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Nucleation and growth of carbon filaments and vapor-grown carbon fibers

机译:碳丝和气相生长碳纤维的成核和生长

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Fifty years of research on the growth of carbon filaments has elucidated many aspects of filament production and w orked out mechanisms that provide guidance for experiment and invention. The role of the catalytic particles has been investigated in many ways. It is known that the particle maust dissolve carbon, and that any carbide phases formed should be of low stability, so as to minimize competition with the filament growth process. The particle must also become highly supersaturated in carbon in order that filmanent nucleation can occur. A useful growth procedure must optimize the chances of growing filaments of the proper length, diameter and morphology. The cataltic particle must become highly supersaturated in carbon in order that filament nucleation can occur. Since filaments are only one of a variety of structgures that may be precipitated by the catalytic particle to relieve its supersaturation the growing conditions must be carefully optimized. Encouraging filament growth requires that small diameter catalyst particles be protected from aggregation.
机译:碳丝生长的五十年研究阐明了碳丝生产的许多方面,并提出了为实验和发明提供指导的机制。已经以许多方式研究了催化颗粒的作用。已知颗粒必须溶解碳,并且所形成的任何碳化物相都应具有低稳定性,以最小化与长丝生长过程的竞争。该颗粒还必须在碳中变得高度过饱和,以便发生成膜成核作用。一个有用的生长程序必须优化生长适当长度,直径和形态的细丝的机会。催化粒子必须在碳中变得高度过饱和,以便发生长丝成核。由于长丝只是可能被催化颗粒沉淀以减轻其过饱和的多种结构之一,因此必须仔细优化生长条件。鼓励长丝生长,需要保护小直径催化剂颗粒不聚集。

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