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High mechanical and thermal performance of Sasobit-modified epoxy resin, prepared via vacuum shock technique

机译:通过真空休克技术制备的索非菌改性环氧树脂的高机械和热性能

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摘要

In this study, thermal and mechanical properties of novel nanocomposite, epoxy resin reinforced with octadecylamine functionalized graphene oxide (GO-ODA) and Sasobit, prepared via creative vacuum shock technique, were investigated. By introducing 1, 3 and 5 wt% Sasobit to the neat epoxy resin, the tensile strength increased remarkably by 104%, 315% and 266%, respectively due to the unique stiff and crystalline structure of Sasobit. In addition, considerable enhancement of 125% in Young’s modulus, 351% in toughness, 562% in impact resistance, ~19 ~C in thermal stability and ~7 ~C in glass transition temperature of epoxy resin with 3 wt% Sasobit loading was demonstrated. The composite containing 3 wt% Sasobit alone, were found to have even superior properties than GO-ODA/epoxy nanocomposite, as surprisingly 3, 2.9, 2.2 and 2 times more improvement, respectively in tensile strength, toughness, impact strength and thermal stability of epoxy resin compared to reinforcement with GO-ODA were obtained.
机译:在该研究中,研究了通过创造性真空休克技术制备的十八烷基官能化石墨烯氧化物(GO-ODA)和伴随的新型纳米复合材料,加强的环氧树脂的热和力学性能。通过将1,3和5wt%Sasobit引入整齐的环氧树脂,由于索诺米特的独特僵硬和晶体结构,抗拉强度显着增加了104%,315%和266%。此外,杨氏模量的相当大提高了125%,韧性351%,抗冲击性562%,热稳定性〜19℃〜7〜C,环氧树脂玻璃化转变温度为3wt%索非汁载荷。发现含有3wt%Sasobit的复合物,甚至比Go-ODA /环氧纳米复合材料具有甚至优异的性质,分别在拉伸强度,韧性,冲击强度和热稳定性中分别提高3,2.9,2.2和2倍得到环氧树脂与GO-ODA的加固相比。

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