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Design of Azomethine Diols for Efficient Self-Healing of Strong Polyurethane Elastomers

机译:强固性聚氨酯弹性体高效自我修复的偶氮甲碱二元醇的设计

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摘要

Azomethine diols (AMDs) were synthesized by condensation between a terephthalic aldehyde, polyether diamine, and ethanol amine. The synthesized AMDs were employed to introduce azomethine groups into the backbones of polyurethane elastomers (PUEs). Different AMDs were designed to control the concentration and distribution of azomethine groups in PUEs. In this study, we explored the intrinsic self-healing of AMD-based PUEs by azomethine metathesis. Particularly, the effects of the concentration and distribution of the azomethine groups on the AMD-based PUEs were considered. Consequently, as the azomethine group concentration increased and the distribution became denser, the self-healing properties improved. With AMD3-40, the self-healing efficiency reached 86% at 130 °C after 30 min. This represents a 150% improvement over the control PUE. Additionally, as the AMD content increased, the mechanical properties improved. With AMD3-40, the tensile strength reached 50 MPa. Therefore, we concluded that the self-healing and mechanical properties of PUEs can potentially be tailored for applications by adjusting the concentration and design of AMD structure for PUEs.
机译:通过对苯二甲酸醛,聚醚二胺和乙醇胺之间的缩合反应合成了偶氮甲二醇(AMDs)。合成的AMD被用于将偶氮甲碱基团引入聚氨酯弹性体(PUE)的骨架中。设计了不同的AMD,以控制PUE中甲亚胺基的浓度和分布。在这项研究中,我们通过偶氮甲碱复分解探索了基于AMD的PUE的内在自我修复。特别地,考虑了甲亚胺基的浓度和分布对基于AMD的PUE的影响。因此,随着偶氮甲碱基团浓度的增加和分布变得更致密,自愈性能得到改善。使用AMD3-40,30分钟后在130°C下的自愈效率达到86%。这表示比对照PUE改善了150%。另外,随着AMD含量的增加,机械性能提高。使用AMD3-40,抗拉强度达到50 MPa。因此,我们得出结论,通过调整PUE的AMD结构的浓度和设计,可以潜在地调整PUE的自我修复和机械性能。

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