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Original Article

Study on fabrication of ceramic coatings on Ti–6Al–4V alloy by combined ultrasonic impact treatment and electrospark

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Pages 892-897 | Received 24 Jul 2014, Accepted 31 Oct 2014, Published online: 14 Nov 2014

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Read on this site (3)

M. A. Vasylyev, B. N. Mordyuk, S. I. Sidorenko, S. M. Voloshko & A. P. Burmak. (2018) Corrosion of 2024 alloy after ultrasonic impact cladding with iron. Surface Engineering 34:4, pages 324-329.
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Y. Li, D. Wang, B. Gong & C. Deng. (2017) Enhanced wear resistance by combined ultrasonic impact and electro-spark melting. Surface Engineering 33:12, pages 903-910.
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Tao Liu, Haibo Wang, Guoyi Tang & Guolin Song. (2017) Surface modification of D36 steel by ultrasonic impact with electropulsing. Materials Science and Technology 33:12, pages 1447-1453.
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Articles from other publishers (3)

Alexey Panin, Marina Kazachenok, Konstantin Krukovskii, Dmitry Buslovich, Lyudmila Kazantseva, Sergey Martynov & Elena Sklyarova. (2023) Transformations of the Microstructure and Phase Compositions of Titanium Alloys during Ultrasonic Impact Treatment Part III: Combination with Electrospark Alloying Applied to Additively Manufactured Ti-6Al-4V Titanium Alloy. Metals 13:5, pages 932.
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Tianxiang Wang, Xuming Zha, Fengbiao Chen, Jue Wang, Yousheng Li & Feng Jiang. (2021) Mechanical impact test methods for hard coatings of cutting tools: a review. The International Journal of Advanced Manufacturing Technology 115:5-6, pages 1367-1385.
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A. A. Burkov, E. R. Zaikova & M. I. Dvornik. (2019) Deposition of Ti–Ni–Zr–Mo–Al–C Composite Coatings on the Ti6Al4V Alloy by Electrospark Alloying in a Granule Medium. Surface Engineering and Applied Electrochemistry 54:6, pages 546-554.
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