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CORROSION BEHAVIOR OF NEW Cr-Ni-Cu LOW ALLOY SEAWATER CORROSION RESISTANT STEEL

机译:新型CR-Ni-Cu低合金海水耐腐蚀钢的腐蚀行为

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Two kinds of Cr-Ni-Cu low alloyed steels were designed, 0.1%C-0.7%Cr-1.2%Ni-0.7Cu and 0.1%C-0.7%Cr-0.3%Ni-0.5Cu. With the method of SEM, XRD and electrochemical analysis and testing technology, periodic immersion accelerated corrosion test was carried out to investigate the corrosion resistance of the designed steels in simulated marine environment. The steel with best corrosion resistance was selected, and then focused on the variation of its corrosion rate with time. The results indicated that the designed Cu-Cr-Ni low alloyed steels showed better corrosion resistance than 20MnSi, the ratio of their corrosion rates was 0.44. The corrosion rate of designed steels decreased gradually to 3~4 g/(mm~2 · h) with the elongation of test period, while the corrosion rate of 20MnSi kept downward trend, not reach stability, and the corrosion rate gap between them became smaller. The Cr element banding enriched in the inner rust can withstand the diffusion of Cl~-. Besides, the addition of Ni raised the self-corrosion potential of the bare steels and promoted the transformation of γ-FeOOH to α-FeOOH, and consequently, improved the stability of the rust and the corrosion resistance of steels.
机译:两种铬镍 - 铜低合金钢的设计,0.1%C-0.7%的Cr-1.2%的Ni-0.7Cu钎和0.1%C-0.7%的Cr-0.3%Ni基0.5Cu的。通过SEM,XRD和电化学分析和测试技术的方法,进行了定期的浸没加速腐蚀试验,以研究模拟海洋环境中设计钢的耐腐蚀性。选择具有最佳耐腐蚀性的钢,然后重点关注其腐蚀速率随时间的变化。结果表明,设计的Cu-Cr-Ni低合金钢显示出比20mnsi更好的耐腐蚀性,其腐蚀速率的比例为0.44。设计钢的腐蚀速率随着试验期的伸长率逐渐降低至3〜4克/(mm〜2·h),而20mnsi的腐蚀速率保持下降趋势,而不是达到稳定性,而且它们之间的腐蚀速率差距较小。富含内锈的Cr元素带可以承受Cl〜 - 的扩散。此外,Ni的添加提出了裸钢的自腐蚀电位,并促进了γ-FeOOH至α-FeO​​h的转化,从而提高了钢的锈蚀稳定性和钢的耐腐蚀性。

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