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Improving of Mechanical and Shape-Memory Properties in Hyperbranched Epoxy Shape-Memory Polymers

机译:超支化环氧树脂形状记忆聚合物的力学性能和形状记忆性能的改善

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摘要

A series of shape-memory epoxy polymers were synthesized using an aliphatic amine and two different commercial hyperbranched poly(ethyleneimine)s with different molecular weights as crosslinking agents. Thermal, mechanical, and shape-memory properties in materials modified with different hyperbranched polymers were analyzed and compared in order to establish the effect of the structure and the molecular weight of the hyperbranched polymers used. The presence of hyperbranched polymers led to more heterogeneous networks, and the crosslinking densities of which increase as the hyperbranched polymer content increases. The transition temperatures can be tailored from 56 to 117℃ depending on the molecular weight and content of the hyperbranched polymer. The mechanical properties showed excellent values in all formulations at room temperature and, specially, at T_g~(E') with stress at break as high as 15 MPa and strain at break as high as 60 %. The shape-memory performances revealed recovery ratios around 95 %, fixity ratios around 97 %, and shape-recovery velocities as high as 22 %/min. The results obtained in this study reveal that hyperbranched polymers with different molecular weights can be used to enhance the thermal and mechanical properties of epoxy-based SMPs while keeping excellent shapememory properties.
机译:使用脂肪胺和两种不同分子量的不同分子量的商业化超支化聚亚乙基亚胺作为交联剂,合成了一系列形状记忆环氧聚合物。分析并比较了用不同的超支化聚合物改性的材料的热,机械和形状记忆性能,以便确定所用超支化聚合物的结构和分子量的影响。超支化聚合物的存在导致更多的非均质网络,并且其交联密度随着超支化聚合物含量的增加而增加。过渡温度可根据超支化聚合物的分子量和含量在56至117℃之间调整。在室温下,特别是在T_g〜(E')下,所有配方的机械性能均显示出优异的值,断裂应力高达15 MPa,断裂应变高达60%。形状记忆性能显示出约95%的恢复率,约97%的固定率和高达22%/ min的形状恢复速度。这项研究获得的结果表明,具有不同分子量的超支化聚合物可用于增强环氧基SMP的热和机械性能,同时保持出色的形状记忆性能。

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