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Preparation and performance of self-healing epoxy composites by microcapsulated approach

机译:微胶囊法制备自愈环氧复合材料的制备与性能

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Microencapsulated E-51 epoxy resin healing agent and phthalic anhydride latent curing agent were incorporated into E-44 epoxy matrix to prepare self-healing epoxy composites. When cracks were initiated or propagated in the composites, the microcapsules would be damaged and the healing agent released. As a result, the crack plane was healed through curing reaction of the released epoxy latent curing agent. In the paper, PUF/E-51 microcapsules were prepared by in-situ polymerization. The mechanical properties of the epoxy composites filled with the self-healing system were evaluated. The impact strength and self-healing efficiency of the composites are measured using a Charpy Impact Tester. Both the virgin and healed impact strength depends strongly on the concentration of microcapsules added into the epoxy matrix. Fracture of the neat epoxy is brittle, exhibiting a mirror fracture surface. Addition of PUF/E-51 microcapsules decreases the impact strength and induces a change in the fracture plane morphology to hackle markings. In the case of 8.0 wt% microcapsules and 3.0 wt% latent hardener, the self-healing epoxy exhibited 81.5% recovery of its original fracture toughness.
机译:将微胶囊化的E-51环氧树脂愈合剂和邻苯二甲酸酐潜伏固化剂掺入E-44环氧基质中以制备自愈合的环氧复合材料。当在复合材料中引发或繁殖裂缝时,微胶囊会受损,并且释放愈合剂。结果,通过释放的环氧潜伏固化剂的固化反应愈合裂缝平面。在本文中,通过原位聚合制备PUF / E-51微胶囊。评估了填充有自愈合系统的环氧复合材料的机械性能。复合材料的冲击强度和自愈合效率使用夏比冲击测试仪测量。处女和愈合的冲击强度都依赖于加入环氧基质中的微胶囊的浓度。整个环氧树脂的骨折是脆性的,表现出镜面骨折表面。添加PUF / E-51微胶囊会降低冲击强度,并诱导裂缝平面形态的变化与旋塞标记。在8.0wt%的微胶囊和3.0wt%潜硬化剂的情况下,自愈合环氧树脂表现出其原始断裂韧性的81.5%。

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