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Influence of Intersected Fold-Lines on Thin-Folded Membranes

机译:交叉折线对薄折叠膜的影响

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Concept of solar sailing which uses solar energy to propel a spacecraft is becoming popular as a low-cost spacecraft propulsion system. These solar sails require larger area while in operation and are stored in the limited space available in launch vehicles by introducing series of fold-lines. Therefore, precise prediction of deployment behaviour is important in designing tear-free deployment configurations. Physical testing of such applications is difficult due to presence of gravity, air drag and friction which prevent such structures from deploying on Earth. Hence deployment of solar sails has to be tested under vacuum and zero gravity conditions. Virtual simulations are being used to overcome these challenges. This paper attempts to understand deployment behaviour of highly compacted thin membranes and highlight the importance of incorporating fold-line properties in finite element modelling. The effects of membrane thickness and creased geometry for the deployment behaviour and deployment force were also studied through force–displacement relationship of the membrane opening. It is shown that the connection with rotational stiffness gives better idealization for the fold-line in virtual environment. Further it is evident that the deployment force and shape have a significant influence from membrane thickness and fold-line geometry.
机译:作为低成本的航天器推进系统,利用太阳能推动航天器的太阳能航行概念正变得越来越流行。这些太阳帆在操作时需要更大的面积,并且通过引入一系列折叠线而被存储在运载火箭可用的有限空间中。因此,对部署行为的精确预测对于设计无撕裂的部署配置非常重要。由于重力,空气阻力和摩擦力的存在,阻止了此类结构在地球上的部署,因此很难对此类应用进行物理测试。因此,必须在真空和零重力条件下测试太阳帆的展开。虚拟仿真正被用来克服这些挑战。本文试图了解高密度薄膜的展开行为,并强调了在有限元建模中纳入折线特性的重要性。还通过膜开口的力-位移关系研究了膜厚度和褶皱几何形状对展开行为和展开力的影响。结果表明,具有旋转刚度的连接为虚拟环境中的折线提供了更好的理想化。进一步明显的是,展开力和形状受到膜厚度和折线几何形状的显着影响。

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