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Study on preparation and characterization of the Zinc-Manganese black electrolytic phosphate coating

机译:锌锰黑色电解磷酸盐涂层的制备与表征

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A steady the black Zinc-Manganese electrolytic phosphate bath for carbon steel was obtained with an orthogonal trial. Electrochemical Impedance Spec-troscopy and Tafel Polarization curves were used to evaluate the corrosion resistance of phosphate coatings. scanning electron microscope (SEM) techniques were applied for crystal morphology of the electrolytic phosphate films, while the XRD method was used for the electrolytic phosphate films analysis. The results have shown that electrochemical techniques can accurately characterize the high corrosion resistance of phosphate coatings. the results show that after electrolytic phosphate, the crystal morphology dense strip flake-shaped structure of the electrolytic phosphate films.25µm phosphate coatings could be formed in this solution and the coatings could withstand over 260 s corrosion in CuSO4 test. electrolytic phosphate coatings is constituted mainly by Zn3(PO4)2, Fe(H2PO3)3, Mn(HPO4) 3H2O, Mn3(PO4)2.
机译:通过正交试验获得了用于碳钢的稳定的黑色锌锰电解磷酸盐浴。电化学阻抗谱和Tafel极化曲线用于评估磷酸盐涂层的耐腐蚀性。扫描电子显微镜(SEM)技术用于电解磷酸盐膜的晶体形貌,而XRD方法用于电解磷酸盐膜的分析。结果表明,电化学技术可以准确地表征磷酸盐涂层的高耐腐蚀性。结果表明,电解磷酸盐处理后,形成了磷酸盐薄膜的晶体形态致密的薄片状结构。在该溶液中可形成25μm的磷酸盐涂层,该涂层在CuSO 4 测试。电解磷酸盐涂层主要由Zn 3 (PO 4 2 ,Fe(H 2 PO 3 3 ,Mn(HPO 4 )3H 2 O,Mn 3 (PO 4 2

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