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The Influence of Working Tool Parameters on the Stress State during Orbital Surface Plastic Deformation

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Abstract

In this article, using the ANSYS Workbench software package, the influence of the parameters of the working tool on the stress state of the surface layer during the processing of cylindrical parts by orbital surface plastic deformation is considered.

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REFERENCES

  1. Blyumenshtein, V.Yu., Krechetov, A.A., and Makhalov, M.S., Modern viable technologies of finishing-hardening treatment by surface plastic deformation, Uprochnyayushchie Tekhnol. Pokrytiya, 2012, no. 7, pp. 7–12.

  2. Papshev, D.D., Otdelochno-uprochnyayushchaya obrabotka poverkhnostnym plasticheskim deformirovaniem (Finishing-Hardening Treatment by Plastic Deformation), Moscow: Mashinostroenie, 1987.

  3. Lebedev, V.A., Effektivnye tekhnologii poverkhnostnogo plasticheskogo deformirovaniya i kombinirovannoi obrabotki (Effective Technologies of Surface Plastic Deformation and Combined Treatment), Moscow: Spektr, 2014.

  4. Zaides, S.A., New surface plastic deformation techniques in the manufacture of machine parts, Vestn. Magnitogorskogo Gos. Tekh. Univ. G.I. Nosova, 2018, vol. 16, no. 3, pp. 129–139. https://doi.org/10.18503/1995-2732-2018-16-3-129-139

    Article  Google Scholar 

  5. Shneider, Yu.G., Tekhnologiya finishnoi obrabotki davleniem: Spravochnik (Technology of Finishing Metal Forming: Reference Book), St. Petersburg: Politekhnika, 1988.

  6. Polyak, M.S., Tekhnologiya uprochneniya (Hardening Technology), Moscow: Mashinostroenie, 1995, vol. 2.

  7. Chepa, P.A., Tekhnologicheskie osnovy uprochneniya detalei poverkhnostnym deformirovaniem (Technological Foundations for Hardening Machine Elements by Surface Deformation), Minsk: Nauka i Tekhnika, 1981.

  8. Smelyanskii, V.M., Mekhanika uprochneniya detalei poverkhnostnym plasticheskim deformirovaniem (Mechanics of Hardening Machine Elements by Surface Plastic Deformation), Moscow: Mashinostroenie, 2002.

  9. Blyumenshtein, V.Yu. and Smelyanskii, V.M., Mekhanika tekhnologicheskogo nasledovaniya na stadiyakh obrabotki i ekspluatatsii detalei mashin (Mechanics of Technological Heredity at Stages of Processing and Operation of Machine Elements), Moscow: Mashinostroenie, 2007.

  10. Emel’yanov, V.N., Pravka detalei mashin poverkhnostnym plasticheskim deformirovaniem (Flattening of Machine Elements by Surface Plastic Deformation), Novgorod: Novgorodsk. Gos. Univ., 1996.

  11. Zaides, S.A. and Nguyen, V.H., Influence of oscillatory smoothing on the residual stress in cylindrical components, Russ. Eng. Res., 2018, vol. 38, no. 11, pp. 859–864. https://doi.org/10.3103/s1068798x18110217

    Article  Google Scholar 

  12. Zaides, S.A. and Ngo Kao, K., Poverkhnostnoe deformirovanie v stesnennykh usloviyakh (Surface Deformation under Constrained Conditions), Irkutsk: Izd-vo IRNITU, 2018.

  13. Tekhnologiya i instrumenty otdelochno-uprochnyayushchei obrabotki detalei poverkhnostnym plasticheskim deformirovaniem. Spravochnik v 2-kh tomakh (Technology and Tools of Finishing-Hardening Machine Element Processing by Surface Plastic Deformation: Reference Book in Two Volumes), Suslov, A.G., Ed., Moscow: 2014, vol. 1.

  14. Rozenberg, O.A., Mekhanika vzaimodeistviya instrumenta s izdeliem pri deformiruyushchem protyagivanii (Mechanics of Interaction between Tool and Workpiece at Deforming Drawing), Kiev: 1981.

  15. Zaides, S.A., Bobrovsky, I.N., and Fam, V.A., Impact of local deformation kinematics upon stressed state of surface layer, Naukoemkie Tekhnol. Mashinostr., 2019, no. 5, pp. 32–38. https://doi.org/10.30987/article_5ca3030a5bfe86.87759559

  16. Zaides, S.A. and Fam, V.A., Device for surface plastic deformation, RF Patent no. 2705043, 2019.

  17. Bakov, K.A., ANSYS. Spravochnik pol’zovatelya (ANSYS: User’s Reference Book), Moscow: DMK Press, 2005.

  18. Bruyaka, V.A., Fokin, V.G., and Kuraeva, Ya.V., Inzhenernyi analiz v ANSYS Workbench (Engineering Analysis in ANSYS Workbench), Samara: Samara Gos. Tekh. Univ., 2013. https://doi.org/10.14498/vsgtu/v222

  19. Samul’, V.I., Osnovy teorii uprugosti i plastichnosti (Foundations of the Theory of Elasticity and Plasticity), Moscow: Vysshaya Shkola, 1970.

  20. Zaides, S.A. and Fong, F.D., Roughness of cylindrical parts in transverse burnishing by flat plates, Russ. Eng. Res., 2018, vol. 38, no. 12, pp. 921–925. https://doi.org/10.3103/s1068798x18120420

    Article  Google Scholar 

  21. Zaides, S.A. and Nguyen, V.H., Determination of residual stresses in the calibrated rod, Izv. Vyssh. Uchebn. Zaved., Chern. Metall., 2017, vol. 60, no. 2, pp. 109–115. https://doi.org/10.17073/0368-0797-2017-2-109-115

    Article  Google Scholar 

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Correspondence to Fam Wan An.

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Translated by K. Gumerov

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Zaides, S.A., Fam Wan An The Influence of Working Tool Parameters on the Stress State during Orbital Surface Plastic Deformation. Steel Transl. 53, 405–411 (2023). https://doi.org/10.3103/S0967091223050170

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  • DOI: https://doi.org/10.3103/S0967091223050170

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