Title of article
Elastic properties, thermal expansion coefficients and electronic structures of Ti0.75X0.25C carbides Original Research Article
Author/Authors
Kuiying Chen، نويسنده , , Linruo Zhao، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2007
Pages
7
From page
1805
To page
1811
Abstract
Elastic properties, thermal expansion coefficients and electronic structures of Ti0.75X0.25C carbides (X=W, Mo, Ta, Nb, V, Hf, Zr, Cr and Al) were systematically investigated using ab initio density functional theory (DFT) calculations. The calculated elastic moduli, electronic structures and thermal expansion coefficients α(T) of pure TiC are in good agreement with experimental data and other DFT calculations. Based on a phenomenological formula, the trends of elastic properties and ductile/brittle behavior of Ti0.75X0.25C were analyzed. It was found that alloying elements W, Mo, Ta, Nb, V and Hf can increase elastic moduli, while Zr, Cr and Al reduce moduli. The nearly free electron model and Debye approximation were applied in the evaluation of α(T). The anharmonic effect was taken into account by including volume-dependent elastic moduli and Debye temperature. Results show that alloying additions of 3d V, 4d Zr and Mo slightly reduce α(T), while 3d Cr increases α(T), Al, 4d Nb, 5d Hf and W almost keep α(T) unchanged in Ti0.75X0.25C at high temperatures. The electronic structures of Ti0.75X0.25C were calculated and analyzed, and the electronic density of states was used to interpret variations of elastic properties and ductile/brittle behavior induced by alloying additions.
Keywords
A. Ceramics , C. ab initio calculations , D. Elastic properties , D. Electronic structure
Journal title
Journal of Physics and Chemistry of Solids
Serial Year
2007
Journal title
Journal of Physics and Chemistry of Solids
Record number
1309877
Link To Document