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Study of low earth orbit ultraviolet radiation and vacuum thermal cycling environment effects on epoxy-based shape memory polymer

机译:低地球轨道紫外线辐射和真空热循环环境对环氧基形状记忆聚合物影响的研究

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Shape memory polymers have been studied as the matrix of lightweight self-deployable space structures for decades. The epoxy-based shape memory polymer, which is a potential material for aerospace application, has been tested about their resistance abilities to the ultraviolet radiation and vacuum thermal cycling by using ground-based simulation facilities. The wavelength of ultraviolet radiation is 250-400 nm with not less than five times the solar constant, and the irradiation times are 80, 160, and 240 h, respectively. The vacuum level, temperature range, and cycling times of vacuum thermal cycling are 10(-5) Pa; -100 degrees C to +100 degrees C; and 0 cycle and 15, 30, and 45 cycles, respectively. The shape memory polymer specimens are compared for mass loss ratio, chemical compositions, surface morphology, and mechanical properties before and after the ultraviolet radiation and thermal cycling. The experimental results indicate that the glass transition temperature (T-g), mass loss ratio, modulus, and yield and break strength increase after experiencing 240h ultraviolet radiation or 45 thermal cycles, which shows great potential of epoxy-based shape memory polymer in aerospace structures and device applications.
机译:数十年来,形状记忆聚合物已作为轻型可自行部署的空间结构的基质进行了研究。基于环氧的形状记忆聚合物是航空航天应用的潜在材料,已经通过使用基于地面的仿真工具对它们对紫外线和真空热循环的抵抗能力进行了测试。紫外线的波长为250-400 nm,且太阳常数不少于五倍,照射时间分别为80、160和240 h。真空热循环的真空度,温度范围和循环时间为10(-5)Pa; -100摄氏度至+100摄氏度;分别为0和15、30和45个周期。比较形状记忆聚合物样品在紫外线辐射和热循环之前和之后的质量损失率,化学组成,表面形态和机械性能。实验结果表明,在经历240h紫外线或45次热循环后,玻璃化转变温度(Tg),质量损失比,模量以及屈服强度和断裂强度均有所提高,这表明环氧基形状记忆聚合物在航空航天结构和结构中具有巨大潜力。设备应用程序。

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