会议论文详细信息
International Conference on Advances in Materials and Manufacturing Applications 2017
Study on influence of Surface roughness of Ni-Al2O3 nano composite coating and evaluation of wear characteristics
Raghavendra, C.R.^1 ; Basavarajappa, S.^2 ; Sogalad, Irappa^3
Government Engineering College, Haveri, Karnataka, India^1
Indian Institute of Information Technology Dharwad, IT Park, Hubballi, Karnataka, India^2
University BDT College of Engineering, Davanagere, Karnataka, India^3
关键词: Aluminium6061;    Central composite designs;    Electrodeposited coatings;    Electrodeposition process;    Nano-composite coating;    Particle composites;    Wear characteristics;    Wear rates;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/310/1/012112/pdf
DOI  :  10.1088/1757-899X/310/1/012112
来源: IOP
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【 摘 要 】

Electrodeposition is one of the most technologically feasible and economically superior techniques for producing metallic coating. The advancement in the application of nano particles has grabbed the attention in all fields of engineering. In this present study an attempt has been made on the Ni-Al2O3nano particle composite coating on aluminium substrate by electrodeposition process. The aluminium surface requires a specific pre-treatment for better adherence of coating. In light of this a thin zinc layer is coated on the aluminium substrate by electroless process. In addition to this surface roughness is an important parameter for any coating method and material. In this work Ni-Al2O3composite coating were successfully coated by varying the process parameters such as bath temperature, current density and particle loading. The experimentation was performed using central composite design based 20 trials of experiments. The effect of process parameters and surface roughness before and after coating is analyzed on wear rate and coating thickness. The results shown a better wear resistance of Ni-Al2O3composite electrodeposited coating compared to Ni coating. The particle loading and interaction effect of current density with temperature has greater significant effect on wear rate. The surface roughness is significantly affected the wear behaviour and thickness of coating.

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