Acta Metallurgica Sinica (English Letters) ›› 2016, Vol. 29 ›› Issue (2): 129-133.DOI: 10.1007/s40195-016-0368-3
• Orginal Article • Previous Articles Next Articles
Ji-Juan Liu, Ran Li(
), Lian-Xiang Fang, Ju Wang, Tao Zhang
Received:2015-08-02
Revised:2015-10-01
Online:2016-01-18
Published:2016-02-20
Ji-Juan Liu, Ran Li, Lian-Xiang Fang, Ju Wang, Tao Zhang. Induced Plasticity of a Brittle (La, Ce)-Based Bulk Metallic Glass by Surface Corrosion[J]. Acta Metallurgica Sinica (English Letters), 2016, 29(2): 129-133.
Fig. 1 XRD patterns of the as-cast (La0.5Ce0.5)65Al10Cu25 bulk metallic glasses and the corresponding corroded samples in 0.1 mol/L H2SO4 aqueous solution at 298 K for 5, 20 and 30 min, respectively
Fig. 2 SEM images of surface morphologies of a, b the as-cast (La0.5Ce0.5)65Al10Cu25 glassy rods and the corroded ones at 298 K in 0.1 mol/L H2SO4 aqueous solution for different immersing time: c, d 5 min; e, f20 min; g, h 30 min
Fig. 3 Compressive stress-strain curves of the as-cast (La0.5Ce0.5)65Al10Cu25 glassy rods and the treated samples for different immersing time of 5, 20 and 30 min, respectively
Fig. 4 SEM images of the failed (La0.5Ce0.5)65Al10Cu25 glassy rods after compressive fracture for the different immersing time: a, e untreated; b, f 5 min; c, g 20 min; d, h 30 min. The position of the typical selected surface morphologies for each sample, as shown in e-h, is highlighted by rectangle in a-d, respectively
Fig. 5 Immersing time dependence of the corrosion degree, the density of shear bands and the plasticity for (La0.5Ce0.5)65Al10Cu25 bulk metallic glasses
| [1] | A. Inoue, Acta Mater. 48, 279(2000) |
| [2] | M.F. Ashby, A.L. Greer, Scr. Mater. 54, 321(2006) |
| [3] | W.L. Johnson, JOM 54, 40 (2002) |
| [4] | C.A. Schuh, T.C. Hufnagel, U. Ramamurty, Acta Mater. 55,4067(2007) |
| [5] | J. Wang, R. Li, N. Hua, T. Zhang, J. Mater. Res. 26, 2072 (2011) |
| [6] | O. Pelin, H. Aytekin, Acta Metall. Sin. (Engl. Lett.) 28, 733(2015) |
| [7] | A.L. Greer, Y.Q. Cheng, E. Ma, Mater. Sci. Eng. R 74, 71 (2013) |
| [8] | L. Zhang, R. Li, T. Xu, H. Zhang, T. Zhang, Intermetallics 52,92 (2014) |
| [9] | J.W. Qiao, M.M. Meng, Z.H. Wang, C.J. Huang, R. Li, Y.S.Wang, H.J. Yang, Y. Zhang, L.F. Li, AIP Adv. 4, 107(2014) |
| [10] | T.G. Nieh, Y. Yang, J. Lu, C.T. Liu, Prog. Nat. Sci. 22, 355(2012) |
| [11] | Y. Zhang, W.H. Wang, A.L. Greer, Nat. Mater. 5, 857(2006) |
| [12] | J.P. Chu, J.E. Greene, J.S.C. Acta Mater. 60, 3226(2012) |
| [13] | W. Chen, K.C. Chan, P. Yu, G. Wang, Mater. Sci. Eng. A 528,2988 (2011) |
| [14] | S. Scudino, B. Jerliu, S. Pauly, K.B. Surreddi, U. Kuehn, J.Eckert, Scr. Mater. 65, 815(2011) |
| [15] | B. Sarac, J. Schroers, Nat. Commun. 4, 2158 (2013) |
| [16] | B. Chen, Y. Li, M. Yi, R. Li, S. Pang, H. Wang, T. Zhang, Scr.Mater. 66, 1057(2012) |
| [17] | G. Wu, R. Li, Z. Liu, B. Chen, Y. Li, Y. Cai, T. Zhang, Intermetallics 24, 50 (2012) |
| [18] | R. Li, F. Liu, S. Pang, C. Ma, T. Zhang, JIM 48,1680 (2007) |
| [19] | T. Zhang, R. Li, S. Pang, J. Alloy. Compd. 483, 60(2009) |
| [20] | R.T. DeHoff, in Q.Microscopy, ed.by F.N. Rhines, McGraw-Hill Series in Materials Science and Engineering (McGraw-Hill,New York, NY, 1968), p. 129 |
| [21] | Z. Deng, C. Zhang, L. Liu, Intermetallics 52, 9 (2014) |
| [22] | X.K. Luo, R. Li, L. Huang, T. Zhang, Corros. Sci. 67, 100(2013) |
| [23] | X.K. Luo, R. Li, Z.Q. Liu, L. Huang, M.J. Shi, T. Xu, T. Zhang,Mater. Lett. 76, 96(2012) |
| [24] | Y. Jin, R. Li, T. Zhang, Intermetallics 67, 166 (2015) |
| [25] | R. Li, X.J. Liu, H. Wang, Y. Wu, X.M. Chu, Z.P. Lu, Corros.Sci. 84, 159(2014) |
| [1] | Shang Zhao, Zhaolin Wang, Mingliang Wang, Zeyu Ding, Yiping Lu. A critical review of advances and application prospects of soft magnetic high entropy alloys [J]. Metals Advances, 2026, 40(2): 1-7. |
