Physics and applications of laser-shock processing

R. Fabbro, Patrice Peyre, Laurent Berthe, Xavier Scherpereel

Journal of Laser Applications · 1998 · 401 citations · 24 references

Concepts

TL;DR

Laser‑shock processing generates high pressure in confined mode, with pressure controlled by laser intensity, pulse duration, wavelength, and target material, and it induces surface modifications such as residual compressive stresses that are useful for various applications. The article aims to define an optimized laser‑shock processing protocol and outline future trends of the technique.

Abstract

The first part of this article presents a review of the main process parameters controlling pressure generation in a confined mode. The effect of laser intensity, target material, laser pulse duration, and laser wavelength are, therefore, discussed. An optimized process can then be defined. The second part of this article deals with the surface modifications induced by laser-shock processing. The generation of residual compressive stresses is then highlighted. Finally, in the third part, the interest of laser-shock processing is discussed for several typical applications. A conclusion will present the future trends of this technique.

References

24