Creation of Industrial Equipment for High Frequency Mechanical Impact on Railway Car Building Products and Methods for Assessing the Quality of Treatment

Author:

Prokopenko G.I., ,Mordyuk B.M.,Krasovsky T.A.,Knish V.V.,Solovey S.O., , , ,

Publisher

National Academy of Sciences of Ukraine (Co. LTD Ukrinformnauka)

Subject

Industrial and Manufacturing Engineering,Materials Science (miscellaneous),Business and International Management

Reference15 articles.

1. 1. Lobanov, L. M., Kiryan, V. I., Knysh, V. V., Prokopenko, G. I. (2006). Increased fatigue resistance of welded joints of metal structures by high-frequency mechanical forging. Automatic welding, 9, 3-11 [in Russian].

2. 2. Knysh, V. V., Solovey, S. A., Bogaychuk, I. L. (2011). Optimization of the hardening process of 09G2S steel welded joints by high-frequency mechanical forging. Automatic welding, 5, 26-31 [in Russian].

3. 3. Prokopenko, G. I., Knysh, V. V., Solovey, S. O. (2011). Extension of residual resource of the welded joints of St3sp and 09G2S steels by high-frequency mechanical forging. Bulletin of the Ternopil National Technical University. Spec. issue, part 2, 35-41 [in Ukrainian].

4. HFMI: understanding the mechanisms for fatigue life improvement and repair of welded structures;Lefebvre;Welding in the Word,2017

5. 5. Prokopenko, G. I., Nedoseka, A. Ya., Gruzd, A. A., Krasovsky, T. A. (1995). Development and optimization of equipment and process of ultrasonic impact treatment of welded joints in order to reduce residual stresses. Technician Diagnostics and Nondestruction Control, 3, 14-22 [in Russian].

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