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Carbides and Nitrides of Zirconium and Hafnium

机译:锆和Ha的碳化物和氮化物

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摘要

Among transition metal carbides and nitrides, zirconium, and hafnium compounds are the most stable and have the highest melting temperatures. Here we review published data on phases and phase equilibria in Hf-Zr-C-N-O system, from experiment and ab initio computations with focus on rocksalt Zr and Hf carbides and nitrides, their solid solutions and oxygen solubility limits. The systematic experimental studies on phase equilibria and thermodynamics were performed mainly 40–60 years ago, mostly for binary systems of Zr and Hf with C and N. Since then, synthesis of several oxynitrides was reported in the fluorite-derivative type of structures, of orthorhombic and cubic higher nitrides Zr3N4 and Hf3N4. An ever-increasing stream of data is provided by ab initio computations, and one of the testable predictions is that the rocksalt HfC0.75N0.22 phase would have the highest known melting temperature. Experimental data on melting temperatures of hafnium carbonitrides are absent, but minimum in heat capacity and maximum in hardness were reported for Hf(C,N) solid solutions. New methods, such as electrical pulse heating and laser melting, can fill the gaps in experimental data and validate ab initio predictions.
机译:在过渡金属碳化物和氮化物中,锆和ha化合物最稳定且熔点最高。在这里,我们将从实验和从头算计算中回顾有关Hf-Zr-C-N-O系统中相和相平衡的已公开数据,重点是岩盐Zr和Hf碳化物和氮化物,它们的固溶体和氧溶解度极限。相平衡和热力学的系统实验研究主要是在40至60年前进行的,主要是Zr和Hf与C和N的二元体系。此后,据报道以萤石衍生物类型的结构合成了多种氧氮化物。斜方和立方较高的氮化物Zr3N4和Hf3N4。从头算就提供了越来越多的数据流,可检验的预测之一是岩盐HfC0.75N0.22相将具有最高的已知熔化温度。缺少碳氮化ha熔融温度的实验数据,但据报道Hf(C,N)固溶体的热容最小,硬度最大。电脉冲加热和激光熔化等新方法可以填补实验数据中的空白并验证从头算起的预测。

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