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Published in: Journal of Failure Analysis and Prevention 5/2014

01-10-2014 | Technical Article---Peer-Reviewed

Fracture Mechanism Analysis of the Heat-Resistant Steel 15Kh2MFA(II) After Laser Shock-Wave Processing

Authors: I. B. Okipnyi, P. O. Maruschak, V. I. Zakiev, V. S. Mocharskyi

Published in: Journal of Failure Analysis and Prevention | Issue 5/2014

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Abstract

The surface strengthening mechanisms of the 15Kh2MFA(II) heat-resistant steel are analyzed after the laser shock-wave treatment in the air and epoxy resin. The regularities are established in the formation of the ordered surface relief of the steel after treatment. The optical and digital analysis of the surface is performed which allows determining the size of irregularities, taking into account the stochastic and cyclic nature of their formation. The effect of treatment of the 15Kh2MFA(II) heat-resistant steel on the regularities of its static failure is established.

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Literature
1.
go back to reference Y. Nikiforov, V. Yakovyna, N. Berchenko, Laser shock waves as a tool of changing the strains in materials. Mater. Sci. Eng. A 288, 173–176 (2000)CrossRef Y. Nikiforov, V. Yakovyna, N. Berchenko, Laser shock waves as a tool of changing the strains in materials. Mater. Sci. Eng. A 288, 173–176 (2000)CrossRef
2.
go back to reference M. Rozmus-Górnikowska, J. Kusiński, M. Blicharski, Laser shock processing of an austenitic stainless steel. Arch. Metall. Mater. 55, 635–639 (2010) M. Rozmus-Górnikowska, J. Kusiński, M. Blicharski, Laser shock processing of an austenitic stainless steel. Arch. Metall. Mater. 55, 635–639 (2010)
3.
go back to reference P. Ganesh, R. Sundar, H. Kumar et al., Studies on laser peening of spring steel for automotive applications. Opt. Lasers Eng. 50, 678–686 (2012)CrossRef P. Ganesh, R. Sundar, H. Kumar et al., Studies on laser peening of spring steel for automotive applications. Opt. Lasers Eng. 50, 678–686 (2012)CrossRef
4.
go back to reference V.A. Yanushkevich, Yu.N. Nikiforov, M.M. Nishchenko, B.P. Kovalyuk, V.B. Glad’o, V.S. Mocharskii, Effect of improvement of corrosion resistance of 15Kh13MF steel irradiated by laser in shock wave generation mode. Inorg. Mater. Appl. Res. 4, 160–164 (2013)CrossRef V.A. Yanushkevich, Yu.N. Nikiforov, M.M. Nishchenko, B.P. Kovalyuk, V.B. Glad’o, V.S. Mocharskii, Effect of improvement of corrosion resistance of 15Kh13MF steel irradiated by laser in shock wave generation mode. Inorg. Mater. Appl. Res. 4, 160–164 (2013)CrossRef
5.
go back to reference P.O. Maruschak, V.S. Mocharskyi, I.M. Zakiev, Y.M. Nikiforov, Morphology of periodical structures on surface of steel 15Kh13MF after the nanosecond laser irradiation accompanied by generation of shock waves, in Proceedings of the IEEE International Conference on Oxide Materials for Electronic Engineering, September 3–7, Lviv, 2012 P.O. Maruschak, V.S. Mocharskyi, I.M. Zakiev, Y.M. Nikiforov, Morphology of periodical structures on surface of steel 15Kh13MF after the nanosecond laser irradiation accompanied by generation of shock waves, in Proceedings of the IEEE International Conference on Oxide Materials for Electronic Engineering, September 3–7, Lviv, 2012
6.
go back to reference D. Kharchenko, V. Kharchenko, I. Lysenko, Pattern selection processes and noise induced pattern-forming transitions in periodic systems with transient dynamics. Central Eur. J. Phys. 9, 698–709 (2011)CrossRef D. Kharchenko, V. Kharchenko, I. Lysenko, Pattern selection processes and noise induced pattern-forming transitions in periodic systems with transient dynamics. Central Eur. J. Phys. 9, 698–709 (2011)CrossRef
7.
