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    蔡建宾, 蔡振才, 庄建煌, 林德源, 陈云翔, 邵艳群, 郑跃胜. 高压直流电场对5052铝合金在模拟海水干湿交替条件下腐蚀行为的影响[J]. 机械工程材料, 2020, 44(3): 18-24,31. DOI: 10.11973/jxgccl202003004
    引用本文: 蔡建宾, 蔡振才, 庄建煌, 林德源, 陈云翔, 邵艳群, 郑跃胜. 高压直流电场对5052铝合金在模拟海水干湿交替条件下腐蚀行为的影响[J]. 机械工程材料, 2020, 44(3): 18-24,31. DOI: 10.11973/jxgccl202003004
    CAI Jianbin, CAI Zhencai, ZHUANG Jianhuang, LIN Deyuan, CHEN Yunxiang, SHAO Yanqun, ZHENG Yuesheng. Effect of High Voltage Direct Current Electric Field on Corrosion Behavior of 5052 Aluminum Alloy Under Simulated Seawater Cyclic Wet-Dry Condition[J]. Materials and Mechanical Engineering, 2020, 44(3): 18-24,31. DOI: 10.11973/jxgccl202003004
    Citation: CAI Jianbin, CAI Zhencai, ZHUANG Jianhuang, LIN Deyuan, CHEN Yunxiang, SHAO Yanqun, ZHENG Yuesheng. Effect of High Voltage Direct Current Electric Field on Corrosion Behavior of 5052 Aluminum Alloy Under Simulated Seawater Cyclic Wet-Dry Condition[J]. Materials and Mechanical Engineering, 2020, 44(3): 18-24,31. DOI: 10.11973/jxgccl202003004

    高压直流电场对5052铝合金在模拟海水干湿交替条件下腐蚀行为的影响

    Effect of High Voltage Direct Current Electric Field on Corrosion Behavior of 5052 Aluminum Alloy Under Simulated Seawater Cyclic Wet-Dry Condition

    • 摘要: 研究了0~400 kV·m-1直流电场强度下5052铝合金在模拟海水(质量分数3.5% NaCl溶液)干湿交替条件下的腐蚀行为。结果表明:随着电场强度的增加,铝合金的单位面积质量损失和腐蚀速率都增大,随着腐蚀时间的延长,单位面积质量损失增加,但腐蚀速率降低;在腐蚀初期(0~7 d),铝合金表面主要发生点蚀,且随电场强度的增加,点蚀加剧;在腐蚀中期(7~15 d),主要发生剥落腐蚀,且电场强度越大,剥落越严重;在腐蚀后期(15~30 d),交替发生钝化、钝化膜破裂、微电偶腐蚀、剥落腐蚀过程。

       

      Abstract: The corrosion behavior of 5052 aluminum alloy under simulated seawater (3.5wt% NaCl solution) cyclic wet-dry condition at direct current electric field intensity of 0-400 kV·m-1 was studied. The results show that with the increase of electric field intensity, the mass loss per unit area and corrosion rate of aluminum alloy increased. With the increase of corrosion time, the mass loss per unit area increased, but the corrosion rate decreased. In the early corrosion (0-7 d), the pitting occurred on the surface of aluminum alloy; with the increase of electric field intensity, the pitting was intensified. In the middle stage of corrosion (7-15 d), the exfoliation corrosion occurred; the larger the electric field intensity, the more serious the peeling. In the late stage of corrosion (15-30 d), the passivation, passive film cracking, micro-couple corrosion, exfoliation corrosion alternately occurred.

       

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