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Impact Resistance Enhancement by Adding Core-Shell Particle to Epoxy Resin Modified with Hyperbranched Polymer

机译:通过向超支化聚合物改性的环氧树脂中添加核-壳颗粒来增强抗冲击性

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摘要

A core-shell particle was fabricated by grafting amino-terminated hyperbranched polymer to the surface of silica nanoparticles. The influences of core-shell particle contents on the tensile and impact strength of the epoxy thermosets modified with amino-terminated hyperbranched polymer were discussed in detail. For comparison, core-shell particle was added into the epoxy/polyamide system for toughness improvement. Results from tensile and impact tests are provided. The introduction of core-shell particle into the epoxy/polyamide systems just slightly enhanced the tensile and impact strength. The incorporation of 3 wt % core-shell particle could substantially improve the tensile and impact strength of epoxy/amino-terminated hyperbranched polymer thermosets. Field emission-scanning electron microscope images of the impact fracture surfaces showed that the excellent impact resistance of epoxy/amino-terminated hyperbranched polymer/core-shell particle thermosets may be attributed to the synergistic effect of shearing deformation and crack pinning/propagation, which is induced by the good compatibility between epoxy matrix and core-shell particle in the presence of amino-terminated hyperbranched polymer.
机译:通过将氨基封端的超支化聚合物接枝到二氧化硅纳米粒子的表面来制备核-壳粒子。详细讨论了核-壳颗粒含量对氨基端基超支化聚合物改性环氧热固性树脂拉伸强度和冲击强度的影响。为了比较,将核-壳颗粒添加到环氧/聚酰胺体系中以提高韧性。提供了拉伸和冲击测试的结果。将核-壳颗粒引入环氧/聚酰胺体系中只会稍微提高拉伸强度和冲击强度。掺入3wt%的核-壳颗粒可以显着改善环氧/氨基封端的超支化聚合物热固性树脂的拉伸强度和冲击强度。冲击断裂表面的场发射扫描电子显微镜图像显示,环氧/氨基端接的超支化聚合物/核-壳粒子热固性材料的优异抗冲击性可能归因于剪切变形和裂纹钉扎/扩展的协同作用,即在氨基端基超支化聚合物的存在下,环氧基质与核-壳颗粒之间的良好相容性引起的。

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