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Shape recovery of thermoset shape memory polymers and fibre reinforced shape memory polymers

机译:热固性形状记忆聚合物和纤维增强的形状记忆聚合物的形状恢复

摘要

Shape memory polymers (SMP) can be deformed from a permanent to a temporary shape above their transformation temperature. Upon reheating, the SMP spontaneously returns to the permanent shape. SMP show high deformability, but the recovery stresses are very low, thus limiting the size of the components. This paper presents the first results of an ongoing research to develop large sized components based on SMP. To achieve higher recovery stresses, asymmetric fibre reinforced shape memory composites were produced (SMPC) using resin transfer moulding. The results show a 30-fold increase in recovery stress, compared to the neat SMP resin. The recovery stress is independent of the deformation temperature, but is strongly affected by the degree of deformation. At higher deformation levels, crazing occurs.Even though the visible effects of the crazing disappear during reheating, it does influence the recovery stress. This indicates that the ability to recover the permanent shape might change in cyclic loading. All composites tested show complete recovery upon reheating. The rate of shape recovery is higher when the fibre reinforcement is loaded in compression.
机译:形状记忆聚合物(SMP)可以在其转变温度以上从永久形状变形为临时形状。重新加热后,SMP会自动恢复为永久形状。 SMP表现出较高的变形能力,但恢复应力非常低,因此限制了部件的尺寸。本文介绍了正在进行的研究的初步结果,该研究旨在开发基于SMP的大型组件。为了获得更高的恢复应力,使用树脂传递模塑技术生产了不对称纤维增强的形状记忆复合材料(SMPC)。结果表明,与纯SMP树脂相比,恢复应力提高了30倍。恢复应力与变形温度无关,但受变形程度的影响很大。在较高的变形水平下会出现裂纹,即使在加热过程中裂纹的可见影响消失了,它也会影响恢复应力。这表明恢复永久形状的能力可能会在循环载荷中发生变化。所有测试的复合材料在重新加热后均显示完全恢复。当纤维增强材料在压缩状态下加载时,形状恢复率更高。

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