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Fabrication of Mn-Co-Ni-coated layer on AISI 304 stainless steel for protection of Cr evaporation by electroplating process

机译:通过电镀工艺制备AISI 304不锈钢中的Mn-Co-Ni涂层。通过电镀工艺保护Cr蒸发

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Purpose This study aims to improve the oxidation resistance of SS304 stainless steel by fabrication of Mn-Co-Ni-coated layer. Mn-Co-Ni coating with the thickness ranging from 1.76 to 8.50 micron were prepared by electroplating process on SS304 stainless steel, focusing on the plating time which play significant roles on the performance of the film thickness and crystallize size. Design/methodology/approach Mn-Co-Ni coating layer was applied on AISI 304 stainless steel using electroplating process with solution consisted of cobalt sulfate (CoSO4), manganese sulfate (MnSO4) and nickel sulfate (NiSO4). Variation of Mn-Co-Ni coating, the morphology of the film and oxidation kinetics were investigated by using scanning electron microscopy and x-ray diffraction analysis. Furthermore, the sample with coating layer was tested by oxidation and Cr evaporation test. Findings From the formation parameter due to plating time for the conversion coating, it was found that plating time plays significant roles in the performance of the coating thickness and crystallize size. The crystallize size has an inverse relation to the full width at half maximum of diffraction peak. Film thickness higher than 6.07 micron causes a decrease in oxidation resistance and an increase of Cr evaporation from SS304 stainless steel. In this study, the Mn-Co-Ni coating with a thickness lower than 3.77 micron showed coating protection of oxidation better than SS304 substrate. Originality/value The effect of coating thickness was investigated to understand the properties of the coating. Furthermore, oxidation and Cr evaporation test were applied to evaluate the oxidation resistance of the coating layer.
机译:目的本研究旨在通过制造Mn-Co-Ni涂层来改善SS304不锈钢的抗氧化性。通过在SS304不锈钢上电镀工艺制备厚度为1.76至8.50微米的Mn-Co-Ni涂层通过在SS304不锈钢上进行电镀,聚焦在膜厚度和结晶尺寸的性能上起显着作用的电镀时间。使用溶液组成的溶液(COSO4),硫酸锰(MNSO4)和硫酸镍(NISO 4)组成,将Mn-Co-Ni涂层涂布在AISI 304不锈钢上。通过使用扫描电子显微镜和X射线衍射分析研究了Mn-Co-Ni涂层的变化,研究了膜和氧化动力学的形态。此外,通过氧化和Cr蒸发试验测试具有涂层的样品。从地层参数引起的结果导致转化涂层的电镀时间,发现电镀时间在涂层厚度和结晶尺寸的性能下起显着的作用。结晶尺寸与衍射峰的最大半部的全宽度呈反比关系。高于6.07微米的薄膜厚度导致抗氧化性降低和SS304不锈钢的CR蒸发的增加。在该研究中,厚度低于3.77微米的Mn-Co-Ni涂层显示出比SS304基板更好的氧化涂层保护。原创性/值研究涂层厚度的效果以了解涂层的性质。此外,施加氧化和Cr蒸发试验以评估涂层的抗氧化性。

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