Local laser heating treatment using a defocussed laser beam was applied to thesurface of 2-mm-thick AA2024-T3 sheets. Two different treatment designs—namely, lines and circles—as well as the positioning and number of treatmentswere investigated regarding their potential to retard the propagation of through-thickness fatigue cracks. The highest fatigue crack growth life extension of 285%was achieved by the application of four laser heating lines or two circles on eachspecimen side. The induced compressive residual stress field through the LH pro-cess is primarily responsible for an improvement in fatigue crack growth life. Anemphasis was placed on investigating the effect of the treatment on the possiblereduction of tensile and fatigue stren...
Laser peening introduces compressive residual stresses on the surfaces of various materials and is e...
International audienceMechanical fastening is still one of the main methods used for joining compone...
Selective Laser Melting is an additive manufacturing technology capable of producing relatively dens...
This work analyzes the effect of surface-localized laser heating treatment on the fatigue crack grow...
AbstractResidual stresses introduced by laser heating can be used to improve the damage tolerance be...
Among the third-generation Al-Li alloys, AA2198 stands out for its lower density, formability and in...
The goal of the present study is to understand the effects of laser shock peening (LSP)-induced resi...
AbstractThe paper contains results of a study aimed at an experimental evaluation of fatigue resista...
The aim of the current work was to study the effect of laser shock peening (LSP) when applied to 2‐m...
This paper reports the effectiveness of residual stress fields induced by laser shock peening (LSP) ...
Laser peening without coating (LPwC) is a well-known technique to improve high-cycle fatigue propert...
In comparison to conventional heat treatments, laser beam hardening has some specific advantages. As...
This paper investigates the fatigue strength of plain and notched specimens produced via laser powde...
Residual stresses have in the past been introduced to manipulate growth rates and shapes of cracks u...
Laser hardening brings a great increase in part life and it is an industry-proven process, typically...
Laser peening introduces compressive residual stresses on the surfaces of various materials and is e...
International audienceMechanical fastening is still one of the main methods used for joining compone...
Selective Laser Melting is an additive manufacturing technology capable of producing relatively dens...
This work analyzes the effect of surface-localized laser heating treatment on the fatigue crack grow...
AbstractResidual stresses introduced by laser heating can be used to improve the damage tolerance be...
Among the third-generation Al-Li alloys, AA2198 stands out for its lower density, formability and in...
The goal of the present study is to understand the effects of laser shock peening (LSP)-induced resi...
AbstractThe paper contains results of a study aimed at an experimental evaluation of fatigue resista...
The aim of the current work was to study the effect of laser shock peening (LSP) when applied to 2‐m...
This paper reports the effectiveness of residual stress fields induced by laser shock peening (LSP) ...
Laser peening without coating (LPwC) is a well-known technique to improve high-cycle fatigue propert...
In comparison to conventional heat treatments, laser beam hardening has some specific advantages. As...
This paper investigates the fatigue strength of plain and notched specimens produced via laser powde...
Residual stresses have in the past been introduced to manipulate growth rates and shapes of cracks u...
Laser hardening brings a great increase in part life and it is an industry-proven process, typically...
Laser peening introduces compressive residual stresses on the surfaces of various materials and is e...
International audienceMechanical fastening is still one of the main methods used for joining compone...
Selective Laser Melting is an additive manufacturing technology capable of producing relatively dens...