Mechanism and Kinetics of Oxidation of ZrN Ceramics
File(s)
Author(s)
Harrison, R
Type
Journal Article
Abstract
Oxidation of ZrN ceramics from 973–1373 K under static conditions reveals parabolic rate behavior, indicative of a diffusion-controlled process. In-situ high temperature powder XRD found the oxidation mechanism begins with destabilization of ZrN through formation of a ZrN1−x phase with oxide peaks initially detected at around 773 K. The zirconium oxide layer was found to be monoclinic by in-situ XRD with no evidence of tetragonal or cubic polymorphs present to 1023 K. Bulk ceramic samples oxidized at 1173 and 1273 K underwent slower oxidation than those oxidized at 973 and 1073 K. This change in oxidation rate and hence mechanism was due to formation of a denser c-ZrO2 polymorph stabilized by nitrogen defects. This N-doped dense ZrO2 layer acts as a diffusion barrier to oxygen diffusion. However, at an oxidation temperature of 1373 K this layer is no longer protective due to increased diffusion through it resulting in grain boundary oxidation.
Date Issued
2015-04-07
Date Acceptance
2015-02-24
Citation
Journal of the American Ceramic Society, 2015
ISSN
1551-2916
Publisher
Wiley
Journal / Book Title
Journal of the American Ceramic Society
Copyright Statement
© 2015 The American Ceramic Society. This is the peer reviewed version of the following article: Harrison, R. W., Lee, W. E. (2015), Mechanism and Kinetics of Oxidation of ZrN Ceramics. Journal of the American Ceramic Society, which has been published in final form at https://dx.doi.org/10.1111/jace.13575. This article may be used for non-commercial purposes in accordance With Wiley Terms and Conditions for self-archiving.
Publication Status
Published