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A novel methodology for solar sail opening employing shape memory alloy elements

机译:采用形状记忆合金元素的新型太阳帆开窗方法

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Solar sails exploit the radiation pressure as propulsion system. Sunlight is used to propel space vehicles by reflecting solar photons from a large and lightweight material, so that no propellant is required for primary propulsion. Kapton seems to be the most suitable material for the sail production and in the space missions till now activated booms as deployment systems have always been used. In this work, an innovative self-deploying system based on NiTi shape memory wires has been designed and manufactured in a small-scale prototype. As kapton has always been employed with a thin Al coating on the surface of the sail, commercial pure Al thin sheets with thin adhesive kapton have been used in order to simulate the sail. The attention has been focused, in the deployment experiments performed in the laboratory, on the effect of different heating methods and different pressure conditions on the activation times. The folded configuration chosen has been deployed in atmospheric condition and in low pressure condition (0.05bar) inside a oven connected to a rotary pump. For what concerns the heating methods, the attention has been focused on low-pressure oven ISCO NSV 9035 (1.3kW) and on halogen lamp (1kW) in order to obtain the self-deployment of the sail. Some comparisons between the two configurations in the different environmental conditions have been performed. In all cases, the full self-activation of the sail has been achieved.
机译:太阳帆利用辐射压力作为推进系统。太阳光用于通过反射来自大型轻质材料的太阳光子来推进太空飞行器,因此一次推进不需要推进剂。 Kapton似乎是最适合帆生产以及在太空飞行中使用的材料,因为一直使用展开系统,直到现在激活的吊杆。在这项工作中,基于NiTi形状记忆线的创新型自部署系统已经以小规模原型设计和制造。由于kapton一直使用在船帆表面上具有薄铝涂层的技术,因此已使用具有薄粘性kapton的商业纯铝薄板来模拟船帆。在实验室进行的展开实验中,注意力集中在不同的加热方法和不同的压力条件对活化时间的影响上。所选的折叠配置已在大气条件下和低压条件下(0.05bar)部署在与旋转泵相连的烤箱内。对于哪种加热方法,注意力集中在低压烤箱ISCO NSV 9035(1.3kW)和卤素灯(1kW)上,以实现帆的自我部署。已经在不同环境条件下对两种配置进行了一些比较。在所有情况下,帆都可以完全自我激活。

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