A High-Fidelity Dynamic Model for Origami Based on Iso-Parametric Absolute Nodal Coordinate Formulation (Iso-ANCF)

Jiayu Tao, Suyi Li
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引用次数: 1

Abstract

Origami-inspired structures and material systems have been used in many engineering applications because of their unique kinematic and mechanical properties induced by folding. However, accurately modeling and analyzing origami folding and the associated mechanical properties are challenging, especially when large deformation and dynamic responses need to be considered. In this paper, we formulate a high-fidelity model — based on the iso-parametric Absolute Nodal Coordinate Formulation (ANCF) — for simulating the dynamic folding behaviors of origami involving large deformation. The center piece of this new model is the characterization of crease deformation. To this end, we model the crease using rotational spring at the nodes. The corresponding folding angle is calculated based on the local surface normal vectors. Compared to the currently popular analytical methods for analyzing origami, such as the rigid-facet and equivalent bar-hinge approach, this new model is more accurate in that it can describe the large crease and facet deformation without imposing many assumptions. Meanwhile, the ANCF based origami model can be more efficient computationally compared to the traditional finite element simulations. Therefore, this new model can lay down the foundation for high-fidelity origami analysis and design that involve mechanics and dynamics.
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基于等参数绝对节点坐标公式(Iso-ANCF)的折纸高保真动态模型
折纸启发的结构和材料系统由于其独特的运动和机械特性而被用于许多工程应用。然而,准确地建模和分析折纸折叠及其相关的力学特性是具有挑战性的,特别是当需要考虑大变形和动态响应时。本文建立了一个基于等参数绝对节点坐标公式(ANCF)的高保真模型,用于模拟大变形折纸的动态折叠行为。这个新模型的核心部分是折痕变形的表征。为此,我们在节点处使用旋转弹簧对折痕进行建模。根据局部曲面法向量计算相应的折叠角。与目前流行的折纸分析方法(如刚性面法和等效杆铰法)相比,该模型可以更准确地描述大折痕和面变形,而不需要强加太多的假设。同时,与传统的有限元模拟相比,基于ANCF的折纸模型具有更高的计算效率。因此,这个新模型可以为涉及力学和动力学的高保真折纸分析和设计奠定基础。
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