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Enhanced corrosion resistance of Cr-Mn ASS by low temperature salt bath nitriding technique for the replacement of convectional Cr-Ni ASS

机译:通过低温盐浴氮化技术提高Cr-Mn ass的耐腐蚀性,以替代对流Cr-Ni ass

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Purpose The purpose of this paper is to enhance the corrosion resistance of Cr-Mn austenitic stainless steel (ASS) via low temperature salt bath nitriding and to replace the convectional Cr-Ni ASS with newly developed enhanced corrosion resistive Cr-Mn ASS. Design/methodology/approach The low temperature salt bath nitriding was performed on Cr-Mn ASS at 450 degrees C for 3 h in potassium nitrate salt bath. Findings The present paper compares the corrosion resistance of salt bath nitrided Cr-Mn ASS with convectional Cr-Ni ASSs (316 L and 304 L ASSs) in 3.5 per cent NaCl by electrochemical techniques. The electrochemical impedance spectroscopy result shows the increase in film resistance and potentiodynamic polarization results show the enhanced corrosion resistance of nitrided Cr-Mn ASS, which is almost equivalent to that of 316 L and 304 L ASSs. This is attributed to the formation of nitrogen supersaturated dense nitride layer. The present results therefore suggest that the nitrided Cr-Mn ASS may replace costly convectional Cr-Ni ASSs for commercial and industrial applications. Originality/value Ever-increasing price of nickel (Ni) is driving the industries to use Ni-free or low-Ni austenitic stainless steels (ASSs). But its corrosion resistance is relatively poor as compared to conventional Cr-Ni ASSs. However, its corrosion resistance can be improved by nitriding. The low temperature salt bath nitriding of Cr-Mn ASS and its electrochemical behavior in 3.5 per cent NaCl has not been studied. The present research paper is beneficial for industries to use low cost Cr-Mn, enhance its corrosion resistance and replace the use of costly conventional Cr-Ni ASSs.
机译:目的本文的目的是通过低温盐浴氮化的Cr-Mn奥氏体不锈钢(Ass)的耐腐蚀性,并用新开发的增强的腐蚀电阻Cr-Mn ass代替对映射Cr-Ni ass。设计/方法/方法在硝酸钾盐浴中在450℃下对Cr-Mn Ass进行氮化的低温盐浴氮化。发现本文通过电化学技术将盐浴氮化CR-MN屁股(316 L和304 L isss)的耐盐浴氮化Cr-Mn ass的耐腐蚀性与电化学技术进行了3.5%的NaCl。电化学阻抗光谱结果表明膜抗性的增加和电位动力学偏振效果显示出氮化CR-MN屁股的增强耐腐蚀性,这几乎相当于316 L和304 L屁股。这归因于形成氮超饱和氮化物层。因此,本结果表明,氮化CR-MN屁股可以代替商业和工业应用的昂贵对道CR-NI屁股。镍(NI)的原创性/价值不断增加的价格正在推动工业,以使用无Ni或低Ni奥氏体不锈钢(屁股)。但与传统的Cr-Ni asss相比,其耐腐蚀性相对较差。然而,通过氮化可以提高其耐腐蚀性。尚未研究Cr-Mn Ass的低温盐浴及其电化学行为的氮气尚未研究。本研究论文有利于使用低成本CR-Mn的行业,增强其耐腐蚀性,取代昂贵的传统CR-Ni ass的使用。

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