Composite Antifriction Material Based on Wastes of Aluminum Alloy for Items of Post-Printing Equipment

Author:

Roik T. A.,Gavrysh O. A.,Vitsiuk Iu. Iu.

Publisher

Springer Science and Business Media LLC

Subject

Materials Chemistry,Metals and Alloys,Mechanics of Materials,Condensed Matter Physics,Ceramics and Composites

Reference15 articles.

1. P.O. Kirichok, T.A. Roik, A.P. Gavrish, A.V. Shevchuk, and Yu.Yu Vitsyuk, The latest composite materials of friction parts in printing machines [in Ukrainian], NTUU “Kyiv Polytechnic. Inst.,” Kyiv (2015), p. 428.

2. S.B. Venkata Siva, R.R. Dash, R.I. Ganguly, K.L. Sahoo, S.K. Singh, and G. Srinivasrao, “Development of aluminum metal matrix composite using colliary shale – A waste product from Indian coal mines,” in: Proceedings of the International Conference on Powder Metallurgy and Particulates Materials, Nashville, USA (2012), pp. 873–885.

3. Rupa Dasgupta, Aluminium Alloy-Based Metal Matrix Composites: A Potential Material for Wear Resistant Applications, ISRN Metallurgy, Volume 2012, Article ID 594573, p. 14; https://doi.org/10.5402/2012/594573 .

4. S.B. Venkata Siva, G. Rao Sreenivasa, and K.L. Sahoo, “Tribological studies of Al-based composite: developed from a waste material,” in: 3rd International Conference on Mechanical, Automotive and Materials Engineering (ICMAME'2013), Singapore, April 29–30 (2013), p. 10.

5. W.S. Miller, L. Zhuang, J. Bottema, A.J. Wittebrood, P. De Smet, A. Haszler, and A. Vieregge, “Recent development in aluminum alloys for the automotive industry,” Mater. Sci. Eng., 280, Issue 1, 37–49, (2011).

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