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Results 1 to 25 of 131

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Study of adhesion of PROTAL® copper coating of Al 2017 using the laser shock adhesion test (LASAT)BARRADAS, S; JEANDIN, M; BOLIS, C et al.Journal of materials science. 2004, Vol 39, Num 8, pp 2707-2716, issn 0022-2461, 10 p.Article

Laser-induced shock compression of copper: Orientation and pressure decay effectsSCHNEIDER, M. S; KAD, B. K; GREGORI, F et al.Metallurgical and materials transactions. A, Physical metallurgy and materials science. 2004, Vol 35, Num 9, pp 2633-2646, issn 1073-5623, 14 p.Conference Paper

Multiple spalling of aluminum subjected to a picosecond stress pulseZHU, W. H; YOSHIDA, M; TAMURA, H et al.Journal of materials science letters. 2001, Vol 20, Num 10, pp 961-963, issn 0261-8028Article

Minimum laser energy computation of sheet metal deformation caused by laser shock peening and its experimentYANG CHAOJUN; ZHANG YONGKANG; ZHOU JIANZHONG et al.Proceedings of SPIE, the International Society for Optical Engineering. 2005, pp 60281O.1-60281O.8, issn 0277-786X, isbn 0-8194-6059-1, 1VolConference Paper

Laser shock peening improves fatigue life of lighweight alloysTRAN, Kim N; HILL, Michael R; HACKEL, Lloyd A et al.Welding journal. 2006, Vol 85, Num 10, pp 28-31, issn 0043-2296, 4 p.Article

Laser shock-induced spalling and fragmentation in vanadiumJARMAKANI, H; MADDOX, B; WEI, C. T et al.Acta materialia. 2010, Vol 58, Num 14, pp 4604-4628, issn 1359-6454, 25 p.Article

Fatigue behaviour of geometric features subjected to laser shock peening: Experiments and modellingACHINTHA, M; NOWELL, D; FUFARI, D et al.International journal of fatigue. 2014, Vol 62, pp 171-179, issn 0142-1123, 9 p.Conference Paper

WC nano-particle surface injection via laser shock peening onto 5A06 aluminum alloyLIANG LU; TING HUANG; MINLIN ZHONG et al.Surface & coatings technology. 2012, Vol 206, Num 22, pp 4525-4530, issn 0257-8972, 6 p.Article

Reaction in Ni―A1 laminates by laser-shock compression and spallingWEI, C. T; MADDOX, B. R; STOVE, A. K et al.Acta materialia. 2011, Vol 59, Num 13, pp 5276-5287, issn 1359-6454, 12 p.Article

Void growth by dislocation emissionLUBARDA, V. A; SCHNEIDER, M. S; KALANTAR, D. H et al.Acta materialia. 2004, Vol 52, Num 6, pp 1397-1408, issn 1359-6454, 12 p.Article

Grenaillage de précontrointe et choc laser dons l'industrie aéronautique = Shot peening and lasershot peening in the aircraft industryLE GUERNIC, Yves.Surfaces (Paris). 2003, Num 320, pp 59-62, issn 0585-9840, 4 p.Article

Healing fatigue damage by laser shock peening for copper filmLIU, Xiao-Dong; SHANG, De-Guang; MING LI et al.International journal of fatigue. 2013, Vol 54, pp 127-132, issn 0142-1123, 6 p.Article

Investigation on the non-homogeneity of residual stress field induced by laser shock peeningYONGXIANG HU; CHUMMING GONG; ZHENQIANG YAO et al.Surface & coatings technology. 2009, Vol 203, Num 23, pp 3503-3508, issn 0257-8972, 6 p.Article

Lasers pour usinage = Laser machiningBRASSART, Gilles.Techniques de l'ingénieur. Electronique. 1996, Vol 6, Num E4220, pp E4220.1-E4220.11, issn 0399-4120Article

Massive parallel laser shock peening : Simulation, analysis, and validationWARREN, A. W; GUO, Y. B; CHEN, S. C et al.International journal of fatigue. 2008, Vol 30, Num 1, pp 188-197, issn 0142-1123, 10 p.Article

Overlapping rate effect on laser shock processing of 1045 steel by small spots with Nd:YAG pulsed laserYONGXIANG HU; ZHENQIANG YAO.Surface & coatings technology. 2008, Vol 202, Num 8, pp 1517-1525, issn 0257-8972, 9 p.Article

Deformation and fracture in laser-shocked NiAl single crystals and bicrystalsPERALTA, P; SWIFT, D; LOOMIS, E et al.Metallurgical and materials transactions. A, Physical metallurgy and materials science. 2005, Vol 36, Num 6, pp 1459-1469, issn 1073-5623, 11 p.Article

Deformation Substructures and Their Transitions in Laser Shock-Compressed Copper-Aluminum AlloysMEYERS, M. A; SCHNEIDER, M. S; JARMAKANI, H et al.Metallurgical and materials transactions. A, Physical metallurgy and materials science. 2008, Vol 39, Num 2, pp 304-321, issn 1073-5623, 18 p.Article

Influence of thermal and mechanical surface modifications induced by laser shock processing on the initiation of corrosion pits in 316L stainless steelPEYRE, Patrice; CARBONI, C; FORGET, P et al.Journal of materials science. 2007, Vol 42, Num 16, pp 6866-6877, issn 0022-2461, 12 p.Article

Dislocation behavior in silicon crystal induced by laser shock peening : A multiscale simulation approachCHENG, G. J; SHEHADEH, M. A.Scripta materialia. 2005, Vol 53, Num 9, pp 1013-1018, issn 1359-6462, 6 p.Article

Characterization of ultrasonically peened and laser-shock peened surface layers of AISI 321 stainless steelMORDYUK, B. N; MILMAN, Yu. V; IEFIMOV, M. O et al.Surface & coatings technology. 2008, Vol 202, Num 19, pp 4875-4883, issn 0257-8972, 9 p.Article

Vicinage of the laser beam impact zone in rocksHLAVAC, Libor M; JANCAREK, Alexandr; KUSNEROVA, Milena et al.SPIE proceedings series. 2004, pp 372-375, isbn 0-8194-5368-4, 4 p.Conference Paper

Which powders for cold spray?JEANDIN, M; ROLLAND, G; DESCURNINGES, L. L et al.Surface engineering. 2014, Vol 30, Num 5, pp 291-298, issn 0267-0844, 8 p.Article

Eigenstrain modelling of residual stress generated by arrays of laser shock peening shots and determination of the complete stress field using limited strain measurementsACHINTHA, M; NOWELL, D; SHAPIRO, K et al.Surface & coatings technology. 2013, Vol 216, pp 68-77, issn 0257-8972, 10 p.Article

On the effect of deep-rolling and laser-peening on the \stress-controlled low- and high-cycle fatigue behavior of Ti―6Al―4V at elevated temperatures up to 550 °CALTENBERGER, Igor; NALLA, Ravi K; SANO, Yuji et al.International journal of fatigue. 2012, Vol 44, pp 292-302, issn 0142-1123, 11 p.Article

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