Hardening Process by Complex Local Deformation Investigation

Article Preview

Abstract:

The article considers a new method of sliding bearings inner surface hardening by plastic deformation in complex local loading of deformation zone conditions. The main aspects of experimental equipment construction and experimental research preparation are reviewed. The laboratory research results are presented.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

149-158

Citation:

Online since:

September 2016

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2016 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] V.A. Golenkov, S. Yu. Radchenko, D.O. Dorokhov, G.P. Korotky, Scientific basis of hardening by complex local deformation, Publishing house Engineering, State University - Education-Science-Production Complex, (2013).

Google Scholar

[2] V.A. Golenkov, S. Yu. Radchenko, D.O. Dorokhov, I.M. Gryadunov, Сlassification process complex local deform, Fundamental and Applied Problems of Technics and technology. 6 (2010) 85-89. (in Russian).

Google Scholar

[3] V.A. Golenkov, S. Yu. Radchenko, D.O. Dorokhov, I.M. Gryadunov, The analysis of kinds of strengthening processing by plastic deformation, Fundamental and Applied Problems of Technics and technology. 1 (2011) 59-62. (in Russian).

Google Scholar

[4] V.A. Golenkov, S. Yu. Radchenko, D.O. Dorokhov, and I.M. Gryadunov, On performance improving of hollow axisymmetric detales of machines by intensive plastic deformation methods, Fundamental and Applied Problems of Technics and technology. 6 (2012).

Google Scholar

[5] V.A. Golenkov, S. Yu. Radchenko, D.O. Dorokhov, Gradient submicro- and nanostructural states formation through complex local loading of deformation point, Strengthening technologies and coating. 3 (2009) 54-56.

Google Scholar

[6] S. Bagheri, M. Guagliano, Review of Shot Peening Processes to obtain Nanocrystalline Surfaces in Metal Alloys, Surf Eng. 25 (2009) 3-14. URL: http: /dx. doi. org/10. 1179/026708408X334087.

DOI: 10.1179/026708408x334087

Google Scholar

[7] K.T. Cho, K. Song, S.H. Oh, Y.K. Lee, K.M. Lim, W.B. Lee, Surface Hardening of Aluminum Alloy by Shot Peening Treatment with Zn Based Ball, Mater Sci Eng A. 543 (2012) 44-49. URL: http: /dx. doi. org/10. 1016/j. msea. 2012. 02. 043.

DOI: 10.1016/j.msea.2012.02.043

Google Scholar

[8] D.J. Child, G.D. West, R.C. Thomson, Assessment of Surface Hardening Effects from Shot Peening on a Ni-based Alloy using Electron Backscatter Diffraction Techniques, Acta Mater. 59 (2011).

DOI: 10.1016/j.actamat.2011.04.025

Google Scholar

[9] K. Dai, L. Shaw, Comparison between Shot Peening and Surface Nanocrystallization and Hardening Processes, Mater Sci Eng A. 463 (2007) 46-53. URL: http: /dx. doi. org/10. 1016/j. msea. 2006. 07. 159.

DOI: 10.1016/j.msea.2006.07.159

Google Scholar

[10] B. Tadic, P. Todorovic, O. Luzanin, D. Miljanic, B. Jeremic, B. Bogdanovic, D. Vukelic, Using Specially Designed High-stiffness Burnishing Tool to Achieve High-quality Surface Finish, Int J. Adv Manuf Technol. 67 (2013).

DOI: 10.1007/s00170-012-4508-2

Google Scholar

[11] A. Akkurt, Comparison of Roller Burnishing and Other Methods of Finishing Treatment of the Surface of Openings in Parts from Tool Steel d3 for Cold Forming, Met Sci Heat Treat. 53 (2011).

DOI: 10.1007/s11041-011-9358-2

Google Scholar

[12] H. Hamadache, Z. Zemouri, L. Laouar, S. Dominiak, Improvement of Surface Conditions of 36 Cr Ni Mo 6 Steel by Ball Burnishing Process, J. Mech Sci Technol. 28 (2014) 1491-1498. URL: http: /dx. doi. org/10. 1007/s12206-014-0135-1.

DOI: 10.1007/s12206-014-0135-1

Google Scholar

[13] A. Akkurt, Comparison of Roller Burnishing Method with Other Hole Surface Finishing Processes Applied on AISI 304 Austenitic Stainless Steel, J. Mater Eng Perf. 20 (2011) 960-968. URL: http: /dx. doi. org/10. 1007/s11665-010-9718-x.

DOI: 10.1007/s11665-010-9718-x

Google Scholar

[14] A.M. Abrão, B. Denkena, B. Breidenstein, T. Mörke, Surface and Subsurface Alterations Induced by Deep Rolling of Hardened AISI 1060 Steel, Prod Eng Res Devel online. 27 (2014). URL: http: /dx. doi. org/10. 1007/s11740-014-0539-x.

