In order to improve the functions of microarc oxidation (MAO) films, the current work investigated the effects of the laser surface melting (LSM) process on MAO films fabricated in different electrolytes. A series of processing experiments was carried out on the composite films. In detail, MAO films using aluminum (Al) and silicon (Si) electrolytes were prepared on a Ti–6Al–4V alloy surface and then treated by using the LSM process. At the same time, the properties of the films, such as phases and morphology, were characterized and analyzed by X-ray diffraction, scanning electron microscopy and energy-dispersive X-ray spectroscopy. The results showed that moderate-intensity plasma was more easily obtained on the silicon MAO (Si-MAO) films than on the aluminum MAO (Al-MAO) ones. Similarly, a higher laser power was necessary to liquefy or gasify alumina (Al2O3). Compared with the defective structure of Al-MAO film after LSM, the structure of the Si-MAO film was almost free of defects. The film morphologies showed that an MAO film with low porosity and a smooth surface can be obtained after LSM treatment using proper parameters. In conclusion, the composite silicate system process using the silicon electrolyte had better modification performance.
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9 December 2019
Research Article|
October 15 2019
Laser-melted surfaces fabricated on MAO films in Al and Si electrolytes Available to Purchase
Fengbiao Wang;
School of Mechanical Engineering, Shenyang Ligong University, Shenyang, China
(corresponding author: wangfb@dlut.edu.cn)
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Yongqing Wang
Yongqing Wang
Professor
School of Mechanical Engineering, Dalian University of Technology, Dalian, China
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(corresponding author: wangfb@dlut.edu.cn)
Publisher: Emerald Publishing
Received:
April 12 2016
Accepted:
September 20 2019
Online ISSN: 2046-0155
Print ISSN: 2046-0147
ICE Publishing: All rights reserved
2019
Emerging Materials Research (2019) 8 (4): 598–603.
Article history
Received:
April 12 2016
Accepted:
September 20 2019
Citation
Wang F, Wang Y (2019), "Laser-melted surfaces fabricated on MAO films in Al and Si electrolytes". Emerging Materials Research, Vol. 8 No. 4 pp. 598–603, doi: https://doi.org/10.1680/jemmr.16.00086
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