Explosive Stamping Goals and Objectives Historical Transformation (to the 70th Anniversary of KhAI Scientific School)

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Abstract:

The sequence and development the impulse stamping goals and production objectives are described. A new idea development from a primitive “field” technology to modern integrated technologies that allow obtaining unique quality indicators of manufactured parts is shown. The article covers the description of pulse technologies for sheet stamping by the blasting agents explosion and an underwater high-voltage discharge.

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136-141

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August 2021

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© 2021 Trans Tech Publications Ltd. All Rights Reserved

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[1] V.V. Dragobetskii, A.A. Shapoval, D.V. Mospan, O.V. Trotsko, & V.V. Lotous. Excavator bucket teeth strengthening using a plastic explosive deformation, Metallurgical and Mining Industry. 7(4) (2015) 363-368.

Google Scholar

[2] O. Markov, O. Gerasimenko, L. Aliieva, A. Shapoval, Development of the metal rheology model of high-temperature deformation for modeling by finite element method, EUREKA, Physics and Engineering. 2 (2019) 52-60.

DOI: 10.21303/2461-4262.2019.00877

Google Scholar

[3] J. Bast, S.M. Gorbatyuk, I.Yu. Kryukov, Horizontal hcc-12000 unit for the continuous casting of semifinished products, Metallurgist. 55(1-2) (2011) 116-118.

DOI: 10.1007/s11015-011-9399-1

Google Scholar

[4] V.V. Kukhar, A.V. Grushko, I.V. Vishtak, Shape indexes for dieless forming of elongated forgings with sharpened end by tensile drawing with rupture, Solid State Phenomena. 284 (2018) 408-415.

DOI: 10.4028/www.scientific.net/ssp.284.408

Google Scholar

[5] I. Lutsenko, Identification of target system operations. Development of global efficiency criterion of target operations, Eastern-European Journal of Enterprise Technologies. 2(2) (2015) 35-40.

DOI: 10.15587/1729-4061.2015.38963

Google Scholar

[6] A.N. Shapoval, A.A. Shapoval, Development of the unit for multi-stage vibration drawing of metal product, Tsvetnye Metally. 4 (2002) 77-82.

Google Scholar

[7] V. Kukhar, O. Kurpe, E. Klimov, E. Balalayeva, V. Dragobetskii, Improvement of the method for calculation the metal temperature loss on a coilbox unit at the rolling on hot strip mills, International Journal of Engineering & Technology (UAE). 7(4.3) (2018) 35-39.

DOI: 10.14419/ijet.v7i4.3.19548

Google Scholar

[8] O.E. Markov, O.V. Gerasimenko, A.A. Shapoval, O.R. Abdulov, R.U. Zhytnikov, Computerized simulation of shortened ingots with a controlled crystallization for manufacturing of high-quality forgings, International Journal of Advanced Manufacturing Technology. 103(5-8) (2019) 3057-3065.

DOI: 10.1007/s00170-019-03749-4

Google Scholar

[9] V. Dragobetskii, M. Zagirnyak, O. Naumova, S. Shlyk, A. Shapoval, Method of determination of technological durability of plastically deformed sheet parts of vehicles, International Journal of Engineering and Technology (UAE). 7(4) (2018) 92-99.

DOI: 10.14419/ijet.v7i4.3.19558

Google Scholar

[10] V.V. Bogoboyashchii, I.I. Inzhin, Mechanism for conversion of the type of conductivity inp-Hg1-xCdxTe crystals upon bombardment by low-energy ions, Russian Physics Journal. 43(8) (2000) 627-636.

Google Scholar

[11] M. Zagirnyak, V. Zagirnyak, D. Moloshtan, V. Drahobetskyi, A. Shapoval, A search for technologies implementing a high fighting efficiency of the multilayered elements of military equipment, Eastern-European Journal of Enterprise Technologies. 6/1(102) (2019) 33-40.

DOI: 10.15587/1729-4061.2019.183269

Google Scholar

[12] E. Belas, V.V. Bogoboyashchyy, R. Grill, I. I. Izhnin, A.P. Vlasov, V.A. Yudenkov, Time relaxation of point defects in p- and n-(HgCd)Te after ion milling, Journal of Electronic Materials. 32(7) (2003) 698-702.

DOI: 10.1007/s11664-003-0055-9

Google Scholar

[13] V.V. Bogoboyashchii, A.P. Vlasov, I.I. Izhnin, Mechanism for conversion of the conductivity type in arsenic-doped p-CdxHg1-xTe subject to ionic etching, Russian Physics Journal. 44(1) (2001) 61-70.

DOI: 10.1023/a:1011312902981

Google Scholar

[14] V.V. Dragobetskii, A.A. Shapoval & V.G. Zagoryanskii, Development of elements of personal protective equipment of new generation on the basis of layered metal compositions, Steel in Translation. 45(1) (2015) 33-37.