DOI: 10.1007/s11740-014-0539-x

Google Scholar

[15] J. Xie, Y. Zhu, Y. Huang, C. Bai, X. Ye, Microstructure Characteristics of 30CrMnSiNi2A Steel After Ultrasound-Aided Deep Rolling, J Mater Eng Perf. 22 (2013) 1642-1648. URL: http: /dx. doi. org/10. 1007/s11665-012-0459-x.

DOI: 10.1007/s11665-012-0459-x

Google Scholar

[16] R. Guan, X. Wang, Z. Zhao, W. Wang, F. Cao, C. Liu, Microstructure and Properties of A2017 Alloy Strips Processed by a Novel Process by Combining Semisolid Rolling, Deep rolling, and Heat Treatment, Int. J. Miner Metall. Mater. 20 (2013).

DOI: 10.1007/s12613-013-0795-3

Google Scholar

[17] R.K. Nalla, I. Altenberger, U. Noster, G.Y. Liu, B. Scholtes, R.O. Ritchie, On the Influence of Mechanical Surface Treatments – Deep Rolling and Laser Shock Peening – on the Fatigue Behavior of Ti–6Al–4V at Ambient and Elevated Temperatures, Mater Sci Eng A. 355 (2003).

DOI: 10.1016/s0921-5093(03)00069-8

Google Scholar

[18] P. Juijerm, I. Altenberger, Effect of High-Temperature Deep Rolling on Cyclic Deformation Behavior of Solution-Heat-Treated Al–Mg–Si–Cu alloy, J Script Materialia. 56 (2007) 285-288. URL: http: /dx. doi. org/10. 1016/j. scriptamat. 2006. 10. 017.

DOI: 10.1016/j.scriptamat.2006.10.017

Google Scholar

[19] V.A. Golenkov, V.G. Malinin, S. Yu. Radchenko, G.P. Korotky, D.O. Dorokhov, RU Patent 2340423.

Google Scholar

[20] V.A. Golenkov, S. Yu. Radchenko, D.O. Dorokhov, RU Patent 2387514.

Google Scholar

[21] V.A. Golenkov, S. Yu. Radchenko, D.O. Dorokhov, RU Patent 2389580.

Google Scholar

[22] V.A. Golenkov, S. Yu. Radchenko, D.O. Dorokhov, The perspectives of roll-stamping technology applying to gradient submicro- and nanostructure materials obtaining, The news of Tula State University: Technical sciences. 2 (2008).

Google Scholar

[23] V.A. Golenkov, S. Yu. Radchenko, O.V. Dorofeev, D.O. Dorokhov, The gradient structure obtaining on the base of roll-stamping method, The news of Orel State Technical University: Fundamental and applied problems of technical and technology. 3 (2008).

Google Scholar

[24] V.A. Golenkov, S. Yu. Radchenko, D.O. Dorokhov, Knowledge-intensive technology of processing of metals by pressure with complex local loading of deformation zone, Knowledge-intensive technology in machinery. 3 (2011) 31-37. (in Russian).

Google Scholar

[25] D.O. Dorokhov, Controllable formation of parts mechanical properties by complex local deformation method, The news of Orel State Technical University: Fundamental and applied problems of technical and technology. 4 (2011) 31-37.

Google Scholar

[26] V.A. Golenkov, S. Yu. Radchenko, I.M. Gryadunov, RU Patent 2340423.

Google Scholar

[27] I.M. Gryadunov, The bush type parts hardening by intensive plastic deformation in complex local loading conditions, Ph.D. diss., State University Education-Science-Production Complex, Orel, (2013).

Google Scholar

[28] V.A. Golenkov, S. Yu. Radchenko, D.O. Dorokhov, I.M. Gryadunov, The gradient nanostructure obtaining in axisymmetrical parts, Nanoengineering. 5 (2012) 18-21. (in Russian).

Google Scholar

[29] S. Yu. Radchenko, D.O. Dorokhov, I.M. Gryadunov, The new technological schemas of sliding bearings hardening in complex local loading of deformation zone conditions, The world of transport and technological machines. 4 (2014) 47-54. (in Russian).

Google Scholar

[30] S. Yu. Radchenko, D.O. Dorokhov, A.A. Kislovsky, The perspectives of complex local loading technology applying to crankshaft sliding bearings hardening, The world of transport and technological machines. 3 (2015) 35-46. (in Russian).

Google Scholar

[31] S. Yu. Radchenko, D.O. Dorokhov, I.M. Gryadunov, RU Patent 2542210.

Google Scholar

[32] S. Yu. Radchenko, D.O. Dorokhov, I. M Gryadunov, The volumetric surface hardening of hollow axisymmetric parts by roll stamping method, Journal of Chemical Technology and Metallurgy. 50 (2015) 104-112.

Google Scholar

[33] I. M. Gryadunov, S. Yu. Radchenko, D. O. Dorokhov, P. G. Morrev, Deep Hardening of Inner Cylindrical Surface by Periodic Deep Rolling - Burnishing Process, Modern Applied Science. 9 (2015) 251-258.

DOI: 10.5539/mas.v9n9p251

Google Scholar