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Synthesis and Performance Evaluation of Pulse Electrodeposited Ni-AlN Nanocomposite Coatings

机译:脉冲电沉积Ni-AlN纳米复合涂层的合成及性能评价

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摘要

This research work presents the microscopic analysis of pulse electrodeposited Ni-AlN nanocomposite coatings using SEM and AFM techniques and their performance evaluation (mechanical and electrochemical) by employing nanoindentation and electrochemical methods. The Ni-AlN nanocomposite coatings were developed by pulse electrodeposition. The nickel matrix was reinforced with various amounts of AlN nanoparticles (3, 6, and 9 g/L) to develop Ni-AlN nanocomposite coatings. The effect of reinforcement concentration on structure, surface morphology, and mechanical and anticorrosion properties was studied. SEM and AFM analyses indicate that Ni-AlN nanocomposite coatings have dense, homogenous, and well-defined pyramid structure containing uniformly distributed AlN particles. A decent improvement in the corrosion protection performance is also observed by the addition of AlN particles to the nickel matrix. Corrosion current was reduced from 2.15 to 1.29 μA cm−2 by increasing the AlN particles concentration from 3 to 9 g/L. It has been observed that the properties of Ni-AlN nanocomposite coating are sensitive to the concentration of AlN nanoparticles used as reinforcement.
机译:这项研究工作提出了使用SEM和AFM技术对脉冲电沉积Ni-AlN纳米复合涂层进行的微观分析,并通过纳米压痕和电化学方法对其性能进行了评估(机械和电化学)。通过脉冲电沉积开发了Ni-AlN纳米复合涂层。用各种数量的AlN纳米颗粒(3、6和9μg/ L)增强镍基体,以开发Ni-AlN纳米复合涂层。研究了增强剂浓度对结构,表面形态以及机械和防腐性能的影响。 SEM和AFM分析表明,Ni-AlN纳米复合涂层具有致密,均匀且轮廓分明的金字塔结构,其中包含均匀分布的AlN颗粒。通过向镍基体中添加AlN颗粒,还可以观察到腐蚀防护性能的显着提高。通过将AlN颗粒浓度从3μg/ L增加到9μg/ L,腐蚀电流从2.15降低到1.29μA/ cm -2 。已经观察到,Ni-AlN纳米复合涂层的性质对用作增强物的AlN纳米颗粒的浓度敏感。

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