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Electrical and mechanical properties of Carbon aerogels / Phenolic resin for Nanocomposites

机译:用于纳米复合材料的碳气凝胶/酚醛树脂的电气和力学性能

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This study used carbon aerogels (CA) and phenolic resin in fixed proportations to produce nano high polymer resin, and used poly ehtylene oxide (PEO) as the modifying agent for phenolic resin to improve the mechanical properties of phenolic resin and promote the surface conductivity. The prepared nano high polymer resin and carbon cloth were made into nano-prepreg by using ultrasonic impregnation method, and a nano-prepreg composite material was prepared by using hot compacting and cut to test pieces to measure its mechanical properties and surface conductivity as well as the influence of temperature-humidity environment (85°C/168hr and 85°C/85%RH/168hr) on mechanical properties. The result showed that the surface conductivity increased by 64.55%, the tensile strength at room temperature increased by 35.7%, the flexural strength increased by 18.4%, and the impact strength increased by 101%. In hot environment (85°C/168hr), the tensile strength decreased by 23.8%, the flexural strength increased by 3.1%, and the impact strength increased by 84.6%. In high temperature-high humidity environment (85°C/85% RH/168hr), the tensile strength decreased by 29.6%, the flexural strength decreased by 17%, and the impact strength increased by 95.7%.
机译:本研究使用碳气孔(Ca)和酚醛树脂在固定票价中生产纳米高分子树脂,并用作酚醛树脂的改性剂,以改善酚醛树脂的机械性能并促进表面电导率。通过使用超声波浸渍方法将制备的纳米高分子树脂和碳布制成纳米预浸料,并通过使用热压缩和切割以测试碎片以测量其机械性能和表面电导率以及纳米预浸料复合材料以测量其机械性能和表面电导率温度湿度环境(85°C / 168Hr和85℃/ 85%RH / 168HR)对机械性能的影响。结果表明,表面电导率提高了64.55%,室温下的拉伸强度升高35.7%,抗弯强度增加18.4%,冲击强度增加了101%。在热环境(85°C / 168HR)中,拉伸强度降低23.8%,弯曲强度增加3.1%,冲击强度增加了84.6%。在高温高湿度环境(85℃/ 85%RH / 168HR)中,拉伸强度降低29.6%,弯曲强度降低了17%,冲击强度增加了95.7%。

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