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首页> 外文期刊>Journal of the European Ceramic Society >Phase stability and microstructural formations in the niobium carbides
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Phase stability and microstructural formations in the niobium carbides

机译:铌碳化物中的相位稳定性和微观结构形成

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摘要

The phase stability and microstructural formations for a series of hot isostatically pressed (HIP) NbCxcompositions was investigated. Based on the composition, single-phase B1 (Fm3ˉm) NbC or (P3ˉ1m) β?Nb2C equiaxed grains were observed as well as β-Nb2C lath precipitation within NbC. Particular discussion is given to the complexities of X-ray and electron diffraction for proper identification for the various poly-types of Nb2C that have been computationally predicted. The phase transformation pathways for these microstructures was revealed by a NbC-Nb diffusion couple from the HIP powders. The migration of vacancies towards the NbC side resulted in a refinement of the NbC grains whereas carbon’s migration into the Nb formed an uniform and distinct reaction front with a mixture of β-Nb2C and Nb grains. This latter microstructure suggests carbon’s reaction through the matrix grain is as significant in the conversion process as is the precipitation of β-Nb2C at the grain boundaries.
机译:研究了一系列热等静压(臀部)Nbcx组分的相位稳定性和微观结构形成。基于组合物,观察到单相B1(FM3 1M)Nbc或(p3 1m)β-nb2c等轴粒子以及Nbc内的β-nb2c Lath沉淀。特别讨论对X射线和电子衍射的复杂性,以便适当识别已经计算地预测的各种多种NB2C​​。这些微结构的相变途径由来自髋部粉末的NBC-NB扩散耦合揭示。朝向Nbc侧的空位迁移导致NBC颗粒的改进,而碳的迁移到Nb中形成均匀且不同的反应前面,并用β-NB2C和NB颗粒的混合物形成均匀和不同的反应前线。后一种微观结构表明碳的反应通过基质颗粒在转化过程中具有显着的β-NB2C在晶界的沉淀。

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