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首页> 外文期刊>Smart Materials & Structures >Self-healing of low-velocity impact damage in glass fabric/epoxy composites using an epoxy-mercaptan healing agent
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Self-healing of low-velocity impact damage in glass fabric/epoxy composites using an epoxy-mercaptan healing agent

机译:使用环氧硫醇愈合剂对玻璃纤维布/环氧树脂复合材料中的低速冲击损伤进行自我修复

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摘要

Self-healing woven glass fabric-reinforced epoxy composite laminates were made by embedding epoxy- and mercaptan-loaded microcapsules. After being subjected to low-velocity impact, the laminates were able to heal the damage in an autonomic way at room temperature. The healing-induced reduction in the damaged areas was visualized using a scanning acoustic microscope. The rate of damage area reduction, which is closely related to the effect of crack rehabilitation and mechanical recovery, is a function of impact energy, content and size of the healing microcapsules. Minor damage, such as microcracks in the matrix, can be completely repaired by the healing system without manual intervention, including external pressure. Microcapsules with larger size and/or higher concentration are propitious for delivering more healing agent to cracked portions, while imposition of lateral pressure on damaged specimens forces the separated faces to approach each other. Both can improve the rate of damage area reduction in the case of severe damage.
机译:通过嵌入载有环氧和硫醇的微胶囊,制成自修复的玻璃纤维增​​强的环氧复合材料层压板。受到低速冲击后,层压板能够在室温下以自主方式修复损坏。使用扫描声显微镜观察愈合引起的受损区域的减少。损伤面积减小的速率与裂纹修复和机械恢复的效果密切相关,它是冲击能量,愈合微囊的含量和大小的函数。轻微的损伤(例如基质中的微裂纹)可以通过愈合系统完全修复,而无需人工干预,包括外部压力。具有较大尺寸和/或较高浓度的微囊有利于将更多的愈合剂输送到破裂的部分,同时在损坏的样本上施加侧向压力会迫使分离的表面彼此靠近。在严重损坏的情况下,两者都可以提高减少损坏区域的速度。

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