AbstractLaser shock peening (LSP) is an innovative surface treatment method, which has been shown to greatly improve the fatigue life of many metallic components. This work investigates surface integrity of TC17 titanium alloy treated by LSP with innovative square laser spot. Nd: glass laser with duration of 30 ns and spot size of 4 mm×4 mm is applied. The surface morphology and surface residual stress of the TC17 titanium alloy, treated with varying peening parameters such as laser power density and overlapping ratio, have been studied in detail. The results show that laser pulse energy greatly influences surface morphology and surface residual stress around single-spot treated areas, and compressive residual stresses are saturated as lase...
Laser peening is a good candidate for the surface treatment industry because of its localized operat...
Laser peening is a novel surface treatment process that generates deep compressive residual stresses...
Ti-17 titanium alloy was treated by laser shock processing (LSP) and the high-frequency fatigue prop...
AbstractLaser shock peening (LSP) is an innovative surface treatment method, which has been shown to...
Laser peening is an innovative surface treatment technique, and can significantly improve the mechan...
Laser peening offers potential advantages over conventional peen technologies in terms of the depth ...
Abstract: Laser peening offers potential advantages over conventional peen technologies in terms of ...
Laser shock peening (LSP), an innovative surface treatment technique, generates compressive residual...
To study the performance and microstructure of TC17 thin-walled parts in shock wave and its reflecti...
International audienceThe current research proposes multiple laser shock peening without coating (LS...
The effects of laser shock processing (LSP) on the fatigue crack properties of Ti-17 titanium alloy ...
Laser peening is a novel surface treatment technique for improving the mechanical properties of meta...
Owing to their good mechanical properties, titanium based alloys are used for machine parts and devi...
Laser shock peening (LSP) induces an irregular topography on the treated metal surface, thereby redu...
Laser peening has recently emerged as a useful technique to overcome detrimental effects associated ...
Laser peening is a good candidate for the surface treatment industry because of its localized operat...
Laser peening is a novel surface treatment process that generates deep compressive residual stresses...
Ti-17 titanium alloy was treated by laser shock processing (LSP) and the high-frequency fatigue prop...
AbstractLaser shock peening (LSP) is an innovative surface treatment method, which has been shown to...
Laser peening is an innovative surface treatment technique, and can significantly improve the mechan...
Laser peening offers potential advantages over conventional peen technologies in terms of the depth ...
Abstract: Laser peening offers potential advantages over conventional peen technologies in terms of ...
Laser shock peening (LSP), an innovative surface treatment technique, generates compressive residual...
To study the performance and microstructure of TC17 thin-walled parts in shock wave and its reflecti...
International audienceThe current research proposes multiple laser shock peening without coating (LS...
The effects of laser shock processing (LSP) on the fatigue crack properties of Ti-17 titanium alloy ...
Laser peening is a novel surface treatment technique for improving the mechanical properties of meta...
Owing to their good mechanical properties, titanium based alloys are used for machine parts and devi...
Laser shock peening (LSP) induces an irregular topography on the treated metal surface, thereby redu...
Laser peening has recently emerged as a useful technique to overcome detrimental effects associated ...
Laser peening is a good candidate for the surface treatment industry because of its localized operat...
Laser peening is a novel surface treatment process that generates deep compressive residual stresses...
Ti-17 titanium alloy was treated by laser shock processing (LSP) and the high-frequency fatigue prop...