2011
DOI: 10.1002/pssb.201046125
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FP‐LAPW calculations of structural and elastic properties of tantalum under high pressure

Abstract: We have revisited and refined the high-pressure elastic properties of body-centered-cubic Ta using the accurate allelectron full potential linearized augmented plane wave method (FP-LAPW) within the framework of density functional theory (DFT). Based on the total energy calculations, we first deduced the accurate static equation of state (EOS) of Ta. Then we derived the elastic constants, C 11 , C 12 , and C 44 under pressure up to 500 GPa using the pressure-correction method which corrected the previous metho… Show more

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Cited by 6 publications
(3 citation statements)
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“…In return, the calculated elastic modulus of E 100 also shows the same trend with our results. But the calculated elastic modulus of E 100 from DFT calculations [ 33 ] gradually increases with the increasing pressure, and no downward concave section is found in the curves. What makes this inconsistency happen?…”
Section: Resultsmentioning
confidence: 99%
“…In return, the calculated elastic modulus of E 100 also shows the same trend with our results. But the calculated elastic modulus of E 100 from DFT calculations [ 33 ] gradually increases with the increasing pressure, and no downward concave section is found in the curves. What makes this inconsistency happen?…”
Section: Resultsmentioning
confidence: 99%
“…From the elastic constants, we deduced its highpressure sound velocities in the way similar to our previous work. 38 To compare with experiments, we also calculated the elastic constants of bcc and deduced its highpressure velocities with the same method. The comparison of the calculated sound velocities with experiments are plotted in Fig.…”
Section: Sound Velocities Of Pnma-tamentioning
confidence: 99%
“…A2.2, pressure hardening issues are further enhanced under constant-conditions as the present and indented domains depict an infinite group of attached identical crystals being concurrently indented. The effective value for elucidated from the nanoindentations (Table 5.1) is systematically determined in the limit of small deformations (i.e., at / ≈ 0.1 [174]), where the simulated nanocontacts with nonbarostated ( and ) dynamics exhibit a reasonable elastic modulus (in comparison with the obtained in Ta experiments [36,38,175].…”
Section: Appendix A2 the Statistical Ensemble In The Simulations Of N...mentioning
confidence: 99%