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Origami-Inspired Folding of Thick, Rigid Panels

机译:折纸启发的厚实刚性面板的折叠

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To achieve power of 250 kW or greater, a large compression ratio of stowed-to-deployed area is needed. Origami folding patterns were used to inspire the folding of a solar array to achieve synchronous deployment; however, origami models are generally created for near-zero-thickness material. Panel thickness is one of the main challenges of origami-inspired design. Three origami-inspired folding techniques (flasher, square twist, and map fold) were created with rigid panels and hinges. Hinge components are added to the model to enable folding of thick, rigid materials. Origami models are created assuming zero (or near zero) thickness. When a material with finite thickness is used, the panels are required to bend around an increasingly thick fold as they move away from the center of the model.
机译:为了获得250 kW或更大的功率,需要较大的压缩比,以存放或部署区域。折纸折叠模式被用来激发太阳能电池板的折叠以实现同步部署。但是,折纸模型通常是为接近零厚度的材料创建的。面板厚度是折纸风格设计的主要挑战之一。使用刚性面板和铰链创建了三种折纸启发的折叠技术(闪光,正方形扭曲和地图折叠)。铰链组件已添加到模型中,可以折叠厚的刚性材料。创建折纸模型时假设厚度为零(或接近零)。当使用厚度有限的材料时,当面板从模型中心移开时,它们必须围绕越来越厚的折痕弯曲。

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    《NASA Tech Briefs》 |2014年第1期|41-41|共1页
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