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Structural CNT Composites Part II: Assessment of CNT Yarns as Reinforcement for Composite Overwrapped Pressure Vessels

机译:结构CNT复合材料第II部分:CNT纱线评估作为复合复合压力容器的增强

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Carbon nanotubes (CNTs) are one-dimensional nanomaterials with outstanding electrical and thermal conductivities and mechanical properties. This combination of properties offers routes to enable lightweight structural aerospace components. Recent advances in the manufacturing of CNTs have made bulk forms such as yarns, tapes and sheets available in commercial quantities to permit the evaluation of these materials for aerospace use, where the superior tensile properties of CNT composites can be exploited in tension dominated applications such as composite overwrapped pressure vessels (COPVs). To investigate their utility in this application, aluminum rings were overwrapped with thermoset/CNT yarn composite and their mechanical properties measured. CNT composite overwrap characteristics such as processing method, CNT/resin ratio, and applied tension during CNT yarn winding were varied to determine their effects on the mechanical performance of the CNT composite overwrapped Al rings (CCOARs). Mechanical properties of the CCOARs were measured under static and cyclic loads at room, elevated, and cryogenic temperatures to evaluate their mechanical performance relative to bare Al rings. At room temperature, the breaking load of CCOARs with a 10.8% additional weight due to the CNT yarn/thermoset overwrap increased by over 200% compared to the bare Al ring. The quality of the wound CNT composites was also investigated using x-ray computed tomography.
机译:碳纳米管(CNT)是具有优异的电气和热导体的一维纳米材料和机械性能。这种属性的组合提供了途径,以实现轻质的结构航空航天部件。 CNT制造的最新进展使得诸如纱线,磁带和纸张中的堆积形式,以允许评估这些用于航空航天的材料,其中CNT复合材料的卓越抗拉性能可以在张力主导的应用中被利用,如复合超包压力容器(COPV)。为了研究其在本申请中的效用,铝环用热固性/ CNT纱复合材料覆盖并测量其机械性能。 CNT复合超包装特性如CNT纱线绕组期间的加工方法,CNT /树脂比和施加的张力,以确定它们对CNT复合材料超包(CCOAR)的机械性能的影响。在室内,升高和低温温度下在静态和循环负载下测量CCoAR的机械性能,以评估它们相对于光秃秃的圆环的机械性能。在室温下,与光秃秃的圆环相比,由于CNT纱/热固性型超包膜具有10.8%额外重量的CCOAR的破碎载荷增加了200%。还使用X射线计算断层扫描研究了伤口CNT复合材料的质量。

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