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Comparison of shape memory polyurethanes and polyurethane-ureas having crystalline reversible phase

机译:具有结晶可逆相的形状记忆聚氨酯和聚氨酯脲的比较

摘要

Shape memory polyurethanes (SMPUs) have been extensively investigated but shape memory polyurethane-ureas (SMPUUs) with aromatic diamines as chain extenders have been rarely reported. In the present study, a series of SMPUs and SMPUUs having crystalline reversible phase were prepared. The shape memory properties including shape recovery, shape fixity and recovery stress of the SMPUs and the SMPUUs were compared systematically. When hard-segment content (HSC) was 30% the polyurethane-urea exhibited higher shape recovery than its polyurethane analogue. With the increase of HSC the shape recoveries of both the SMPUs and the SMPUUs decreased but those of the SMPUUs decreased more apparently. When HSC was 40%, the shape recovery of the polyurethane-urea was lower than that of the polyurethane. This is because the great increase of physical cross-linking density of SMPUUs resulted in significant increase of irreversible deformation. In comparison with those of the SMPUs, the shape recovery curves of SMPUUs shift to lower temperatures. This is because the higher physical cross-link density of the SMPUUs results in more decrease of the melting temperature of soft phase. Moreover, the shape fixities of the SMPUUs were lower than those of the SMPUs with identical HSC also because of their higher physical cross-link density. The recovery stresses of the SMPUs and the SMPUUs increased with the increase of HSC. The recovery stress of a polyurethane-urea was higher than that of its polyurethane analogue by over 100%. Hence it is possible to produce SMPUUs with much larger recovery stress and higher shape recovery without sacrificing much shape fixity by controlling appropriate HSC.
机译:形状记忆聚氨酯(SMPU)已被广泛研究,但是很少有人报道以芳香族二胺为增链剂的形状记忆聚氨酯-脲(SMPUU)。在本研究中,制备了一系列具有晶体可逆相的SMPU和SMPUU。系统地比较了SMPU和SMPUU的形状记忆特性,包括形状恢复,形状固定性和恢复应力。当硬链段含量(HSC)为30%时,聚氨酯脲比其聚氨酯类似物具有更高的形状恢复率。随着HSC的增加,SMPU和SMPUU的形状恢复率均下降,但SMPUU的形状恢复率下降更为明显。当HSC为40%时,聚氨酯-脲的形状恢复低于聚氨酯。这是因为SMPUU的物理交联密度的极大增加导致不可逆变形的显着增加。与SMPU的形状恢复曲线相比,SMPUU的形状恢复曲线向较低温度移动。这是因为SMPUU的物理交联密度越高,软相的熔融温度下降越多。此外,SMPUU的形状固定性也比具有相同HSC的SMPU的形状固定性低,这是因为它们的物理交联密度更高。随着HSC的增加,SMPU和SMPUU的恢复应力增加。聚氨酯脲的回复应力比其聚氨酯类似物的回复应力高出100%以上。因此,有可能通过控制适当的HSC来生产具有更大恢复应力和更高形状恢复能力的SMPUU,而不会牺牲太多形状固定性。

著录项

  • 作者

    Ji FL; Hu JL;

  • 作者单位
  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 eng
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