电流密度对电泳制造的镍-P/金刚石复合涂层硬度的影响

Nujira Kothanam, Chatpawee Hom-on, Jirapan Srimaneerat, Panya Wintachai, Premchai Moolla, Komsak Harachai, P. Jaroenapibal
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引用次数: 0

摘要

采用脉冲搅拌法将镍磷/金刚石涂层电沉积到钢基体上。电沉积过程涉及含有硫酸镍、磷酸和金刚石颗粒的溶液,从而在镍磷基体中共同电沉积出 4-8 µm 的金刚石颗粒。为了研究电沉积电流密度对镍-磷/金刚石复合涂层性能的影响,研究人员采用了扫描电子显微镜(SEM)、硬度测试和电化学测试。研究结果表明,电流密度越高(0.03 A/cm2),金刚石颗粒涂层越致密,金刚石含量高达 32.70%。此外,在电流密度为 0.03 A/cm2 时,Ni-P/金刚石涂层的最大硬度为 2819 ± 12.55 HV0.1。脉冲搅拌制造 "法由于加入了密集的金刚石颗粒,因此涂层的耐磨性显著增强。制造过程中的间歇脉冲对于实现金刚石颗粒的理想分散和粘附至关重要,从而可制造出实用、耐用的耐磨涂层。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Current Density on Hardness of Ni-P/Diamond Composite Coatings Fabricated by Electrodeposition
Nickel-Phosphorous/diamond coatings were electrodeposited onto steel substrates using a pulse-stirring method. The electrodeposition process involved a solution containing nickel sulphate, phosphorus acid, and diamond particles, resulting in the co-electrodeposition of 4-8 µm of diamond particles into a Ni-P matrix. To investigate the effects of electrodeposition current density on the properties of the Ni-P/diamond composite coating, scanning electron microscopy (SEM), hardness testing, and electrochemical testing were employed. The research findings revealed that higher current density (0.03 A/cm2) led to a denser diamond particle coating with diamond contents of up to 32.70 vol%. Additionally, the Ni-P/diamond coatings achieved a maximum hardness of 2819 ± 12.55 HV0.1 when fabricated using the current density of 0.03 A/cm2. The "pulse-stirring fabrication" method yields a coating with significantly enhanced wear resistance due to incorporating densely packed diamond particles. The intermittent pulses during the fabrication process are crucial for achieving the desired dispersion and adhesion of the diamond particles, leading to a practical and durable wear-resistant coating.
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