Article ID Journal Published Year Pages File Type
10638676 Materials Chemistry and Physics 2005 6 Pages PDF
Abstract
The reaction was studied employing different carbon contents (15-31%) at temperatures from 1400 to 1650 °C. The β″-phase (Zr7O9.5N3.0) was the unique secondary product formed. The crystallite sizes of the zirconium phases were also determined by XRD. Some samples were analyzed using the Rietveld method with silicon as internal standard. Using the carbonitriding process a Zr(C,O,N) phase was obtained and the loss weight is a parameter permitting to control the reaction products. The oxidation resistance of the Zr(C,O,N) phase was studied employing differential thermal analysis (DTA)-thermogravimetric analysis (TG) techniques. Additionally, microstructure analysis of raw materials and reaction products were performed by scanning electronic microscopy (SEM).
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Physical Sciences and Engineering Materials Science Electronic, Optical and Magnetic Materials
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