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Experimental Investigation on Electro-codeposition Nickel-Weld Slag Composite Coating

机译:电托管镍焊渣复合涂料的实验研究

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Electro-codeposition process is considered to be an advanced technique for development of composite coatings. In this study, Ni-weld slag composite coatings are prepared from nickel Watts bath using electrodeposition process. It is a novel approach under the utilization of weld slag particles for the preparation of composite coatings which are composed of ceramic patterns. The weld slag particles are embedded in nickel matrix using electrodeposition by adjusting the process parametic conditions. Taguchi L9 orthogonal array is chosen for experimental design by considering the three primary plating parameters, namely current density, temperature of bath and particle concentrations with three levels of each. In order to confirm the deposition, the deposited coatings are examined using optical microscope, SEM micrographs and EDX investigations. The Microhardness of deposits is evaluated using Vickers microhardness tester with the applied testing load of 100-gram force. The direct effects and significances of plating parameters on the microhardness have been explored using the signal to noise ratio, mean effect studies and analysis of variance. The process parameters are ranked by position through the significance studies. The Ni-weld slag particles produces greater microhardness values than pure nickel coating.
机译:电共沉积技术被认为是开发复合涂层的一种先进技术。本研究采用电沉积法从镍瓦茨镀液中制备了镍焊渣复合镀层。利用焊渣颗粒制备陶瓷图案复合涂层是一种新的方法。通过调整工艺参数,采用电沉积法将焊渣颗粒嵌入镍基体中。通过考虑三个主要电镀参数,即电流密度、镀液温度和颗粒浓度,选择田口L9正交表进行实验设计,每个参数有三个水平。为了确认沉积,使用光学显微镜、SEM显微照片和EDX研究对沉积的涂层进行了检查。使用维氏显微硬度计评估镀层的显微硬度,施加100克力的测试载荷。通过信噪比、均值效应研究和方差分析,探讨了电镀参数对显微硬度的直接影响和意义。通过显著性研究,按位置对工艺参数进行排序。镍焊渣颗粒比纯镍涂层产生更大的显微硬度值。

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