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Optimization of the thermal mending process in epoxy/cyclic olefin copolymer blends

机译:环氧/环烯烃共聚物共混物中热修补方法的优化

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摘要

Cyclic olefin copolymer (COC) is utilized as thermoplastic healing agent in an epoxy resin and the effect of mending temperature on the healing of resulting materials is investigated. Blends are prepared by adding 20 and 30 wt% COC powder in the epoxy resin. They are thermo-mechanically characterized and fractured samples are thermally mended at various temperatures to evaluate the healing efficiency of the repaired samples. Optical microscopy reveals a homogenous dispersion of COC domains within epoxy matrix, while thermogravimetric analysis shows improved thermal stability of the samples. The immiscibility of the two phases in the blends lead to a decrease of the mechanical properties under flexural and tensile loading modes with respect to neat epoxy. The fracture toughness increases upon COC addition at elevated amounts. Healing efficiency values up to more than 80% are obtained at the lowest investigated temperature of 145 degrees C for samples with 30 wt% of COC.
机译:将环烯烃共聚物(COC)用作环氧树脂中的热塑性愈合剂,并研究了修补温度对所得材料愈合的影响。通过在环氧树脂中添加20和30 wt%的COC粉末制备共混物。它们具有热机械特性,断裂样本在不同温度下进行热修复,以评估修复样本的愈合效率。光学显微镜显示COC畴在环氧树脂基体中均匀分散,而热重分析显示样品的热稳定性得到改善。共混物中两相的不相容性导致纯环氧树脂在弯曲和拉伸载荷模式下的力学性能下降。随着COC添加量的增加,断裂韧性增加。对于含有30 wt%COC的样品,在145℃的最低研究温度下,可获得高达80%以上的愈合效率值。

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