Fabrication and characterization of microstructure of stainless steel matrix composites containing up to 25vol% NbC

材料科学 微观结构 碳化铌 扫描电子显微镜 碳化物 电子背散射衍射 马氏体 成核 复合材料 冶金 能量色散X射线光谱学 腐蚀 有机化学 化学
作者
Wen Hao Kan,Zi Jie Ye,Yue Zhu,Vijay Bhatia,Kevin Dolman,Timothy Lucey,Xinhu Tang,Gwénaëlle Proust,Julie M. Cairney
出处
期刊:Materials Characterization [Elsevier]
卷期号:119: 65-74 被引量:50
标识
DOI:10.1016/j.matchar.2016.07.019
摘要

AISI 440 stainless steels reinforced with various volume fractions of niobium carbide (NbC) particles of up to 25 vol% were fabricated in-situ using an argon arc furnace and then heat-treated to produce a martensitic matrix. Optical and scanning electron microscopy (SEM), energy dispersive X-ray spectroscopy (EDS) and electron back-scatter diffraction (EBSD) techniques were used to analyze the microstructure, phases and composition of these composites. Interestingly, it was found that Chinese-script NbC could nucleate on existing primary NbC particles creating NbC clusters with complex microstructures. Additionally, hardness tests were used to evaluate viability in mining and mineral processing applications. The increase in NbC content resulted in an overall increase in the hardness of the composites while causing a marginal decrease in the amount of Cr in solid solution with the matrix, which could be a concern for corrosion resistance. The latter was due to the fact that the NbC lattice could dissolve a minor amount of Cr. Thermodynamic simulations also attributed this to a slight increase in M7C3 precipitation. Nonetheless, these novel composites show great promise for applications in wear and corrosive environments.
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