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Structural CNT Composites Part I: Developing a Carbon Nanotube Filament Winder

机译:结构CNT复合材料第一部分:开发碳纳米管长丝络纱机

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Carbon nanotube (CNT) based materials promise advances in the production of high strength and multifunctional components for aerospace and other applications. Specifically, in tension dominated applications, the latest CNT based filaments are yielding composite properties comparable to or exceeding composites from more established fibers such as Kevlar and carbon fiber. However, for the properties of these materials to be fully realized at the component level, suitable manufacturing processes have to be developed. These materials handle differently from conventional fibers, with different wetting characteristics and behavior under load. The limited availability of bulk forms also requires that the equipment be scaled down accordingly to tailor the process development approach to material availability. Here, the development of hardware and software for filament winding of carbon nanotube based tapes and yarns is described. This hardware features precision guidance of the CNT material and control of the winding tension over a wide range in an open architecture that allows for effective process control and troubleshooting during winding. Use of the filament winder to develop CNT based Composite Overwrapped Pressure Vessels (COPVs) shall also be discussed.
机译:基于碳纳米管(CNT)的材料承诺在航空航天和其他应用中生产高强度和多功能部件的进步。具体地,在张力占主导地位的应用中,最新的CNT基丝通过来自更多已建立的纤维(例如Kevlar和碳纤维)的复合性质产生可比较或超过复合材料。然而,对于这些材料的性质在组分级充分实现,必须开发合适的制造工艺。这些材料与常规纤维不同,具有不同的润湿特性和负载行为。批量表格的有限可用性还要求设备相应地缩小,以定制流程开发方法以实现材料可用性。这里,描述了基于碳纳米管的胶带和纱线的灯丝绕组的硬件和软件的开发。该硬件具有CNT材料的精确指导,并在宽范围内控制绕组张力,该架构在绕组期间允许有效的过程控制和故障排除。还应讨论灯丝络器以开发基于CNT的复合复合压力容器(COPV)。

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