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Study of Alloys Addition to the Electrodeposited Nanocrystalline Cobalt

机译:对电沉积纳米晶钴的合金的研究

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Cobalt and its alloy have been identified as potential candidates for replacing hexavalent Chromium plating in corrosion resistant coating in acidic environment. In this study, the effect of alloys addition towards elemental composition, crystallographic structure characterization, surface morphology, hardness and potentiodynamic polarization of the cobalt alloys coatings is reported. Addition of Nickel (Ni) and Iron (Fe) to the Cobalt (Co) coatings are deposited on stainless steel substrate by electrodeposition method. The deposition is performed at acidic environment of pH 3. The granule sizes of cobalt alloys prepared by electrodepositionmethod are in the range of 34.95 nm-72.08 nm. The microhardness of CoNiFe is the highest(267.8 HV) compared to Co and CoFe. CoNiFeperforms the smallest corrosion rate with 1.322 mmpy. It is found thatthe addition of Ni and Fe into pure cobaltimproves the hardness and corrosion behavior.
机译:已经将钴及其合金鉴定为替代酸性环境中耐腐蚀涂层中六价铬电镀的潜在候选物。在该研究中,报道了合金添加到元素组成,结晶结构表征,表面形态,硬度和钴合金涂层的效果极化的影响。通过电沉积法在不锈钢基板上沉积到钴(CO)涂层上的镍(Ni)和铁(Fe)。沉积在pH3的酸性环境下进行。通过电沉积方法制备的钴合金的颗粒尺寸在34.95nm-72.08nm的范围内。与CO和COFE相比,CONIFE的微硬度是最高(267.8HV)。 Conifeperforms最小的腐蚀速率,1.322 mmpy。发现Ni和Fe的加入纯Cobaltimproves的硬度和腐蚀行为。

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