go back to reference P. Maruschak, I. Zakiev, V. Mocharsky, Y. Nikiforov, Experimental study of the surface of steel 15Kh13MF after the nanosecond laser shock processing. Solid State Phenom. 200, 60–65 (2013)CrossRef P. Maruschak, I. Zakiev, V. Mocharsky, Y. Nikiforov, Experimental study of the surface of steel 15Kh13MF after the nanosecond laser shock processing. Solid State Phenom. 200, 60–65 (2013)CrossRef
8.
go back to reference P.O. Maruschak, I.B. Okipnyi, Poberezhnyi L. Ya, E.V. Maruschak, Study of heat-resistant steel strain hardening by indentation. Metallurgist 56, 946–951 (2012)CrossRef P.O. Maruschak, I.B. Okipnyi, Poberezhnyi L. Ya, E.V. Maruschak, Study of heat-resistant steel strain hardening by indentation. Metallurgist 56, 946–951 (2012)CrossRef
9.
go back to reference P.V. Yasniy, I.B. Okipnyi, P.O. Maruschak, R.T. Bishchak, A.P. Sorochak, Toughness and failure of heat resistant steel before and after hydrogenation. Theor. Appl. Fract. Mech. 56, 63–67 (2011)CrossRef P.V. Yasniy, I.B. Okipnyi, P.O. Maruschak, R.T. Bishchak, A.P. Sorochak, Toughness and failure of heat resistant steel before and after hydrogenation. Theor. Appl. Fract. Mech. 56, 63–67 (2011)CrossRef
10.
go back to reference I. Lytvynenko, P. Maruschak, A. Menou, A, Using mathematical model of cyclic random process for diagnostics of nanotitanium surface condition after high-energy treatment, in Proceedings International Symposium on Operational Research and Applications, May 09–10, Marrakech, Morocco, 2013 I. Lytvynenko, P. Maruschak, A. Menou, A, Using mathematical model of cyclic random process for diagnostics of nanotitanium surface condition after high-energy treatment, in Proceedings International Symposium on Operational Research and Applications, May 09–10, Marrakech, Morocco, 2013
11.
go back to reference P. Yasnii, P. Marushchak, Yu. Nikiforov, V. Hlado, B. Kovalyuk, Influence of laser shock-wave treatment on the impact toughness of heat-resistant steels. Mater. Sci. 46, 425–429 (2010)CrossRef P. Yasnii, P. Marushchak, Yu. Nikiforov, V. Hlado, B. Kovalyuk, Influence of laser shock-wave treatment on the impact toughness of heat-resistant steels. Mater. Sci. 46, 425–429 (2010)CrossRef
12.
go back to reference W.C. Oliver, G.M. Pharr, An improved technique for determining hardness and elastic modulus using load and displacement sensing indentation experiments. J. Mater. Res. 7, 1564–1583 (1992)CrossRef W.C. Oliver, G.M. Pharr, An improved technique for determining hardness and elastic modulus using load and displacement sensing indentation experiments. J. Mater. Res. 7, 1564–1583 (1992)CrossRef
13.
go back to reference S. Kotrechko, N. Stetsenko, S. Shevchenko, Effect of texture smearing on the anisotropy of cleavage-stress of metals and alloys. Theor. Appl. Fract. Mech. 42, 89–98 (2004)CrossRef S. Kotrechko, N. Stetsenko, S. Shevchenko, Effect of texture smearing on the anisotropy of cleavage-stress of metals and alloys. Theor. Appl. Fract. Mech. 42, 89–98 (2004)CrossRef
14.
go back to reference V.E. Panin, Synergetic principles of physical mesomechanics. Theor. Appl. Fract. Mech. 37, 261–298 (2001)CrossRef V.E. Panin, Synergetic principles of physical mesomechanics. Theor. Appl. Fract. Mech. 37, 261–298 (2001)CrossRef
15.
go back to reference A. Pineau, Modeling ductile to brittle fracture transition in steels - micromechanical and physical challenges. Int. J. Fract. 150, 129–156 (2008)CrossRef A. Pineau, Modeling ductile to brittle fracture transition in steels - micromechanical and physical challenges. Int. J. Fract. 150, 129–156 (2008)CrossRef
16.
go back to reference J.R. Greer, De J.T.M. Hosson, Plasticity in small-sized metallic systems: Intrinsic versus extrinsic size effect. Prog. Mater. Sci. 56, 654–724 (2011)CrossRef J.R. Greer, De J.T.M. Hosson, Plasticity in small-sized metallic systems: Intrinsic versus extrinsic size effect. Prog. Mater. Sci. 56, 654–724 (2011)CrossRef
