Laser repetitive pulse heating and melt pool formation at the surface
Author:
Publisher
Springer Science and Business Media LLC
Subject
Mechanical Engineering,Mechanics of Materials
Link
http://link.springer.com/content/pdf/10.1007/s12206-010-1208-4.pdf
Reference23 articles.
1. L.X. Yang, X.P. Peng and B.X. Wang, Numerical modeling and experimental investigation on the characteristics of molten pool during laser processing, Int. J. Heat Mass transfer, 44 (2001) 4465–4473.
2. Y. Zhang and A. Faghri, Vaporization, melting and heat conduction in the laser drilling process, Int. J. of Heat and Mass Transfer, 42 (1999) 1775–1790.
3. S. Sarkar, P. M. Raj, S. Chakraborty and P. Dutta, Threedimensional computational modeling of momentum, heat and mass transfer in a laser surface alloying process, Numerical Heat Transfer Part A, 42 (2002) 307–326.
4. P. M. Raj, S. Sarkar, S. Chakraborty and P. Dutta, Three-dimensional computational modeling of momentum, heat and mass transfer in laser surface alloying with distributed melting of alloying element, Int. J. Numerical Methods for Heat and Fluid Flow, 11(6) (2001) 576–599.
5. G. Tani, L. Tomesani and G. Campana; Prediction of melt geometry in laser cutting, Applied Surface Science, 208–209 (2003) 142–147.
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