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Investigation of the High Temperature Oxidation Behavior of \({\mathrm{MgF}}_2\) in Air Atmosphere

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Abstract

In the present study, we investigate the effect of annealing temperature, annealing time, particle size, and impurity concentration on the oxidation behavior of the \({\mathrm{MgF}}_2\) and \({\mathrm{MgF}}_2\)-\({\mathrm{Cu}}\) alloy powder. \({\mathrm{MgF}}_2\) and \({\mathrm{MgF}}_2\)-\({\mathrm{Cu}}\) alloy samples have been prepared by mechanical alloying process. The samples have been annealed at different temperatures and times. The oxidation treatment of \({\mathrm{MgF}}_2\) and \({\mathrm{MgF}}_2\)-\({\mathrm{Cu}}\) cermets in the air oven at different annealing temperature and time have been studied using XRD, SEM, and EDS. Our experimental results indicate that the oxidation rate increases by decreasing the particle size and increasing the annealing time. The results illustrates that the participation of copper material accelerates the oxidation reaction of \({\mathrm{MgF}}_2\).

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Acknowledgements

Kadivar acknowledges the support of Shiraz University of Technology Research Council.

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Correspondence to Erfan Kadivar.

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Kadivar, E., Mozafari, Z. Investigation of the High Temperature Oxidation Behavior of \({\mathrm{MgF}}_2\) in Air Atmosphere. Oxid Met 94, 179–189 (2020). https://doi.org/10.1007/s11085-020-09993-4

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  • DOI: https://doi.org/10.1007/s11085-020-09993-4

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