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Large scale production of VGCF

机译:大规模生产VGCF

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摘要

The phenomenon that is the basis for synthesis of vapor grown carbon nanofibers (VGCF) has been observed for many years. In particular VGCF has been the subject of relatively intense research over the past twenty-five years due to the promise of achieving physical properties approaching single crystal graphite in the form of an inexpenive carbon filament. Production of VGCF on a commercial scale has lagged behind expectations for a material with such a desirable combination of properties that is synthesized in a simple, low-cost process. Barriers to commercial production are due to the unique properties of VGCF. In fact, VGCF are discontinuous fibers, surface state modifications are required for many attractive applications and there remain many unknowns in the manufacturing technologies required to support used in specific applications. These latter unknowns include processing methods to achieve the ideal surface states, the form of the fiber most likely to enable presenvation and translation of the desired property, and handling methods to achieve the appropriate forms. Recently, the development of the requisite technologies to address these barriers has been undertaken, through quantitative analysis of the fibers morphology and surface state generated for various combinations of the production parameters. This was done by seeking manufacturing analogies within the carbon black, carbon fiber, and glass fiber industries, and by development of new techniques for fiber synthesis, modification, and handling where no existing methods were suitable. The results of this effort, and prospects for future availability of a family of VGCF products will be reported in this chapter.
机译:已经观察到蒸汽生长碳纳米纤维(VGCF)的合成基础的现象多年。特别是VGCF是过去二十五年的相对激烈的研究主题,因为达到了以低廉碳丝形式接近单晶石墨的物理性质。在商业规模上生产VGCF已经落后于具有这种理想的性能组合的材料的预期,这些性能以简单的低成本过程合成。商业生产的障碍是由于VGCF的独特性质。事实上,VGCF是不连续的纤维,对于许多有吸引力的应用需要表面状态修改,并且在特定应用中使用的支持所需的制造技术中存在许多未知数。这些后一种未知包括达到理想表面状态的加工方法,纤维的形式最有可能能够实现所需性质的警告和翻译,以及处理适当的形式的处理方法。最近,通过对生产参数的各种组合产生的纤维形态和表面状态的定量分析,开展了解决这些障碍的必要技术。这是通过寻求炭黑,碳纤维和玻璃纤维行业内的制造类比,并通过开发用于纤维合成,修饰和处理的新技术,在不存在现有方法的情况下。本章将在本章中报告这一努力的结果,以及未来VGCF产品的未来可用性的前景。

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