One of the established limitations of metal additive manufacturing (AM) methods, such as selective laser melting (SLM), is the resulting rough surface finish. Laser polishing is one method that can be used to achieve an improved surface finish on AM printed parts. This study is focused on the laser surface polishing of AM parts using CO2 laser beam irradiation. Despite the fact that several researchers have investigated the traditional abrasive polishing method, there is still a lack of information reporting on the laser surface polishing of metal parts. In this study, AM 316L stainless steel cylindrical samples were polished using CO2 laser beam irradiation in continuous wave (CW) working mode. Two design of experiment models were develope...
Poor surface quality represents an important issue that needs improvement for metal Additively Manu...
Post-processing of additively manufactured (AM) aluminium alloy parts via laser polishing (LP) is pa...
Laser polishing of various engineered materials such as glass, silica, steel, nickel and titanium al...
One of the established limitations of metal additive manufacturing (AM) methods, such as selective l...
One of the established limitations of metal additive manufacturing (AM) methods, such as selective l...
Lower surface quality of selective laser melting (SLM) manufactured parts remains to be a key shortc...
AbstractAdditive manufactured components require polishing to improve their inherently rough surface...
Selective Laser Melting (SLM) is an additive manufacturing method that is used to fabricate differen...
Additive manufacturing is a vanguard production technology that has contributed greatly to speed up ...
Among additive manufacturing (AM) techniques, Selective Laser Melting (SLM) is widely used to fabric...
In additive manufacturing (AM), the technology and processing parameters are key elements that deter...
Selective Laser Melting (SLM) is an additive manufacturing (AM) process which builds components thro...
In this work, the effects of re-melting parameters for postprocessing the surface texture of Additiv...
A 1.5-kW CO2 laser in pulsed mode at 3 kHz was used to investigate the effects of varied laser proce...
Selective Laser Melting (SLM) shows a big potential within additive manufacturing of metals. The co...
Poor surface quality represents an important issue that needs improvement for metal Additively Manu...
Post-processing of additively manufactured (AM) aluminium alloy parts via laser polishing (LP) is pa...
Laser polishing of various engineered materials such as glass, silica, steel, nickel and titanium al...
One of the established limitations of metal additive manufacturing (AM) methods, such as selective l...
One of the established limitations of metal additive manufacturing (AM) methods, such as selective l...
Lower surface quality of selective laser melting (SLM) manufactured parts remains to be a key shortc...
AbstractAdditive manufactured components require polishing to improve their inherently rough surface...
Selective Laser Melting (SLM) is an additive manufacturing method that is used to fabricate differen...
Additive manufacturing is a vanguard production technology that has contributed greatly to speed up ...
Among additive manufacturing (AM) techniques, Selective Laser Melting (SLM) is widely used to fabric...
In additive manufacturing (AM), the technology and processing parameters are key elements that deter...
Selective Laser Melting (SLM) is an additive manufacturing (AM) process which builds components thro...
In this work, the effects of re-melting parameters for postprocessing the surface texture of Additiv...
A 1.5-kW CO2 laser in pulsed mode at 3 kHz was used to investigate the effects of varied laser proce...
Selective Laser Melting (SLM) shows a big potential within additive manufacturing of metals. The co...
Poor surface quality represents an important issue that needs improvement for metal Additively Manu...
Post-processing of additively manufactured (AM) aluminium alloy parts via laser polishing (LP) is pa...
Laser polishing of various engineered materials such as glass, silica, steel, nickel and titanium al...