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A new self-healing epoxy with tungsten (VI) chloride catalyst

机译:一种新型的具有氯化钨(VI)催化剂的自修复环氧树脂

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摘要

Using self-healing materials in commercial applications requires healing chemistry that is cost-effective, widely available and tolerant of moderate temperature excursions. We investigate the use of tungsten (VI) chloride as a catalyst precursor for the ring-opening metathesis polymerization of exo-dicyclopentadiene (exo-DCPD) in self-healing applications as a means to achieve these goals. The environmental stability of WCl6 using three different delivery methods was evaluated and the associated healing performance was assessed following fracture toughness recovery protocols. Both as-received and recrystallized forms of the WCl6 resulted in nearly complete fracture recovery in self-activated tests, where healing agent is manually injected into the crack plane, at 12 wt% WCl6 loading. In situ healing using 15 wt% microcapsules of the exo-DCPD produced healing efficiencies of approximately 20%.
机译:在商业应用中使用自我修复材料需要具有成本效益,可广泛获得并且耐受中等温度偏移的治愈化学方法。我们研究使用氯化钨(VI)作为自愈应用中exo-dicyclopentadiene(exo-DCPD)的开环易位聚合反应的催化剂前体,以实现这些目标。使用三种不同的递送方法评估了WCl6的环境稳定性,并根据断裂韧性恢复方案评估了相关的愈合性能。在自激活测试中,WCl6的原样和重结晶形式都导致了几乎完全的断裂恢复,其中以12%wt%的WCl6载荷将固化剂手动注入裂缝平面。使用15%wt%的exo-DCPD微胶囊进行原位愈合可产生约20%的愈合效率。

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