金属学报英文版 ›› 2020, Vol. 33 ›› Issue (11): 1518-1526.DOI: 10.1007/s40195-020-01082-4
收稿日期:
2020-01-07
修回日期:
2020-03-22
出版日期:
2020-11-10
发布日期:
2020-11-17
Xiong-Wei Yu1, Jiang-Hua Chen1, Wen-Quan Ming1(), Xiu-Bo Yang1, Tian-Tian Zhao1, Ruo-Han Shen1, Yu-Tao He1, Cui-Lan Wu1
Received:
2020-01-07
Revised:
2020-03-22
Online:
2020-11-10
Published:
2020-11-17
Contact:
Wen-Quan Ming
. [J]. 金属学报英文版, 2020, 33(11): 1518-1526.
Xiong-Wei Yu, Jiang-Hua Chen, Wen-Quan Ming, Xiu-Bo Yang, Tian-Tian Zhao, Ruo-Han Shen, Yu-Tao He, Cui-Lan Wu. Revisiting the Hierarchical Microstructures of an Al-Zn-Mg Alloy Fabricated by Pre-deformation and Aging[J]. Acta Metallurgica Sinica (English Letters), 2020, 33(11): 1518-1526.
Zn | Mg | Fe | Si | Cr | Zr | Ti | Mn | Al |
---|---|---|---|---|---|---|---|---|
4.50 | 1.32 | 0.08 | 0.06 | 0.12 | 0.10 | 0.08 | 0.37 | Bal. |
Table 1 Chemical composition of the Al-Zn-Mg alloy (wt%)
Zn | Mg | Fe | Si | Cr | Zr | Ti | Mn | Al |
---|---|---|---|---|---|---|---|---|
4.50 | 1.32 | 0.08 | 0.06 | 0.12 | 0.10 | 0.08 | 0.37 | Bal. |
Fig. 1 Microstructures of the T6 samples: a low-magnification HAADF STEM image of the T6 sample (120 °C/100 h); b HAADF STEM image of the precipitates in a grain. The inset is the atomic resolution HAADF STEM image of a precipitate. c Statistical chart of precipitates’ diameter distribution. The electron beam is parallel to the <011> Al zone axis
Fig. 2 Microstructures of the R20%-100 h sample: a, b low- and high-magnification HAADF images of the R20%-100 h sample showing the dislocation cells; c, d TEM and HAADF image of the same area showing the heterogeneous nucleation of precipitates on dislocations; e statistical chart of diameter of small precipitates and large precipitates
Fig. 3 Atomic-resolution HAADF image of the R20%-100 h samples: a uniformly distributed precipitate in the matrix; b heterogeneously nucleated precipitate at dislocations. All images are recorded with the electron beam along the <112> Al zone axis
Fig. 4. 3DET images of the R20%-100 h sample: a overall morphology of the reconstructed volume; b projection of the tilted volume observed in another angles showing the grain boundary; c, d 3D sectioning of the arrowed area in a along z-axis; c, d displaying the red arrow marked area and the yellow arrow marked area, respectively
Fig. 5 HAADF images of the Rx%-100 h (x = 40, 60 and 80) samples with different pre-deformation degrees: a-c R40%-100 h, d-f R60%-100 h, g-i R80%-100 h. b, e, h are enlarged images of corresponding boxed area marked in a, d, g. The statistical charts of precipitate diameter of the large precipitates are shown in c, f, i, respectively. The images were recorded with the electron beam along the <112> Al zone axis
[1] | E.A. Starke, H.M.M.A. Rashed, Reference Module in Materials Science and Materials Engineering (Elsevier, Amsterdam, 2017) |
[2] |
J.C. Williams, E.A. Starke, Acta Mater. 51, 5775(2003)
DOI URL |
[3] | J.T. Staley, in Properties Related to Fracture Toughness, ed. by V. Weiss, W.R. Warke (ASTM International, West Conshohocken, 1976), p. 71-103 |
[4] |
G. Sha, A. Cerezo, Acta Mater. 52, 4503(2004)
DOI URL |
[5] |
H. Löfler, I. Kovács, J. Lendvai, J. Mater. Sci. 18, 2215(1983)
DOI URL |
[6] |
J. Lendvai, Mater. Sci. Forum 217-222 43(1996)
DOI URL |
[7] |
F.L. Jiang, H. Zhang, S.C. Weng, D.F. Fu, Trans. Nonferrous Met. Soc. China 26, 51 (2016)
DOI URL |
[8] |
