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The Effect of POSS Type on the Shape Memory Properties of Epoxy-Based Nanocomposites

机译:足以键入对环氧基纳米复合材料形状记忆特性的影响

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摘要

Thermally activated shape memory polymers (SMPs) can memorize a temporary shape at low temperature and return to their permanent shape at higher temperature. These materials can be used for light and compact space deployment mechanisms. The control of transition temperature and thermomechanical properties of epoxy-based SMPs can be done using functionalized polyhedral oligomeric silsesquioxane (POSS) additives, which are also known to improve the durability to atomic oxygen in the space environment. In this study, the influence of varying amounts of two types of POSS added to epoxy-based SMPs on the shape memory effect (SME) were studied. The first type contained amine groups, whereas the second type contained epoxide groups. The curing conditions were defined using differential scanning calorimetry and glass transition temperature (Tg) measurements. Thermomechanical and SME properties were characterized using dynamic mechanical analysis. It was found that SMPs containing amine-based POSS show higher Tg, better shape fixity and faster recovery speed, while SMPs containing epoxide-based POSS have higher crosslinking density and show superior thermomechanical properties above Tg. This work demonstrates how the Tg and SME of SMPs can be controlled by the type and amount of POSS in an epoxy-based SMP nanocomposite for future space applications.
机译:热活化的形状记忆聚合物(SMPs)可以在低温下记忆临时形状并在较高温度下返回它们的永久形状。这些材料可用于轻型和紧凑的空间展开机构。使用官能化多面体低聚倍半硅氧烷(POSS)添加剂可以进行转变温度和基于环氧的SMP的热机械性能的控制,这也已知改善空间环境中的原子氧的耐久性。在该研究中,研究了在形状记忆效应(中小企业)上对基于环氧树脂的SMPS的不同量的两种类型的影响。第一类含有胺基团,而第二种类型含有环氧化物基团。使用差示扫描量热法和玻璃化转变温度(TG)测量来定义固化条件。使用动态机械分析表征热机械和中小企业性质。发现SMPS含有基于胺的含量较高,更好的形状固定性和更快的恢复速度,而含有环氧化物的SMPS具有较高的交联密度,并显示出高于Tg的优异的热机械性能。这项工作展示了SMPS的TG和SME如何通过在基于环氧树脂的SMP纳米复合材料中的类型和量来控制,用于将来的空间应用。

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