Laser Shock Processing on Metal
Article dans une revue avec comité de lecture
Abstract
Since its invention in the late 1960s, and the pioneering work on metal strengthening in USA during the late 1970s, laser shock processing (LSP) has become a reliable surface treatment for improving the mechanical or corrosion resistance of metallic materials. Moreover, laser-induced shock waves can also be envisaged for the investigation of dense matter’s behavior—including phase transformations—under ultra-high strain rate loading (up to 107 s−1) using dedicated diagnostics (VISAR, etc.). This Special Issue on LSP aims at providing a rather exhaustive and up-to-date state of the art on LSP based upon the most recent research works. The following fields are covered in the seven selected papers: materials’ behavior and phase transformations under high strain rate (Amadou et al. [1]), new loading conditions with ultra-short pulses (Petronic et al. [2]) surface modifications induced by laser peening including recrystallization effects (Zhou et al. [3]) and warm laser peening (Huang et al. [4], Chen et al. [5]), and novel applications of LSP such as water droplet erosion resistance (Gujba et al. [6]) or impact spot welding (Liu et al. [7]). The wide variety of topics related to LSP highlights the extraordinary dynamism and enthusiasm of the growing international LSP community.
Files in this item
Related items
Showing items related by title, author, creator and subject.
-
Article dans une revue avec comité de lecturePEYRE, Patrice; BERTHE, Laurent; VIGNAL, Vincent; POPA, Ioana; BAUDIN, T. (IOP Publishing, 2012)Laser shock processing is now a recognized surface treatment for improving fatigue or corrosion behaviour of metallic materials through the generation of a compressive stress field. In turn, the analysis of shock wave ...
-
Article dans une revue avec comité de lecture
LAVISSE, Luc; BERGER, P.; KANJER, A.; OPTASANU, V.; GORNY, Cyril;
PEYRE, Patrice; FRANÇOIS, M.; MONTESIN, T.; MARCO DE LUCAS, M.C. (Elsevier, 2022-04)
We report the role of ultrasonic shot-peening (SP) and laser-shock peening (LSP) on the insertion of atmospheric nitrogen during high temperature oxidation of pure titanium and the improvement of its oxidation resistance. ... -
Advances in pantographic structures: design, manufacturing, models, experiments and image analyses Article dans une revue avec comité de lectureDELL’ISOLA, Francesco; SEPPECHER, Pierre; SPAGNUOLO, Mario; BARCHIESI, Emilio; HILD, François; LEKSZYCKI, Tomasz; GIORGIO, Ivan; PLACIDI, Luca; ANDREAUS, Ugo; CUOMO, Massimo; EUGSTER, Simon R.; PFAFF, Aron; HOSCHKE, Klaus; LANGKEMPER, Ralph; TURCO, Emilio; SARIKAYA, Rizacan; MISRA, Aviral; DE ANGELO, Michele; D’ANNIBALE, Francesco; BOUTERF, Amine; PINELLI, Xavier; MISRA, Anil; DESMORAT, Boris; PAWLIKOWSKI, Marek; DUPUY, Corinne; SCERRATO, Daria; PEYRE, Patrice; LAUDATO, Marco; MANZARI, Luca; GÖRANSSON, Peter; HESCH, Christian; HESCH, Sofia; FRANCIOSI, Patrick; DIRRENBERGER, Justin; MAURIN, Florian; VANGELATOS, Zacharias; GRIGOROPOULOS, Costas; MELISSINAKI, Vasileia; FARSARI, Maria; MULLER, Wolfgang; ABALI, Bilen Emek; LIEBOLD, Christian; GANZOSCH, Gregor; HARRISON, Philip; DROBNICKI, Rafał; IGUMNOV, Leonid; ALZAHRANI, Faris; HAYAT, Tasawar (Springer Verlag, 2019)In the last decade, the exotic properties of pantographic metamaterials have been investigated and different mathematical models (both discrete or continuous) have been introduced. In a previous publication, a large part ...
-
Article dans une revue avec comité de lectureBIDRON, G.; DOGHRI, Anis; MALOT, Thierry; FOURNIER-DIT-CHABERT, Florent; THOMAS, Marc; PEYRE, Patrice (Elsevier, 2020)In the present work, the repair of CM-247LC superalloy has been investigated by using a laser cladding process. Since this material is well known for its high hot-cracking susceptibility in Heat Affected Zone during welding, ...
-
Article dans une revue avec comité de lectureLAVISSE, Luc; KANJER, Armand; BERGER, P.; OPTASANU, V.; GORNY, Cyril;
PEYRE, Patrice; MONTESIN, T.; MARCO DE LUCAS, M.C. (Elsevier, 2020)
Improving the high temperature (HT) resistance of titanium alloys is currently a technological challenge for extending their use in aerospace engines. Ti-Beta-21S is a metastable β titanium alloy specifically designed for ...