| [2] | Wei-Peng Chen, Jia-Qi Pei, Hua Hou, Yu-Hong Zhao. Phase-field simulation of α-Mg dendrite growth in magnesium alloys: A review [J]. Metals Advances, 2026, 40(2): 48-61. |
| [3] | Mengyao He, Shuhui Hao, Huichao Duan, Rui Zhang, Chuanyong Cui, Kui Du. Deformation twinning in a wrought Ni-base superalloy at intermediate temperatures [J]. Metals Advances, 2026, 40(2): 71-77. |
| [4] | Peng Han, Wen Wang, Jun Cai, Jia Lin, Hubin Yang, Qianzhi Ma, Feng Gao, Ke Qiao, Fengming Qiang, Kuaishe Wang. Excellent superplasticity for lamellar microstructure in nugget of a double-sided friction stir welded Ti-4.5Al-3V-2Mo-2Fe alloy joint [J]. Metals Advances, 2026, 40(2): 110-123. |
| [5] | Xuhui Liu, Zijin Xiao, Yang Yuan, Qihong Huang, Kaiwei Tang, Yilong Dai, Dechuang Zhang, Jia She, Feng Peng, Fugang Qi, Xiaoping Ouyang. Corrosion-resistant and bioactive FeMn-CaP-Col@CS coating on magnesium alloy for orthopedic implants: Fabrication and characterization [J]. Metals Advances, 2026, 39(1): 1-12. |
| [6] | Lei Qin, Shengfeng Zhou, Jianbo Jin, Huan Yang, Kunmao Li, Cheng Deng, Yujie Yuan, Seyed Reza Elmi Hosseini, Lai-Chang Zhang. Effect of molybdenum content on the microstructure and tribological properties of Ti-Nb-Cu alloys produced by LPBF additive manufacturing [J]. Metals Advances, 2026, 39(1): 13-25. |
| [7] | X.L. Wang, J.Y. Li, Q.S. Mei. Recent progress in Zn matrix composites for biomedical applications [J]. Metals Advances, 2026, 39(1): 26-37. |
| [8] | Zhizhi Wang, Pei Liu, Jingyi Guo, Yiwen Yan, Aiqin Wang, Jingpei Xie. Excellent mechanical properties and biocompatibility of Ti-15Mo alloy via interstitial nitrogen atoms [J]. Metals Advances, 2026, 39(1): 38-46. |
| [9] | Kunmao Li, Shengfeng Zhou, Jing Liu, Feng Yang, Chengliang Yang. A review on the biomedical Ti-Cu alloys: Design, preparation, microstructure and properties [J]. Metals Advances, 2026, 39(1): 47-67. |
| [10] | Shuai Hao, Xiang-Mei Wen, Jun Cheng, Xue-Yan Yao, Wei-Ying Huang, Rui-Feng Li, Liang-Yu Chen. Tailoring corrosion resistance of laser powder bed fusion produced Ti-6Al-4V via heat treatment at 700 °C in potential biomedical applications: Microstructural evolution and electrochemical behavior [J]. Metals Advances, 2026, 39(1): 83-94. |
| [11] | Yuanyuan Feng, Jianchao Pang, Xiaoyuan Teng, Chenglu Zou, Jingjing Liang, Yuping Zhu, Shouxin Li, Jinguo Li, Zhefeng Zhang. Quasi-in-situ EBSD Study on the Microstructure and Tensile Properties of Selective Laser Melted Inconel 718 Alloy Processed by Different Heat Treatments [J]. Acta Metallurgica Sinica (English Letters), 2025, 38(9): 1499-1512. |
| [12] | B. M. Shi, Y. T. Pang, B. H. Shan, B. B. Wang, Y. Liu, P. Xue, J. F. Zhang, Y. N. Zan, Q. Z. Wang, B. L. Xiao, Z. Y. Ma. Microstructure Evolution and Fracture Behavior of (B4C+Al2O3)/Al Friction Stir Welded Joints [J]. Acta Metallurgica Sinica (English Letters), 2025, 38(9): 1513-1526. |
| [13] | Shudong Yang, Xiaoqian Guo, Chao Ma, Lu Shen, Lingyu Zhao, Wei Zhu. Anisotropic Mechanical Behavior in an Extruded AZ31 Magnesium Alloy: Experimental and Crystal Plasticity Modeling [J]. Acta Metallurgica Sinica (English Letters), 2025, 38(9): 1527-1544. |
| [14] | Zhenzhen Tian, Rongqian Wu, Fubing Yu, Yan Zhou, Wenhui Yao, Yuan Yuan, Zhihui Xie, Yanlong Ma, Atrens Andrej, Liang Wu. Preparation and Corrosion Resistance Mechanism of Magnesium-Lithium Alloy Micro-arc Oxidation/Quaternary LDHs@GO Self-healing Composite Film [J]. Acta Metallurgica Sinica (English Letters), 2025, 38(9): 1545-1558. |
| [15] | H. Q. Dai, N. Li, L. H. Wu, J. Wang, P. Xue, F. C. Liu, D. R. Ni, B. L. Xiao, Z. Y. Ma. Low-Temperature Superplastic Deformation Behavior of Bimodal Microstructure of Friction Stir Processed Ti-6Al-4V Alloy [J]. Acta Metallurgica Sinica (English Letters), 2025, 38(9): 1559-1569. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||
WeChat
