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Erschienen in: Journal of Engineering Thermophysics 3/2023

01.09.2023

Modeling of Time Pressure Profile on Sample Surface during Laser Hardening of Material

verfasst von: K. E. Ulybyshev, V. V. Likhanskii, T. N. Aliev, V. G. Zborovskii, N. N. Elkin, O. V. Khoruzhii

Erschienen in: Journal of Engineering Thermophysics | Ausgabe 3/2023

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Abstract

Laser shock hardening consists in the action on a sample of a pressure pulse generated by the plasma of the sample surface layer vaporized by short high-energy laser pulses. To model the change in the properties of the material under the action of pulsed mechanical stresses, it is necessary to know the space-time dependence of the pressure acting on the sample subject to the parameters of the laser pulse and the properties of the evaporated material. This paper presents a model and calculation of the time dependence of the pressure acting on a sample as a result of evaporation of the absorbing material and the development of plasma optical breakdown.

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Literatur
1.
Zurück zum Zitat Popov, V.O., Smirnov, S.N., and Chesnokova, T.G., Laser Hardening and Modification of Mechanical Engineering Parts: Achievements and Development Prospects, Ritm Mashinostr., no. 1, 2021, pp. 30–33. Popov, V.O., Smirnov, S.N., and Chesnokova, T.G., Laser Hardening and Modification of Mechanical Engineering Parts: Achievements and Development Prospects, Ritm Mashinostr., no. 1, 2021, pp. 30–33.
2.
Zurück zum Zitat Peyre, P., Fabboro, R., Merrien, R., and Lieurade, H.P., Laser Shock Processing of Aluminum Alloys. Application to High Cycle Fatigue Behavior, Mat. Sci. Engin., A210, 1996, pp 102–113.CrossRef Peyre, P., Fabboro, R., Merrien, R., and Lieurade, H.P., Laser Shock Processing of Aluminum Alloys. Application to High Cycle Fatigue Behavior, Mat. Sci. Engin., A210, 1996, pp 102–113.CrossRef
3.
Zurück zum Zitat Berthe, L., Sollier, A., Peyre, P., Carboni, C., Bartnicki, E., and Fabbro, R., Physics of Shock-Wave Generation by Laser-Plasma in Water Confinement Regime, Conf.: High-Power Laser Ablation III—High-Power Laser Ablation, Santa Fe, NM, United States, 2000. Berthe, L., Sollier, A., Peyre, P., Carboni, C., Bartnicki, E., and Fabbro, R., Physics of Shock-Wave Generation by Laser-Plasma in Water Confinement Regime, Conf.: High-Power Laser Ablation III—High-Power Laser Ablation, Santa Fe, NM, United States, 2000.
4.
Zurück zum Zitat Golant, E.V., Zhilinskii, A.P., and Sakharov, E.I. Osnovy fiziki plazmy (The Basics of Plasma Physics), Moscow: Atomisdat, 1977. Golant, E.V., Zhilinskii, A.P., and Sakharov, E.I. Osnovy fiziki plazmy (The Basics of Plasma Physics), Moscow: Atomisdat, 1977.
5.
Zurück zum Zitat Zel’dovich, Ya.B. and Raizer, Yu.P., Fizika udarnykh voln i vysokotemperaturnykh gazodinamicheskikh yavlenii (Physics of Shock Waves and High Temperature Gas-Dynamic Phenomena), Moscow: Nauka, 1966. Zel’dovich, Ya.B. and Raizer, Yu.P., Fizika udarnykh voln i vysokotemperaturnykh gazodinamicheskikh yavlenii (Physics of Shock Waves and High Temperature Gas-Dynamic Phenomena), Moscow: Nauka, 1966.
6.
Zurück zum Zitat Babichev, A.P., Babushkina, N.A., Bratkovskii, A.M., et al., Fizicheskie velichiny: Spravochnik (Physical Values: Reference Book), Moscow: Energoatomisdat, 1991. Babichev, A.P., Babushkina, N.A., Bratkovskii, A.M., et al., Fizicheskie velichiny: Spravochnik (Physical Values: Reference Book), Moscow: Energoatomisdat, 1991.
7.
Zurück zum Zitat Lebo, I.G. and Tishkin, V.F., Issledovanie gidrodinamicheskoi neustoichivosti v zadachakh lazernogo termoyadernogo sinteza metodami matematicheskogo modelirovaniya (Investigation of Hydrodynamic Instability in Problems of Laser Thermonuclear Fusion Using Mathematical Modeling Methods), Moscow: Fizmatlit, 2006. Lebo, I.G. and Tishkin, V.F., Issledovanie gidrodinamicheskoi neustoichivosti v zadachakh lazernogo termoyadernogo sinteza metodami matematicheskogo modelirovaniya (Investigation of Hydrodynamic Instability in Problems of Laser Thermonuclear Fusion Using Mathematical Modeling Methods), Moscow: Fizmatlit, 2006.
8.
Zurück zum Zitat Morel, V., Bultel, A., and Chéron, B.G., The Critical Temperature of Aluminum, Int. J. Thermophys., 2009, vol. 30, pp. 1853–1863; DOI:10.1007/s10765-009-0671-6ADSCrossRef Morel, V., Bultel, A., and Chéron, B.G., The Critical Temperature of Aluminum, Int. J. Thermophys., 2009, vol. 30, pp. 1853–1863; DOI:10.1007/s10765-009-0671-6ADSCrossRef
9.
Zurück zum Zitat Gusev, I.V. and Mazhukin, V.I., Analysis of Non-Equilibrium Phenomena in Interaction of Laser Radiation with Metal Vapors, Mat. model., 1993, vol. 5, no. 11, pp. 3–32.MathSciNetMATH Gusev, I.V. and Mazhukin, V.I., Analysis of Non-Equilibrium Phenomena in Interaction of Laser Radiation with Metal Vapors, Mat. model., 1993, vol. 5, no. 11, pp. 3–32.MathSciNetMATH
10.
Zurück zum Zitat Basko, M.M., Fizicheskie osnovy inertsial’nogo termoyadernogo sinteza (Physical Backgrounds of Inertial Thermonuclear Fusion), Moscow: MIFI, 2009. Basko, M.M., Fizicheskie osnovy inertsial’nogo termoyadernogo sinteza (Physical Backgrounds of Inertial Thermonuclear Fusion), Moscow: MIFI, 2009.
11.
Zurück zum Zitat Ginzburg, V.L., Rasprostranenie elektromagnitnykh voln v plazme (Propagation of Electromagnetic Waves in Plasma), Moscow: Nauka, 1967. Ginzburg, V.L., Rasprostranenie elektromagnitnykh voln v plazme (Propagation of Electromagnetic Waves in Plasma), Moscow: Nauka, 1967.
Metadaten
Titel
Modeling of Time Pressure Profile on Sample Surface during Laser Hardening of Material
verfasst von
K. E. Ulybyshev
V. V. Likhanskii
T. N. Aliev
V. G. Zborovskii
N. N. Elkin
O. V. Khoruzhii
Publikationsdatum
01.09.2023
Verlag
Pleiades Publishing
Erschienen in
Journal of Engineering Thermophysics / Ausgabe 3/2023
Print ISSN: 1810-2328
Elektronische ISSN: 1990-5432
DOI
https://doi.org/10.1134/S1810232823030165

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