首页|Fe69.9Cr22.6Mo5.7Cu0.6Zr0.1Nb0.8W0.3非晶合金在不同温度含氯溶液中的耐蚀性

Fe69.9Cr22.6Mo5.7Cu0.6Zr0.1Nb0.8W0.3非晶合金在不同温度含氯溶液中的耐蚀性

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为考察铁基非晶合金在不同温度的含氯溶液中的腐蚀性能,采用电弧熔炼结合真空甩带制备了Fe69.9Cr22.6Mo5.7Cu0.6Zr0.1Nb0.8W0.3非晶条带,并通过动电位极化曲线、阻抗谱和浸泡实验研究了温度对合金在含氯溶液中耐蚀性的影响.结果表明:与316不锈钢相比,合金具有典型的非晶态结构,其耐蚀性显著增加.在25 ℃的3.5%(质量分数)NaCl溶液中,其自由面的耐蚀性与辊面相当,自腐蚀电流密度分别约为316不锈钢的18.9%、15.7%;在NaCl溶液中具有稳定的钝化特征,但钝化区间△E更宽.在45 ℃的NaCl溶液中,其自由面与辊面之间的耐蚀性差别显著增大,自腐蚀电流密度显著增加,△E变化不大.在80 ℃的37%盐酸中,其腐蚀速率相对于室温增加了 2个数量级,但仍远低于316不锈钢2个数量级.温度的升高使非晶合金表面活性质点增加,氯离子的渗透能力增强,腐蚀反应速度加快.
Corrosion Resistance of Fe69.9Cr22.6Mo5.7Cu0.6Zr0.1Nb0.8W0.3 Amorphous Alloy in Chlorine-Containing Solution at Different Temperatures
In order to study the corrosion performance of iron-based amorphous alloys in chlorine-containing solution at different temperatures,Fe69.9Cr22.6Mo5.7Cu0.6Zr0.1Nb0.8W0.3 amorphous ribbons were prepared using arc melting combined with vacuum melt spinning.The effect of tem-perature on corrosion resistance of alloy in chlorine-containing solution was studied by potentiodynamic polarization curves,impedance spec-troscopy and immersion tests.Results showed that,compared to 316 stainless steel,the alloy possessed a typical amorphous structure,and its corrosion resistance was significantly enhanced.In a 3.5%(mass fraction)NaCl solution at 25℃,the corrosion resistance of its free surface was comparable to that of the roll surface,with the self-corrosion current density being approximately 18.9%and 15.7%of that of 316 stainless steel,respectively.The alloy exhibited stable passivation characteristics in the NaCl solution,but with a wider passivation range ΔE.At 45 ℃in the NaCl solution,the difference in corrosion resistance between the free surface and the roll surface significantly increased,the self-corro-sion current density notably increased,and ΔE showed little change.In a 37%hydrochloric acid solution at 80 ℃,its corrosion rate increased by two orders of magnitude compared to the condition at room temperature,yet it remained significantly lower than that of 316 stainless steel by two orders of magnitude.The increase in temperature led to a rise in the number of active sites on the surface of the amorphous alloy,enhanced the penetration ability of chloride ions,and accelerated the corrosion reaction rate.

ferrous amorphous ribbonschloride ionpassivationtemperaturecorrosion resistance

苏铭滨、倪黎、李斌、陈吉、何波、钱富豪、孟祥月

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辽宁石油化工大学机械工程学院,辽宁抚顺 113001

中国石化催化剂有限公司长岭分公司,湖南岳阳 414012

铁基非晶条带 氯离子 钝化 温度 耐蚀性

中国石化催化剂有限公司课题

SCC-B-2022-032

2024

材料保护
武汉材料保护研究所,中国腐蚀与防护学会 中国表面工程协会

材料保护

CSTPCD
影响因子:1.129
ISSN:1001-1560
年,卷(期):2024.57(3)
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