Nonlinear dynamics and chaos of a waterbomb origami unit-cell considering different symmetry conditions

IF 1.9 4区 工程技术 Q3 MECHANICS Mechanics Research Communications Pub Date : 2024-01-22 DOI:10.1016/j.mechrescom.2023.104233
Guilherme V. Rodrigues, Marcelo A. Savi
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Abstract

Origami has been inspirating the development of novel engineering systems and structures. The traditional waterbomb folding pattern is one of the most widely employed pattern and its description from the unit-cell is related to multiple degrees of freedom (DoF) systems. This work investigates the nonlinear dynamics and chaos of a waterbomb origami through its unit-cell, considering different symmetry hypotheses that simplify its kinematics, resulting in 1-DoF and 2-DoF dynamical systems. The investigation starts with a kinematic analysis of the waterbomb folding pattern and afterward, a reduced-order dynamical model with lumped masses on vertices and torsional springs on creases is built. Symmetry assumptions are discussed, identifying the differences induced by either geometrical nonlinearities or external stimuli. Numerical simulations are carried out showing details of the system nonlinear dynamics, showing intricate situations such as chaos. The comparison among different symmetry conditions provides a qualitative picture of the system dynamics, showing significative differences and highlighting the importance of the origami mechanical behavior comprehension, its modeling and nonlinear dynamics for a proper design of origami-inspired systems.

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考虑不同对称条件的水弹折纸单元格的非线性动力学与混沌
折纸一直是开发新型工程系统和结构的灵感源泉。传统的水弹折纸图案是应用最广泛的图案之一,其单元格描述与多自由度(DoF)系统有关。本研究通过水弹折纸的单元格研究其非线性动力学和混沌,考虑了简化其运动学的不同对称假设,从而得出 1-DoF 和 2-DoF 动力系统。研究首先对水弹折纸模式进行运动学分析,然后建立一个顶点上有块状质量、折痕上有扭转弹簧的低阶动力学模型。讨论了对称性假设,确定了几何非线性或外部刺激引起的差异。进行的数值模拟显示了系统非线性动力学的细节,呈现出混沌等复杂情况。不同对称条件之间的比较提供了系统动力学的定性图像,显示了显著的差异,突出了理解折纸机械行为、其建模和非线性动力学对于正确设计折纸启发系统的重要性。
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来源期刊
CiteScore
4.10
自引率
4.20%
发文量
114
审稿时长
9 months
期刊介绍: Mechanics Research Communications publishes, as rapidly as possible, peer-reviewed manuscripts of high standards but restricted length. It aims to provide: • a fast means of communication • an exchange of ideas among workers in mechanics • an effective method of bringing new results quickly to the public • an informal vehicle for the discussion • of ideas that may still be in the formative stages The field of Mechanics will be understood to encompass the behavior of continua, fluids, solids, particles and their mixtures. Submissions must contain a strong, novel contribution to the field of mechanics, and ideally should be focused on current issues in the field involving theoretical, experimental and/or applied research, preferably within the broad expertise encompassed by the Board of Associate Editors. Deviations from these areas should be discussed in advance with the Editor-in-Chief.
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