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1T. Qi, B. Zhang, Z. Wang, Y. Li, P. Skeldon, and G. E. Thompson,“Effect of an Fe(II)-modified Trivalent Chromium ConversionProcess on Cr(VI) Formation during Coating of AA 2024 Alloy,”Electrochemistry Communications 92(2018), 10.1016.
2H. Ju, Y. F. Yang, Y. F. Liu, S. F. Liu, J. Z. Duan, and Y. Li,“Mapping the Galvanic Corrosion of Three Metals Coupled with aWire Beam Electrode: The Influence of Temperature and RelativeGeometrical Position,” Materials, 11(2018), 10.3390.
3H. Ju, X. Li, C. Ning, F. F. Wang, Y. F. Liu, and Y. Li,“Schiff-base Derivatives as Corrosion Inhibitors for CarbonSteel Materials in Acid Media: Quantum Chemical Calculations,”Corrosion Engineering Science Technology, 53(2018), 10.1080.
4H. Ju, J. Z. Duan, Y. F. Yang, N. Cao, and Y. Li, “Mapping theGalvanic Corrosion of Three Coupled Metal Alloys Using CoupledMultielectrode Array: Influence of Chloride Ion Concentration,”Materials, 11(2018), 10.3390
5Xing S H, Li Y, Wharton J A, et al. Effect of dissolved oxygen andcoupled resistance on the galvanic corrosion of Cr‐Ni low‐alloysteel/90‐10 cupronickel under simulated deep sea condition.Materials & Corrosion, 2017, 68(10).
6Qi J, Miao Y, Wang Z, Li Y, Zhang X, P. Skedon, G. E. Thompson.Influence of Copper on Trivalent Chromium Conversion CoatingFormation on Aluminum. Journal of the Electrochemical Society,2017, 164(12):C611-C617.
7Qi J, Gao L, Li Y, et al. An Optimized Trivalent ChromiumConversion Coating Process for AA2024-T351 Alloy. Journal of theElectrochemical Society, 2017, 164(7):C390-C395.
8Guan X, Zhang D, Wang J, Jin Y, Li Y. Numerical andelectrochemical analyses on carbon dioxide corrosion of X80pipeline steel under different water film thicknesses in NACEsolution. Journal of Natural Gas Science & Engineering, 2017,37:199-216.
9Bai Y, Li X, Xing L, Wang Z, Li Y. A Novel Non-skid CompositeCoating with Higher Corrosion Resistance. Ceramics International,2017, 43(17):15095~15106
10Bai Y, Wang Z H, Li X B, Huang G, Li C, Li Y. Corrosion behaviorof low pressure cold sprayed Zn-Ni composite coatings. Journal ofAlloys & Compounds, 2017, 719:194-202.
11Yaping Zhang, Kaituo Dong, Zheng Liu, Haolin Wang, Shengxiang Ma,Anyu Zhang, Ming Li, Lianqing Yu, Yan Li. Sulfurized hematite forphoto-Fenton catalysis . Progress in Natural Science:MaterialsInternational, 2017, 27(4):443~451
12BAI Yang, LI Xiangbo, XING Lukuo, LI Yan. Effect of Salt SprayCorrosion on Tribological Properties of HVOF Sprayed NiCr-Cr_3C_2Coating with Intermediate Layer[J]. Journal of Wuhan University ofTechnology(Materials & Science Edition), 2017, 32(2):292-298.
15Wang J S, Tang X, Li Y, et al. Observation andmicro-electrochemical characterisation for micro-droplets ininitial marine atmospheric corrosion. British Corrosion Journal,2016, 51(4):308-312.
18S H Xing, Y Li, H Q Song, Y G Yan, M X Sun. Optimization thequantity, locations and output currents of anodes to improvecathodic protection effect of semi-submersible crane vessel. OceanEngineering, 2016, 113:144-150.
36H Ju, Y Li. Coulostatic-based research on corrosion inhibitionmechanism of three inhibitors for hot dipped coating steels.Applied Mechanics and Materials, 2012, 229-231: 87-90
37H Ju, Y Ju and Y Li. Berberine as an Environmental-FriendlyInhibitor for Hot-Dip Coated Steels in Diluted Hydrochloric Acid.Journal of Materials Science & Technology, 2012, 28(9):809–816
44Zhang D L, Jin Y H, Li Y, et al. Effect of Sulphite Sediment onHydrogen Embrittlement Susceptivity of Hot-Dip Galvanized SteelExposed to Simulated Marine Atmosphere. Advanced MaterialsResearch, 2011, 197-198:1617-1620.
44D L Zhang, Y Li, Y H Jin, X Tang. Hydrogen EmbrittlementSusceptivity of Hot-Dip Galvanized Steel in Wet-Dry CyclicSimulated Marine Atmospheric Environment. Advance MaterialsResearch, 2011, 197-198: 1443-1446
45D L Zhang, Y H Jin, Y Li, X Tang. Effect of Sulphite Sediment onHydrogen Embrittlement Susceptivity of Hot-Dip Galvanized SteelExposed to Simulated Marine Atmosphere. Advance MaterialsResearch, 2011, 197-198: 1617-1620
46D-L Zhang, Youhai Jin,Y Li, X Tang. Study of ElectrochemicalInhomogeneity of Zinc in Zinc/Steel Couple during GalvanicCorrosion by Wire Beam Electrode, Advance Materials Research, 2011(266), 263-266
49D-L Zhang, W Wang, Y Li. An Electrode Array Study ofElectrochemical Inhomogeneity of Zinc in Zinc/Steel Couple duringGalvanic Corrosion. Corrosion Science, 2010, 52(4): 1277-1284
51H. S. Xing, Y. Li, J. Wu and Y. Yan. Electrochemical methods studyon corrosion of 5% Al–Zn alloy-coated steel under thinelectrolyte layers. Materials and Corrosion, 2010, 61(5): 428-431
55Zhang D L, Li Y. Hydrogen Permeation Characterization of Hot-DipGalvanized Steel in Simulated Marine Atmospheric Environment.Advanced Materials Research, 2009, 79-82:1051-1054.
56Ju H, Peng T, Li Y. Acridine as effective corrosion inhibitor forhot dipped coatings on steels in diluted HCl solution,多功能材料与结构国际会议.2009:1035-1038.
60H Ju, T-S Peng, Y Li. Acridine as effective corrosion inhibitorfor hot dipped coatings on steels in diluted HCl solution. AdvanceMaterials Research, 2009, 79-82: 1035-1038
51D-L Zhang, Y Li. Hydrogen permeation characterization of hot-dipgalvanized steel in simulated marine atmospheric environment.Advance Materials Research, 2009, 79-82: 1051-1054
62X Tang, Y-Z Zhang, M Liu, Y Li. BEM Analysis for GalvanicCorrosion of Hot Dip Galvanized Steel Immersed in Seawater.Journal of Materials Science & Technology, 2009, 25(2):194-198
69H Ju, Z-P Kai, Y Li. Aminic nitrogen-bearing polydentate Schiffbase compounds as corrosion inhibitors for iron in acidic media: aquantum chemical calculation, Corrosion Science, 2008, 50(3):865-871