DOI: 10.3103/s0967091215010064

Google Scholar

[15] I. Lutsenko, E. Vihrova, E. Fomovskaya, O. Serdiuk, Development of the method for testing of efficiency criterion of models of simple target operations, Eastern-European Journal of Enterprise Technologies. 2(4) (2016) 42-50.

DOI: 10.15587/1729-4061.2016.66307

Google Scholar

[16] A.A. Shapoval, D.V. Mos'Pan, & V.V. Dragobetskii, Ensuring high performance characteristics for explosion-welded bimetals, Metallurgist. 60(3-4) (2016) 313-317.

DOI: 10.1007/s11015-016-0292-9

Google Scholar

[17] A. Shapoval, I. Savchenko, O. Markov, Determination coefficient of stress concentration using a conformed display on a circle of a single radius, Solid State Phenomena. 316 (2021) 928-935.

DOI: 10.4028/www.scientific.net/ssp.316.928

Google Scholar

[18] V. Sikulskiy, V. Kashcheyeva, Y. Romanenkov, A. Shapoval, Study of the process of shape-formation of ribbed doublecurvature panels by local deforming, Eastern-European Journal of Enterprise Technologies. 4(1) (2017) 43-49.

DOI: 10.15587/1729-4061.2017.108190

Google Scholar

[19] I. Lutsenko, E. Fomovskaya, Identification of target system operations. The practice of determining the optimal control, Eastern-European Journal of Enterprise Technologies. 6(2) (2016) 30-36.

DOI: 10.15587/1729-4061.2015.54432

Google Scholar

[20] L.S. Malinov, I.E. Malysheva, E.S. Klimov, V.V. Kukhar, E.Yu. Balalayeva, Effect of particular combinations of quenching, tempering and carburization on abrasive wear of low-carbon manganese steels with metastable austenite, Materials Science Forum. 945 (2019) 574-578.

DOI: 10.4028/www.scientific.net/msf.945.574

Google Scholar

[21] V. Dragobetskii, V. Zagirnyak, S. Shlyk, A. Shapoval, O. Naumova, Application of explosion treatment methods for production items of powder materials, Przeglad Elektrotechniczny. 95(5) (2019) 39-42.

DOI: 10.15199/48.2019.05.10

Google Scholar

[22] O. Markov, O. Gerasimenko, L. Aliieva, A. Shapoval, M. Kosilov, Development of a new process for expanding stepped tapered rings, Eastern-European Journal of Enterprise Technologies. 2(1-98) (2019) 39-46.

DOI: 10.15587/1729-4061.2019.160395

Google Scholar

[23] A. Shapoval, V. Drahobetskyi, I. Savchenko, A. Gurenko, O. Markov, Profitability of production of stainless steel + zirconium metals combination adapters. Key Engineering Materials, 864 (2020) 285-291.

DOI: 10.4028/www.scientific.net/kem.864.285

Google Scholar

[24] O.E. Markov, V.V. Kukhar, V.N. Zlygoriev, A.A. Shapoval, A.S. Khvashchynskyi, R.U. Zhytnikov, Improvement of upsetting process of four-beam workpieces based on computerized and physical modeling, FME Transactions. 48(4) (2020) 946-953.

DOI: 10.5937/fme2004946m

Google Scholar

[25] N. Hrudkina, L. Aliieva, O. Markov, I. Marchenko, A. Shapoval, P. Abhari, M. Kordenko, Predicting the shape formation of hollow parts with a flange in the process of combined radial-reverse extrusion, Eastern-European Journal of Enterprise Technologies. 4/1(106) (2020) 55-62.

DOI: 10.15587/1729-4061.2020.203988

Google Scholar

[26] I. Savchenko, A. Shapoval, A. Gurenko, Modeling dynamic parameters of hard alloys during shock wave regeneration, IOP Conference Series: Materials Science and Engineering. 969(1) (2020) № 012079.

DOI: 10.1088/1757-899x/969/1/012079

Google Scholar

[27] I. Lutsenko, E. Fomovskaya, I. Oksanych, S. Koval, O. Serdiuk, Development of a verification method of estimated indicators for their use as an optimization criterion, Eastern-European Journal of Enterprise Technologies. 2(2017) 17-23.

DOI: 10.15587/1729-4061.2017.95914

Google Scholar

[28] A. Shapoval, R. Kantemyrova, O. Markov, A. Chernysh, R. Vakulenko, I. Savchenko, Technology of production of refractory composites for plasma technologies, in: Proceedings of the 25th IEEE International Conference on Problems of Automated Electric Drive. Theory and Practice, PAEP, Kremenchuk, Ukraine, 2020, pp.1-4.

DOI: 10.1109/paep49887.2020.9240830

Google Scholar

[29] V. Dragobetskii, E. Naumova, A. Shapoval, S. Shlyk, D. Moloshtan, Improving the operational reliability of stamped parts of electrical engineering machines and electrical products, Proceedings of the International Conference on Modern Electrical and Energy Systems, MEES, Kremenchuk, Ukraine, 2019, pp.506-509.

DOI: 10.1109/mees.2019.8896532

Google Scholar