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Corrosion behaviour of intermetallic aluminide coatings on nitrogen-containing austenitic stainless steels

机译:含氮奥氏体不锈钢上金属间铝化物涂层的腐蚀行为

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The present work reports the effect of aluminide layers on the aqueous corrosion behaviour of four different 316L stainless steels containing various nitrogen contents (0.015%, 0.1%, 0.2% and 0.56% N). Diffusion annealed aluminide layers are generated over the surface by heat treatment of the aluminium precoated alloys at 750℃ for 25 h in nitrogen atmosphere. X-ray diffraction patterns of the surface modified samples showed the presence of A1N, Al_(13)Fe_4 and FeAl_2 phases. Diffusion of aluminum into the alloy, and the formation of A1N by the reaction of aluminium with matrix nitrogen, was identified using secondary ion mass spectrometry (SIMS). The nitrogen peak in the diffused layer was found to increase with increasing nitrogen content of the base alloy. SEM observation of cross-sectionally mounted alloys showed the presence of spherical AIN phase in addition to iron aluminide intermetallic phases. The role of such a composite surface layer containing intermetallic aluminides and nitride on the corrosion resistance of austenitic stainless steels in 0.5 M NaCl and 0.5 M sulphuric acid is discussed in greater detail based on open circuit potential (OCP)-time measurements, potentiodynamic polarisation studies and electrochemical impedance spectroscopy (EIS) investigations. The aluminide layered alloy with 0.1% N content showed better corrosion performance. The pres ence of nitrogen was found to have a positive effect in enhancing the hardness of the composite layer. Role of matrix nitrogen on the microstructure and microchemical distribution at the surface, and its role on corrosion resistance in acidic and chloride media are discussed in detail.
机译:本工作报告了铝化物层对四种不同氮含量(0.015%,0.1%,0.2%和0.56%)的316L不锈钢的水腐蚀行为的影响。在氮气气氛中,将预涂铝的合金在750℃下热处理25小时,会在表面上产生扩散退火的铝化物层。表面改性样品的X射线衍射图表明存在AlN,Al_(13)Fe_4和FeAl_2相。使用二次离子质谱(SIMS)可以确定铝向合金中的扩散以及铝与基体氮的反应形成的AlN。发现扩散层中的氮峰随着基础合金的氮含量的增加而增加。截面安装的合金的SEM观察表明,除了铝化铁金属间相之外,还存在球形AIN相。基于开路电势(OCP)-时间测量和电位动力学极化研究,更详细地讨论了这种包含金属间铝化物和氮化物的复合表面层对奥氏体不锈钢在0.5 M NaCl和0.5 M硫酸中的耐腐蚀性的作用。和电化学阻抗谱(EIS)研究。 N含量为0.1%的铝化物层状合金表现出更好的腐蚀性能。发现氮的存在对增强复合层的硬度具有积极作用。详细讨论了基质氮对表面微观结构和微观化学分布的作用,以及其对酸性和氯化物介质中耐腐蚀性的作用。

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