Influence of reinforcing plastic surface deformation on surface performance of machine parts

Authors

  • Z. М. Оdosii Ivano-Frankivsk National Technical University of Oil and Gas, 15 Karpatska Street Ivano-Frankivsk Ukraine, 76019, tel: . (0342) 727158
  • V. Ya. Shymanskyi Ivano-Frankivsk National Technical University of Oil and Gas, 15 Karpatska Street Ivano-Frankivsk Ukraine, 76019, tel: . (0342) 727158
  • B. V. Pindra Ivano-Frankivsk National Technical University of Oil and Gas, 15 Karpatska Street Ivano-Frankivsk Ukraine, 76019, tel: . (0342) 727158

DOI:

https://doi.org/10.31471/1993-9965-2019-2(47)-7-14

Keywords:

surface plastic deformation; surface layer; technological process; reinforced layer; surface quality; combined tool.

Abstract

The performance of the machines part reinforcement using surface plastic deformation shall be considered as formation of the whole complex of surface parameters and quality and their impact on the operational properties of these parts. The main surface quality parameters, affecting the performance of machine parts are geometric (microgeometry, wavelength, roughness, shape of inequalities, the size of the supporting surface, the direction of the traces of processing); physical parameters (structure, degree and slander depth, residual stresses in the surface layer). In the machine building, many methods of superficial plastic deformation are used for part reinforcement; these methods essentially differ in the scheme of impact of the surface deforming part to be treated. After analyzing the results obtained by scientists, involved in research on surface plastic deformation of surface layers and surfaces of parts, it was found that after hardening, practically all structural changes contribute to reinforcement of the surface layer material and increase the plastic deformation resistance. Increasing the density of dislocations and the separation of carbides, which block the shear slides and create obstacles to the movement of dislocations. Due to these changes, resistance to formation and spread of fatigue cracks have increased. The treatment depth, magnitude of residual stresses and increase in hardness depends on the original structure and chemical composition of the material. Reinforcement regimes have significant effects on the wear resistance. Use  of diamond smoothing, vibration processing, combined methods (surface plastic deformation in combination with other reinforcement methods, as well as the use of a combined tool) opens up new possibilities for increasing the quality characteristics of the surface and the surface layer of parts, and accordingly, increasing their operational properties with all the diversity and complexity of used processes. Based on the results of the studies, practical recommendations on the application of methods of hardening by surface plastic deformation of machine parts and a methodology for designing technological processes for their manufacture considering manufacturing capabilities are proposed.

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References

Minakov, AP (ed.) 2016, Tekhnologiya finishnoy uprochnyayushchey pnevmovibro-dinamicheskoy obrabotki nezhestkikh detaley [Technology of finishing hardening pneumatically-dynamic processing of non-rigid parts]. BRU, Mogilev, 294 p. (in Russian) https://www.twirpx.com/file/2537983/

Jemelinsky, VV & Lesik, DA 2014, [Combining Laser-Ultrasonic Surface Hardening Of Details And Possibilities Of Its Use In The Manufacture And Repair Of Equipment]. Academic journal. Industrial Machine Building, Civil Engineering Poltava National Technical Yuri Kondratyuk University, no. 3 (42), рр. 61-68. (in Ukrainian). http://znp.nupp.edu.ua/files/archive/ua/2014/42_3/7.PDF

Yudovynskyy, V, Kurtchеv, S, Penov, U & Mirnenko, YuP 2015, Pidvyshchennia znosostiikosti tsylindrychnoi poverkhni almaznym vyhladzhuvanniam [Increase of wear resistance of cylindrical surface by diamond smoothing], Bulletin of Kharkov National Technical University of Agriculture named after Petr Vasilenko, Issue 156, рр. 494-497. (in Ukrainian). http://elar.tsatu.edu.ua/handle/123456789/3207

Odosii, ZM, Shymansky, VYa & Pituley, LD 2016, Perspektyvni metody zmitsnennia detalei mashyn naftovoi ta hazovoi promyslovosti [Perspective methods of strengthening the parts of the machines of the oil and gas industry], Materials of the International scientific and technical conference "Machines, equipment and materials for increasing domestic production of diversification of oil and gas supply", Ivano-Frankivsk, рр. 291-293. (in Ukrainian).

Sarafin, V 2017, Osoblyvosti vyboru metodiv i zasobiv zmitsnennia detalei poverkhnevym plastychnym deformuvanniam [Features of choice of methods and facilities of strengthening of details by surface plastic deformation]: Abstracts Х Ukrainian student scientific-technical conference "Natural and Human Sciences. Current Issues" (Ternopil, 25-26 April 2017), vol. 1, pp. 153-154 (in Ukrainian) http://elartu.tntu.edu.ua/handle/lib/21538?locale=sv

Danylchenko, L & Radyk, D 2017, Doslidzhennia metodiv zmitsnennia detalei poverkhnevym plastychnym deformuvanniam [Research of methods of strengthening of details by surface plastic deformation]. Materials of XX Conference TNTU I. Pul'uj (Ternopil, 17-18 May 2017), pp. 21 (in Ukrainian). http://elartu.tntu.edu.ua/handle/lib/22200

Odosiy, ZM, Shimansky, VYa & Prokopechko NM 2018, Vplyv poverkhnevoho plastychnoho deformuvannia na vtomnu mitsnist detalei mashyn [Influence of surface plastic deformation on the fatigue strength of machine parts]: proceedings of the II International Scientific and Technical Conference "Machines, Equipment and Materials for Increasing the National Oil and Gas Production PGE-2018", Ivano-Frankivsk, pp. 296-297. (in Ukrainian).

Odintsov, LG 1987, Uprochnenie i otdelka detaley poverkhnostnym plasticheskim deformovaniem [Strengthening and finishing of details by surface plastic deformation], Mashinostroenie, Moscow, 328 p. (in Russian)

Papshev, DD 1978, Otdelochno-uprochnyayushchaya obrabotka poverkhnosnym plasticheskim deformirovaniem [Finishing-harde-ning treatment by surface plastic deformation], Mashinostroenie, Moscow, 152 p. (in Russian)

Rudenko, PА, Shuba, MN & Ognivets VA 1985, Otdelochnye operatsii v mashinostroenii [Finishing operations in mechanical engineering], Tekhnika, Kiev, 136 p. (in Russian)

Schneider, YG 1970, Instument dlya chistovoy obrabotki metallov davlenim [Instrument for the treatment of metals by pressure], Mashinostroenie, Leningrad, 248 p. (in Russian)

Chepa, PA 1988, Ekspluatatsionnye svoystva uprochnennykh detaley [Performance properties of reinforced parts], Nauka i tekhnika, Minsk, 193 p. (in Russian)

Balter, MA 1978, Uprochnenie detaley mashin [Strengthening of machine parts], Mashinostroenie, Moscow, 184 p. (in Russian)

Gorokhov, VA 1978, Obrabotka detaley plasticheskim deformirovaniem [Processing of parts by plastic deformation], Tekhnіka, Kiev, 192 p. (in Russian)

Published

2019-12-26

How to Cite

Оdosii Z. М., Shymanskyi, V. Y. ., & Pindra, B. V. . (2019). Influence of reinforcing plastic surface deformation on surface performance of machine parts. Scientific Bulletin of Ivano-Frankivsk National Technical University of Oil and Gas, (2(47), 7–14. https://doi.org/10.31471/1993-9965-2019-2(47)-7-14