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铸造不锈钢耐海水腐蚀实验研究

郑霏 陈亚涛 王灵水

铸造技术2026,Vol.47Issue(1):100-107,8.
铸造技术2026,Vol.47Issue(1):100-107,8.DOI:10.16410/j.issn1000-8365.2026.5173

铸造不锈钢耐海水腐蚀实验研究

Experimental Study on the Seawater Corrosion Resistance of Cast Stainless Steels

郑霏 1陈亚涛 1王灵水1

作者信息

  • 1. 中船双瑞(洛阳)特种装备股份有限公司,河南 洛阳 471023
  • 折叠

摘要

Abstract

With the rapid development of deep-sea platforms,seawater desalination systems,and marine transport pipelines,metallic materials operating in chloride-containing high-velocity seawater environments are prone to erosion-corrosion and pitting damage,which critically affects their service safety and lifespan.Cast duplex stainless steels,which combine excellent strength,toughness,and corrosion resistance,are widely used in key components such as pumps,valves,and propulsion systems.However,systematic comparative studies on the corrosion behavior of different grades of stainless steels under dynamic seawater conditions remain limited.On this basis,three duplex stainless steels(CD3MN,CE3MN,and CD3MWN)and one austenitic stainless steel(CN7MS)were tested through 216 h of static immersion and 10 m/s erosion-corrosion experiments in natural seawater from the Qingdao area to elucidate the effects of microstructure and alloying elements on corrosion behavior.Surface morphology observations,corrosion rate measurements,3D surface profiling,and energy-dispersive spectroscopy analyses were performed to comprehensively evaluate the corrosion resistance of the samples.The results show that under static conditions,all four steels exhibit excellent passivation stability,with corrosion rates of approximately 0.001 0 mm/a and maximum pitting depths ranging from 9.55 to 13.64 μm.Under erosion conditions,both the corrosion rate and pitting depth increase significantly,with CN7MS showing the highest corrosion rate(0.405 5 mm/a)and CD3MWN the lowest(0.146 1 mm/a),indicating superior erosion-corrosion resistance.

关键词

双相不锈钢/海水腐蚀/冲刷腐蚀/点蚀

Key words

duplex stainless steel/marine corrosion/erosion corrosion/pitting corrosion

分类

矿业与冶金

引用本文复制引用

郑霏,陈亚涛,王灵水..铸造不锈钢耐海水腐蚀实验研究[J].铸造技术,2026,47(1):100-107,8.

铸造技术

1000-8365

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