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基于结构恢复策略的超耐热氧化弹性体的实现。

Enabling Superior Thermo-Oxidative Resistance Elastomers Based on a Structure Recovery Strategy.

机构信息

Key Laboratory of Advanced Materials of Tropical Island Resources of Ministry of Education, Natural Rubber Cooperative Innovation Center of Hainan Province & Ministry of Education of PRC, School of Materials Science and Engineering, Hainan University, Haikou, 570228, China.

出版信息

Macromol Rapid Commun. 2021 May;42(9):e2000762. doi: 10.1002/marc.202000762. Epub 2021 Mar 15.

Abstract

Thermo-oxidative process leads to the structure damage of elastomers, such as the scission of main chains and destruction of crosslinks. The problem that damaged structure brings about the deterioration of mechanical properties has not been solved by the conventional anti-aging methods. Inspired by self-healing process, a structure recovery strategy for recovering the damaged structure induced by thermo-oxidative process is proposed, which endows elastomers with superior thermo-oxidative resistance. The high reactivity between 1,3-diisopropenylbenzene and free radicals realizes high recovery efficiency (from 83% to 118%); the changes in topology structure during recovery process make much more rubber chains bear external stress and improve mechanical properties significantly (from 18.5 to 29.6 MPa). This work paves the way for the development of elastomers with superior thermo-oxidative resistance, meanwhile this work is helpful to push the theoretical research of self-healing to practical application.

摘要

热氧化过程会导致弹性体的结构损坏,如主链的断裂和交联的破坏。传统的抗老化方法尚未解决因结构损坏而导致的机械性能恶化的问题。受自修复过程的启发,提出了一种结构恢复策略,用于恢复热氧化过程中产生的损坏结构,从而赋予弹性体优异的热氧化稳定性。1,3-二异丙烯基苯与自由基之间的高反应活性实现了高恢复效率(83%至 118%);恢复过程中拓扑结构的变化使得更多的橡胶链承受外部应力,从而显著提高机械性能(从 18.5 至 29.6 MPa)。这项工作为开发具有优异热氧化稳定性的弹性体铺平了道路,同时也有助于推动自修复的理论研究向实际应用的发展。

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