Targeted Alternation in Properties of Solid Amorphous-Nanocrystalline Material in Exposing to Nanosecond Laser Radiation

Article Preview

Abstract:

One of the most important purposes of materials science is the ability to govern the physical properties of materials characterized by different structures. The strength properties of nanostructured metal alloys do not always meet the exploitation requirements. The set of properties of such materials is stable within narrow limits: temperature, mechanical, and corrosion conditions. Traditional processing modes are ineffective for such materials. Attempts to use them often lead to the loss of unique physical and chemical properties. The most effective methods of processing such materials are associated with the use of laser radiation. The laser pulse has a number of features, including a complex effect on the surface layers of the material. Spot and short irradiation with high-energy rays can preserve the unique physical properties of samples as a whole and improve strength indicators without destroying the structure of the material as a whole.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

469-474

Citation:

Online since:

August 2021

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2021 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] D.I. Ryzhonkov, V.V. Levina, E.L. Dzidziguri, Nanomaterials, BINOM, Moscow, (2012).

Google Scholar

[2] J. Dai, M.L. Bruening, Catalytic nanoparticles formed by reduction of metal ions in multilayered polyelectrolyte films, Nano Letters. 2(5) (2002) 497-501.

DOI: 10.1021/nl025547l

Google Scholar

[3] V.A. Fedorov, I.V. Ushakov, Effect of annealing on the deformation and fracture of metallic glass under local loading, Technical Physics. 46(6) (2001) 673-676.

DOI: 10.1134/1.1379632

Google Scholar

[4] A.I. Gusev, Nanomaterials, Nanostructures, Nanotechnologies, Fizmatlit, Moscow, (2005).

Google Scholar

[5] V.A. Fedorov, I.V. Ushakov, I.E. Permyakova, Mechanical properties and crystallization of an annealed cobalt-based amorphous alloy, Metally. 3 (2004) 108-113.

Google Scholar

[6] H. Gleiter, Nanostructured materials: basic concepts and microstructure, Acta Materialia. 48(1) (2000) 1-29.

DOI: 10.1016/s1359-6454(99)00285-2

Google Scholar

[7] V.A. Fedorov, I.V. Ushakov, I.E. Permyakova, Deformation and fracture features of annealed metallic glass ribbons of a Co-Fe-Cr-Si system during microindentation, Bulletin of the Russian Academy of Sciences: Physics. 69(9) (2005) 1537-1542.

Google Scholar

[8] V.A. Fedorov, I.V. Ushakov, I.E. Permyakova, Mechanical properties and crystallization of an annealed cobalt-based amorphous alloy, Russian Metallurgy (Metally), 3 (2004) 293-297.

Google Scholar

[9] V.N. Shinkin, Springback coefficient of the main pipelines' steel large-diameter pipes under elastoplastic bending, CIS Iron and Steel Review. 14 (2017) 28-33.

DOI: 10.17580/cisisr.2017.02.06

Google Scholar

[10] V.N. Shinkin, A.P. Kolikov, Engineering calculations for processes involved in the production of large-diameter pipes by the SMS Meer technology, Metallurgist. 55(11-12) (2012) 833-840.

DOI: 10.1007/s11015-012-9510-2

Google Scholar

[11] V.N. Shinkin, Mathematical model of technological parameters' calculation of flanging press and the formation criterion of corrugation defect of steel sheet's edge, CIS Iron and Steel Review. 13 (2017) 44-47.

DOI: 10.17580/cisisr.2017.01.10

Google Scholar

[12] V.N. Shinkin, Simplified calculation of the bending torques of steel sheet and the roller reaction in a straightening machine, Steel in Translation. 47(10) (2017) 639-644.

DOI: 10.3103/s0967091217100072

Google Scholar

[13] A.E. Gvozdev, D.M. Levin, S.A. Golovin, The Role of Structural Imperfections in the Superplasticity of Heterophase Systems, Tula State University, Tula, (1997).

