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Effect of Nanodiamond Concentration and the Current Density of the Electrolyte on the Texture and Mechanical Properties of Ni/Nanodiamond Composite Coatings Produced by Electrodeposition

机译:纳米金刚石浓度和电解质电流密度对电沉积Ni / Nanodiamond复合镀层织构和力学性能的影响

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摘要

An Nianodiamond composite coating was deposited on carbon steel in a traditional Watt’s solution without additives via direct current (DC) electroplating. The effects of the nanodiamond concentration and current density in the plating solution on the morphology, grain size, and texture of the Nianodiamond composite coating were observed using X-ray diffraction (XRD) and scanning electron microscopy (SEM). The distribution of the nanodiamond particles in the composite coating was investigated by Raman spectra and SEM. The mechanical properties of the composite coating, such as its elastic modulus and hardness, were examined using a Nano Indenter XP nanometer mechanical test system. The coefficient of friction was tested using a Universal Micro-Tribotester. The results demonstrated that the preferential orientation of the Nianodiamond composite coating varied from the (111) crystal orientation of the pure nickel coating to the (200) crystal orientation. When the nanodiamond concentration in the plating solution was 8.0 g/L and the current density was 3.0 A/dm2, the hardness of the composite coating reached the maximum value of 5.302 GPa and the friction factor was maintained at around 0.1. The average grain size of the composite coating was reduced to 20.4 nm.
机译:在传统的Watt解决方案中,通过直流(DC)电镀将镍/纳米金刚石复合涂层沉积在碳钢上,而没有添加传统的瓦特溶液。使用X射线衍射(XRD)和扫描电子显微镜(SEM)观察了镀液中纳米金刚石浓度和电流密度对Ni /纳米金刚石复合涂层的形貌,晶粒尺寸和织构的影响。通过拉曼光谱和扫描电镜研究了纳米金刚石颗粒在复合涂层中的分布。使用Nano Indenter XP纳米机械测试系统检查了复合涂层的机械性能,例如其弹性模量和硬度。摩擦系数使用Universal Micro-Tribotester测试。结果表明,Ni /纳米金刚石复合涂层的优先取向从纯镍涂层的(111)晶体取向变化为(200)晶体取向。镀液中纳米金刚石浓度为8.0 g / L,电流密度为3.0 A / dm 2 时,复合涂层的硬度达到最大值5.302 GPa,保持了摩擦系数在0.1左右。复合涂层的平均晶粒尺寸减小到20.4nm。

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