Modeling and Prototyping of Self-Folding Origami Structure

J. Jovanova, Simona Domazetovska, V. Changoski
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引用次数: 1

Abstract

Inspired by the spring blossoms of tulips and origami engineering, we have designed a monolithic self-deployable structure with the ability to fold (close) and unfold (open). The focus of this paper is the 3D design and prototyping of a self-folding origami structure actuated by shape memory alloys (SMAs). SMA actuators, spring and wires, provide controllable actuation based on the simplicity of their design and the shape memory effect. In mechanical engineering, the art of origami provides a novel approach for compliant mechanisms devices enabling relative movement between the components with reduction of the number of parts. The self-folding origami structures can be used in many applications for volume reduction in packaging and space engineering. Additive manufacturing technologies enable easy and fast prototyping of the monolithic structure. The geometry of the structure and the integration of smart active materials within the structure enable the design to achieve complete self-folding.
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自折叠折纸结构的建模与原型设计
受郁金香春花和折纸工程的启发,我们设计了一个具有折叠(闭合)和展开(打开)能力的单片自展开结构。本文研究了由形状记忆合金驱动的自折叠折纸结构的三维设计和原型制作。SMA致动器,弹簧和导线,基于其设计的简单性和形状记忆效应提供可控的致动。在机械工程中,折纸艺术为柔性机构装置提供了一种新颖的方法,使部件之间的相对运动能够减少零件的数量。自折叠折纸结构可用于包装和空间工程中体积减小的许多应用。增材制造技术使单片结构的原型制作变得容易和快速。结构的几何形状和结构内智能活性材料的集成使设计能够实现完全的自折叠。
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