Acta Metallurgica Sinica (English Letters) ›› 2016, Vol. 29 ›› Issue (3): 301-312.DOI: 10.1007/s40195-015-0353-2
Special Issue: 2016-2017镁合金虚拟专辑
• Orginal Article • Previous Articles
Qun Zu1, Ya-Fang Guo1(), Shuang Xu2, Xiao-Zhi Tang1, Yue-Sheng Wang1
Received:
2015-08-25
Revised:
2015-11-13
Published:
2016-03-20
Qun Zu, Ya-Fang Guo, Shuang Xu, Xiao-Zhi Tang, Yue-Sheng Wang. Molecular Dynamics Simulations of the Orientation Effect on the Initial Plastic Deformation of Magnesium Single Crystals[J]. Acta Metallurgica Sinica (English Letters), 2016, 29(3): 301-312.
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Fig. 1 a Square, b cylindrical simulation models for magnesium nano-pillars. c The unit cell of hcp lattice. The yaxis indicates the loading direction, which is always perpendicular to the [1?010]-axis
θ | Tension | Compression | ||
---|---|---|---|---|
Square | Cylinder | Square | Cylinder | |
0° | T1, BSF, CR | √ | PrD<a> | √ |
10° | T1, BSF, CR | √ | SB | √ |
15° | PrD <a>, T1, BSF, CR | √ | SB | √ |
20° | PrD <a>, T1, BSF, CR | √ | SB | √ |
31.6° | PrD <a>, BD<a> | √ | BD<a> | √ |
45° | PrD <a>, BD<a> | BD<a>, PrD<a> | BD<a> | √ |
58.4° | SB | SB, BD<a> | BD<a> | √ |
75° | SB | SB, BD<a> | PyD<+a >, BSF, BD<a> | √ |
80° | SB | √ | PyD<c+a >, BSF, BD<a> | √ |
90° | PyD<c+a>, B/P, T3, BD<a>, BSF | √ | PyD<c+a >, BSF, BD<a> | √ |
Conclusion | θ < 15°, T1, BSF; θ = 15°-45°, PrD< a>; θ = 45°-80°, SB; θ> 80°, PyD<c+a> | θ ~ 45°, BD<a> | θ = 0°, PrD <a>;θ < 20°, SB; θ = 20°-75°, BD<a>; θ > 75°, PyD<c+a> | √ |
Table 1 Initial plastic deformation mechanisms of the samples with different orientation θ under tension and compression
θ | Tension | Compression | ||
---|---|---|---|---|
Square | Cylinder | Square | Cylinder | |
0° | T1, BSF, CR | √ | PrD<a> | √ |
10° | T1, BSF, CR | √ | SB | √ |
15° | PrD <a>, T1, BSF, CR | √ | SB | √ |
20° | PrD <a>, T1, BSF, CR | √ | SB | √ |
31.6° | PrD <a>, BD<a> | √ | BD<a> | √ |
45° | PrD <a>, BD<a> | BD<a>, PrD<a> | BD<a> | √ |
58.4° | SB | SB, BD<a> | BD<a> | √ |
75° | SB | SB, BD<a> | PyD<+a >, BSF, BD<a> | √ |
80° | SB | √ | PyD<c+a >, BSF, BD<a> | √ |
90° | PyD<c+a>, B/P, T3, BD<a>, BSF | √ | PyD<c+a >, BSF, BD<a> | √ |
Conclusion | θ < 15°, T1, BSF; θ = 15°-45°, PrD< a>; θ = 45°-80°, SB; θ> 80°, PyD<c+a> | θ ~ 45°, BD<a> | θ = 0°, PrD <a>;θ < 20°, SB; θ = 20°-75°, BD<a>; θ > 75°, PyD<c+a> | √ |
Fig. 2 Structures of initial plasticity under tension at θ = 0° under ε = 7.2% a, and ε = 7.3% b. Magnified atom configurations of initial defects: c T1 and BSF, d basal/prismatic (B/P) interface between the parent lattice and the rotated lattice, and e grain boundary (GB) between the parent lattice and rotated lattice
Fig. 4 Initial deformation mechanism of the circle column viewed along the loading y direction at θ = 45° with the strains of 5.5% a, 5.59% b, and 5.68% c
Fig. 5 Initial deformation mechanism of the square column under tension at θ = 31.6°. a The structure with prior defect of prismatic <a> dislocation. b The structure with the following defect of basal <a> dislocation
Fig. 6 Initial deformation mechanism of square column under tension at θ = 58.4° with the strains of 5.2% a, b and 5.3% c. d Magnified figure of the shear band
