Title of article :
Computational study of structural, elastic and electronic properties of lithium disilicate (Li2Si2O5) glass-ceramic
Author/Authors :
Biskri، Ismail نويسنده University of Quebec at Trois Rivieres- Canada , , Zine Elabidine and Rached، نويسنده , , Habib and Bouchear، نويسنده , , Merzoug and Rached، نويسنده , , Djamel، نويسنده ,
Issue Information :
ماهنامه با شماره پیاپی سال 2014
Pages :
6
From page :
345
To page :
350
Abstract :
The objective of this study is to investigate theoretically the structural, elastic and electronic properties of Lithium Disilicate (LD) crystal (Li2Si2O5), using the pseudo potential method based on Density Functional Theory (DFT) with the Local Density Approximation (LDA) and the Generalized Gradient Approximation (GGA). The calculated structural properties namely the equilibrium lattice parameters and cell volume are in good agreement with the available experimental results. However, for the LD crystal elastic moduli: Shear modulus G, Youngʹs modulus E and Poissonʹs ratio ν we have found a discrepancy between our theoretical values and experimental ones reported in polycrystalline sample containing LD crystals. The calculated elastic properties show that LD is more rigid compared with other components. We also investigated the mechanical stability of Li2Si2O5 compound and we have noticed that this compound is stable against elastic deformations. On the basis of shear to bulk modulus ratio analysis, we inferred that Li2Si2O5 compound is brittle in nature. In order to complete the fundamental characteristics of this compound we have measured the elastic anisotropy. Our results for the energy band structure and Density of States (DOS) show that Li2Si2O5 compound has an insulator characteristic.
Keywords :
electronic properties , elastic properties , Lithium disilicate crystal , Structural properties , Glass-ceramics
Journal title :
Journal of the Mechanical Behavior of Biomedical Materials
Serial Year :
2014
Journal title :
Journal of the Mechanical Behavior of Biomedical Materials
Record number :
1406506
Link To Document :
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