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Effects of γ-radiation on the performances of optically transparent shape memory polyimides with a low glass transition temperature

机译:γ辐射对低玻璃化转变温度的光学透明形状记忆聚酰亚胺性能的影响

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Recently, shape memory polyimides (SMP1s) with varying glass transition temperature (T-g) and optical transparency have been developed widely. While, rare reports were focused on the evaluation of the durability of SMPIs in the complex and volatile space environments. This paper presents the simulated gamma-radiation accelerated experiment of two kinds of optically transparent SMPIs with a T-g of 178 degrees C and 196 degrees C, respectively. The effects of gamma-radiation on chemical structure, optical transmittance, shape memory behavior, thermomechanical property, thermal stability, and mechanical properties were investigated. Although SMPIs have endured gamma-radiation for 1 x 10(6) Gy, the chemical structure, T-g, optical transmittance, thermal stability, and the shape memory behavior remained unchanged. Also, SMPIs with a T-g of less than 200 degrees C could maintain their high tensile strengths and elongations at break (109.5 MPa, 7.6%) after being exposed to 1 x 10(6) Gy gamma-radiation, which shows great potential application in space active deformation structures and devices. (C) 2018 Elsevier Ltd. All rights reserved.
机译:近来,已经广泛地开发了具有变化的玻璃化转变温度(T-g)和光学透明性的形状记忆聚酰亚胺(SMP1s)。同时,鲜有报告集中在评估SMPI在复杂多变的空间环境中的耐久性。本文介绍了两种光学透明的TPI分别为178摄氏度和196摄氏度的SMPI的伽马辐射加速实验。研究了伽马辐射对化学结构,光学透射率,形状记忆行为,热机械性能,热稳定性和机械性能的影响。尽管SMPI承受了1 x 10(6)Gy的伽马辐射,但化学结构,T-g,光学透射率,热稳定性和形状记忆行为保持不变。同样,Tg低于200摄氏度的SMPI在暴露于1 x 10(6)Gyγ射线后仍可保持其高拉伸强度和断裂伸长率(> 109.5 MPa,> 7.6%),显示出巨大的潜力在空间主动变形结构和装置中的应用。 (C)2018 Elsevier Ltd.保留所有权利。

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