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Preparation of TaB2-SiC oxidation protective coating for carbon materials by liquid phase sintering

机译:用液相烧结制备碳材料碳材料氧化保护涂层

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摘要

To control the microstructure and amounts of TaB2 phase in the TaB2-SiC coating, a novel liquid phase sintering method was developed on the basis of in -situ reaction method to prepare the TaB2-SiC coating, which includes synthesis of TaB2 powders and further preparation of TaB2-SiC coating. With Ta2O5, B2O3 and C employed as raw materials, hexagonal TaB2 powders were prepared by carbothermal reduction method at 1500 degrees C, whose mean particle size is 491 nm. The TaB2, SiC, C powders, and the low melting point phases Si and silica sol were used to prepare the TaB2-SiC coating by liquid phase sintering at 2373 K. The thickness of the coating is about 350 gm. Compared with the SiC coating, the weight loss of the samples modified by TaB2 decreased from 17.7% to 11.8%, and the average weight loss rate of the fastest weightloss zone reduced from -6 x 10 (-3) mg cm (-2) s-(1) to -5 x 10(-3) mg cm (-2) s (-1). During oxidation, the Ta-oxides would gradually dissolve in the silicate glass to form Ta-Si-O glass ceramics with dendritic structure, which significantly improved the toughness and stability of the glass layer. The Ta-Si-O glass ceramics possesses the ability of sealing and arresting the microcracks, which can enhance the oxidation protective ability of the coating.
机译:为了控制塔巴2-SiC涂层中塔巴2相的微观结构和量,在-Situ反应方法的基础上开发了一种新的液相烧结方法,以制备凸片2-SiC涂层,其包括凸片粉末的合成和进一步的制备Tab2-SiC涂层。使用作为原料的Ta2O5,B2O3和C,通过1500℃的碳热还原方法制备六边形蛋白2粉末,其平均粒度为491nm。用2373k液相烧结制备凸片2,SiC,C粉末和低熔点阶段Si和二氧化硅溶胶。涂层的厚度为约350克。与SiC涂层相比,由塔巴2改性的样品的重量损失从17.7%降至11.8%,最快的重量损伤区的平均重量损失率从-6×10(-3)mg cm(-2)减少S-(1)至-5×10(-3)mg cm(-2)s(-1)。在氧化过程中,TA氧化物将逐渐溶解在硅酸盐玻璃中以形成具有树突结构的Ta-Si-O玻璃陶瓷,这显着提高了玻璃层的韧性和稳定性。 TA-Si-O玻璃陶瓷具有密封和捕获微裂纹的能力,这可以提高涂层的氧化保护能力。

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