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Effect of graft density and molecular weight on mechanical properties of rubbery block copolymer grafted SiO_2 nanoparticle toughened epoxy

机译:接枝密度和分子量对橡胶嵌段共聚物接枝SiO_2纳米粒子增韧环氧树脂力学性能的影响

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摘要

15 nm diameter SiO_2 nanoparticles with a grafted block copolymer consisting of a 5-20 nm rubbery polyhexylmethacrylate (PHMA) inner block and a 30 nm outer block of matrix compatible polyglycidylmethacrylate (PGMA) were synthesized to toughen an epoxy. A systematic study of the effect of block copolymer graft density (from 0.07 to 0.7 chainsm~2) and block molecular weight (from 20 to 80 kg/mol) on the tensile behavior, fracture toughness, and fatigue properties was conducted. It was found that the copolymer grafted SiO_2 nanoparticles enhanced the ductility (maximum 60% improvement), fracture toughness (maximum 300% improvement) and fatigue crack growth resistance of the epoxy matrix while maintaining the modulus at loadings of less than 2 vol% of silica core. The PHMA block induced plastic void growth and shear banding. At lower graft density and larger molecular weight of the PHMA block, the nanocomposites exhibited simultaneous improvements in fracture toughness and tensile modulus. The PGMA epoxy compatible block also contributed to the improved fracture energy of the nanocomposites.
机译:合成了具有接枝嵌段共聚物的直径为15 nm的SiO_2纳米颗粒,该接枝嵌段共聚物由5-20 nm橡胶状聚甲基丙烯酸己酯(PHMA)内嵌段和30 nm外部嵌段构成的与基质相容的聚甲基丙烯酸缩水甘油酯(PGMA)组成,以增韧环氧树脂。对嵌段共聚物接枝密度(0.07至0.7链/ nm〜2)和嵌段分子量(20至80 kg / mol)对拉伸性能,断裂韧性和疲劳性能的影响进行了系统的研究。发现该共聚物接枝的SiO_2纳米颗粒增强了环氧基质的延展性(最大改善了60%),断裂韧性(最大改善了300%)和抗疲劳裂纹扩展性,同时在小于2 vol%的负载下保持模量核心。 PHMA块引起塑料空隙的增长和剪切带。在较低的接枝密度和较大的PHMA嵌段分子量的情况下,纳米复合材料同时显示出断裂韧性和拉伸模量的提高。 PGMA环氧相容嵌段还有助于改善纳米复合材料的断裂能。

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