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Analysis of atomic oxygen and ultraviolet exposure effects on cycloaliphatic epoxy resins reinforced with octa-functional POSS

机译:用Octa功能含量加固原子氧和紫外线暴露效应的分析

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摘要

In this study, novel nanocomposites were created by incorporation of Silsesquioxane containing eight glycidylether groups (octa-POSS) into a cycloaliphatic epoxy cured by an anhydride. The developed resin system, with different nanoparticle concentrations, was used on the outer layers of an ultra-thin CFRP structure in order to provide better environmental resistance to the environment of low Earth orbit (LEO) which was tested in a ground-simulation facility. The developed resins were subjected to space-like degrading factors and their response to corrosion, radiation and elevated temperatures was monitored by mass loss, together with measuring changes in surface chemistry (ATR-FTIR), functionality development (contact angle measurement and XPS), roughness (scanning laser microscopy) and morphology (SEM). The influence of increasing octa-POSS content on thermo-mechanical properties was measured with DMTA and the strength and modulus of elasticity were determined by flexural test. The addition of octa-POSS in any loading improves the environmental resistance, however, the most significant retention of mass and mechanical and surface properties after space-like exposure was observed in the 20 wt% octa-POSS reinforced cycloaliphatic epoxy. The results presented here may contribute to the development of novel class of nanocomposites which can offer an extended service life in LEO.
机译:在该研究中,通过将含有8种缩水糖醚基团(Octa-POSS)掺入含酸酐固化的环脂族环氧树脂的氨基硅氧烷来产生新型纳米复合材料。具有不同纳米颗粒浓度的开发的树脂系统在超薄CFRP结构的外层上使用,以便为在地面模拟设施中测试的低地球轨道(LEO)的环境提供更好的环境抵抗力。通过质量损失对开发的树脂进行太空劣化因子,并对腐蚀,辐射和升高的温度进行响应,以及测量表面化学(ATR-FTIR),功能发育(接触角测量和XPS)的变化,粗糙度(扫描激光显微镜)和形态(SEM)。用DMTA测量增加Octa-PoSP含量对热机械性能的影响,并通过弯曲试验测定强度和弹性模量。在任何装载中加入Octa-poss,改善了环境阻力,然而,在20wt%Octa-poffolive族环氧树脂中观察到空间状暴露后的质量和机械和表面性质的最显着保留。这里提出的结果可能有助于开发新型纳米复合材料,其可以在Leo提供延长的使用寿命。

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