Acta Metallurgica Sinica (English Letters) ›› 2021, Vol. 34 ›› Issue (2): 217-226.DOI: 10.1007/s40195-020-01144-7
Special Issue: 2021年镁合金专辑
Previous Articles Next Articles
Kai Yan1(
), Huan Liu2(
), Xiaowei Xue3, Jing Bai4, Honghui Chen1, Shuangquan Fang1, Jingjing Liu1
Received:2020-06-23
Revised:2020-07-20
Accepted:2020-07-25
Online:2021-02-10
Published:2021-02-09
Contact:
Kai Yan,Huan Liu
Kai Yan, Huan Liu, Xiaowei Xue, Jing Bai, Honghui Chen, Shuangquan Fang, Jingjing Liu. Enhancing Mechanical Properties of Mg-6Zn Alloy by Deformation-Induced Nanoprecipitation[J]. Acta Metallurgica Sinica (English Letters), 2021, 34(2): 217-226.
Add to citation manager EndNote|Ris|BibTeX
| Sample code | Processing state | Diameter (mm) |
|---|---|---|
| EX | Casting and extrusion | 15 |
| A1 | EX, ECAPed for 6 passes at 160 °C | 15 |
| A2 | EX, ECAPed for 6 passes at 160 °C and extruded at 180 °C | 2.6 |
| B1 | EX, ECAPed for 6 passes at 320 °C | 15 |
| B2 | EX, ECAPed for 6 passes at 320 °C and extruded at 180 °C | 2.6 |
Table 1 Processing state of Mg-6Zn samples
| Sample code | Processing state | Diameter (mm) |
|---|---|---|
| EX | Casting and extrusion | 15 |
| A1 | EX, ECAPed for 6 passes at 160 °C | 15 |
| A2 | EX, ECAPed for 6 passes at 160 °C and extruded at 180 °C | 2.6 |
| B1 | EX, ECAPed for 6 passes at 320 °C | 15 |
| B2 | EX, ECAPed for 6 passes at 320 °C and extruded at 180 °C | 2.6 |
Fig. 3 EBSD analysis results of samples A2 and B2. a, b Grain orientation mapping and grain size histogram of A2, c, d grain orientation mapping and grain size histogram of B2, e, f local misorientation mapping and statistics of A2, g, h local misorientation mapping and statistics of B2, i pole figures of A2, j pole figures of B2
Fig. 5 Photos of the bone-penetration test: a the undrilled Kirschner wire, b the result after drilling, c the drilled Kirschner wire from sample B2, d the drilled Kirschner wire from sample A2
| YS (MPa) | UTS (MPa) | El. (%) | Eq.dia.* (μm) | Material | Process | Refs. | |
|---|---|---|---|---|---|---|---|
| 1 | 273 | 300 | 30 | 0.6 | ZK60 | ECAP, 4p at 523 K + , 4p at 473 K + 4p at 423 K | [ |
| 2 | 270 | 326 | 5.4 | 1 | ZK60 | Rolling, 4p at 623 K, 4.3-1 mm | [ |
| 3 | 175 | 266 | 31.9 | 0.8 | ZK60 | ECAP, 4p at 513 K + 4p at 453 K | [ |
| 4 | 310 | 351 | 17.1 | 1.7 | ZK60 | Direct extrusion +ECAP, 2p at 623 K | [ |
| 5 | 215 | 289 | 37.8 | 1.4 | ZK60 | Cyclic extrusion-compression, 4p at 503 K | [ |
| 6 | 286 | 338 | 30 | 1.4 | ZK60 | High-ratio differential speed rolling, 1p at 473 K | [ |
| 7 | 260 | 371 | 18.5 | 1 | ZK60 | ECAP, 4p at 523 K + 2p at 473 K, + 2p at 423 K | [ |
| 8 | 258 | 359 | 20.1 | 1.2 | Mg-5Zn-1Mn | HSRR, 1p at 573 K, 10-2 mm | [ |