Fig. 7 Initial deformation mechanism of circle column under tension at θ = 58.4°. a The prior defect of basal <a> dislocation. b The following defect of shear band
Fig. 8 Initial deformation mechanism of the square column under tension at θ = 90°. a Pyramidal dislocation nucleates at the free surface at the strain of 8.1%. B/P transformation and BSF formation at strain of 8.2% b, 8.7% c and 9.5% d, respectively. e, f Magnified atom configurations of B/P transformation
Fig. 9 Microstructure evolutions of the [1?21?0]-oriented square pillar under compression with the strains of ε = 5%a, ε = 6.7% b, ε = 6.8% c and ε = 6.9% d
θ | Tension | Compression | ||
---|---|---|---|---|
σ max (GPa) | Initial defects | σ max (GPa) | Initial defects | |
0° | 1.68 | T1, BSF | 3.92 | PrD <a> |
10° | 1.61 | T1, BSF | 2.11 | SB |
15° | 1.64 | PrD <a> | 1.94 | SB |
31.6° | 1.78 | PrD <a> | 1.73 | BD <a> |
45° | 2.52 | PrD <a> | 1.64 | BD <a> |
58.4° | 2.35 | SB | 1.97 | BD <a> |
75° | 2.68 | SB | 3.23 | PyD <+a> |
80° | 3.31 | SB | 3.53 | PyD <c+a> |
90° | 4.01 | PyD <c+a> | 3.54 | PyD <c+a> |
Table 2 Initial defects and maximum yield stresses (σ max) with different orientations under the tension and compression
θ | Tension | Compression | ||
---|---|---|---|---|
σ max (GPa) | Initial defects | σ max (GPa) | Initial defects | |
0° | 1.68 | T1, BSF | 3.92 | PrD <a> |
10° | 1.61 | T1, BSF | 2.11 | SB |
15° | 1.64 | PrD <a> | 1.94 | SB |
31.6° | 1.78 | PrD <a> | 1.73 | BD <a> |
45° | 2.52 | PrD <a> | 1.64 | BD <a> |
58.4° | 2.35 | SB | 1.97 | BD <a> |
75° | 2.68 | SB | 3.23 | PyD <+a> |
80° | 3.31 | SB | 3.53 | PyD <c+a> |
90° | 4.01 | PyD <c+a> | 3.54 | PyD <c+a> |
[1] | S. Xu, Y.F. Guo, A.H.W. Ngan, Int. J. Plast 43, 116 (2013) |
[2] | A.H.W. Ngan, Scr. Mater. 65, 978(2011) |
[3] | J. Kim, R. Golle, H. Hoffmann, Mater. Sci. Eng., A 527, 7220 (2010) |
[4] | X.Y. Li, W. Yang, J. Nanomater. 2009, 245941(2009) |
[5] | T. Al-Samman, K.D. Molodov, D.A. Molodov, G. Gottstein, S. Suwas, Acta Mater. 60, 537(2012) |
[6] | H.G. Qi, Y.F. Guo, X.Z. Tang, S. Xu, Acta Metall. Sin. (Engl. Lett.) 24, 487(2011) |
[7] | A. Cao, E. Ma, Acta Mater. 56, 4816(2008) |
[8] | Y. Chun, C.H.J. Davies, Mater. Sci. Eng., A 528, 5713 (2011) |
[9] | Y. Fan, Y.N. Osetsky, S. Yip, B. Yildiz, Phys. Rev. Lett. 109, 135503(2012) |
[10] | T. Zhu, J. Li, A. Samanta, A. Leach, K. Gall, Phys. Rev. Lett. 100, 025502(2008) |
[11] | X.Z. Lin, D.L. Chen, Mater. Sci. Eng., A 496, 106 (2008) |
[12] | J.Y. Kim, D. Jang, J.R. Greer, Int. J. Plast 28, 46 (2012) |
[13] | D.L. Yin, J.T. Wang, J.Q. Liu, X. Zhao, J. Alloy. Compd. 478, 789(2009) |
[14] | X.Y. Lou, M. Li, R.K. Boger, S.R. Agnew, R.H. Wagoner, Int. J. Plast 23, 44 (2007) |
[15] | M. Battaini, E.V. Pereloma, C.H.J. Davies, Metall. Mater. Trans. A 38, 276 (2006) |
[16] | D.W. Brown, S.R. Agnew, M.A.M. Bourke, T.M. Holden, S.C. Vogel, C.N. Tomé, Mater. Sci. Eng., A399, 1(2005) |
[17] | E.W. Kelley, W.F. Hosford, Trans. Metall. Soc. AIME 242, 5 (1968) |
[18] | B.C. Wonsiewicz, W.A. Backofen, Trans. Metall. Soc. AIME 239, 1422 (1967) |
[19] | E. Lilleodden, Scr. Mater. 62, 532(2010) |
