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Effects of selectively triggered photothermal particles on shape memory polymer composites: An investigation on structural performance, thermomechanical characteristics and photothermal behaviour

机译:选择性触发的光热粒子对形状记忆聚合物复合材料的影响:结构性能,热机械特性和光热行为的研究

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摘要

Light-activated shape memory polymer composites (LASMPCs) have the ability to facilitate breakthrough technological advancements in aerospace and space engineering applications since the shape memory effect can be remotely controlled by a light beam. Introduction of rare-earth organic complexes-based photothermal fillers such as Nd(TTA)(3)Phen and Yb(TTA)(3)Phen into thermally activated shape memory polymers has been reported as a convenient and commercially available approach to prepare light-activated shape memory polymer composites. Such light-activated shape memory polymer composites undertake selective photothermal stimulation due to light and applicable for macroscale and microscale applications. This article presents the effects of added rare-earth organic complexes of Nd(TTA)(3)Phen and Yb(TTA)(3)Phen, as well as glass fibre reinforcements on structural performance and shape memory behaviour of light-activated shape memory polymer composites. The physical and mechanical properties, as well as thermomechanical, shape memory, and photothermal behaviours, were systematically investigated. It has been found that the combination of photothermal fillers and glass fibre reinforcements has enhanced the capacity of light-activated shape memory polymer composites to apply for a wider range of large-scale engineering applications.
机译:光激活的形状记忆聚合物复合材料(LASMPC)能够促进在航空航天和航天工程应用中的突破性技术进步,因为形状记忆效应可以通过光束远程控制。据报道,将稀土有机配合物基的光热填料(如Nd(TTA)(3)Phen和Yb(TTA)(3)Phen)引入热活化的形状记忆聚合物中是一种制备光的简便且可商购的方法,活化的形状记忆聚合物复合材料。这种光活化的形状记忆聚合物复合材料由于光而进行选择性的光热刺激,并且适用于大规模和微型应用。本文介绍了添加的Nd(TTA)(3)Phen和Yb(TTA)(3)Phen的稀土有机配合物以及玻璃纤维增​​强材料对光活化形状记忆的结构性能和形状记忆行为的影响聚合物复合材料。系统地研究了物理和机械性能以及热机械,形状记忆和光热行为。已经发现,光热填料和玻璃纤维增​​强材料的组合提高了光活化的形状记忆聚合物复合材料的能力,可用于更广泛的大规模工程应用。

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