| 9 | 275 | 340 | 15 | 1.9 | Mg-6Zn | ECAP, 6p at 433 K | This study |
| 10 | 190 | 330 | 10.5 | 2.3 | Mg-6Zn | ECAP, 6p at 433 K + extrusion, at 453 K | This study |
| 11 | 355 | 405 | 17.5 | 10.8 | Mg-6Zn | ECAP, 6p at 593 K + extrusion, at 453 K | This study |
| 12 | 390 | 440 | 8.3 | - | ZK60 | Twin roll cast + rolling, 6p at 573 K, 3.2-0.5 mm | [ |
| 13 | 333 | 420 | 16.1 | 6.8 | ZK60 | Twin roll cast +rolling, 6p at 573 K, 3.2-0.5 mm + T6, 3 h at 648 K and 10 h at 448 K | [ |
| 14 | 396 | 440 | 9 | 7 | ZK60 | ECAP, 12p 573 K + rolling, total reduction 30% at room temperature | [ |
Table 2 Mechanical properties and average grain diameters of the Mg-6Zn based alloys after different kinds of thermo-mechanical processing
| YS (MPa) | UTS (MPa) | El. (%) | Eq.dia.* (μm) | Material | Process | Refs. | |
|---|---|---|---|---|---|---|---|
| 1 | 273 | 300 | 30 | 0.6 | ZK60 | ECAP, 4p at 523 K + , 4p at 473 K + 4p at 423 K | [ |
| 2 | 270 | 326 | 5.4 | 1 | ZK60 | Rolling, 4p at 623 K, 4.3-1 mm | [ |
| 3 | 175 | 266 | 31.9 | 0.8 | ZK60 | ECAP, 4p at 513 K + 4p at 453 K | [ |
| 4 | 310 | 351 | 17.1 | 1.7 | ZK60 | Direct extrusion +ECAP, 2p at 623 K | [ |
| 5 | 215 | 289 | 37.8 | 1.4 | ZK60 | Cyclic extrusion-compression, 4p at 503 K | [ |
| 6 | 286 | 338 | 30 | 1.4 | ZK60 | High-ratio differential speed rolling, 1p at 473 K | [ |
| 7 | 260 | 371 | 18.5 | 1 | ZK60 | ECAP, 4p at 523 K + 2p at 473 K, + 2p at 423 K | [ |
| 8 | 258 | 359 | 20.1 | 1.2 | Mg-5Zn-1Mn | HSRR, 1p at 573 K, 10-2 mm | [ |
| 9 | 275 | 340 | 15 | 1.9 | Mg-6Zn | ECAP, 6p at 433 K | This study |
| 10 | 190 | 330 | 10.5 | 2.3 | Mg-6Zn | ECAP, 6p at 433 K + extrusion, at 453 K | This study |
| 11 | 355 | 405 | 17.5 | 10.8 | Mg-6Zn | ECAP, 6p at 593 K + extrusion, at 453 K | This study |
| 12 | 390 | 440 | 8.3 | - | ZK60 | Twin roll cast + rolling, 6p at 573 K, 3.2-0.5 mm | [ |
| 13 | 333 | 420 | 16.1 | 6.8 | ZK60 | Twin roll cast +rolling, 6p at 573 K, 3.2-0.5 mm + T6, 3 h at 648 K and 10 h at 448 K | [ |
| 14 | 396 | 440 | 9 | 7 | ZK60 | ECAP, 12p 573 K + rolling, total reduction 30% at room temperature | [ |
| [1] | F. Witte, N. Hort, C. Vogt, S. Cohen, K.U. Kainer, R. Willumeit, F. Feyerabend, Curr. Opin. Solid State Mater. Sci. 63, 12(2008) |
| [2] | F. Witte, Acta Biomater. 1680, 6(2010) |
| [3] | M.P. Staiger, A.M. Pietak, J. Huadmai, G. Dias, Biomaterials 1728, 27 (2006) |
| [4] | H. Li, Y. Zheng, L. Qin, Prog. Nat. Sci. 414, 24(2014) |
| [5] | Y. Shao, R.C. Zeng, S.Q. Li, L.Y. Cui, Y.H. Zou, S.K. Guan, Y.F. Zheng, Acta Metall. Sin. (Engl. Lett.) 615, 33(2020) |
| [6] | M. Němeca, A. Jäger, K. Tesař, V. Gärtnerová, Mater. Charact. 69, 134(2017) |
