Influence of Precursor Mixtures on the Laser Chemical Vapor Deposition of TiC Fibers

Fibers Pub Date : 2024-05-13 DOI:10.3390/fib12050043
Kendall J. Mitchell, G. B. Thompson
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Abstract

In this study, the hyperbaric (2 bar) laser chemical vapor deposition of TiC fibers grown under various percent pressures of hydrogen and ratios of ethylene and titanium tetrachloride (2:1 or 1:1) are reported. In the hydrogen-rich (85%) condition, sequential fiber depositions became stunted as a result of a loss of hydrogen, which served as a reducing agent for the metal halide as hydrogen evolved with the hydrocarbon gas in the reaction zone because of the Le Chatelier principle. For the hydrogen-lean (25%) condition, the intrinsic fiber growth rate was invariant, but gas phase nucleation resulted in the hydrocarbon forming carbon soot in the chamber which subsequently deposited and coated on the fibers. In the hydrogen-balanced composition (50%), the 2:1 precursor ratio resulted in inconsistent intrinsic growth rates which ranged from approximately 30 μm/s to 44 μm/s. However, for the hydrogen-balanced (50%) 1:1 condition, the intrinsic growth rate variation was reduced to approximately 12 μm/s. The differences in fiber uniformity, composition, and structure under these process conditions are discussed in terms of hydrogen’s ability to serve as a reducing agent, a fluid to transport heat from the deposition zone, and alter the structure of the fiber through thermophoresis.
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前驱体混合物对 TiC 纤维激光化学气相沉积的影响
本研究报告了在不同氢气百分比压力以及乙烯和四氯化钛比例(2:1 或 1:1)下生长的 TiC 纤维的高压(2 巴)激光化学气相沉积过程。在富氢(85%)条件下,由于勒夏特列原理,氢气在反应区与烃类气体一起挥发,成为金属卤化物的还原剂,氢气的损失导致纤维的连续沉积受阻。在缺氢(25%)条件下,纤维的固有生长率保持不变,但气相成核导致碳氢化合物在反应室中形成碳烟,碳烟随后沉积并附着在纤维上。在氢平衡成分(50%)条件下,2:1 的前驱体比例导致纤维的固有生长率不一致,从大约 30 μm/s 到 44 μm/s。然而,在氢平衡(50%)1:1 条件下,本征生长率的变化降低到大约 12 μm/s。在这些工艺条件下,纤维的均匀性、组成和结构的差异将从氢作为还原剂、从沉积区输送热量的流体以及通过热泳改变纤维结构的能力等方面进行讨论。
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