it is valuable to systematically review the state-of-the-art in origami simulation techniques. This review presents the formulations of different origami simulations, discusses their strengths and weaknesses, and identifies the potential application scenarios of different simulation techniques. The material presented in this work aims to help origami researchers better appreciate the formulations and underlying assumptions within different origami simulation techniques, and thereby enable the selection and development of appropriate origami simulations. Finally, we look ahead at future challenges in the field of origami simulation.