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首页> 外文期刊>International journal of nanoscience >Optimization of Process Parameters of Pulsed Electro Deposition Technique for Nanocrystalline Nickel Coating Using Gray Relational Analysis (GRA)
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Optimization of Process Parameters of Pulsed Electro Deposition Technique for Nanocrystalline Nickel Coating Using Gray Relational Analysis (GRA)

机译:使用灰色关系分析(GRA)对纳米晶镍涂层脉冲电沉积技术工艺参数的优化

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摘要

The moving parts of any mechanism and machine parts are always subjected to a significant wear due to the development of friction. It is an utmost important aspect to address the wear problems in present environment. But the complexity goes on increasing to replace the worn out parts if they are very precise. Technology advancement in surface engineering ensures the minimum surface wear with the introduction of polycrystalline nano nickel coating. The enhanced tribological property of the nano nickel coating was achieved by the development of grain size and hardness of the surface. In this study, it has been decided to focus on the optimized parameters of the pulsed electro deposition to develop such a coating. Taguchi’s method coupled gray relational analysis was employed by considering the pulse frequency, average current density and duty cycle as the chief process parameters. The grain size and hardness were considered as responses. Totally, nine experiments were conducted as per L9 design of experiment. Additionally, response graph method has been applied to determine the most significant parameter to influence both the responses. In order to improve the degree of validation, confirmation test and predicted gray grade were carried out with the optimized parameters. It has been observed that there was significant improvement in gray grade for the optimal parameters.
机译:由于摩擦的发展,任何机构和机器部件的移动部件总是经受显着的磨损。解决现状中的磨损问题是一个最重要的方面。但如果它们非常精确,复杂性就会增加。技术进步在表面工程中,通过引入多晶纳米镍涂层来确保最小的表面磨损。通过晶粒尺寸和表面硬度的发展实现了纳米镍涂层的增强的摩擦性质。在这项研究中,已经决定专注于脉冲电沉积的优化参数以开发这种涂层。通过考虑脉冲频率,平均电流密度和占空比作为主要过程参数,采用Taguchi的方法耦合灰色关系分析。晶粒尺寸和硬度被认为是反应。完全,根据实验的L9设计进行了九个实验。此外,已应用响应图方法来确定影响响应的最重要参数。为了提高验证程度,通过优化参数进行确认测试和预测的灰度。已经观察到最佳参数的灰度较大。

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