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Tensile strength, oxidation resistance and wettability of carbon fibers coated with a TiC layer using a molten salt method

机译:使用熔盐法涂覆有TiC层的碳纤维的拉伸强度,抗氧化性和润湿性

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摘要

Titanium carbide (TiC) coating were synthesized on Polyacrylonitrile (PAN)-based carbon fibers by a molten salt method using the molten salt mixture composed of LiCl, KCl and KF as a reaction medium. The surface morphology, tensile strength and oxidation resistance of the uncoated and TiC-coated carbon fibers were investigated. The wettability of these fibers by molten magnesium (Mg) and aluminum (Al) was also examined. TiC coatings obtained have a thickness of approximately 0.05-0.6. μm and are found to be uniform and adherent to the carbon fibers. After being coated with a uniform and continuous TiC layer, the tensile strength of the carbon fibers decreases and their oxidation resistance is improved significantly. An increase in the TiC coating thickness leads to the reduction in the tensile strength of the carbon fibers and the improvement of their oxidation resistance. The oxidation activation energy of the carbon fibers increases from 127 to 170. kJ/mol after being coated with a 124. nm thick layer of TiC. Coating of carbon fibers with TiC also induces an increase in the total surface free energy of the carbon fibers, and as a result the wettability of carbon fibers with molten Mg and Al is improved remarkably. TiC coating is found to be stable at 1000. °C in molten Mg. However it is readily decomposed by the molten Al at high temperature, which brings about carbon fibers being attacked by the molten Al and the consequent severe damage of carbon fibers.
机译:使用由LiCl,KCl和KF组成的熔融盐混合物作为反应介质,通过熔融盐法在聚丙烯腈(PAN)基碳纤维上合成碳化钛(TiC)涂层。研究了未涂覆和TiC涂覆的碳纤维的表面形态,拉伸强度和抗氧化性。还检查了这些纤维在熔融镁(Mg)和铝(Al)中的润湿性。获得的TiC涂层具有约0.05-0.6的厚度。微米,发现是均匀的并粘附在碳纤维上。在涂覆均匀且连续的TiC层后,碳纤维的拉伸强度降低,抗氧化性得到显着改善。 TiC涂层厚度的增加导致碳纤维的拉伸强度降低并且其抗氧化性提高。碳纤维的氧化活化能在涂覆124.nm厚的TiC层后从127增加到170. kJ / mol。用TiC涂覆碳纤维也引起碳纤维的总表面自由能的增加,结果,碳纤维被熔融的Mg和Al的润湿性显着提高。发现TiC涂层在熔融的Mg中在1000°C时稳定。然而,它在高温下容易被熔融的铝分解,这导致碳纤维受到熔融的铝的侵蚀,从而严重损害了碳纤维。

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