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    Laser Shock Peening
  • Cao, Y., Shin, Y.C. and Wu, B., “A Parametric Study on Overlapping Laser Shock Peening of 4140 Steel via Modeling and Experiments”, Trans. of the ASME, Journal of Manufacturing Science and Engineering, Volume 132,  Issue 6, December 2010, 061010.  doi:10.1115/1.4002850
  • Cao, Y. and Shin, Y.C., “Shock Wave Propagation and Spallation Study in Laser Shock Peening”, Trans. of the ASME, Journal of Engineering Materials and Technology, Vol. 132, Issue 4, 041005, October 2010. doi:10.1115/1.4002048
  • Wu, B., and Shin, Y.C., "Two-Dimensional Hydrodynamic Model for Pressures Induced Near the Coating-water Interface during Laser Shock Peening”, J. of Applied Physics. 101, 103514, 2007.
  • Wu, B. and Shin, Y.C., “From Incident Laser Pulse to Residual Stress: A Complete and Self-closed Model for Laser Shock Peening”, Trans. of the ASME,Journal of Manufacturing Science and Engineering, Vol. 129, No.1, February, pp. 117-125, 2007.
  • Wu, B., and Shin, Y.C., "A Self-Closed One-Dimensional Hydrodynamic Model for Pressures Induced Near the Coating-water Interface during Laser Shock Peening”, J. of Applied Physics, 101, No. 2, 023510, 2007.
  • Wu, B. and Shin, Y.C., “Laser Pulse Transmission through the Water Breakdown Plasma in Laser Shock Peening”, Applied Physics Letters, 88, 041116, 2006.
  • Wu, B. and Shin, Y.C., “Thermal Modeling of Nanosecond Laser Ablation with Vapor Plasma Formation”,  Journal of Applied Physics, Vol.99, 2006.
  • Wu, B. and Shin, Y.C., “A Self-closed Thermal Model for Laser Shock Peening under the Water Confinement Regime Configuration and Comparisons to Experiments”, Journal of Applied Physics, Vol. 97, Issue 11, pp. 113517-1-11, 2005.