17.
go back to reference L.B. Zuev, V.I. Danilov, Plastic deformation modelled as a self-excited wave process at the meso- and macro-level. Theor. Appl. Fract. Mech. 30, 175–184 (1998)CrossRef L.B. Zuev, V.I. Danilov, Plastic deformation modelled as a self-excited wave process at the meso- and macro-level. Theor. Appl. Fract. Mech. 30, 175–184 (1998)CrossRef
18.
go back to reference O. Diard, S. Leclerq, G. Rousselier, G. Cailletaud, Evaluation of finite element based analysis of 3D multicrystalline aggregates plasticity: application to crystal plasticity model identification and the study of stress and strain fields near grain boundaries. Int. J. Plast. 17, 537–563 (2005) O. Diard, S. Leclerq, G. Rousselier, G. Cailletaud, Evaluation of finite element based analysis of 3D multicrystalline aggregates plasticity: application to crystal plasticity model identification and the study of stress and strain fields near grain boundaries. Int. J. Plast. 17, 537–563 (2005)
19.
go back to reference O.I. Cherepanov, I.Y. Smolin, Y.P. Stefanov, P.V. Makarov, Investigation of influence of internal structure of heterogeneous materials on plastic flow and fracture. Comput. Mater. Sci. 16, 25–31 (1999)CrossRef O.I. Cherepanov, I.Y. Smolin, Y.P. Stefanov, P.V. Makarov, Investigation of influence of internal structure of heterogeneous materials on plastic flow and fracture. Comput. Mater. Sci. 16, 25–31 (1999)CrossRef
20.
go back to reference S.S. Wang, J.F. Yau, H.T. Corten, A mixed mode crack analysis of rectilinear anisotropic solids using conservation laws of elasticity. Int. J. Fract. 16, 247–259 (1980)CrossRef S.S. Wang, J.F. Yau, H.T. Corten, A mixed mode crack analysis of rectilinear anisotropic solids using conservation laws of elasticity. Int. J. Fract. 16, 247–259 (1980)CrossRef
21.
go back to reference M. Chausov, P. Maruschak, A. Pylypenko, F. Sergejev, O. Student, Effect of high-force impulse loads on the modification of mechanical properties of heat-resistant steel after service. Estonian J. Eng. 18, 251–258 (2012)CrossRef M. Chausov, P. Maruschak, A. Pylypenko, F. Sergejev, O. Student, Effect of high-force impulse loads on the modification of mechanical properties of heat-resistant steel after service. Estonian J. Eng. 18, 251–258 (2012)CrossRef
22.
go back to reference P. Maruschak, D. Baran, V. Gliha, A multiscale approach to deformation and fracture of heat-resistant steel under static and cyclic loading. Medžiagotyra 19, 29–33 (2013) P. Maruschak, D. Baran, V. Gliha, A multiscale approach to deformation and fracture of heat-resistant steel under static and cyclic loading. Medžiagotyra 19, 29–33 (2013)
23.
go back to reference A.A. Zisman, V.V. Rybin, Mesoscopic stress field arising from the grain interaction in plastically deformed polycrystals. Acta Mater. 46, 457–464 (1998)CrossRef A.A. Zisman, V.V. Rybin, Mesoscopic stress field arising from the grain interaction in plastically deformed polycrystals. Acta Mater. 46, 457–464 (1998)CrossRef
24.
go back to reference V.E. Panin, Surface layers as synergetic activator of plastic yielding of loaded solid. Met. Sci. and Heat Treat 47, 312–318 (2005)CrossRef V.E. Panin, Surface layers as synergetic activator of plastic yielding of loaded solid. Met. Sci. and Heat Treat 47, 312–318 (2005)CrossRef
Metadata
Title
Fracture Mechanism Analysis of the Heat-Resistant Steel 15Kh2MFA(II) After Laser Shock-Wave Processing
Authors
I. B. Okipnyi
P. O. Maruschak
V. I. Zakiev
V. S. Mocharskyi
Publication date
01-10-2014
Publisher
Springer US
Published in
Journal of Failure Analysis and Prevention / Issue 5/2014
Print ISSN: 1547-7029
Electronic ISSN: 1864-1245
DOI
https://doi.org/10.1007/s11668-014-9869-4

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