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Electrodeposition Based Preparation of Zn–Ni Alloy and Zn–Ni–WC Nano-Composite Coatings for Corrosion-Resistant Applications

机译:基于电沉积的Zn-Ni合金和Zn-Ni-Wc纳米复合涂层制备用于耐腐蚀应用

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摘要

Zinc (Zn) is one of the five most widely consumed metals in the world. Indeed, more than 50% of all the zinc produced is used in zinc-galvanizing processes to protect steel from corrosion. Zn-based coatings have the potential for use as a corrosion-resistant barrier, but their wider use is restricted due to the poor mechanical properties of Zn that are needed to protect steel and other metals from rusting. The addition of other alloying elements such as Ni (Nickle) and WC (Tungsten Carbide) to Zn coating can improve its performance. This study investigates, the corrosion performance of Zn–Ni coating and Zn–Ni–WC composite nanocoatings fabricated on mild steel substrate in an environmentally friendly bath solution. The influence of WC nanoparticles on Zn–Ni deposition was also investigated. The surface morphologies, texture coefficients via XRD (X-ray diffraction), SEM (Scanning Electron Microscopy), and EDS (Energy-dispersive X-ray spectroscopy) were analyzed. The electrochemical test such as polarization curves (PC) and electrochemical impedance spectroscopy (EIS) resulted in a corrosion rate of 0.6948 ?/min for Zn–Ni–WC composite nanocoating, and 1.192 ?/min for Zn–Ni coating. The results showed that the Zn–Ni–WC composite nanocoating reduced the corrosion rate by 41.71% and showed an 8.56% increase in microhardness compared to the hardness of the Zn–Ni coating. These results are augmented to better wettable characteristics of zinc, which developed good interfacial metallurgical adhesion amongst the Ni and WC elements. The results of the novel Zn–Ni–WC nanocomposite coatings achieved a great improvement of mechanical property and corrosion protection to the steel substrate surface.
机译:锌(Zn)是世界上五种最广泛消耗的金属之一。实际上,生产的所有锌的50%以上用于锌镀锌过程,以保护钢免受腐蚀。基于Zn的涂层具有用作耐腐蚀屏障的可能性,但由于保护钢和其他金属从生锈的Zn所需的机械性能差,它们更广泛地使用。添加其他合金元素,例如Ni(镍)和Wc(碳化钨)至Zn涂层可以改善其性能。本研究研究了Zn-Ni涂层的腐蚀性和Zn-Ni-WC复合纳米型在环境友好的浴溶液中制造的Zn-Ni-Wc复合纳米型。还研究了WC纳米粒子对Zn-Ni沉积的影响。分析了表面形态,通过XRD(X射线衍射),SEM(扫描电子显微镜)和EDS(能量分散X射线光谱)的纹理系数。诸如偏振曲线(PC)和电化学阻抗谱(EIS)的电化学测试导致腐蚀速率为0.6948Ω/ min,用于Zn-Ni-WC复合纳米核,1.192〜Min Zn-Ni涂层。结果表明,与Zn-Ni涂层的硬度相比,Zn-Ni-Wc复合纳米氧化纳米溶液将腐蚀速率降低41.71%,并显示出显微硬度增加8.56%。这些结果被增强至更好的锌的可湿润特性,这在Ni和WC元素中产生了良好的界面冶金粘附。新型Zn-Ni-WC纳米复合涂层的结果达到了钢基材表面的机械性能和腐蚀保护的大大提高。

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