Laser melting of titanium material, e.g. Ti-6Al-4V, offers great potential in manufacturing automotive components, lightweight structures and medical implants. In order to achieve required mechanical properties of laser melted components quality of powder materials is essential. Unmelted powder is recycled and reused in a subsequent process. Due to repeated recycling it is suggested that powder material changes. In this paper aging processes of Ti-6Al-4V powder are studied. It was observed that powder particles coarsen and flowability increases. Comparing examined powder characteristics to bulk material properties it was noticed that there are significant effects of aged powder on laser melted components
LaserCUSING® is a selective laser melting (SLM) process that is capable of manufacturing parts by me...
The following report analyzes 316L stainless steel powder characteristics of new powder and powder t...
The additive manufacturing of titanium parts by laser metal deposition (LMD) offers a promising alte...
AbstractLaser melting of titanium material, e.g. Ti-6Al-4V, offers great potential in manufacturing ...
AbstractLaser melting of titanium material, e.g. Ti-6Al-4V, offers great potential in manufacturing ...
This paper considers the steps to be taken in investigating the effects of recycling Ti-6Al-4V pow...
This paper considers the steps to be taken in investigating the effects of recycling Ti-6Al-4V pow...
The technology of laser beam melting (LBM) has lately become a true option for series production of ...
This paper investigates the formation of process by-products during the laser processing of titanium...
Ti-6Al-4V alloy is characterised by having excellent mechanical properties and corrosion resistance ...
Ti-6Al-4V alloy is characterised by having excellent mechanical properties and corrosion resistance ...
This paper investigates the formation of process by-products during the laser processing of titanium...
In selective laser melting (SLM) heat diffusing from the melt pool promotes the growth of surface ox...
Additive manufacturing (AM) technology has enabled many industries to generate functional parts wit...
Additive manufacturing (AM) technology has enabled many industries to generate functional parts wit...
LaserCUSING® is a selective laser melting (SLM) process that is capable of manufacturing parts by me...
The following report analyzes 316L stainless steel powder characteristics of new powder and powder t...
The additive manufacturing of titanium parts by laser metal deposition (LMD) offers a promising alte...
AbstractLaser melting of titanium material, e.g. Ti-6Al-4V, offers great potential in manufacturing ...
AbstractLaser melting of titanium material, e.g. Ti-6Al-4V, offers great potential in manufacturing ...
This paper considers the steps to be taken in investigating the effects of recycling Ti-6Al-4V pow...
This paper considers the steps to be taken in investigating the effects of recycling Ti-6Al-4V pow...
The technology of laser beam melting (LBM) has lately become a true option for series production of ...
This paper investigates the formation of process by-products during the laser processing of titanium...
Ti-6Al-4V alloy is characterised by having excellent mechanical properties and corrosion resistance ...
Ti-6Al-4V alloy is characterised by having excellent mechanical properties and corrosion resistance ...
This paper investigates the formation of process by-products during the laser processing of titanium...
In selective laser melting (SLM) heat diffusing from the melt pool promotes the growth of surface ox...
Additive manufacturing (AM) technology has enabled many industries to generate functional parts wit...
Additive manufacturing (AM) technology has enabled many industries to generate functional parts wit...
LaserCUSING® is a selective laser melting (SLM) process that is capable of manufacturing parts by me...
The following report analyzes 316L stainless steel powder characteristics of new powder and powder t...
The additive manufacturing of titanium parts by laser metal deposition (LMD) offers a promising alte...