[20] | C.M. Byer, K.T. Ramesh, Acta Mater. 61, 3808(2013) |
[21] | A. Chapuis, Mater. Sci. Eng., A 590, 401 (2014) |
[22] | J. Ye, R.K. Mishra, A.K. Sachdev, A.M. Minor, Scr. Mater. 64, 292(2011) |
[23] | E.W. Kelley, W.F. Hosford, Trans. Metall. Soc. AIME 242, 654 (1968) |
[24] | S. Graff, W. Brocks, D. Steglich, Int. J. Plast 23, 1957 (2007) |
[25] | G.S. Kim, Small Volume Investigation of Slip and Twinning in Magnesium Single Crystals, Seoul National University, 2011 |
[26] | Y.F. Guo, Y.S. Wang, H.G. Qi, D. Steglich, Acta Metall. Sin. (Engl. Lett.) 23, 370(2010) |
[27] | B. Li, E. Ma, Acta Mater. 57, 1734(2009) |
[28] | Y. Tang, J.A. El-Awady, Acta Mater. 71, 319(2014) |
[29] | Y.F. Guo, X.Z. Tang, Y.S. Wang, Z.D. Wang, S. Yip, Acta Metall. Sin. (Engl. Lett.) 26, 75(2013) |
[30] | Y.F. Guo, S. Xu, X.Z. Tang, Y.S. Wang, S. Yip, J. Appl. Phys. 115, 224902(2014) |
[31] | B.Y. Liu, J. Wang, B. Li, L. Lu, X.Y. Zhang, Z.W. Shan, J. Li, C.L. Jia, J. Sun, E. Ma, Nat. Commun. 5, 3297(2014) |
[32] | B.Y. Liu, L. Wan, J. Wang, E. Ma, Z.W. Shan, Scr. Mater. 100, 86(2015) |
[33] | S. Plimpton, Comput. Phys. 117, 1(1995) |
[34] | X.Y. Liu, P.P. Ohotnicky, J.B. Adams, C.L. Rohrer, Surf. Sci. 373, 357(1997) |
[35] | D.Y. Sun, M.I. Mendelev, C.A. Becker, K. Kudin, T. Haxhimali, M. Asta, J.J. Hoyt, A. Karma, D.J. Srolovitz, Phys. Rev. B 73, 024116 (2006) |
[36] | J.A. Yasi, T. Nogaret, D.R. Trinkle, Y. Qi, L.G. Hector Jr, W.A. Curtin, Model. Simul. Mater. Sci. Eng. 17, 055012(2009) |
[37] | T. Nogaret, W.A. Curtin, J.A. Yasi, L.G. Hector Jr, D.R. Trinkle, Acta Mater. 58, 4332(2010) |
[38] | T.M. Reed, K.E. Gubbins, Applied Statistical Mechanics (McCraw-Hill, New York, 1973) |
[39] | D.A. McQuarrie, Statistical Mechanics (Harper and Row, New York, 1976) |
[40] | H. Goldstein, Classical Mechanics (Addison-Wesley, Massachusetts, 1980) |
[41] | J. Li, Model. Simul. Mater. Sci. Eng. 11, 173(2003) |
[42] | G.J. Ackland, A.P. Jones, Phys. Rev. B 73, 054104 (2006) |
[43] | N.J. Lane, S.I. Simak, A.S. Mikhaylushkin, I.A. Abrikosov, L. Hultman, M.W. Barsoum, Phys. Rev. B 84, 184101 (2011) |
[44] | A. Serra, D.J. Bacon, R.C. Pond, Metall. Mater. Trans. A 33, 809 (2002) |
[45] | Y. Minonishi, S. Ishioka, M. Koiwa, S. Mobozumi, Phys. Status Solidi A 71, 253 (1982) |
[46] | M.D. Nave, M.R. Barnett, Scr. Mater. 51, 881(2004) |
[47] | J.H. Park, H.L. Kim, J.E. Jung, Y.W. Chang, Met. Mater. Int. 19, 389(2013) |
[48] | J. Wang, S.K. Yadav, J.P. Hirth, C.N. Tomé, I.J. Beyerlein, Mater. Res. Lett. 1, 126(2013) |
[49] | A. Serra, D.J. Bacon, Philos. Mag. A 73, 333 (1996) |
[50] | A. Serra, D.J. Bacon, P.C. Pond, Phys. Rev. Lett. 104, 029603(2010) |
[51] | B. Li, E. Ma, Phys. Rev. Lett. 103, 035503(2009) |
[52] | B. Li, E. Ma, Phys. Rev. Lett. 104, 029604(2010) |
[53] | B. Li, X.Y. Zhang, Scr. Mater. 71, 45(2014) |
[54] | Q. Yu, Z.W. Shan, J. Li, X. Huang, L. Xiao, J. Sun, E. Ma, Nature 463, 335 (2010) |
[55] | B. Li, E. Ma, Philos. Mag. 89, 1223(2009) |
[56] | Q. Zu, Y.F. Guo, X.Z. Tang, Acta Metall. Sin. (Engl. Lett.) 28, 876(2015) |
[57] | Q.Z. Li, Mater. Sci. Eng., A 568, 96 (2013) |
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