• ZHANG Bo
    Title:Professor Email: bxz011@imr.ac.cn
    Tel. : +86-24-83970971 FAX: +86-24-23998660
    Division: Shenyang National Laboratory for Materials Science
    Address: Institute of Metal Research Chinese Academy of Sciences (IMR CAS), 62 Wencui Road,Shenyang,China, 110016

Experience:

Education

2001/03-2005/12, University of Birmingham, School of Metallurgy and Materials, PhD

1997/09-2001/02, Institute of Metal Research, Chinese Academy of Sciences, PhD

1993/09-1996/07, Institute of Corrosion and Protection of Metals, Chinese Academy of Sciences, MD

1989/09-1993/08, Nanchang University, Physics Department, BA in Physics Science

Work Experience

2017/10-present, Institute of Metal Research, Chinese Academy of Sciences,Professor.

2006/01-2017/09, Institute of Metal Research, Chinese Academy of Sciences,Associated Professor.

1998/10-2001/02,Institute of Metal Research, Chinese Academy of Sciences,Assistant Professor.

1996/08-1998/09,Institute of Metal Research, Chinese Academy of Sciences,Assistant Researcher.

Research Interest:

Localized corrosion (including stress corrosion cracking and corrosion fatigue) of aluminium alloys and stainless steels.

Research Achievement:

Service to the International Professional Societies:

Honors:

Publication:

1.Y. C. Xin, W. Xu, T. S. Liang, W. Wang, B. Zhang, Inhibiting the formation of planar defects in grown alumina scale on Ni-Al alloys. Corros. Sci., 111263 (2023).

2.Z. C. Tang, W. Xu, D. Y. Zhao, B. Zhang, Improving the strength and SCC resistance of an Al-5Mg-3Zn alloy with low-angle grain boundary structure. J. Mater. Sci. Technol. 161, 63-73 (2023).

3.T. S. Liang, Y. F. Jiang, H. Y. Li, W. Wang, Q. Zhang, B. Zhang, Enhanced oxidation resistance of Ce by addition of Ga and nanocrystallization. J. Mater. Sci. Technol. 147, 26-36 (2023).

4.W. Xu, B. Zhang, K. Du, X. Y. Li, K. Lu, Thermally stable nanostructured Al-Mg alloy with relaxed grain boundaries. Acta Mater. 226, 117640 (2022).

5.W. Xu, Y. C. Xin, B. Zhang, X. Y. Li, Stress corrosion cracking resistant nanostructured Al-Mg alloy with low angle grain boundaries. Acta Mater. 225, 117607 (2022).

6.W. Xu, B. Zhang, X. Y. Li, K. Lu, Suppressing atomic diffusion with the Schwarz crystal structure in supersaturated Al-Mg alloys. Science 373, 683-687 (2021).

7.I. Ikeuba, B. Zhang, B. I. Ita, SVET and ToF-SIMS studies on the galvanic corrosion of β-phase/aluminum couple in aqueous solutions as a function of pH. J. Electrochem. Soc. 167, 021507 (2020).

8.I. Ikeuba, B. Zhang, J. Wang, E.-H. Han, W. Ke, Understanding the galvanic corrosion of the Q-phase/Al couple using SVET and SIET. J. Mater. Sci. Technol. 35, 1444-1454 (2019).

9.Y. H. Fan, F. Cui, L. Lu, B. Zhang, A nanotwinned austenite stainless steel with high hydrogen embrittlement resistance. J. Alloys Compd. 788, 1066-1075 (2019).

10.I. Ikeuba, B. Zhang, J. Wang, E.-H. Han, W. Ke, P. C. Okafor, SVET and SIET Study of Galvanic Corrosion of Al/MgZn2in Aqueous Solutions at Different pH. J. Electrochem. Soc. 165, C180-C194 (2018).

11.Y. H. Fan, B. Zhang, H. L. Yi, G. S. Hao, Y. Y. Sun, J. Q. Wang, E. H. Han, W. Ke, The role of reversed austenite in hydrogen embrittlement fracture of S41500 martensitic stainless steel. Acta Mater. 139, 188-195 (2017).

12.L. Guan, Y. Zhou, B. Zhang, J. Q. Wang, E. H. Han, W. Ke, Influence of aging treatment on the pitting behavior associated with the dissolution of active nanoscale β-phase precipitates for an Al–Mg alloy. Corros. Sci. 103, 255-267 (2016).

13.L. Guan, B. Zhang, X. P. Yong, Y. Zhou, J. Q. Wang, E. H. Han, W. Ke, Quantitative Understanding of the Current Responses under Elastic Cyclic Loading for 304 Stainless Steel. J. Electrochem. Soc. 163, C627-C632 (2016).

14.L. Guan, Y. Zhou, H. Q. Lin, B. Zhang, J. Q. Wang, E. H. Han, W. Ke, Detection and analysis of anodic current transients associated with nanoscale β-phase precipitates on an Al–Mg microelectrode. Corros. Sci. 95, 6-10 (2015).

15.L. Guan, B. Zhang, X. P. Yong, J. Q. Wang, E. H. Han, W. Ke, Effects of cyclic stress on the metastable pitting characteristic for 304 stainless steel under potentiostatic polarization. Corros. Sci. 93, 80-89 (2015).

16.X. Y. Sun, B. Zhang, H. Q. Lin, Y. Zhou, L. Sun, J. Q. Wang, E. H. Han, W. Ke, Atom probe tomographic study of elemental segregation at grain boundaries for a peak-aged Al–Zn–Mg alloy. Corros. Sci. 79, 1-4 (2014).

17.L. Guan, B. Zhang, J. Q. Wang, E. H. Han, W. Ke, The reliability of electrochemical noise and current transients characterizing metastable pitting of Al–Mg–Si microelectrodes. Corros. Sci. 80, 1-6 (2014).

18.X. Y. Sun, B. Zhang, H. Q. Lin, Y. Zhou, L. Sun, J. Q. Wang, E. H. Han, W. Ke, Correlations between stress corrosion cracking susceptibility and grain boundary microstructures for an Al–Zn–Mg alloy. Corros. Sci. 77, 103-112 (2013).

19.X.-L. Shang, B. Zhang, E.-H. Han, W. Ke, The effect of 0.4wt.% Mn addition on the localized corrosion behaviour of zinc in a long-term experiment. Electrochimica Acta 65, 294-304 (2012).

20.X.-L. Shang, B. Zhang, E.-H. Han, W. Ke, Effect of small addition of Mn on the passivation of Zn in 0.1M NaOH solution. Electrochimica Acta 56, 1417-1425 (2011).

21.J. Ma, B. Zhang, J. Wang, G. Wang, E.-H. Han, W. Ke, Anisotropic 3D growth of corrosion pits initiated at MnS inclusions for A537 steel during corrosion fatigue. Corros. Sci. 52, 2867-2877 (2010).

22.J. Ma, B. Zhang, D. Xu, E.-H. Han, W. Ke, Effects of inclusion and loading direction on the fatigue behavior of hot rolled low carbon steel. International Journal of Fatigue 32, 1116-1125 (2010).

23.Zhang, H.-B. Zhou, E.-H. Han, W. Ke, Effects of a small addition of Mn on the corrosion behaviour of Zn in a mixed solution. Electrochimica Acta 54, 6598-6608 (2009).

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