Acta Metallurgica Sinica (English Letters) ›› 2022, Vol. 35 ›› Issue (6): 901-914.DOI: 10.1007/s40195-021-01339-6
Previous Articles Next Articles
Liang Chang1, Qingfeng Zhao1, Xingchuan Xia1(), Yuming Ding1, Binxu Guo1, Jian Ding1, Ying Tang1, Zan Zhang2(
), Chong Li3, Xiaomian Sun4, Junjie Guo5, Kaihong Song1, Yongchang Liu3
Received:
2021-07-05
Revised:
2021-08-10
Accepted:
2021-10-22
Online:
2022-06-10
Published:
2022-06-15
Contact:
Xingchuan Xia,Zan Zhang
About author:
Xingchuan Xia, xC_ xia@hebut.edu.cn;Liang Chang, Qingfeng Zhao, Xingchuan Xia, Yuming Ding, Binxu Guo, Jian Ding, Ying Tang, Zan Zhang, Chong Li, Xiaomian Sun, Junjie Guo, Kaihong Song, Yongchang Liu. Modification Mechanism and Uniaxial Fatigue Performances of A356.2 Alloy Treated by Al-Sr-La Composite Refinement-Modification Agent[J]. Acta Metallurgica Sinica (English Letters), 2022, 35(6): 901-914.
Add to citation manager EndNote|Ris|BibTeX
Fig. 7 Precipitates in traditional treated alloy a and Al-6Sr-7La treated alloy b, HRTEM of spherical cross section c and short rod-like cross section d
Alloy | TN (°C) | Tmin (°C) | TG (°C) | TG - Tmin (°C) |
---|---|---|---|---|
Unmodified | 577.8 | 575.4 | 576.8 | 1.4 |
Traditional | 571.4 | 569.1 | 571.2 | 2.1 |
Al-6Sr-7La | 568.9 | 565.2 | 567.6 | 2.4 |
Table 1 Characteristic temperatures of the alloys
Alloy | TN (°C) | Tmin (°C) | TG (°C) | TG - Tmin (°C) |
---|---|---|---|---|
Unmodified | 577.8 | 575.4 | 576.8 | 1.4 |
Traditional | 571.4 | 569.1 | 571.2 | 2.1 |
Al-6Sr-7La | 568.9 | 565.2 | 567.6 | 2.4 |
Fig. 12 Bright-field TEM images of Al-6Sr-7La modified alloy: a overall morphology of eutectic Si, b corresponding area in a at higher magnification, c nanoparticles, d stacking faults
[1] | W.M. Jiang, J.W. Zhu, G.Y. Li, F. Guan, Y. Yu, Z.T. Fan, J. Mater. Sci. Technol. 88, 119 (2021). |
[2] | J.W. Zhu, W.M. Jiang, G.Y. Li, F. Guan, Y. Yu, Z.T. Fan, J. Mater. Process. Technol. 283, 116699 (2020). |
[3] | G. Rana, J.E. Zhou, Q.G. Wang, J. Mater. Process. Technol. 207, 1 (2008). |
[4] | W.Y. Liu, W.L. Xiao, C. Xu, M.W. Liu, C.L. Ma, Mater. Sci. Eng. A 693, 93 (2017). |
[5] | X.R. Liu, Y.D. Zhang, B. Beausir, F. Liu, C. Esling, F.X. Yu, X. Zhao, L. Zuo, Acta Mater. 97, 338 (2015). |
[6] | K. Hu, C.H. Lin, S.C. Xia, C.K. Zheng, B. Lin, Mater. Charact. 170, 110680 (2020). |
[7] | J.Z. Yi, Y.X. Gao, P.D. Lee, T.C. Lindley, Metall. Mater. Trans. B 37, 2 (2006). |
[8] | T. Haskel, G.O. Verran, R. Barbieri,Int. J. Fatigue 114, 1 (2018). |
[9] | H.R. Zhang, Z.B. Liu, Z.Z. Li, G.W. Li, H. Zhang, Acta Metall. Sin. Engl. Lett. 29, 414 (2016). |
[10] | Z. Liu, W.M. Mao, Z.D. Zhao, Acta Metall. Sin. Engl. Lett. 21, 1 (2008). |
[11] | Y.J. Shi, L.J. Liu, L. Zhang, L.J. Zhang, L. Zheng, R.X. Li, B.Y. Yu, J. Iron Steel Res. Int. 24, 9 (2017) |
[12] | D. Han, Y.J. Zhang, X.W. Li, Acta Mater. 205, 116559 (2021). |
[13] | G.Y. Liu, P. Blake, S.X. = Ji, J. Alloys Compd. 809, 151795 (2019). |
[14] | Y. Li, Y. Jiang, B. Hu, Q. Li, Scr. Mater. 187, 262 (2020). |
[15] | Y. Li, B. Hu, B. Liu, A.M. Nie, Q.F. Gu, J.F. Wang, Q. Li, Acta Mater. 187, 51 (2020). |
[16] | H. Yu, N. Wang, R.G. Guan, D. Tie, Z. Li, Y.A. An, Y. Zhang J. Mater. Sci. Technol. 34, 2297 (2018). |
[17] | H.C. Liao, G.X. Sun, Scr. Mater. 48, 8 (2003). |
[18] | D. Qiu, J.A. Taylor, M.X. Zhang, P.M. Kelly, Acta Mater. 55, 4 (2007). |
