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CARBON NANOTUBE REINFORCED POLYMERS FOR MULTIFUNCTIONAL COMPOSITE STRUCTURES

机译:用于多功能复合结构的碳纳米管增强聚合物

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In order to meet challenging multifunctional performance goals for composite missile structures, including Insensitive Munitions (IM) and electromagnetic interference (EMI) shielding, the Army is developing new composite materials with higher thermal and electrical conductivity. Conventional approaches in the development of thermally and electrically conductive polymers have involved the use of metallic particles or carbon black as fillers in the matrix. While these materials have achieved increased thermal conductivity and improved shielding effectiveness, the amount of filler material required to achieve the desired thermal and electrical conductivity properties have increased composite weight and raised viscosity to a level that prevents processing via conventional composite manufacturing processes, such as filament winding or resin transfer molding. This research has involved the development and characterization of a modified epoxy resin system with multiwall nanotube (MWNT) reinforcements. The Phase I research has demonstrated the ability to achieve increased electrical conductivity at relatively low MWNT concentration (MWNT) in a dispersed MWNT-reinforced epoxy resin and significantly higher through-thickness conductivity (up to 20 W/m-K) via epoxy-infiltrated, aligned MWNT arrays. The ongoing Phase II research involves more comprehensive material and process development and characterization, with larger scale component-level testing to integrate the material technology into representative composite structures.
机译:为了满足复合导弹结构的挑战性能目标,包括不敏感的弹药(IM)和电磁干扰(EMI)屏蔽,陆军正在开发具有较高热和导电性的新型复合材料。在热和导电聚合物的发展中常规方法涉及使用金属颗粒或炭黑作为基质中的填料。虽然这些材料具有提高的导热性和改善的屏蔽效果,但是达到所需的热和电导率的填充材料的量具有增加的复合重量和升高粘度,以防止通过常规复合制造工艺(例如灯丝)的水平绕组或树脂转移成型。该研究涉及具有多壁纳米管(MWNT)增强剂的改性环氧树脂体系的开发和表征。 I阶段研究已经证明了在分散的MWNT增强的环氧树脂中以相对低的MWNT浓度(MWNT)在分散的MWNT增强的环氧树脂中获得增加的电导率,并通过环氧渗透,对准的对齐显着更高的贯穿厚度导电性(最多20W / mK) MWNT阵列。正在进行的II期研究涉及更全面的材料和过程开发和表征,具有更大的规模分量级测试,将材料技术集成为代表性的复合结构。

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