石维

时间:2024-09-08浏览:50

[1] Z. Liu, W. Shi, S. Xiang, F. Liu, U. Ramamurty, Influence of OH− on the initiation and growth mechanism of pore structure during microarc oxidation of Ti-6Al-4 V alloy, Surf. Coat. Technol. 487 (2024).

[2] S. Zhang, X. Du, W. Shi, S. Xiang, Effect of low dissolved oxygen concentration on the tribocorrosion properties and ion release of Ti-13Nb-13Zr, Corrosion Engineering, Science and Technology: The International Journal of Corrosion Processes and Corrosion Control 59(4) (2024) 236-248.

[3] Z.Q. Liu, Y. Zhang, W. Shi, S. Xiang, Layer-by-layer analysis of gradient corrosion behavior of ultrasonic rolling-processed 20CrMnTi steel, Mater. Lett. 334 (2023).

[4] Y. Huang, W. Shi, L. Guo, Q. Zhang, K. Wang, X. Zheng, C. Verma, Y. Qiang, Corrosion inhibition of L-tryptophan on Al-5052 anode for Al-air battery with alkaline electrolyte, J. Power Sources 564 (2023) 232866.

[5] Y. Huang, L. Guo, Q. Zhang, W. Shi, W. Feng, F. Abbas, X. Zheng, S. Leng, Y. Qiang, V.S. Saji, Regulating the Anode Corrosion by a Tryptophan Derivative for Alkaline Al–Air Batteries, Langmuir 39(17) (2023) 6018-6028.

[6] L. Guo, Y. Huang, Y.D. Wu, W. Shi, F. Abbas, Y.H. Lin, R. Marzouki, X.W. Zheng, Experimental and Theoretical Studies of the Corrosion Inhibition Performance of a Quaternary Phosphonium-Based Ionic Liquid for Mild Steel in HCl Medium, SUSTAINABILITY 15(4) (2023).

[7] X. Du, W. Shi, S. Xiang, Effect of low dissolved oxygen concentration on the defects and composition of regenerated passive film of Ti-6Al-4V alloy under continuous wear, RSC Advances 13 (2023) 20135-20149.

[8] J. Li, Y. He, W. Shi, S. Xiang, W. Gao, Different passivation behavior between α and β phases of Ti-6Al-4V in HCl solutions under oxygenated/deoxygenated conditions, Appl. Surf. Sci. 604 (2022) 154539.

[9] Y. Zhang, W. Shi, S. Xiang, Using SKPFM to Determine the Influence of Deformation-Induced Dislocations on the Volta Potential of Copper, Metals 11(8) (2021) 1166.

[10] J. Wang, W. Shi, S. Xiang, et al. Study of the corrosion behaviour of sensitized 904L austenitic stainless steel in Cl- solution [J]. Corros. Sci., 2021, 181109234

[11] W. Shi, J. Wang, R. Jiang, et al. Anticorrosion Properties of the Low-Temperature Glow Plasma Nitriding Layer on AISI 904L Austenitic Stainless Steel in Hydrofluoric Acid Obtained at Various NH3 Pressures [J]. Coatings, 2020, (10): 1156

[12] T. Cheng, W. Shi, S. Xiang, et al. Volta potential mapping of the gradient strengthened layer in 20CrMnTi by using SKPFM [J]. Journal of Materials Science, 2020, 55(26): 12403-12420

[13] 张胜博, 向嵩, 成桃,石维, et al. 超声滚压20CrMnTi纳米化表面对局部腐蚀萌生行为的影响 [J]. 表面技术, 2019, 48(08): 136-143

[14] R.Y. Jiang, G.B. Zou, W. Shi, et al. Corrosion Behavior of Plasma-Nitrided 904L Austenitic Stainless Steel in Hydrofluoric Acid [J]. J. Mater. Eng. Perform., 2019, 28(3): 1863-1872

[15] G. Zou, W. Shi, S. Xiang, et al. Corrosion behavior of 904L austenitic stainless steel in hydrofluoric acid [J]. RSC Advances, 2018, 8(5): 2811-2817

[16] S. Xiang, Y. He, W. Shi, et al. Chloride-induced corrosion behavior of cold-drawn pearlitic steel wires [J]. Corros. Sci., 2018, 141221-229

[17] 余稳, 向嵩, 石维, et al. 20CrMnTi齿轮钢的点蚀敏感性及裂纹萌生风险 [J]. 工程科学学报, 2017, (05): 731-738

[18] W. Shi, T.-Z. Wang, Z.-H. Dong, et al. Application of wire beam electrode technique to investigate the migrating behavior of corrosion inhibitors in mortar [J]. Constr. Build. Mater., 2017, 134167-175

[19] Y. He, S. Xiang, W. Shi, et al. Effect of microstructure evolution on anisotropic fracture behaviors of cold drawing pearlitic steels [J]. Materials Science and Engineering: A, 2017, 683153-163