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电流密度对三元Fe-Co-Ni合金涂层异常共沉积影响的数值与实验研究

Numerical and Experimental Investigation of the Effect of Current Density on the Anomalous Codeposition of Ternary Fe-Co-Ni Alloy Coatings.

作者信息

Zhang Shuai, Yu Jing, Liu Zhengda, Yin Yanjun, Qiao Chenfeng

机构信息

Marine Engineering College, Dalian Maritime University, Dalian 116026, China.

China North Engine Research Institute Tianjin, Tianjin 300400, China.

出版信息

Materials (Basel). 2022 Sep 4;15(17):6141. doi: 10.3390/ma15176141.

Abstract

Gradient-structured ternary Fe-Co-Ni alloy coatings electrodeposited on steel substrates at various current densities from chloride baths were numerically and experimentally investigated. The electrodeposition process, considering hydrogen evolution and hydrolysis reaction, was modelled using the finite element method (FEM) and was based on the tertiary current distribution. The experimentally tested coating thickness and elemental contents were used to verify the simulation model. Although there was a deviation between the simulation and experiments, the numerical model was still able to predict the variation trend of the coating thickness and elemental contents. The influence of the current density on the coating characterization was experimentally studied. Due to hydrogen evolution, the coating surface exhibited microcracks. The crack density on the coating surface appeared smaller with increasing applied current density. The XRD patterns showed that the deposited coatings consisted of solid-solution phases α-Fe and γ (Fe, Ni) and the metallic compound CoFe; the current density in the present studied range had a small influence on the phase composition. The grain sizes on the coating surface varied from 15 nm to 20 nm. The microhardness of the deposited coatings ranged from 625 HV to 655 HV. Meanwhile, the average microhardness increased slightly as the current density increased from 5 A/dm to 10 A/dm and then decreased as the current density further increased. Finally, the degree of anomaly along with the metal ion and hydrogen atom concentrations in the vicinity of the cathodic surface were calculated to investigate the anomalous codeposition behaviour.

摘要

对在氯化物镀液中不同电流密度下电沉积在钢基体上的梯度结构三元铁 - 钴 - 镍合金涂层进行了数值模拟和实验研究。考虑析氢和水解反应的电沉积过程,采用有限元方法(FEM)基于三次电流分布进行建模。实验测试的涂层厚度和元素含量用于验证模拟模型。虽然模拟结果与实验存在偏差,但数值模型仍能预测涂层厚度和元素含量的变化趋势。通过实验研究了电流密度对涂层特性的影响。由于析氢,涂层表面出现微裂纹。随着施加电流密度的增加,涂层表面的裂纹密度似乎变小。XRD图谱表明,沉积涂层由固溶体相α - Fe和γ(Fe, Ni)以及金属化合物CoFe组成;在本研究的电流密度范围内,对相组成的影响较小。涂层表面的晶粒尺寸在15nm至20nm之间变化。沉积涂层的显微硬度范围为625HV至655HV。同时,随着电流密度从5A/dm²增加到10A/dm²,平均显微硬度略有增加,然后随着电流密度进一步增加而降低。最后,计算了阴极表面附近的异常程度以及金属离子和氢原子浓度,以研究异常共沉积行为。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db04/9458109/0b45a90fa1bf/materials-15-06141-g001.jpg

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