Motivated by a recently predicted structure of diamond-like BCâ with a high claimed hardness of 56 GPa (J. Phys. Chem. C2010, 114, 22688-22690), we focus on whether this tetragonal BCâ (t-BCâ) is superhard or not in spite of such an ultrahigh theoretical hardness. The mechanical properties of t-BCâ were thus further extended by using the first principles in the framework of density functional theory. Our results suggest that the Young's and shear moduli of t-BCâ exhibit a high degree of anisotropy. For the weakest shear direction, t-BCâ undergoes an electronic instability and structural collapse upon a shear strain of about 0.11, with its theoretically ideal strength of only 36.2 GPa. Specifically, the plastic deformation under shear strain along the (110)[001] direction can be attributed to the breaking of d1 B-C bonds.
Mechanical Properties and Atomic Explanation of Plastic Deformation for Diamond-Like BCâ.
类金刚石BC的力学性能和塑性变形的原子解释
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作者:Zheng Baobing, Zhang Meiguang, Chang Shaomei
| 期刊: | Materials | 影响因子: | 3.200 |
| 时间: | 2016 | 起止号: | 2016 Jun 24; 9(7):514 |
| doi: | 10.3390/ma9070514 | ||
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