Acta Metallurgica Sinica (English Letters) ›› 2021, Vol. 34 ›› Issue (7): 925-931.DOI: 10.1007/s40195-020-01179-w
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H.R. Lin1,2, Y. Z. Tian3,4(), S.J. Sun1,2, Z.F. Zhang1,2(
)
Received:
2020-08-07
Revised:
2020-10-09
Accepted:
2020-10-12
Online:
2021-02-19
Published:
2021-02-19
Contact:
Y. Z. Tian,Z.F. Zhang
About author:
Z. F. Zhang, zhfzhang@imr.ac.cnH.R. Lin, Y. Z. Tian, S.J. Sun, Z.F. Zhang. Microstructural Evolution and Mechanical Properties of Laminated CuAl Composites Processed by Accumulative Roll-Bonding and Annealing[J]. Acta Metallurgica Sinica (English Letters), 2021, 34(7): 925-931.
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Spot | Layer | Elemental composition (at.%) | IMC | |
---|---|---|---|---|
Cu | Al | |||
1 | Cu layer | 95.45 | 4.55 | |
2 | 88.02 | 11.98 | ||
3 | Layer 1 | 62.52 | 37.48 | Al4Cu9 |
4 | 58.73 | 41.27 | ||
5 | 55.78 | 44.22 | ||
6 | Layer 2 | 47.90 | 52.10 | AlCu |
7 | 53.03 | 46.97 | ||
8 | Layer 3 | 30.81 | 69.19 | Al2Cu |
9 | 30.87 | 69.13 | ||
10 | 26.19 | 73.81 | ||
11 | Al layer | 1.35 | 98.65 | |
12 | 1.32 | 98.68 |
Table 1 EDS results of points in Fig. 1
Spot | Layer | Elemental composition (at.%) | IMC | |
---|---|---|---|---|
Cu | Al | |||
1 | Cu layer | 95.45 | 4.55 | |
2 | 88.02 | 11.98 | ||
3 | Layer 1 | 62.52 | 37.48 | Al4Cu9 |
4 | 58.73 | 41.27 | ||
5 | 55.78 | 44.22 | ||
6 | Layer 2 | 47.90 | 52.10 | AlCu |
7 | 53.03 | 46.97 | ||
8 | Layer 3 | 30.81 | 69.19 | Al2Cu |
9 | 30.87 | 69.13 | ||
10 | 26.19 | 73.81 | ||
11 | Al layer | 1.35 | 98.65 | |
12 | 1.32 | 98.68 |
Fig. 3 ECC images of ARB specimen of a Al layer and e Cu layer; EBSD results of specimens processed by ARB and thermal annealing at b, f 200 °C, c, g 300 °C, d, h 400 °C
Fig. 4 a Tensile engineering stress-strain curves of the specimens processed by ARB and subsequent thermal annealing; interfaces between Cu and Al layers of b ARB200, c ARB300 specimens at necking point
Spot | Elemental composition (at.%) | Possible compounds | |
---|---|---|---|
Cu | Al | ||
1 | 63.7 | 36.3 | AlCu |
2 | 50.57 | 49.43 | AlCu |
3 | 57.78 | 42.22 | AlCu |
4 | 73.37 | 26.63 | Al4Cu9 |
5 | 75.23 | 24.77 | Al4Cu9 |
6 | 77.79 | 22.21 | Al4Cu9 |
7 | 94.32 | 5.68 | Cu |
8 | 71.18 | 28.82 | Al4Cu9 |
9 | 57.72 | 42.28 | AlCu |
Table 2 EDS results of points in Fig. 6
Spot | Elemental composition (at.%) | Possible compounds | |
---|---|---|---|
Cu | Al | ||
1 | 63.7 | 36.3 | AlCu |
2 | 50.57 | 49.43 | AlCu |
3 | 57.78 | 42.22 | AlCu |
4 | 73.37 | 26.63 | Al4Cu9 |
5 | 75.23 | 24.77 | Al4Cu9 |
6 | 77.79 | 22.21 | Al4Cu9 |
7 | 94.32 | 5.68 | Cu |
8 | 71.18 | 28.82 | Al4Cu9 |
9 | 57.72 | 42.28 | AlCu |
[1] |
Y.P. Li, G.P. Zhang , Acta Mater. 58, 3877(2010)
DOI URL |
[2] |
S. Lyu, Y. Sun, L. Ren, W. Xiao, C. Ma , Adv. Eng. Mater. 19, 1700070(2017)
DOI URL |
[3] |
Y. Zhang, X. Cheng, H. Cai, H. Zhang , J. Alloys Compd. 699, 695(2017)
DOI URL |
[4] | Y.F. Zhao, J.Y. Zhang, Y.Q. Wang, K. Wu, G. Liu, J. Sun , Nanoscale 11, 11340 (2019) |
