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Effect of molecular weight on shape memory behavior in polyurethane films

机译:分子量对聚氨酯薄膜形状记忆行为的影响

摘要

Understanding the relationship between the number-average molecular weight (M n) and the shape memory behavior of polymers is crucial for a complete picture of their thermomechanical properties, and hence for the development of smart materials, and, in particular, in textile technology. We report here on the study of shape memory properties as a function of M n of polymers. Shape memory polyurethanes (SMPUs) of different M n were synthesized, with various catalyst contents or molar ratio(r = NCO/OH) in the composition. In particular, two types of SMPU, namely T m and T g types according to their switch temperature type, were synthesized to compare the influence of M n on their shape memory behavior. X-ray diffraction, differential scanning calorimetry, dynamic mechanical analysis, and shape memory behavior results for the SMPUs are presented. The results indicate that the melting temperature (T m), the glass transition temperature (T g), the crystallinity, and the crystallizability of the soft segment in SMPUs are influenced significantly by M n, before reaching a critical limit around 200 000 g mol -1. Characterization of the shape memory effect in PU films suggests that the T m-type films generally show higher shape fixities than the T g-type films. In addition, this shape fixity decreases with increasing M n in the T g-type SMPU, but the shape recovery increases with M n in both types of SMPU. The shape recovery temperature, in contrast, decreases with M n as suggested by the result of their thermal strain recovery. It is concluded that a higher molecular weight (M n 200 000 g mol -1) is a prerequisite for SMPUs to exhibit higher shape recovery at a particular temperature.
机译:了解聚合物的数均分子量(M n)与形状记忆行为之间的关系对于完整了解其热机械性能至关重要,因此对于开发智能材料,尤其是在纺织技术中也至关重要。我们在此报告对形状记忆性能作为聚合物M n的函数的研究。合成了不同Mn的形状记忆聚氨酯(SMPU),其组成中的催化剂含量或摩尔比(r = NCO / OH)不同。特别是,根据开关温度类型,合成了两种类型的SMPU,即T m和T g类型,以比较M n对它们的形状记忆行为的影响。给出了SMPU的X射线衍射,差示扫描量热法,动态力学分析和形状记忆行为结果。结果表明,SM n中的熔融温度(T m),玻璃化转变温度(T g),结晶度和软段的结晶性受Mn的影响很大,直到达到约20万克分子摩尔的临界极限。 -1。 PU膜中形状记忆效应的表征表明,T m型膜通常显示出比T g型膜更高的形状固定性。另外,在T g型SMPU中,形状固定性随M n的增加而降低,但是在两种SMPU中,形状恢复性随M n的增加而增加。相反,形状恢复温度随着其热应变恢复的结果而随着M n降低。结论是,较高的分子量(Mn> 200 000 g mol -1)是SMPU在特定温度下表现出较高形状恢复的先决条件。

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