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Preparation of complex surface coatings based on electrospark computer integrated deposition system

X.R. Wang (School of Bailie Mechanical Engineeing, Lanzhou City University, Lanzhou, China and School of Mechatronic Engineering, Lanzhou Jiaotong University, Lanzhou, China)
Z.Q. Wang (School of Mechatronic Engineering, Lanzhou Jiaotong University, Lanzhou, China and State Key Laboratory of Advanced Processing and Recycling of Nonferrous Metals, Lanzhou University of Technology, Lanzhou, China)
T.S. Lin (State Key Laboratory of Advanced Welding and Joining, Harbin Institute of Technology, Harbin, China)
P. He (State Key Laboratory of Advanced Welding and Joining, Harbin Institute of Technology, Harbin, China)
R.J. Wang (Beijing JinLunKunTian Special Machine Co. LTD., Beijing, China)
M.Y. Bao (Beijing JinLunKunTian Special Machine Co. LTD., Beijing, China)

Assembly Automation

ISSN: 0144-5154

Article publication date: 17 January 2020

Issue publication date: 30 March 2020

436

Abstract

Purpose

Electrospark deposition (ESD) attracts special attention from scientists and engineers because of its unique advantages. However, the ESD process has been carried out by hand up to the present. This prevents ESD from preparing complex curve/surface coatings owing to manual operation characteristics. To meet the coating precise preparation requirements for a lot of parts with complex surface from various industrial fields, this paper aims to obtain a new automatic ESD equipment, process and preparation methodology for complex surface coatings.

Design/methodology/approach

By designing a special deposition holder and re-programming programmable machine controller, an ESD power supply and a computer numerical control milling machine are integrated to obtain an electrospark-computer integrated deposition system (ES-CIDS). Then, based on the ES-CIDS, a new ESD process, named electrospark-computer numerical control deposition (ES-CNCD) is developed. Furthermore, complex surface coatings are depicted using non-uniform rational B-spline mathematical model and modeled in a special software developed via MATLAB. Finally, deposition programs for a complex coating are generated using golden section interpolation method, and transferred to and executed by the ES-CIDS to accomplish the preparation of the complex surface coating.

Findings

This paper demonstrates that it is possible and feasible to prepare complex surface coatings via an automatic ESD process (namely, ES-CNCD) precisely.

Research limitations/implications

This paper can make automatic ESD process get more attention from scientific researchers and engineers, and promote the research of the ES-CNCD process/equipment.

Practical implications

The ES-CNCD process can be used in the manufacturing of complex surface coatings, and in the remanufacturing of complex shape parts.

Social implications

The ES-CIDS/ES-CNCD can promote the development of related equipment and technology, and bring opportunities and employment to ESD industry.

Originality/value

This work prepares complex surface coatings precisely for the first time using a new automatic ESD process (ES-CNCD), which has wide application prospects in various industries.

Keywords

Acknowledgements

This project is supported by National Science and Technology Major Project (2017-VII-0012-0108 and 2017-VII-0003-0096), National Natural Science Foundation of China (Grant no. 51764038 and 51465030), Gansu Science and Technology Planning Project (17YF1GA018, 17CX1JA117, and 18JR3RA132), Western Young Scholars of Chinese Academy of Sciences, Lanzhou Talent Innovation and Entrepreneurship Project (2018-RC-108), Longyuan Youth Innovative and Entrepreneurial Talents Project, Foundation of A Hundred Youth Talents Training Program of Lanzhou Jiaotong University, and Gansu Provincial Employee Technology Innovation Subsidy Fund Project.

Citation

Wang, X.R., Wang, Z.Q., Lin, T.S., He, P., Wang, R.J. and Bao, M.Y. (2020), "Preparation of complex surface coatings based on electrospark computer integrated deposition system", Assembly Automation, Vol. 40 No. 2, pp. 165-173. https://doi.org/10.1108/AA-01-2019-0015

Publisher

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Emerald Publishing Limited

Copyright © 2020, Emerald Publishing Limited

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