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Ashish K. Shukla, Achyuth Kulkarni, Shalini Singh, et al. Advances in Material Research and Technology, Advanced Engineering of Materials Through Lasers 1 (2022) https://doi.org/10.1007/978-3-031-03830-3_1
Highly flexible fiber delivery of a high peak power nanosecond Nd:YAG laser beam for flexiscopic applications
Hamed Abbasi, Ferda Canbaz, Raphael Guzman, Philippe C. Cattin and Azhar Zam Biomedical Optics Express 12(1) 444 (2021) https://doi.org/10.1364/BOE.405825
Influence of Laser Peening With and Without Coating on the Surface Properties and Stress Corrosion Cracking Behavior of Laser-Welded 304 Stainless Steel
High spatial resolution, high energy synchrotron x-ray diffraction characterization of residual strains and stresses in laser shock peened Inconel 718SPF alloy
Amrinder S. Gill, Zhong Zhou, Ulrich Lienert, Jonathan Almer, David F. Lahrman, S. R. Mannava, Dong Qian and Vijay K. Vasudevan Journal of Applied Physics 111(8) (2012) https://doi.org/10.1063/1.3702890
Effect of laser shock processing on fatigue crack growth of duplex stainless steel
Laser shock processing: modeling of evaporation and pressure field developed in the laser-produced cavity
B. S. Yilbas, S. B. Mansoor and A. F. M. Arif The International Journal of Advanced Manufacturing Technology 42(3-4) 250 (2009) https://doi.org/10.1007/s00170-008-1601-7
Eigenstrain-based model for prediction of laser peening residual stresses in arbitrary three-dimensional bodies Part 1: Model description
Influence of thermal and mechanical surface modifications induced by laser shock processing on the initiation of corrosion pits in 316L stainless steel
Assessment of Tensile Residual Stress Mitigation in Alloy 22 Welds Due to Laser Peening
Adrian T. DeWald, Jon E. Rankin, Michael R. Hill, Matthew J. Lee and Hao-Lin Chen Journal of Engineering Materials and Technology 126(4) 465 (2004) https://doi.org/10.1115/1.1789957
Effect of laser shock processing on fatigue crack growth and fracture toughness of 6061-T6 aluminum alloy