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海洋大气环境下装备材料的腐蚀与防护研究进展(5)

来源:中国腐蚀与防护学报 【在线投稿】 栏目:期刊导读 时间:2021-07-10
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摘要:[26]侯延辉, 刘林利, 李光强, 等.钢中复合夹杂物/钢基体的电势差与电偶腐蚀的关系[C]// 第十二届中国钢铁年会论文集.北京, 2019.HOU Yan-hui, LIU Lin-li, LI Guang

[26]侯延辉, 刘林利, 李光强, 等.钢中复合夹杂物/钢基体的电势差与电偶腐蚀的关系[C]// 第十二届中国钢铁年会论文集.北京, 2019.HOU Yan-hui, LIU Lin-li, LI Guang-qiang, et al.The Relationship between the Potential Difference of Composite Inclusions in Steel/Steel Matrix and Galvanic Corrosion[C]// Proceedings of the 12th China Iron and Steel Annual , 2019.

[27]雷冰, 胡胜楠, 卢云飞, 等.海水环境中B10合金与高强钢的电偶腐蚀行为与电绝缘防护技术[J].腐蚀与防护, 2019, 40(7): Bing, HU Sheng-nan, LU Yun-fei, et Corrosion Behavior and Electrical Insulation Protection Technology of B10 Alloy and High-Strength Steel in Seawater Environment[J].Corrosion & Protection, 2019,40(7): 497-518.

[28]胡裕龙, 卜世超, 王智峤.微弧氧化处理对钛-钢电偶腐蚀行为的影响[J].表面技术, 2019, 48(7): Yu-long, BU Shi-chao, WANG of Micro-Arc Oxidation Treatment on Galvanic Corrosion Behavior of Titanium-Steel[J].Surface Technology, 2019,48(7): 122-134.

[29]SHI L, SONG Y, ZHAO P, et of GalvanicCurrents and Corrosion Forms of 2024/Q235/304 Tri-Metallic Couple with Multivariable Cathode/Anode Area Ratios: Experiments and Modelling[J].Electrochimica Acta, 2020, 359: .

[30]YANG Y J, LEE J H, PARK C, et on Electrochemical Cathodic Protection for Cavitation-Erosion Reduction of Anodized Al Alloy[J].Journal of Nanoscience and Nanotechnology, 2020, 20(9):188-196.

[31]黄家坪.牺牲阳极的阴极保护在港工钢管桩防腐中的应用[J].中国水运, 2020, 20(6): of Cathodic Protection of Sacrificial Anode in Anti-Corrosion of Steel Pipe Piles of Port Engineering[J].China Water Transport, 2020, 20(6):152-155.

[32]李文浩, 左锐, 莫春萍, 等.电化学保护技术在锌冶炼废电解液加热器上的应用研究[J].中国有色金属学报,2020, 49(3): 79-93.LI Wen-hao, ZUO Rui, MO Chun-ping, et of Electrochemical Protection Technology in Zinc Smelting Waste Electrolyte Heater[J].Transactions of Nonferrous Metals Society of China, 2020, 49(3): 79-93.

[33]ANDRIANOV V A, BEDELBEKOVA K A, OZERNOY A N, et al.M?ssbauer Study of the Implantation of Fe-57 Ions into Metallic Ta and Mo and Stainless Steel[J].Journal of Surface Investigation: X-ray, Synchrotron and Neutron Techniques, 2020, 14(2): 88-96.

[34]KHALIL A M, LOGINOVA I S, SOLONIN A N, et Liquation Behavior and Solidification Cracks by Continuous Laser Melting Process of AA-7075 Aluminum Alloy[J].Materials Letters, 2020, 277: .

[35]DE LARA L R, JAGDHEESH R, OCANA J Resistance of Laser Patterned Ultrahydrophobic Aluminium Surface[J].Materials Letters, 2016, 184: 100-103.

[36]TRDAN U, HOCEVAR M, GREGORCIC from Superhydrophilic to Superhydrophobic State of Laser Textured Stainless Steel Surface and Its Effect on Corrosion Resistance[J].Corrosion Science, 2017, 123:21-26.

[37]WANG H, ZHUANG J, QI H, et Treated Superhydrophobic Surface as a Barrier to Marine Atmospheric Corrosion[J].Surface and Coatings Technology, 2020, 401: .

[38]NARAYANAN T S N S, PARK I S, LEE M to Improve the Corrosion Resistance of Microarc Oxidation (MAO) Coated Magnesium Alloys for Degradable Implants: Prospects and Challenges[J].Progress in Materials Science, 2014, 60(3): 1-71.

[39]CUI L Y, ZENG R C, GUAN S K, et Mechanism of Micro-Arc Oxidation Coatings on Biodegradable Mg-Ca Alloys: the Influence of Porosity[J].Journal of Alloys and Compounds, 2017, 695: 2464-2476.

[40]ZHAO J M, XIE X, ZHANG C.Effect of the Graphene Oxide Additive on the Corrosion Resistance of the Plasma Electrolytic Oxidation Coating of the AZ31 Magnesium Alloy[J].Corrosion Science, 2017, 114: 146-155.

[41]LV G H, CHEN H, GU W C, et s of Current Frequency on the Structural Characteristics and Corrosion Property of Ceramic Coatings Formed on Magnesium Alloy by PEO Technology[J].Journal of Materials Processing Technology, 2008, 208(1-3): 9-13.

[42]HUNG TOAN D of Copper Additive on Micro-Arc Oxidation Coating of LZ91 Magnesium-Lithium Alloy[J].Surface & Coatings Technology, 2016, 307:781-789.

[43]ZHANG G, WU L, TANG A T, et al.A Novel Approach to Fabricate Protective Layered Double Hydroxide Films on the Surface of Anodized Mg-Al Alloy[J].Advanced Materials Interfaces, 2017, 4(12): .

[44]黄晓梅, 彭琴.电镀锌-磷合金镀层[J].电镀与环保,2020, 40(4): Xiao-mei, PENG Zinc-Phosphorus Alloy Coating[J].Electroplating & Pollution Control, 2020, 40(4): 8-11.

[45]黄晓梅, 张蕾.Zn-Ni合金/Ni-P合金双层镀层性能的研究[J].电镀与环保, 2020, 40(4): Xiao-mei, ZHANG on Properties of Zn-Ni Alloy/Ni-P Alloy Double Layer Coating[J].Electroplating & Pollution Control, 2020, 40(4): 4-7.

[46]潘建乔, 吴迪, 张晓忠, 等.热浸锌钢板钝化工艺及自修复性能的研究[J].电镀与环保, 2020, 40(4): Jian-qiao, WU Di, ZHANG Xiao-zhong, et on Passivation Process and Self-Repairing Performance of Hot-Dip Galvanized Steel Sheet[J].Electroplating & Pollution Control, 2020, 40(4): 47-51.

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