Google Scholar

[14] R.A. Andrievsky, A.V. Ragulya, Nanostructured Materials, Akademiya, Moscow, (2005).

Google Scholar

[15] I.V. Ushakov, V.A. Feodorov, I.J. Permyakova, Influence of etching and annealing on evolution of surface structure of metallic glass, Proceedings of SPIE -The International Society for Optical Engineering. 5400 (2004) 265-268.

DOI: 10.1117/12.555529

Google Scholar

[16] V.N. Shinkin, Failure of large-diameter steel pipe with rolling scabs, Steel in Translation. 47(6) (2017) 363-368.

DOI: 10.3103/s0967091217060109

Google Scholar

[17] V.N. Shinkin, Asymmetric three-roller sheet-bending systems in steel-pipe production, Steel in Translation. 47(4) (2017) 235-240.

DOI: 10.3103/s0967091217040106

Google Scholar

[18] V.N. Shinkin, Calculation of steel sheet's curvat.ure for its flattening in the eight-roller straightening machine, Chernye Metally. 2 (2017) 46-50.

Google Scholar

[19] V.N. Shinkin, Preliminary straightening of thick steel sheet in a seven-roller machine, Steel in Translation. 46(12) (2016) 836-840.

DOI: 10.3103/s0967091216120093

Google Scholar

[20] A.E. Kalabushkin, I.V. Ushakov, V.M. Polikarpov, Y.F. Titovets, Revealing of qualitative correlation between mechanical properties and structure of amorphous-nanocrystalline metallic alloy 82K3XCP by microindentation on substrates and x-ray powder diffraction, Proceedings of SPIE - The International Society for Optical Engineering. 6597 (2007) 65970P1-65970P6.

DOI: 10.1117/12.726763

Google Scholar

[21] I.V. Ushakov, Yu.V. Simonov, Formation of surface properties of VT18u titanium alloy by laser pulse treatment, Materials Today: Proceedings. 19 (2019) 2051-2055.

DOI: 10.1016/j.matpr.2019.07.072

Google Scholar

[22] V.N. Shinkin, Arithmetical method of calculation of power parameters of 2N-roller straightening machine under flattening of steel sheet, CIS Iron and Steel Review. 14 (2017) 22-27.

DOI: 10.17580/cisisr.2017.02.05

Google Scholar

[23] V.N. Shinkin, The mathematical model of the thick steel sheet flattening on the twelve-roller sheet-straightening machine. Message 1. Curvature of sheet, CIS Iron and Steel Review. 12 (2016) 37-40.

DOI: 10.17580/cisisr.2016.02.08

Google Scholar

[24] V.N. Shinkin, Calculation of technological parameters of O-forming press for manufacture of large-diameter steel pipes, CIS Iron and Steel Review. 13 (2017) 33-37.

DOI: 10.17580/cisisr.2017.01.07

Google Scholar

[25] V.N. Shinkin, Geometry of steel sheet in a seven-roller straightening machine, Steel in Translation. 46(11) (2016) 776-780.

DOI: 10.3103/s0967091216110115

Google Scholar

[26] I. Safronov, A. Ushakov, Effect of simultaneous improvement of plasticity and microhardness of an amorphous-nanocrystalline material based on Co, as a result of laser processing of nanosecond duration: submitted to Materials Today: Proceedings (2020).

DOI: 10.1016/j.matpr.2020.08.141

Google Scholar

[27] I.V. Ushakov, V.M. Polikarpov, Mechanical tests of thin strips of metal glass with indentors of various geometric shapes, Diagnostics of Materials. 69(7) (2007) 43-47.

Google Scholar

[28] I. Ushakov, Yu. Simonov, Alterations in the microhardness of a titanium alloy affected to a series of nanosecond laser pulses, MATEC Web of Conferences. 298 (2019) 1-7.

DOI: 10.1051/matecconf/201929800051

Google Scholar