| [7] | Y. Chen, Z. Xu, C. Smith, J. Sankar, Acta Biomater. 4561, 10(2014) |
| [8] | S. Zhang, X. Zhang, Acta Biomater. 626, 6(2010) |
| [9] | H. Liu, H. Huang, J.P. Sun, C. Wang, J. Bai, A.B. Ma, X.H. Chen, Acta Metall. Sin. (Engl. Lett.) 32, 269(2019) |
| [10] | H. Huang, H. Liu, L.S. Wang, Y.H. Li, S.O. Agbedor, J. Bai, F. Xue, J.H. Jiang, Acta Metall. Sin. (Engl. Lett.) 33, 1191(2020) |
| [11] | S. Cai, T. Lei, N. Li, F. Feng, Solid State Phenom. 381, 217(2015) |
| [12] | Y. Song, E.H. Han, D. Shan, C.D. Yim, B.S. You, Corro. Sci. 238, 60(2012) |
| [13] | Y. Song, E.H. Han, D. Shan, C.D. Yim, B.S. You, Corro. Sci. 322, 65(2012) |
| [14] | E. Koç, M.B. Kannan, M. Ünal, E. Candan, J. Alloys Compd. 291, 648(2015) |
| [15] | H. Liu, H. Huang, C. Wang, J.P. Sun, J. Bai, F. Xue, A.B. Ma, X.B. Chen, JOM 71, 9 (2019) |
| [16] | H. Liu, J. Ju, X.W. Yang, J.L. Yan, D. Song, J.H. Jiang, A.B. Ma, J. Alloys Compd. 704, 509(2017) |
| [17] | S.Y. Jin, H.Y. Liu, R.Z. Wu, F. Zhong, L.G. Hou, J.H. Zhang, Mater. Sci. Eng., A 139611, 788 (2020) |
| [18] | J.H. Wang, L. Xu, R.Z. Wu, J. Feng, J.H. Zhang, L.G. Hou, M.L. Zhang, Acta Metall. Sin. (Engl. Lett.) 490, 33(2020) |
| [19] | E. Mostaed, M. Hashempour, A. Fabrizi, D. Dellasega, M. Bestetti, F. Bonollo, M. Vedani, J. Mech. Behav. Biomed. 307, 37(2014) |
| [20] | X. Gong, S.B. Kang, J.H. Cho, S. Li, Mater. Charact. 183, 97(2014) |
| [21] | Y. He, Q. Pan, Y. Qin, X. Liu, W. Li, Y. Chiu, J.J.J. Chen, J. Alloys Compd. 605, 492(2010) |
| [22] | D. Orlov, G. Raab, T.T. Lamark, M. Popov, Y. Estrin, Acta Mater. 375, 59(2011) |
| [23] | J. Lin, Q. Wang, L. Peng, H.J. Roven, J. Alloys Compd. 441, 476(2009) |
| [24] | W.J. Kim, M.J. Kim, J.Y. Wang, A 322, 527 (2009) |
| [25] | Y. Yuan, A. Ma, X. Gou, J. Jiang, G. Arhin, D. Song, H. Liu, Mater. Sci. Eng., A 125, 677 (2016) |
| [26] | C. Chen, J. Chen, H. Yan, B. Su, M. Song, S. Zhu, Mater. Des. 58, 100(2016) |
| [27] | S.J. Meng, H. Yu, S.D. Fan, Q.Z. Li, S.H. Park, J.S. Suh, Y.M. Kim, X.L. Nan, M.Z. Bian, F.X. Yin, W.M. Zhao, B.S. You, K.S. Shin, Acta Metall. Sin. (Engl. Lett.) 145, 32(2019) |
| [28] | H. Chen, S.B. Kang, H. Yu, J. Cho, H.W. Kim, G. Min, J. Alloys Compd. 324, 476(2009) |
| [29] | Y. Yuan, A. Ma, X. Gou, J. Jiang, F. Lu, D. Song, Y. Zhu, Mater. Sci. Eng., A 45, 630 (2015) |
| [30] | ASTM Standard E8-11, ASTM International (West Conshohocken, PA, 2011). www.astm.org |
| [31] | L.Y. Wei, G.L. Dunlop, H. Westengen, Metall. Mater. Trans. A 1705, 26 (1995) |
| [32] | X. Gao, J.F. Nie, Scr. Mater. 655, 57(2007) |
| [33] | A. Singh, A.P. Tsai, Scr. Mater. 941, 57(2007) |
| [34] | H. Liu, C. Sun, C. Wang, Y.H. Li, J. Bai, F. Xue, A.B. Ma, J.H. Jiang, J. Mater. Sci. Technol. 59, 61(2020) |