[5] |
M. Huang, C. Xu, G. Fan, E. Maawad, W. Gan, L. Geng, F. Lin, G. Tang, H. Wu, Y. Du, D. Li, K. Miao, T. Zhang, X. Yang, Y. Xia, G. Cao, H. Kang, T. Wang, T. Xiao, H. Xie , Acta Mater. 153, 235(2018)
DOI URL |
[6] |
H. Wu, G. Fan, M. Huang, L. Geng, X. Cui, H. Xie , Int. J. Plast. 89, 96(2017)
DOI URL |
[7] |
N. Tsuji, Y. Ito, Y. Saito, Y. Minamino , Scr. Mater. 47, 893(2002)
DOI URL |
[8] |
S.A. Hosseini, H.D. Manesh , Mater. Des. 30, 2911(2009)
DOI URL |
[9] | L. Su, C. Lu, H. Li, G. Deng, K. Tieu , Mater. Sci. Eng. A 614, 148 (2014) |
[10] | X. Huang, N. Tsuji, N. Hansen, Y. Minamino , Mater. Sci. Eng. A 340, 265 (2003) |
[11] | N. Takata, K. Yamada, K. Ikeda, F. Yoshida, H. Nakashima, N. Tsuji , Mater. Sci. Forum 503-504, 919(2006) |
[12] |
X. Ma, C. Huang, J. Moering, M. Ruppert, H.W. Höppel, M. Göken, J. Narayan, Y. Zhu , Acta Mater. 116, 43(2016)
DOI URL |
[13] |
S. Zheng, I.J. Beyerlein, J.S. Carpenter, K. Kang, J. Wang, W. Han, N.A. Mara , Nat. Commun. 4, 1696(2013)
DOI URL |
[14] | M. Eizadjou, A. Kazemi Talachi, H. Danesh Manesh, H. Shakur Shahabi, K. Janghorban , Compos. Sci. Technol. 68, 2003 ( 2008) |
[15] |
W.B. Lee, K.S. Bang, S.B. Jung , J. Alloys Compd. 390, 212(2005)
DOI URL |
[16] |
C.J. Hang, C.Q. Wang, M. Mayer, Y.H. Tian, Y. Zhou, H.H. Wang , Microelectron. Reliab. 48, 416(2008)
DOI URL |
[17] | H.C. Kwon, T.K. Jung, S.C. Lim, M.S. Kim , Mater. Sci. Forum 449-452, 317(2004) |
[18] | K.Y. Rhee, W.Y. Han, H.J. Park, S.S. Kim , Mater. Sci. Eng. A 384, 70 (2004) |
[19] |
T.T. Sasaki, R.A. Morris, G.B. Thompson, Y. Syarif, D. Fox , Scr. Mater. 63, 488(2010)
DOI URL |
[20] | L. He, X. Zhiyong, W. Chunjing, L. Qing, W. Yuan , Acta Metall. Sin. -Engl. Lett. 23, 206(2010) |
[21] |
I.K. Kim, S.I. Hong , Mater. Des. 47, 590(2013)
DOI URL |
[22] | Z. Mao, J. Xie, A. Wang, W. Wang, D. Ma , Metals 8, 645 (2018) |
[23] |
D. Chang, P. Wang, Y. Zhao , J. Alloys Compd. 815, 152453(2020)
DOI URL |
[24] | G. Heness, R. Wuhrer, W.Y. Yeung , Mater. Sci. Eng. A 483-484, 740(2008) |
[25] | E. Hug, N. Bellido , Mater. Sci. Eng. A 528, 7103 (2011) |
[26] |
M. H. M . Microelectron. Reliab. 53, 1068(2013)
DOI URL |
[27] |
M. Abbasi, A. Karimi Taheri, M. T. Salehi , J. Alloys Compd. 319, 233(2001)
DOI URL |
[28] | L.Y. Sheng, F. Yang, T.F. Xi, C. Lai, H.Q. Ye , Compos. Pt. B 42, 1468 (2011) |
[29] | A. Gueydan, B. Domengès, E. Hug , Intermetallics 50, 34 (2014) |
[30] |
Q. Yu, X. Liu, Y. Sun , Sci. China Mater. 58, 574(2015)
DOI URL |
[31] | C.Y. Chen, W.S. Hwang , Mater. Trans. 48, 1938 ( 2007) |
[32] |
X.J. Liu, I. Ohnuma, R. Kainuma, K. Ishida , J. Alloys Compd. 264, 201(1998)
DOI URL |
[33] |
X.H. An, S.D. Wu, Z.F. Zhang, R.B. Figueiredo, N. Gao, T.G. Langdon , Scr. Mater. 66, 227(2012)
DOI URL |
[34] | E. El-Danaf, S.R. Kalidindi, R.D. Doherty , Metall. Mater. Trans. A 30, 1223 (1999) |
[35] |
A.M. Russell , Adv. Eng. Mater. 5, 629(2003)
DOI URL |
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