AbstractAdvanced high-strength materials offer a huge application potential within highly stressed components in various industrial areas. But their machinability is still limited when applying established and conventionally available technologies. Aiming at the reduction of process forces, increased material removal rates and longer tool service life without application of cooling lubricants the Fraunhofer IPT has developed a novel process concept for laser-assisted milling with local laser-induced material plastification before cutting. The following paper comprises the novel approach as well as first machining results on nickel-base alloy Inconel 718
Generally, superalloys have superior strength and toughness compared to conventional engineering mat...
AbstractThe Fraunhofer IPT recently developed a new hybrid laser-assisted shearing process which ena...
Laser-assisted machining has been considered as an alternative for difficult-to-machine materials su...
AbstractAdvanced high-strength materials offer a huge application potential within highly stressed c...
AbstractAdvanced high-strength materials offer a huge application potential within highly stressed c...
The Fraunhofer IPT has developed and realized a novel approach for laser-assisted milling of difficu...
Advanced high-strength materials offer a huge application potential within highly stressed component...
AbstractLaser Assisted Milling (LAM) is a hybrid machining technology which combines conventional mi...
Laser-assisted machining operations, based on the use of laser beam energy enhancing the cutting pro...
AbstractHigh strength alloys such as nickel and titanium and advanced engineering materials such as ...
Based on previous articles about laser-assisted milling this contribution contains first process res...
AbstractToday's lightweight components have to withstand increasing mechanical and thermal loads. Th...
This study shows experimental and numerical preliminary approaches of laser assisted machining. The ...
AbstractWithin the sheet metal working industry the demand for thinner sheet materials with very hig...
A higher strength and heat resistance are increasingly demanded from the advanced engineering materi...
Generally, superalloys have superior strength and toughness compared to conventional engineering mat...
AbstractThe Fraunhofer IPT recently developed a new hybrid laser-assisted shearing process which ena...
Laser-assisted machining has been considered as an alternative for difficult-to-machine materials su...
AbstractAdvanced high-strength materials offer a huge application potential within highly stressed c...
AbstractAdvanced high-strength materials offer a huge application potential within highly stressed c...
The Fraunhofer IPT has developed and realized a novel approach for laser-assisted milling of difficu...
Advanced high-strength materials offer a huge application potential within highly stressed component...
AbstractLaser Assisted Milling (LAM) is a hybrid machining technology which combines conventional mi...
Laser-assisted machining operations, based on the use of laser beam energy enhancing the cutting pro...
AbstractHigh strength alloys such as nickel and titanium and advanced engineering materials such as ...
Based on previous articles about laser-assisted milling this contribution contains first process res...
AbstractToday's lightweight components have to withstand increasing mechanical and thermal loads. Th...
This study shows experimental and numerical preliminary approaches of laser assisted machining. The ...
AbstractWithin the sheet metal working industry the demand for thinner sheet materials with very hig...
A higher strength and heat resistance are increasingly demanded from the advanced engineering materi...
Generally, superalloys have superior strength and toughness compared to conventional engineering mat...
AbstractThe Fraunhofer IPT recently developed a new hybrid laser-assisted shearing process which ena...
Laser-assisted machining has been considered as an alternative for difficult-to-machine materials su...