F. Jiang, H. Zhang, J. Su, Y. Sun, Mater. Sci. Eng. A 636, 459 (2015)
DOI URL |
[9] |
F. Jiang, H.S. Zurob, G.R. Purdy, H. Zhang, Mater. Charact. 117, 47(2016)
DOI URL |
[10] |
J.Z. Liu, J.H. Chen, X.B. Yang, S. Ren, C.L. Wu, H.Y. Xu, J. Zou, Scr. Mater. 63, 1061(2010)
DOI URL |
[11] |
J.Z. Liu, J.H. Chen, D.W. Yuan, C.L. Wu, J. Zhu, Z.Y. Cheng, Mater. Charact. 99, 277(2015)
DOI URL |
[12] |
J.Z. Liu, J.H. Chen, Z.R. Liu, C.L. Wu, Mater. Charact. 99, 142(2015)
DOI URL |
[13] |
J. Buha, R.N. Lumley, A.G. Crosky, Mater. Sci. Eng. A 492, 1 (2008)
DOI URL |
[14] |
S.V. Emani, J. Benedyk, P. Nash, D. Chen, J. Mater. Sci. 44, 6384(2009)
DOI URL |
[15] |
G. Sha, Y.B. Wang, X.Z. Liao, Z.C. Duan, S.P. Ringer, T.G. Langdon, Acta Mater. 57, 3123(2009)
DOI URL |
[16] |
Y. Saito, N. Tsuji, H. Utsunomiya, T. Sakai, R.G. Hong, Scr. Mater. 39, 1221(1998)
DOI URL |
[17] |
A.P. Zhilyaev, G.V. Nurislamova, B.K. Kim, M.D. Baró, J.A. Szpunar, T.G. Langdon, Acta Mater. 51, 753(2003)
DOI URL |
[18] |
E.D. Russo, M. Conserva, F. Gatto, H. Markus, Metall. Trans. 4, 1133(1973)
DOI URL |
[19] | E.D. Russo, M. Conserva, M. Buratti, F. Gatto, Mater. Sci. Eng. 14, 23(1974) |
[20] | M. Conserva, M. Buratti, E.D. Russo, F. Gatto, Mater. Sci. Eng. 11, 103(1973) |
[21] |
H.J. Rack, R.W. Krenzer, Metall. Trans. A 8, 335 (1977)
DOI URL |
[22] |
P.P. Ma, C.H. Liu, C.L. Wu, L.M. Liu, J.H. Chen, Mater. Sci. Eng. A 676, 138 (2016)
DOI URL |
[23] |
L.W. Quan, G. Zhao, S. Gao, B.C. Muddle, Trans. Nonferrous Met. Soc. China 21, 1957 (2011)
DOI URL |
[24] |
H.Z. Li, R.M. Liu, X.P. Liang, M. Deng, H.J. Liao, L. Huang, Trans. Nonferrous Met. Soc. China 26, 1482 (2016)
DOI URL |
[25] |
M. Gazizov, R. Kaibyshev, Mater. Sci. Eng. A 625, 119 (2015)
DOI URL |
[26] |
S.H. Wang, C.H. Liu, J.H. Chen, X.L. Li, D.H. Zhu, G.H. Tao, Mater. Sci. Eng. A 585, 233 (2013)
DOI URL |
[27] |
Y.X. Lai, W. Fan, M.J. Yin, C.L. Wu, J.H. Chen, J. Mater. Sci. Technol. 41, 127(2020)
DOI URL |
[28] |
G. Waterloo, V. Hansen, J. Gjønes, S.R. Skjervold, Mater. Sci. Eng. A 303, 226 (2001)
DOI URL |
[29] |
A. Deschamps, Y. Brechet, Acta Mater. 47, 293(1998)
DOI URL |
[30] |
A. Deschamps, F. Livet, Y. Bréchet, Acta Mater. 47, 281(1998)
DOI URL |
[31] |
D. Wang, Z.Y. Ma, J. Alloys Compd. 469, 445(2009)
DOI URL |
[32] |
A.L. Ning, Z.Y. Liu, S.M. Zeng, Trans. Nonferrous Met. Soc. China 16, 1341 (2006)
DOI URL |
[33] |
H. Li, P. Chen, Z. Wang, F. Zhu, R. Song, Z. Zheng, Mater. Sci. Eng. A 742, 798 (2019)
DOI URL |
[34] | J.H. Chen, T.T. Zhao, X.W. Yu, X.B. Yang, Z. Gao, C.L. Wu, D. Rao, J. Hunan Univ. Nat. Sci. 44, 12(2017) |
[35] |
J.S. Barnard, J. Sharp, J.R. Tong, P.A. Midgley, Science 313, 319 (2006)
DOI URL PMID |
[36] |
G.S. Liu, I.M. Robertson, J. Mater. Res. 26, 514(2011)
DOI URL |
[37] |
W. Ludwig, P. Cloetens, J. Hartwig, J. Baruchel, B. Hamelin, P. Bastie, J. Appl. Crystallogr. 34, 602(2001)
DOI URL |
[38] |
M. Tanaka, K. Higashida, K. Kaneko, S. Hata, M. Mitsuhara, Scr. Mater. 59, 901(2008)
DOI URL |
[39] |
K. Ma, T. Hu, H. Yang, T. Topping, A. Yousefiani, E.J. Lavernia, J.M. Schoenung, Acta Mater. 103, 153(2016)
DOI URL |
[40] |
K. Ma, H. Wen, T. Hu, T.D. Topping, D. Isheim, D.N. Seidman, E.J. Lavernia, J.M. Schoenung, Acta Mater. 62, 141(2014)
DOI URL |
[41] |
P.V. Liddicoat, X.Z. Liao, Y. Zhao, Y. Zhu, M.Y. Murashkin, E.J. Lavernia, R.Z. Valiev, S.P. Ringer, Nat. Commun. 1, 63(2010)
DOI URL PMID |
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