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铜及铜合金在淡海水交替自然环境条件下的腐蚀行为研究

Corrosion Behavior of Copper and Its Alloys in Freshwater-Seawater Alternate Circumstance

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【作者】 杨博均陈翔峰姚敬华任润桃

【Author】 YANG Bo-jun;CHEN Xiang-feng;YAO Jing-hua;REN Run-tao;Advanced Material Academy of Luoyang Ship Material Research Institute;State Key Laboratory for Marine Corrosion and Protection,Luoyang Ship Material Research Institute (LSMRI);

【机构】 中国船舶重工集团公司第七二五研究所厦门材料研究院中国船舶重工集团公司第七二五研究所海洋腐蚀与防护国家级重点实验室

【摘要】 目的研究铜及铜合金在淡海水交替条件下的腐蚀行为。方法通过开展TUP纯铜、B10与B30铜合金3种典型的铜及铜合金在淡海水交替、海水及淡水自然环境下2年的暴露试验,将三种环境下材料的腐蚀形貌、腐蚀速率进行对比,总结3种材料在不同水环境下的腐蚀规律,对其腐蚀机理进行简要的探讨,并对其长周期的腐蚀行为进行预测。结果对TUP纯铜来说,淡海水环境对TUP纯铜的影响是海水环境的1.66倍,对B30铜合金来说,淡海水环境对其影响是海水环境的2.07倍,而对于B10铜合金,淡海水环境是海水环境的2.17倍。结论从耐蚀性上来看,铜及合金在淡海水交替自然环境下耐蚀性能最差,海水自然环境下次之,在淡水环境下的耐蚀性能最好,自然环境中水的流速越快,会加重铜及合金的腐蚀。

【Abstract】 Objective To study corrosion behaviors of copper and its alloys in seawater-freshwater alternate circumstance. Methods Three kinds of typical metals, including Tup pure copper, B10 and B30 copper alloys, were exposed in seawater, freshwater and seawater/freshwater alternate circumstance for 2 years to compare the data of corrosion morphology and corrosion rate. The corrosion rules of 3 kinds of metals in different water circumstances were summarized, the corrosion mechanism were discussed, and the long-term corrosion behaviors were also predicted. Results Influences of seawater-freshwater alternate circumstance on Tup pure copper was 1.66 times of that of seawater. Influences of seawater-freshwater alternate circumstance on B30 copper alloy was 2.07 times of that of seawater. Influences of seawater-freshwater alternate circumstance on B10 copper alloy was 2.17 times of that of seawater. Conclusion Sequence of copper and its alloys corrosion resistance is fresh water, seawater and seawater-freshwater alternate circumstance. The corrosion of copper and its alloys are more serious under higher flow velocity of water in natural environment.

【基金】 “十二五”技术基础科研项目(Z132013B001)
  • 【文献出处】 装备环境工程 ,Equipment Environmental Engineering , 编辑部邮箱 ,2017年02期
  • 【分类号】TG172.5
  • 【被引频次】12
  • 【下载频次】468
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