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Autonomic Self-Healing in Epoxidized Natural Rubber

机译:环氧天然橡胶的自主自我修复

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The development of polymers that can repair damage autonomously would be useful to improve the lifetime of polymeric materials. To date, limited attention has been dedicated to developing elastomers with autonomic self-healing ability, which can recover damages without need for an external or internal source of healing agents. This work investigates the self-healing behavior of epoxidized natural rubber (ENR) with two different epoxidation levels (25 and 50 mol % epoxidation) and of the corresponding unfunctionalized rubber, ds-1,4-polyisoprene (PISP). A self-adhesion assisted self-healing behavior was revealed by T-peel tests on slightly vulcanized rubbers. A higher epoxidation level was found to enhance self-healing. Self-healing of rubbers following ballistic damages was also investigated. A pressurized air flow test setup was used to evaluate the self-healing of ballistic damages in rubbers. Microscope (OM, SEM, and TEM) analyses were carried out to provide further evidence of healing in the impact zones. Self-healing of ballistic damages was observed only in ENR with 50 mol % epoxidation and it was found to be influenced significantly by the cross-link density. Finally, self-healing of ballistic damages was also observed in ENR50/PISP blends only when the content of the healing component (i.e., ENRSO) was at least 25 wt %. From an analysis of the results, it was concluded that a synergistic effect between interdiffusion and interaction among polar groups leads to self-healing in ENR.
机译:可以自主修复损伤的聚合物的开发将对延长聚合物材料的寿命有用。迄今为止,人们对开发具有自主自我修复能力的弹性体的关注有限,该弹性体无需外部或内部愈合剂即可恢复损伤。这项工作研究了具有两种不同环氧化水平(25和50 mol%环氧化)的环氧化天然橡胶(ENR)以及相应的未官能化橡胶ds-1,4-聚异戊二烯(PISP)的自修复行为。在轻微硫化的橡胶上进行的T剥离试验显示了自粘辅助的自愈性能。发现较高的环氧化水平可增强自我修复。还研究了弹道破坏后橡胶的自我修复。加压气流测试装置用于评估橡胶中弹道损伤的自愈性。进行了显微镜(OM,SEM和TEM)分析,以提供冲击区域愈合的进一步证据。弹道损伤的自修复仅在具有50 mol%环氧化的ENR中观察到,并且发现它受到交联密度的显着影响。最后,仅当治愈组分(即,ENRSO)的含量为至少25wt%时,在ENR50 / PISP共混物中也观察到了弹道损伤的自我修复。通过对结果的分析,可以得出结论,相互扩散与极性基团之间的相互作用之间的协同效应导致ENR的自我修复。

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