AbstractThis paper presents our recent progress on the applications of laser metal deposited (LMD) Ti6Al4V parts. The microstructure of the fabricated parts shows prior columnar β grains consisting of acicular α’ martensite. The yield and ultimate tensile strengths of the fabricated parts are superior to those of cast and annealed wrought material, while the elongation is lower. On-line monitoring and control of the LMD process was performed by monitoring the pool area and feedback controlling the laser power in order to decrease heat accumulation. The substrate dilution is diminished and the decreased heat accumulation reduces its effects on the microstructure
Metal additive manufacturing is becoming a popular manufacturing process in industries requiring geo...
Laser additive manufacturing is a solid-freeform-fabrication process which is being investigated fo...
Laser additive manufacturing is a solid-freeform-fabrication process which is being investigated fo...
AbstractThis paper presents our recent progress on the applications of laser metal deposited (LMD) T...
The effect of laser power on the resulting microstructure and microhardness of laser metal deposited...
The room temperature tensile properties of Ti-6Al-4V alloy prepared under two different processi...
M.Ing. (Mechanical Engineering)Abstract: Laser metal deposition (LMD) presents a competitive and att...
Abstract: The study of laser power on deposited of Ti64l4V/W was investigated. The laser metal depos...
Abstract: Laser metal deposition (LMD) presents a suitable substitute for conventional machining of ...
This paper reports the effect of laser power density on the evolving properties of laser metal depos...
Abstract: Laser metal deposition process is an additive manufacturing technology that is capable of ...
Abstract: Laser metal deposition (LMD) is a manufacturing process, which can be used to manufacture ...
Ti6Al4V alloy is an ideal lightweight structural metal for a huge variety of engineering application...
Metal additive manufacturing is becoming a popular manufacturing process in industries requiring geo...
Laser-powder bed fusion (L-PBF) processing finds its application in various metal forming industries...
Metal additive manufacturing is becoming a popular manufacturing process in industries requiring geo...
Laser additive manufacturing is a solid-freeform-fabrication process which is being investigated fo...
Laser additive manufacturing is a solid-freeform-fabrication process which is being investigated fo...
AbstractThis paper presents our recent progress on the applications of laser metal deposited (LMD) T...
The effect of laser power on the resulting microstructure and microhardness of laser metal deposited...
The room temperature tensile properties of Ti-6Al-4V alloy prepared under two different processi...
M.Ing. (Mechanical Engineering)Abstract: Laser metal deposition (LMD) presents a competitive and att...
Abstract: The study of laser power on deposited of Ti64l4V/W was investigated. The laser metal depos...
Abstract: Laser metal deposition (LMD) presents a suitable substitute for conventional machining of ...
This paper reports the effect of laser power density on the evolving properties of laser metal depos...
Abstract: Laser metal deposition process is an additive manufacturing technology that is capable of ...
Abstract: Laser metal deposition (LMD) is a manufacturing process, which can be used to manufacture ...
Ti6Al4V alloy is an ideal lightweight structural metal for a huge variety of engineering application...
Metal additive manufacturing is becoming a popular manufacturing process in industries requiring geo...
Laser-powder bed fusion (L-PBF) processing finds its application in various metal forming industries...
Metal additive manufacturing is becoming a popular manufacturing process in industries requiring geo...
Laser additive manufacturing is a solid-freeform-fabrication process which is being investigated fo...
Laser additive manufacturing is a solid-freeform-fabrication process which is being investigated fo...