Environmental effects on mechanical, thermophysical and electrical properties of epoxy resin filled with carbon nanofillers

T. Glaskova-Kuzmina, A. Aniskevich, J. Sevcenko, A. Zotti, A. Borriello, M. Zarrelli
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引用次数: 5

Abstract

The aim of this work was to establish the effect of environmental factors (moisture and temperature) on some mechanical, electrical and thermal properties of epoxy-based composites filled with carbon nanofillers: nanotubes (CNT), nanofibers (CNF) and hybrid nanofiller (nanotubes/nanofibers in the ratio 1:1) and to reveal the most environmentally stable NC. First, the nanocomposites (NC) containing different nanofiller contents were prepared to evaluate electrical percolation threshold and to choose NC at certain electrical conductivity for further characterization of the physical properties in initial state and during/after environmental ageing. The environmental ageing consisted of water absorption at 70 °C until equilibrium moisture content reached all samples in 4 weeks and 2) heating at 70 °C for the same time, and 3) freezing at -20 °C for 8 weeks. Two concurrent factors, temperature and moisture, led to post-curing of all materials studied without significant plastization. Some positive nanofiller effects were found for sorption, mechanical and thermophysical characteristics of RTM6 epoxy resin. Based on experimental results, the most environmentally stable NC was epoxy filled with 0.1 wt. % of CNT/CNF hybrid, which had the lowest effect of temperature and moisture on thermal and electrical conductivities, along with the lowest equilibrium water content and diffusivity.The aim of this work was to establish the effect of environmental factors (moisture and temperature) on some mechanical, electrical and thermal properties of epoxy-based composites filled with carbon nanofillers: nanotubes (CNT), nanofibers (CNF) and hybrid nanofiller (nanotubes/nanofibers in the ratio 1:1) and to reveal the most environmentally stable NC. First, the nanocomposites (NC) containing different nanofiller contents were prepared to evaluate electrical percolation threshold and to choose NC at certain electrical conductivity for further characterization of the physical properties in initial state and during/after environmental ageing. The environmental ageing consisted of water absorption at 70 °C until equilibrium moisture content reached all samples in 4 weeks and 2) heating at 70 °C for the same time, and 3) freezing at -20 °C for 8 weeks. Two concurrent factors, temperature and moisture, led to post-curing of all materials studied without significant plastization. Some positive nanofiller e...
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环境对碳纳米填料填充环氧树脂力学、热物理和电学性能的影响
本研究的目的是建立环境因素(湿度和温度)对填充碳纳米填料(纳米管(CNT)、纳米纤维(CNF)和混合纳米填料(纳米管/纳米纤维比例为1:1)的环氧基复合材料的机械、电学和热性能的影响,并揭示最环境稳定的纳米复合材料。首先,制备不同纳米填料含量的纳米复合材料(NC),评估电渗透阈值,并选择一定电导率的NC,进一步表征初始状态和环境老化期间/之后的物理性能。环境老化包括:在70℃条件下吸水,4周内达到所有样品的平衡含水率,2)在70℃条件下加热,3)在-20℃条件下冷冻8周。两个同时发生的因素,温度和湿度,导致所有材料的后固化没有明显的塑化。纳米填料对RTM6环氧树脂的吸附性能、力学性能和热物理性能都有积极的影响。实验结果表明,环境最稳定的NC是填充0.1 wt. % CNT/CNF杂化物的环氧树脂,其温度和湿度对导热性和电导率的影响最小,平衡含水量和扩散系数也最低。本研究的目的是建立环境因素(湿度和温度)对填充碳纳米填料(纳米管(CNT)、纳米纤维(CNF)和混合纳米填料(纳米管/纳米纤维比例为1:1)的环氧基复合材料的机械、电学和热性能的影响,并揭示最环境稳定的纳米复合材料。首先,制备不同纳米填料含量的纳米复合材料(NC),评估电渗透阈值,并选择一定电导率的NC,进一步表征初始状态和环境老化期间/之后的物理性能。环境老化包括:在70℃条件下吸水,4周内达到所有样品的平衡含水率,2)在70℃条件下加热,3)在-20℃条件下冷冻8周。两个同时发生的因素,温度和湿度,导致所有材料的后固化没有明显的塑化。一些正的纳米填料…
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