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Synthesis, characterization and microstructure of tantalum carbide-based ceramics by liquid polymeric precursor method

机译:液态聚合物前驱体法合成碳化钽基陶瓷的表征和微观结构

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A novel soluble precursor for tantalum carbide was prepared by blending allyl-functional novolac resin (AN) with a tantalum-containing polymer named polytantaloxanesal, which was synthesized by hydrolysis and polycondensation of an acetylacetone coordinated monomer containing tantalum Tantalum carbide (TaC) ceramics were formed by pyrolysis of the precursors at 1400 degrees C in argon. The thermal behavior, phase composition and microstructure of the ceramics were investigated. The carbothermal reduction process started at 900 degrees C, and fully completed at 1400 degrees C. The mean crystallite size of the precursor-derived TaC ceramics was less than 30 nm and Ta and C elements were homogeneously distributed in the ceramic samples. (C) 2015 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:通过将烯丙基官能酚醛清漆树脂(AN)与含钽的聚合物称为聚钽氧烷混合,制备了新型的碳化钽可溶性前体,该聚合物通过水解和缩合含钽的乙酰丙酮配位单体而形成,碳化钽(TaC)陶瓷形成通过在1400℃下在氩气中热解前驱物。研究了陶瓷的热行为,相组成和微观结构。碳热还原过程始于900摄氏度,并于1400摄氏度完全完成。源自前驱物的TaC陶瓷的平均微晶尺寸小于30 nm,并且Ta和C元素均匀分布在陶瓷样品中。 (C)2015 Elsevier Ltd和Techna Group S.r.l.版权所有。

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