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Effects of accelerated aging on thermal, mechanical, and shape memory properties of a cyanate-based shape memory polymer: Ⅱ atomic oxygen

机译:加速老化对基于氰形状记忆聚合物的热,机械和形状记忆性能的影响:Ⅱ原子氧气

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摘要

As a new kind of smart material with shape changing and fixing abilities, the shape memory polymer (SMP), has become a research hotspot for space deployment structures in recent years. In fact, studying the space environmental adaptability of SMPs is an urgent research task, promoting their application in the aerospace field. In this study, a chemical crosslinked cyanate-based SMP (T_g-206°C was exposed to atomic oxygen in a ground simulation system. The irradiation effects of atomic oxygen were investigated in terms of microscopic morphology, chemical structure, thermal stability, mechanical properties, loss factor and the storage modulus. After exposure to atomic oxygen, the cyanate-based SMP showed obvious surface erosion. When the irradiation dose reached 10~(22) atoms/cm~2, the surface was entirely peeled off, and a new uneven surface emerged. However, the damage resulting from erosion was only on the surface and had little effect on the mechanical performance or shape memory behavior. The tensile strength and elastic modulus remained nearly constant at 66 MPa and 2000 MPa, respectively. Further, the effect of sample thickness and depth of delamination should be comprehensively considered in practical applications. The shape memory properties remain excellent after atomic oxygen irradiation, and the average shape fixity and shape recovery rates were 98.2% and 99.3%, respectively.
机译:作为一种具有形状变化和固定能力的新型智能材料,形状记忆聚合物(SMP)已成为近年来空间部署结构的研究热点。事实上,研究SMPS的环境适应性是一种紧急的研究任务,促进他们在航空航天领域的应用。在该研究中,将化学交联的氰酸氰SMP(T_G-206℃暴露于地面模拟系统中的原子氧。在微观形态,化学结构,热稳定性,机械性能方面研究了原子氧的辐照效应,损失因子和储存模量。暴露于原子氧气后,基于氰化物的SMP显示出明显的表面侵蚀。当辐照剂量达到10〜(22)原子/ cm〜2时,表面完全剥离,并新鲜剥离不均匀的表面出现了。然而,侵蚀引起的损伤仅在表面上,对机械性能或形状记忆行为几乎没有影响。拉伸强度和弹性模量分别在66MPa和2000MPa处几乎恒定。此外,在实际应用中,应全面考虑样品厚度和分层深度的影响。原子氧照射后,形状记忆性能保持优异,以及AV逃逸形状固定性和形状回收率分别为98.2%和99.3%。

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