| [35] | H. Huang, H. Liu, C. Wang, J.P. Sun, J. Bai, F. Xue, J.H. Jiang, A.B. Ma, J. Magn. Alloys 7, 617 (2019) |
| [36] | K. Yan, H. Liu, N. Feng, J. Bai, H. Cheng, J. Liu, F. Huang, J. Magn. Alloys 305, 7 (2019) |
| [37] | J. Yan, Z. Qin, K. Yan, Metals 841, 8 (2018) |
| [38] | Y. Yang, Z. Wang, L. Jiang, J. Alloys Compd. 566, 705(2017) |
| [39] | E.F. Emely, Principles of Magnesium Technology (Pergamon Press, Oxford, 1966), p. 483 |
| [40] | Y.N. Wang, J.C. Huang, Mater. Trans. 184, 48(2007) |
| [41] | H. Chen, H. Yu, S.B. Kang, J.H. Cho, G. Min, Mater. Sci. Eng., A 1236, 527 (2010) |
| [42] | C.H. Caceres, G.E. Mann, J.R. Griffiths, Metall. Mater. Trans. A 1950,42(2011) |
| [43] | J.F. Nie, Scr. Mater. 1009, 48(2003) |
| [44] | M. Perez, Scr. Mater. 709, 52(2005) |
| [45] | L. Xiao, G. Yang, Y. Liu, S. Luo, W. Jie, J. Mater. Sci. Technol. 2246, 34(2018) |
| [1] | Shuyi Ren, Jiao Li, Kai Wu, Xiaoge Li, Yaqiang Wang, Jinyu Zhang, Gang Liu, Jun Sun. Thermal Stability and Mechanical Properties of Nanotwinned Ni-W Alloyed Films [J]. Acta Metallurgica Sinica (English Letters), 2025, 38(9): 1570-1582. |
| [2] | Yunlu Jiang, Lihui Wu, Dingrui Ni, Hongbo Zhao, Xu Han, Peng Xue, Bolv Xiao, Zongyi Ma. Effect of Post Weld Heat Treatment on Residual Stress and Mechanical Properties of 106 mm Thick TC4 Titanium Alloy Electron Beam Welded Joints [J]. Acta Metallurgica Sinica (English Letters), 2025, 38(7): 1083-1094. |
| [3] | Tiantian Wang, Lin Liu, Zexin Liu, Kang Wang, Runhua Yao, Xiaohong Yao, Ruiqiang Hang. Characterization, Mechanical Property, Degradation Behavior, and Osteogenic Activity of Zn-Mn Alloy Foam Prepared by Electrodeposition [J]. Acta Metallurgica Sinica (English Letters), 2025, 38(7): 1157-1173. |
| [4] | Yifan Li, Shengyao Ma, Xinrui Zhang, Tong Xi, Chunguang Yang, Hanyu Zhao, Ke Yang. Copper Precipitation Behavior and Mechanical Properties of Cu-Bearing Ferritic Stainless Steel with Different Cr Addition [J]. Acta Metallurgica Sinica (English Letters), 2025, 38(3): 383-395. |
| [5] | Hongbin Liu, Zhenqiang Xing, Yitong Yang, Jingyu Pang, Wen Li, Zhengwang Zhu, Long Zhang, Aimin Wang, Haifeng Zhang, Hongwei Zhang. A Novel BCC/B2 Structural Nb38Ti35Al15V6Cr4(TaHfMoW)2 Refractory High-Entropy Alloy with Excellent Specific Yield Strength-Plasticity Synergy [J]. Acta Metallurgica Sinica (English Letters), 2025, 38(3): 396-406. |
| [6] | Wei Qiu, Shuang-Long Li, Zhao-Yuan Lu, Sen-Mao Zhang, Jian Chen, Wei Chen, Lang Gan, Wei Li, Yan-Jie Ren, Jun Luo, Mao-Hai Yao, Wen Xie. Effects of CeO2 Content on the Microstructure and Mechanical Properties of ZK60 Mg Alloy [J]. Acta Metallurgica Sinica (English Letters), 2025, 38(2): 287-298. |