[19] | Y. Li, Y. Jiang, B. Liu, Q. Luo, B. Hu, Q. Li, J. Mater. Sci. Technol. 65, 6 (2021). |
[20] | L.Y. Liu, T. Gao, K. Zhao, X.F. Liu, Mater. Lett. 288, 129367 (2021). |
[21] | K. Zhao, T. Gao, H.B. Yang, G.L. Liu, Q.Q. Sun, C.C. Wu, J.F. Nie, X.F. Liu, J. Alloys Compd. 820, 153089 (2020). |
[22] | J. Xu, Y. Li, K. Ma, Y.A. Fu, E.Y. Guo, Z.N. Chen, Q.F. Gu, Y.X. Han, T.M. Wang, Q. Li Scr. Mater. 187, 142 (2020). |
[23] | Y. He, H.H. Xi, W.Q. Ming, Q.Q. Shao, R.H. Shen, Y.X. Lai, C.L. Wu, J.H. Chen, Trans. Nonferr. Met. Soc. China 31, 1 (2021). |
[24] | F. Mao, S.Z. Wei, C. Chen, C. Zhang, X.D. Wang, Z.Q. Cao, Mater. Des. 186, 108268 (2020). |
[25] | B.B. Yu, H. Yan, J.B. Zhu, J.L. Liu, H.G. Li, Q. Nie, Acta Metall. Sin. Engl. Lett. 32, 443 (2019). |
[26] | W.M. Jiang, Z.T. Fan, Y.C. Dai, C. Li, Mater. Sci. Eng. A 597, 237 (2014). |
[27] | X.C. Xia, Q.F. Zhao, Y.Y. Peng, P. Zhang, L.H. Liu, J. Ding, X.D. Luo, L.S. Wang, L.X. Huang, H.J. Zhang, X.G. Chen, J. Alloys Compd. 818, 153370 (2020). |
[28] | J. Ding, S.N. Miao, B.J. Ma, X.C. Xia, C.R. Qiu, X.G. Chen, Adv. Eng. Mater. 20, 6 (2018). |
[29] | C.R. Qiu, S.N. Miao, X.R. Li, X.C. Xia, J. Ding, Y.N. Wang, W.M. Zhao, Mater. Des. 114, 563 (2017). |
[30] | Y.D. Jia, F.Y. Cao, P. Ma, J.S. Liu, J.F. Sun, G. Wang, J. Iron Steel Res. Int. 23, 1 (2016). |
[31] | C. Kienl, F.D. Leon-Cazares C.M.F. Rae, Acta Mater. 000, 115743 (2020). |
[32] | B. Wang, P. Zhang, Q.Q. Duan, Z.J. Zhang, H.J. Yang, X.W. Lia, Z.F. Zhang, Mater. Sci. Eng. A 707, 674 (2017). |
[33] | J. Li, R. Ding, Q.Y. Guo, C. Li, Y.C. Liu, Z.M. Wang, H.J. Li, C.X. Liu, Mater. Sci. Eng. A 812, 141113 (2021). |
[34] | C.W. Shao, F. Shi, X.W. Li, Mater. Sci. Eng. A 667, 208 (2016). |
[35] | K.M. Amin, N.A. Mufti, J. Mater. Process. Technol. 212, 8 (2012). |
[36] | G. Heiberg, K. Nogita, A.K. Dahle, L. Arnberg, Acta Mater. 50, 10 (2002). |
[37] | G.L. Mao, H. Yan, C.C. Zhu, Z. Wu, W.L. Gao, J. Alloys Compd. 806, 909 (2019). |
[38] | L.F. Li, D.Q. Li, F. Mao, J. Feng, Y.Z. Zhang, Y.L. Kang, J. Alloys Compd. 826, 154206 (2020). |
[39] | S.Z. Lu, A. Hellawell, Metall. Mater. Trans. A 18, 10 (1987). |
[40] | M. Shamsuzzoha, L.M. Hogan, Philos. Mag. A 54, 4 (1986). |
[41] | K. Nogita, J. Drennan, A.K. Dahle, Mater Trans. 44, 4 (2003). |
[42] | G.V. Prasad Reddy, P.M. Dinesh, R. Sandhya, K. Laha, T. Jayakumar Int. J. Fatigue 92, 272 (2016). |
[43] | J.H. Li, X.D. Wang, T.H. Ludwig, Y. Tsunekawa, L. Arnberg, J.Z. Jiangb, P. Schumachera, Acta Mater. 84, 153 (2015). |
[44] | S.K. Shaha, F. Czerwinski, W. Kasprzak, J. Friedman, D.L. Chen,Int. J. Fatigue 70, 383 (2015). |
[45] | C.H. Liu, J.S. Yang, P.P. Ma, Z.Y. Ma, L.H. Zhan, K.L. Chen, M.H. Huang, J.J. Li, Z.M. Li, Int. J. Plast. 134, 102774 (2020). |
[46] | Y.W. Jia, S.C. Wang, D. Shu, J. Alloys Compd. 821, 153504 (2020). |
[47] | D.Y. Wu, J. Kang, Z.H. Feng, R. Su, C.H. Liu, T. Li, L.S. Wang, J. Alloys Compd. 791, 628 (2019). |
[48] | K.Y. Wang, J. Xiang, R.D. Zhao, J.L. Bi, X.F. Wu, M.H. Chen, F.F. Wu, J. Eckert, J. Alloys Compd. 860, 158421 (2021). |
[49] | F. Mao, G.Y. Yan, Z.J. Xuan, Z.Q. Cao, T.M. Wang, J. Alloys Compd. 650, 896 (2015). |
[50] | R. Haghayeghi, G. Timelli, Mater. Lett. 283, 128779 (2021). |
[51] | B. Wang, P. Zhang, Q.Q. Duan, Z.J. Zhang, H.J. Yang, J.C. Pang, Y.Z. Tian, X.W. Li, Z.F. Zhang, Mater. Sci. Eng. A 711, 533 (2018). |
No related articles found! |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||