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Multifunctional graphene/POSS epoxy resin tailored for aircraft lightning strike protection

机译:专为飞机雷击防护量身定制的多功能石墨烯/ POSS环氧树脂

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摘要

This paper presents a first successful attempt to obtain a conductivity mapping at nanoscale level of a new multifunctional fire retardant graphene/polyhedral oligomeric silsesquioxane (POSS) epoxy resin using Tunneling Atomic Force Microscopy (TUNA) that is a very sensitive mode by which ultra-low currents ranging from 80 fA to 120 pA can be measured. The multifunctional material, specifically designed to meet structural aeronautical requirements, such as suitable thermal stability, fire resistance, mechanical performance and electrical conductivity, has proven to be a promising candidate in the field of aeronautic and aerospace composites. The results also highlight the great potentiality of TUNA technique to analyze conductive networks at nanodomain level. Through simultaneous topographic and current images acquisition, this technique enables a direct correlation of local topography with electrical properties of the nanofiller based samples. The intrinsic electrical conductivity of the manufactured polymeric systems allows TUNA measurements without using electrical conductive paint, which is usually employed for polymeric systems to ensure effective electrical contacts to the ground.
机译:本文提出了首次成功的尝试,即使用隧道原子力显微镜(TUNA)来获得新型多功能阻燃石墨烯/多面体低聚倍半硅氧烷(POSS)环氧树脂在纳米级的电导图,这是一种非常灵敏的模式,通过超低光谱可以测量80 fA至120 pA的电流。专门设计用于满足结构性航空要求(例如合适的热稳定性,耐火性,机械性能和导电性)的多功能材料,已被证明是航空和航天复合材料领域的有希望的候选者。研究结果还凸显了TUNA技术在纳米域水平分析导电网络方面的巨大潜力。通过同时采集地形图和当前图像,该技术可以使局部地形图与基于纳米填料的样品的电性能直接相关。所制造的聚合物系统的固有电导率无需使用导电涂料即可进行TUNA测量,该涂料通常用于聚合物系统以确保与地面的有效电接触。

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