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Mechanical and thermal properties of microchannel insulating foams comprising a multifunctional epoxy/polyhedral oligomeric silsesquioxane nanocomposite

机译:微通道绝缘泡沫的机械和热性能,包括多官能环氧树脂/多面体低聚Silsesquioxane纳米复合材料

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摘要

Polymer matrix composites are well suited for applications in space environments due to their excellent specific strengths and moduli, thermal properties, and tailorability. In efforts to further improve their performance, additives based on functionalized polyhedral oligomeric silsesquioxanes (POSS) have been successfully shown to increase long-term durability by improving Atomic Oxygen (AO) and UV radiation resistance, as well as enhance both the thermal and mechanical properties of the polymer-based structure. In the present work, an epoxy-functionalized POSS has been used as a low-percentage additive in the epoxy matrix structure of microchannel foams, resulting in improved mechanical properties and thermal stability without significantly increasing the resin viscosity, final bulk density, or thermal conductivity of the final foam structures. These nanocomposite POSS resins are also expected to display increased AO and UV longevity in space applications, allowing these multifunctional materials to not only achieve high-performance capabilities but also be economically suitable for devices used in space environments.
机译:聚合物基复合材料由于其优异的比强度和模量、热性能和可裁剪性,非常适合在空间环境中应用。为了进一步改善其性能,基于功能化多面体低聚倍半硅氧烷(POSS)的添加剂已成功证明,通过提高原子氧(AO)和抗紫外线辐射性,以及增强聚合物结构的热性能和机械性能,可提高长期耐久性。在本研究中,环氧官能化POSS已被用作微通道泡沫的环氧基结构中的低百分比添加剂,从而在不显著增加树脂粘度、最终体积密度或最终泡沫结构的热导率的情况下改善机械性能和热稳定性。预计这些纳米复合POSS树脂在空间应用中的AO和UV寿命也会增加,这使得这些多功能材料不仅能够实现高性能,而且在经济上也适用于空间环境中使用的设备。

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