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Effect of carbon black nanoparticle intrinsic properties on the self-monitoring performance of glass fibre reinforced composite rods

机译:炭黑纳米粒子固有性质对玻璃纤维增​​强复合材料棒自监测性能的影响

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摘要

Self-monitoring composite rods, made of an internal conductive core surrounded by an external structural skin, were manufactured and tested. Both parts were made of glass fibre-epoxy. Electrical conductivity was achieved in the inner core by incorporating as an alternative high surface area or low surface area carbon black in the resin. Self-monitoring performance was assessed by simultaneous mechanical and electrical resistance measurements. The aim was to correlate the electrical resistance variation to stress. Only one type of material showed appropriate self-monitoring properties, since increase of electrical resistance was recorded at increasing loading (both monothonic and cyclic tensile loading), while electrical resistance recovery at high loads was found in the other case. Calorimetric analysis, rheological measurements and SEM observations were carried out to explain this result. Filler dispersion seems to be the key feature affecting the self-monitoring properties. Only high surface area nanoparticles can ensure self-monitoring reliability.
机译:制造并测试了由内部导电芯和外部结构蒙皮包围的自监测复合棒。这两部分均由玻璃纤维环氧树脂制成。通过在树脂中加入炭黑作为替代的高表面积或低表面积炭黑,可以在内核中获得导电性。通过同时进行机械和电阻测量来评估自我监测性能。目的是使电阻变化与应力相关。只有一种类型的材料显示出适当的自我监控性能,因为在增加的载荷(单声和循环拉伸载荷)下记录到电阻的增加,而在另一种情况下发现在高载荷下的电阻恢复。进行了量热分析,流变测量和SEM观察来解释这一结果。填料的分散似乎是影响自我监测性能的关键特征。只有高表面积的纳米颗粒才能确保自我监控的可靠性。

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