Publications

Showing results for "kotan" 1-8 of 8

The publications on this page are generated nightly from the NCSU Library's Scholarly Publications Repository. This repository is by no means a fully comprehensive listing of publications. Publications can be added to the repository manually by visiting the Publications Repository Submission Form.

Title Journal Year
Influence of Zr and nano-Y2O3 additions on thermal stability and improved hardness in mechanically alloyed Fe base ferritic alloys Journal of Alloys and Compounds, 615, 1013-1018. Kotan, H., Darling, K. A., Scattergood, R. O., & Koch, C. C. 2014
An in situ experimental study of grain growth in a nanocrystalline Fe91Ni8Zr1 alloy Journal of Materials Science, 48(5), 2251-2257. Kotan, H., Darling, K. A., Saber, M., Scattergood, R. O., & Koch, C. C. 2013
Thermodynamic stabilization of nanocrystalline binary alloys Journal of Applied Physics, 113(6). Saber, M., Kotan, H., Koch, C. C., & Scattergood, R. O. 2013
High temperature stabilization of nanocrystalline grain size: Thermodynamic versus kinetic strategies Journal of Materials Research, 28(13), 1785-1791. Koch, C. C., Scattergood, R. O., Saber, M., & Kotan, H. 2013
Thermal stability of nanocrystalline grain size in ternary FE-base alloys Materials Science Forum, 753) (pp. 341-344). Koch, C. C., Scattergood, R. O., Kotan, H., & Saber, M. 2013
Thermal stability and mechanical properties of nanocrystalline Fe-Ni-Zr alloys prepared by mechanical alloying Journal of Materials Science, 48(24), 8402-8411. Kotan, H., Darling, K. A., Saber, M., Scattergood, R. O., & Koch, C. C. 2013
A predictive model for thermodynamic stability of grain size in nanocrystalline ternary alloys Journal of Applied Physics, 114(10). Saber, M., Kotan, H., Koch, C. C., & Scattergood, R. O. 2013
Thermal stability of nanocrystalline Fe-Cr alloys with Zr additions Materials Science & Engineering. A, Structural Materials: Properties, Microstructure and Processing, 556, 664-670. Saber, M., Kotan, H., Koch, C. C., & Scattergood, R. O. 2012

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