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CONCEPTUAL DESIGN OF AN EXPERIMENT FOR THE INTERNATIONAL SPACE STATION ABOUT SHAPE MEMORY COMPOSITE IN SPACE ENVIRONMENT

机译:空间环境中塑造记忆复合材料的国际空间站实验的概念设计

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Shape memory polymers (SMP) and composites (SMPC) may be used for many applications in Space, from self-deployable structures (such as solar sails, panels, shields, booms and antennas), to grabbing systems for Space debris removal, up to new-concept actuators for telescope mirror tuning. Experiments on the International Space Station are necessary for testing prototypes in relevant environment, above all for the absence of gravity which affects deployment of slender structures but also to evaluate the aging effects of the Space environment. In fact, several aging mechanisms are possible, from polymer cracking to cross-linking and erosion, and different behaviors are expected as well, from consolidating the temporary shape to composite degradation. Evaluating the possibility of shape recovery because of sun exposure is another interesting point. In this study, a possible experiment on the ISS is shown with the aim of evaluating the aging effect of Space on material performances. The sample structure is described as well as the testing strategy.
机译:形状记忆聚合物(SMP)和复合材料(SMPC)可用于空间中的许多应用,从自展结构(如太阳能帆,面板,屏蔽,臂和天线),抓住空间碎屑去除系统,最多用于望远镜镜镜调谐的新概念执行器。在有关环境中测试原型的原型需要对国际空间站进行实验,以至于没有引力,影响纤细结构的部署,也可以评估空间环境的老化效果。实际上,几种老化机构可以从聚合物裂缝到交联和侵蚀,并且也预期不同的行为,从巩固临时形状以复合降解。评估由于太阳曝光而形状恢复的可能性是另一个有趣的点。在这项研究中,显示了在ISS上的可能实验,目的是评估空间对材料性能的老化效果。描述样品结构以及测试策略。

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