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ANALYSIS OF CROSS FOLDING AN ELASTIC SHEET

机译:交叉折叠弹性板的分析

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摘要

Large antenna reflectors used in space have to be folded before launching. Silicone rubber is commonly used as antenna material due to its ability to maintain a shape without external supports upon deployment. However, localized vertices could appear during the folding process, which might lead to material yielding and unrecoverable deformation after deployment. In this paper, the cross folding process of a thin elastic sheet, a common folding method in packaging a reflective membrane, was studied numerically with the aim of eliminating material failure in the sheet. The deformation, stress distribution, and peak stress of the sheet and the dependency of those properties on geometrical parameters were systematically investigated. Based on these studies, two methods, i.e., central hole method and central slit method, were explored to reduce the peak stress caused by cross folding. The results showed that a central slit parallel to the first folding crease was the most effective in reducing the peak stress without causing significant damage to the antenna.
机译:在发射之前,空间中使用的大天线反射器必须折叠。由于其在展开时维持没有外部支撑的形状,硅橡胶通常用作天线材料。然而,折叠过程中可以出现局部顶点,这可能导致部署后的材料屈服和不可恢复的变形。本文研究了薄弹性片的交叉折叠工艺,在数值上进行了薄弹性片的普通折叠方法,以消除片材中的材料破坏。系统地研究了片材的变形,应力分布和峰值应力和这些性质对几何参数的依赖性。基于这些研究,探讨了两种方法,即中心孔法和中央狭缝方法,以降低由交叉折叠引起的峰值应力。结果表明,与第一折叠折痕平行的中央狭缝是最有效地降低峰值应力而不会导致天线的显着损坏。

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