| [7] | Dongfang Lou, Mingda Zhang, Yuping Ren, Hongxiao Li, Gaowu Qin. Fabrication of Zn-0.5Mn-0.05 Mg Micro-Tube with Suitable Strength and Ductility for Vascular Stent Application [J]. Acta Metallurgica Sinica (English Letters), 2025, 38(2): 327-337. |
| [8] | Yao-Zong Mao, Ya-Hui Zhang, De-Chun Ren, Diao-Feng Li, Hai-Bin Ji, Hai-Chang Jiang, Chun-Guang Bai. Effect of Process Parameters on the Microstructure and Properties of Ti15Zr5Cu Alloy Fabricated via Selective Laser Melting [J]. Acta Metallurgica Sinica (English Letters), 2025, 38(10): 1699-1710. |
| [9] | Y. P. Cui, X. P. Guo, P. Xue, R. Z. Xu, X. M. Guo, D. R. Ni, Z. Y. Ma. A Composite Structure of Al-Mg-Sc Alloy Prepared by Wire Arc-Directed Energy Deposition with Interlayer Friction Stir Processing [J]. Acta Metallurgica Sinica (English Letters), 2025, 38(10): 1794-1808. |
| [10] | Li-Lan Gao, Jiang Ma, Yan-Song Tan, Xiao-Hao Sun, Qi-Jun Gao, De-Bao Liu, Chun-Qiu Zhang. Effect of Free-End Torsion on the Corrosion and Mechanical Properties for Mg-3Zn-0.2Ca Alloy [J]. Acta Metallurgica Sinica (English Letters), 2025, 38(1): 59-70. |
| [11] | Lingyu Zhao, Wei Zhu, Chao Zhang, Yunchang Xin, Changjian Yan, Yao Cheng, Zhaoyang Jin. Detwinning and Anneal-Hardening Behaviors of Pre-Twinned AZ31 Alloys under Cryogenic Loading [J]. Acta Metallurgica Sinica (English Letters), 2024, 37(9): 1551-1563. |
| [12] | Linwei Li, Donghu Zhou, Kai Zhao, Lifeng Jiang, Huijun Kang, Enyu Guo, Feng Mao, Zongning Chen, Tongmin Wang. Effects of Reinforcement Content and Homogenization Treatment on the Microstructure and Mechanical Properties of in-situ TiB2/2219Al Composites [J]. Acta Metallurgica Sinica (English Letters), 2024, 37(8): 1421-1437. |
| [13] | Yujing Zhou, Siyi Peng, Yueling Guo, Xiaoxiang Wu, Changmeng Liu, Zhiming Li. Microstructure Modification and Ductility Improvement for TaMoNbZrTiAl Refractory High Entropy Alloys via Increasing Ti Content [J]. Acta Metallurgica Sinica (English Letters), 2024, 37(7): 1186-1200. |
| [14] | Sen Wang, Hucheng Pan, Caixia Jiang, Zhihao Zeng, Zhen Pan, Weineng Tang, Chubin Yang, Yuping Ren, Gaowu Qin. Microstructure and Mechanical Property of the Large Cross-Sectioned Mg-Gd-Y-Zn-Zr Alloy Produced by Small Extrusion Ratio [J]. Acta Metallurgica Sinica (English Letters), 2024, 37(6): 999-1006. |
| [15] | Xuan-Hong Cai, Zhen-Hua Wang, Ben Niu, Jin-Feng Li, Qing Wang, Show authors. Microstructural Evolutions and Mechanical Properties of Energetic Al1 (TiZrNbTaMoCr)15 High-Entropy Alloys [J]. Acta Metallurgica Sinica (English Letters), 2024, 37(4): 620-632. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||
WeChat
