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Characterizations of nanocrystalline Co and Co/MWCNT coatings produced by different electrodeposition techniques

机译:不同电沉积技术制备的纳米晶Co和Co / MWCNT涂层的表征

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Nanocrystalline cobalt (Co) and cobalt/multi-walled carbon nanotube (Co/MWCNT) coatings were synthesized by direct current (DC) and pulse reverse current (PRC) electrodeposition from aqueous bath containing cobalt sulfate and MWCNTs, etc. Effect of the functionalization of MWCNTs and electrodeposition techniques, i.e. DC and PRC, on the microstructure and properties of these coatings was evaluated. The results show that the incorporations of MWCNTs, particularly the functionalized MWCNTs, substantially improve the hardness and the resistance to wear and corrosion of the deposited coatings. PRC electrodeposition produces Co and Co/MWCNT coatings that are featured by small grain size, low surface roughness and more uniform distribution of MWCNTs in matrix, and consequently display the higher hardness and better resistance to wear and corrosion. The functionalization of MWCNTs favors the co-deposition of MWCNTs with Co ions, and then improves the hardness and the corrosion and wear resistance of the produced composite coatings. Among all samples, the composite coating incorporated with functionalized MWCNTs produced by PRC electrodeposition has the highest hardness around 1180kgf·mm~(-2) and the best resistance to wear and corrosion. The differences in friction and wear behavior of these nanocrystalline Co and Co/MWCNT coatings as a function of treatment of MWCNTs or electrodeposition techniques are attributed to their different hardness, microstructures and the corresponding wear mechanisms.
机译:纳米晶钴(Co)和钴/多壁碳纳米管(Co / MWCNT)涂层是通过直流电和脉冲反向电流(PRC)从含有硫酸钴和MWCNT的水浴中电沉积而合成的。功能化的影响评估了碳纳米管的性能和电沉积技术(即DC和PRC)对这些涂层的组织和性能的影响。结果表明,MWCNT的掺入,特别是官能化的MWCNT的掺入,实质上改善了沉积涂层的硬度以及耐磨性和耐腐蚀性。 PRC电沉积生产的Co和Co / MW / CNT涂层具有以下特点:粒径小,表面粗糙度低,且MWCNT在基体中的分布更均匀,因此具有更高的硬度以及更好的耐磨性和耐腐蚀性。 MWCNTs的功能化有利于MWCNTs与Co离子的共沉积,从而提高了所生产复合涂层的硬度以及耐蚀性和耐磨性。在所有样品中,通过PRC电沉积制备的结合有功能化MWCNT的复合涂层具有最高的硬度约1180kgf·mm〜(-2),并且具有最佳的耐磨性和耐腐蚀性。这些纳米晶Co和Co / MWCNT涂层的摩擦磨损性能随MWCNT的处理或电沉积技术而变化,这归因于其不同的硬度,微观结构和相应的磨损机理。

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