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Electrodeposition of Ni-Mo and Ni-Mo-(nano Al2O3) multilayer coatings

机译:えポポポ地f〜案案案案(((((((

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摘要

In the present work, multilayer Ni-Mo-Al2O3 and Ni-Mo coatings were fabricated on the low-carbon steel using pulse electrodeposition technique from a citrate-ammonia bath. The coatings with different number of layers (32, 128 and 512) were electrodeposited by the periodic alteration of duty cycle (between 20 and 90%) at a constant frequency of 400 Hz and an average current density of 6 A dm(-2). The corrosion resistance of the coatings was estimated using potentiodynamic polarisation and electrochemical impedance techniques and wear properties was also evaluated using pin-on-disk wear test. Potentiodynamic polarisation and electrochemical impedance in 3.5 wt-% NaCl solution showed that 128-layer nanocomposite coatings had the highest corrosion resistance. By increasing the number of the layers in Ni-Mo coatings, their hardness was improved from 563 +/- 20 Hv(0.1) to 714 +/- 42 Hv(0.1), while the wear rate was decreased from 9.87 to 5.16 mu g N-1 m(-1). The addition of nanoparticles showed favourable impacts on the coatings hardness and wear properties.
机译:在本工作中,使用来自柠檬酸氨浴的脉冲电沉积技术在低碳钢上制造多层Ni-Mo-Al2O3和Ni-Mo涂层。通过在400Hz的恒定频率(20至90%之间)的周期性改变,具有不同数量的层(32,128和512)的涂层以400Hz的恒定频率和6a DM(-2)的平均电流密度(-2) 。使用电量极化估计涂层的耐腐蚀性,并且使用销芯片磨损试验还评估电化学阻抗技术和磨损性能。 3.5wt-%NaCl溶液中的电位变性极化和电化学阻抗显示128层纳米复合涂层具有最高的耐腐蚀性。通过增加Ni-Mo涂层中的层的数量,它们的硬度从563 +/-20HV(0.1)到714 +/- 42 HV(0.1),而磨损率从9.87降至5.16μg n-1 m(-1)。添加纳米颗粒显示出对涂层硬度和磨损性能的良好影响。

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