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首页> 外文期刊>European Polymer Journal >Intrinsic self-healing thermoset through covalent and hydrogen bonding interactions
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Intrinsic self-healing thermoset through covalent and hydrogen bonding interactions

机译:通过共价键和氢键相互作用实现内在的自修复热固性

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摘要

The intrinsic self-healing ability of polyketone (PK) chemically modified into furan and/or OH groups containing derivatives is presented. Polymers bearing different ratios of both functional groups were cross-linked via furan/bis-maleimide (Diels-Alder adducts) and hydrogen bonding interactions (aliphatic and aromatic OH groups). The resulting thermosets display tuneable softening points (peak of tan (delta)) from 90 to 137 degrees C as established by DMTA. It is found that the cross-linked system containing only furan groups shows the highest softening temperature. On the other hand, systems displaying the combination of Diels-Alder adducts and hydrogen bonding (up to 60 mol % of -OH groups) do not show any change in modulus between heating cycles (i.e. factually a quantitative recovery of the mechanical behaviour). It is believed that the novelty of these tuneable thermosets can offer significant advantages over conventional reversible covalent systems. The synergistic reinforcement of both interactions resists multiple heating/healing cycles without any loss of mechanical properties even for thermally healed broken samples. (C) 2016 Elsevier Ltd. All rights reserved.
机译:呈现了化学修饰成含呋喃和/或OH基团的衍生物的聚酮(PK)的固有自我修复能力。带有两个不同官能团比率的聚合物通过呋喃/双马来酰亚胺(Diels-Alder加合物)和氢键相互作用(脂族和芳族OH基团)交联。最终的热固性材料显示出DMTA确定的90到137摄氏度之间可调节的软化点(tanδ峰值)。发现仅包含呋喃基团的交联体系显示出最高的软化温度。另一方面,显示Diels-Alder加合物和氢键结合(至多60mol%的-OH基团)的组合的系统在加热循环之间没有显示出模量的任何变化(即,实际上机械性能的定量恢复)。相信这些可调节热固性材料的新颖性可以提供优于常规可逆共价体系的显着优势。两种相互作用的协同增强抵抗了多个加热/修复循环,即使对于热修复的破碎样品也没有任何机械性能的损失。 (C)2016 Elsevier Ltd.保留所有权利。

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