4.7 Article

First principles modeling and simulation of Zr-Si-B-C-N ceramics: Developing hard and oxidation resistant coatings

Journal

ACTA MATERIALIA
Volume 125, Issue -, Pages 246-254

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.actamat.2016.11.061

Keywords

Hard coatings; Density functional theory calculations; ab-initio molecular dynamics; Elastic moduli; Nucleation

Funding

  1. National Science Foundation [CMMI-1335502]
  2. Texas Advance Computing Center in Austin, TACC
  3. High Performance Computing facilities at UTA
  4. Div Of Civil, Mechanical, & Manufact Inn
  5. Directorate For Engineering [1335502] Funding Source: National Science Foundation

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We model amorphous ZrSiBCN ceramics combining ab-initio molecular dynamic simulations with melt quench and simulated annealing techniques. Starting from the parent composition Zr42B32C8N18 we systematically increase the Si3N4 content along four different pathways in the composition diagram and evaluate trends in structure and properties. Mixtures of ZrB2, ZrN, and ZrC exhibit Zr layers as well as ZrB2 and ZrN(C) nuclei, but addition of Si3N4 reduces structural order in the models. Elastic moduli decrease with increasing Si3N4 content to values less than expected of a simple mixture model. Thus, while addition of Si3N4 to amorphous ZrBCN coatings may improve oxidation resistance, this needs to be balanced with desired mechanical properties. (C) 2016 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.

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