Laser shock peening is a well-known technology able to enhance the fatigue life of mechanical components by means of the introduction of residual stresses on their surface. These stresses are induced by means of the recoil pressure caused by the abrupt expansion, in a confining medium, of a laser-vaporized coating layer. If high power densities are used the recoil pressure can be high enough to induce compressive residual stresses on the target surface and to modify its mechanical properties. These mechanical properties can be predicted if the recoil pressure of the ablating layer is determined. In this paper the influence of the laser pulse shape on the recoil pressure is determined by means of a proper modeling of the whole process and the difference between "cold" and "warm" laser shock peening is pointed out.

Laser shock peening and warm laser shock peening: process modeling and pulse shape influenceHigh-Power Laser Materials Processing: Lasers, Beam Delivery, Diagnostics, and Applications II / Alessandro, F., Orazi, L., Cuccolini, G., Alessandro, A.. - ELETTRONICO. - 8603:(2013), pp. 86030G-86030G-8. (Conference on High-Power Laser Materials Processing - Lasers, Beam Delivery, Diagnostics, and Applications II San Francisco, CA, usa FEB 05-07, 2013) [10.1117/12.2007393].

Laser shock peening and warm laser shock peening: process modeling and pulse shape influenceHigh-Power Laser Materials Processing: Lasers, Beam Delivery, Diagnostics, and Applications II

ORAZI, Leonardo;CUCCOLINI, Gabriele;
2013

Abstract

Laser shock peening is a well-known technology able to enhance the fatigue life of mechanical components by means of the introduction of residual stresses on their surface. These stresses are induced by means of the recoil pressure caused by the abrupt expansion, in a confining medium, of a laser-vaporized coating layer. If high power densities are used the recoil pressure can be high enough to induce compressive residual stresses on the target surface and to modify its mechanical properties. These mechanical properties can be predicted if the recoil pressure of the ablating layer is determined. In this paper the influence of the laser pulse shape on the recoil pressure is determined by means of a proper modeling of the whole process and the difference between "cold" and "warm" laser shock peening is pointed out.
2013
Inglese
Conference on High-Power Laser Materials Processing - Lasers, Beam Delivery, Diagnostics, and Applications II
San Francisco, CA, usa
FEB 05-07, 2013
High-Power Laser Materials Processing: Lasers, Beam Delivery, Diagnostics, and Applications IIHigh-Power Laser Materials Processing: Lasers, Beam Delivery, Diagnostics, and Applications II
proceedings.spiedigitallibrary.org/proceeding.aspx?articleid=1655878
8603
86030G
86030G-8
9780819493729
SPIE-INT SOC OPTICAL ENGINEERING
STATI UNITI D'AMERICA
1000 20TH ST, PO BOX 10, BELLINGHAM, WA 98227-0010 USA
Internazionale
Laser peening, residual stress, simulation
Alessandro, Fortunato; Orazi, Leonardo; Cuccolini, Gabriele; Alessandro, Ascari
Atti di CONVEGNO::Relazione in Atti di Convegno
273
4
Laser shock peening and warm laser shock peening: process modeling and pulse shape influenceHigh-Power Laser Materials Processing: Lasers, Beam Delivery, Diagnostics, and Applications II / Alessandro, F., Orazi, L., Cuccolini, G., Alessandro, A.. - ELETTRONICO. - 8603:(2013), pp. 86030G-86030G-8. (Conference on High-Power Laser Materials Processing - Lasers, Beam Delivery, Diagnostics, and Applications II San Francisco, CA, usa FEB 05-07, 2013) [10.1117/12.2007393].
none
info:eu-repo/semantics/conferenceObject
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/983326
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