Microstructure and Abrasive-Wear Resistance of the Vibration-Deposited Metal of Core Wires of the Basic Fe–Cr–B System

Author:

Voitovych A. A.,Pokhmurs’ka H. V.,Student M. M.,Student O. Z.

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference6 articles.

1. R. Choteborsky, P. Hrabe, M. Müller, R. Válek, J. Savková, and M. Jirka, “Effect of carbide size in hardfacing on abrasive wear,” Res. Agric. Eng., No. 55, 49–58 (2009).

2. N. Yuksel and S. Sahin, “Wear behavior–hardness–microstructure relation of Fe–Cr–C and Fe–Cr–C–B based hardfacing alloys,” Mater. Design, No. 58, 491–498 (2014).

3. A. Sorour, R. Chromik, I. H. Gauvin, and M. Brochu, “Understanding the solidification and microstructure evolution during CSC-MIG welding of Fe–Cr–B-based alloy,” Mater. Character., No. 86, 127–138 (2013).

4. S. Wanga, H. Li, X. Chenb, J. Chia, M. Li, L. Cha, and H. Xua, “Improving microstructure and wear resistance of plasma clad Fe-based alloy coating by a mechanical vibration technique during cladding,” Mater. Sci. Eng., No. A 528, 397–401 (2010).

5. Ch. V. Pul’ka, O. N. Shablyy, V. S. Senchyshyn, M. V. Sharik, and H. N. Hordan, “Influence of vibrations of a workpiece in the course of fusion on a structure and properties of the metal,” Avtomat. Svarka, 705, No. 1, 27–29 (2012).

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