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首页> 外文期刊>Macromolecular chemistry and physics >Reconfigurable Poly(urea-urethane) Thermoset Based on Hindered Urea Bonds with Triple-Shape-Memory Performance
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Reconfigurable Poly(urea-urethane) Thermoset Based on Hindered Urea Bonds with Triple-Shape-Memory Performance

机译:基于带有三重记忆性能的阻碍尿素键可重新配置的聚(尿素 - 氨基甲酸酯)热固性

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摘要

Thermoset shape memory polymers (SMPs) have a series of advantages in practical applications when compared with thermoplastic SMPs. However, the reprocessing and reshaping of thermosets are difficult due to the covalent crosslinking which severely limits the reconfiguration of polymer networks even under high temperature. Here, hinered urea bond (HUB), a urea bearing a bulky substituent on its nitrogen atom that can reversibly dissociate to the corresponding bulky amine and isocyanate, is integrated into the poly(urea-urethane) (PUU) crosslinked networks, enabling the networks to topologically reconfigure to other structures. Instead of having to cure the thermoset in a mold, the incorporation of HUBs can decouple the synthesis and shape-forming steps, which is a huge advantage for the processing of thermoset materials compared to conventional thermosets. This new PUU thermoset shows a broad glass transition behavior and exhibits excellent triple-shape-memory performance. With the incorporation of this dynamic urea bonds, permanent shapes can be flexibly tuned via the network reconfiguration, which is often neglected but significant to the practical application of SMPs.
机译:与热塑性SMP相比,热固性形状记忆聚合物(SMPS)在实际应用中具有一系列优点。然而,由于共价交联,热固性的再循环和再恢复难以严重限制聚合物网络的重新配置即使在高温下。这里,流水尿素键(轮毂),尿素在其氮原子上携带笨重取代基,可以可逆地解离相应的庞大胺和异氰酸酯,被整合到聚(尿素 - 氨基甲酸酯)(PUU)交联网络中,使网络能够实现拓扑地重新配置到其他结构。代替必须在模具中施加热固性,而枢纽可以掺入合成和形状的步骤,这是与常规热固性度相比加工热固性材料的巨大优势。这种新的Puu热固性件显示出广阔的玻璃过渡行为,并且具有优异的三重形状记忆性能。通过掺入这种动态尿素键,可以通过网络重新配置灵活地调整永久形状,这通常被忽略,但对SMP的实际应用很重要。

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