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首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Influence of laser surface alloying with chromium and nickel on corrosion resistance of type 304L stainless steel
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Influence of laser surface alloying with chromium and nickel on corrosion resistance of type 304L stainless steel

机译:铬镍合金激光表面合金化对304L不锈钢耐蚀性的影响

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摘要

The influence of laser surface alloying (LSA) with Crand Cr + Nion the corrosion behaviour of type 304L stainless steel (SS) was investigated using potentiodynamic polarisation and electrochemical impedance spectroscopy (EIS) in chloride (0-5M NaCI) and acidic (1 N H_2SO_4) media. Surface alloying was carried out by laser cladding type 304L SS substrate with premixed powders of AISI type 316L SS and the desired alloying elements. The results indicated that Cr surface alloyed specimen exhibited a duplex (y + oc) microstructure with Cr content of approx24 wt- percent, whereas Cr + Ni surface alloyed specimen was associated with austenitic microstructure with Cr and Ni contents of approx22 wt- percent each. The potentiodynamic polarisation results in chloride solution indicated that LSA with Cr + Ni considerably enhanced the pitting corrosion resistance compared with LSA with Cr alone. In acidic media, such beneficial effects were not observed. Electrochemical impedance spectroscopy results showed an increase in semicircle arc for both chloride and acidic media for both Cr and Cr + Ni clad samples indicating improvement in the oxide film stability compared with untreated specimen. The polarisation resistance was higher and capacitance values of the laser clad specimen were lower than those in the untreated specimen. The microstructural changes and compositional variations produced by LSA are correlated to the corrosion behaviour.
机译:使用电位动力学极化和电化学阻抗谱(EIS)在氯化物(0-5M NaCl)和酸性(1 N)中研究了Crand Cr + Nion激光表面合金化(LSA)对304L不锈钢(SS)腐蚀行为的影响H_2SO_4)媒体。表面合金化是通过用304L SS激光熔覆基层与AISI 316L SS的预混合粉末和所需的合金元素进行的。结果表明,Cr表面合金化试样表现出双相(y + oc)显微组织,其中Cr含量约为24 wt%,而Cr + Ni表面合金化试样与奥氏体组织相关,Cr和Ni含量均约为22 wt%。氯化物溶液中的电位动力学极化结果表明,与仅含Cr的LSA相比,含Cr + Ni的LSA大大增强了耐点蚀性。在酸性介质中,未观察到这种有益作用。电化学阻抗谱结果显示,对于Cr和Cr + Ni包覆的样品,氯化物和酸性介质的半圆弧均增加,这表明与未处理的样品相比,氧化膜的稳定性得到了改善。与未处理的试样相比,激光熔覆试样的极化电阻更高,电容值更低。 LSA产生的微观结构变化和成分变化与腐蚀行为相关。

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