Jhi S H, Louie S G, Cohen M L, Morris J W
Department of Physics, University of California at Berkeley, Berkeley, California 94720, USA.
Phys Rev Lett. 2001 Aug 13;87(7):075503. doi: 10.1103/PhysRevLett.87.075503. Epub 2001 Jul 27.
The ideal shear strength of transition metal carbides and nitrides is calculated with the use of the ab initio pseudopotential density functional method. The microscopic mechanism that limits the ideal strength is studied using full atomic and structural relaxation and the results of electronic structure calculations. It is shown that plasticity in perfect crystals can be triggered by electronic instabilities at finite strains. Our study explicitly demonstrates that the ideal strength in these materials is limited by the elastic instability which is in turn initiated by electronic instabilities. The potential application of alloy hardening due to the onset of instabilities at different strains is also discussed.
利用从头算赝势密度泛函方法计算了过渡金属碳化物和氮化物的理想剪切强度。通过全原子和结构弛豫以及电子结构计算结果研究了限制理想强度的微观机制。结果表明,完美晶体中的塑性可由有限应变下的电子不稳定性引发。我们的研究明确表明,这些材料的理想强度受弹性不稳定性限制,而弹性不稳定性又是由电子不稳定性引发的。还讨论了由于不同应变下不稳定性的出现而导致合金硬化的潜在应用。