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Structure-property relationship of shape memory polyurethane cross-linked by a polyethyleneglycol spacer between polyurethane chains

机译:在聚氨酯链之间通过聚乙二醇间隔基交联的形状记忆聚氨酯的结构-性质关系

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摘要

Shape memory polyurethane (SMPU) cross-linked by a polyethyleneglycol (PEG) spacer at its side was compared with a linear SMPU and the one randomly cross-linked by glycerol. The SMPU was composed of 4,4'-methylenebis(phenylisocyanate) (MDI), polytetramethyleneglycol-2000 (PTMG-2000), 1,4-butanediol (BD), glycerol, and PEG-200 as a spacer. PEG-200 connected the glycerol hydroxyl groups of two polyurethane chains via the connecting agent, MDI. T-m of the soft segment increased with the increase of cross-linking content. Cross-link density measured by the swelling experiment increased in proportion to the glycerol content. A surprising increase in maximum stress compared to the linear SMPU was attained without any sacrifice in strain. Remarkably, the stress-strain curve revealed that the PEG cross-linked SMPU exhibited a similar behavior and superior tensile mechanical properties to natural rubber. Storage modulus also increased and loss tangent became broad in distribution over the temperature range after PEG cross-linking. Shape recovery rate went up to 96.8%, and shape recovery speed was three times faster than that of linear SMPU.
机译:将在其侧面通过聚乙二醇(PEG)间隔基交联的形状记忆聚氨酯(SMPU)与线性SMPU进行了比较,将一种通过甘油无规交联的聚氨酯。 SMPU由4,4'-亚甲基双(苯基异氰酸酯)(MDI),聚丁二醇(2000)(PTMG-2000),1,4-丁二醇(BD),甘油和PEG-200组成。 PEG-200通过连接剂MDI连接两条聚氨酯链的甘油羟基。软链段的T-m随交联含量的增加而增加。通过溶胀实验测得的交联密度与甘油含量成比例地增加。与线性SMPU相比,最大应力得到了令人惊讶的增加,而没有任何应变的损失。值得注意的是,应力-应变曲线表明,PEG交联的SMPU与天然橡胶表现出相似的行为和优异的拉伸机械性能。 PEG交联后,储能模量也增加,损耗角正切在温度范围内的分布变宽。形状恢复率高达96.8%,形状恢复速度是线性SMPU的三倍。

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