Many direct laser deposition processes utilize metallic powders to obtain near net shape objects. Wire feeding has also been used in many laser-cladding and other material-addition applications. Each feeding method has its own advantages and disadvantages: wire feeding laser deposition typically has higher deposition rate and higher material usage rate than the powder feeding deposition process, while powder feeding gives better geometry control. In this study a new approach is investigated by combining wire and powder feeding to achieve higher build rate and higher material usage efficiency while maintaining the geometry accuracy. Multilayer parts are produced from 316L stainless steel by powder feeding, wire feeding, and the combined proc...
Direct metal deposition technologies produce complex, near net shape components from CAD solid model...
A systematic four-stage methodology was developed and applied to the Laser Metal Deposition with Wir...
A systematic four-stage methodology was developed and applied to the Laser Metal Deposition with Wir...
Most direct laser deposition (DLD) processes utilise metallic powders to obtain near net shape objec...
Direct metal deposition (DMD) is a method of metallic part fabrication under the classification of a...
In this research, laser cladding characteristics were investigated for various filler metal feeding ...
Laser Metal Wire Deposition (LMWD) is an additive manufacturing process which is based on melting ...
Laser Metal Wire Deposition (LMWD) is an additive manufacturing process which is based on melting ...
Laser Metal Wire Deposition (LMWD) is an additive manufacturing process which is based on melting ...
Direct metal deposition technologies produce complex, near net shape components from Computer Aided ...
The aeronautical sector is considering additive manufacturing as an alternative for the manufacture ...
In some applications of Laser Metal Deposition (LMD) the advantages of the utilization of wire inste...
In this work, the micro laser metal wire deposition (µLMWD) process is studied as an additive manuf...
In this work, the micro laser metal wire deposition (µLMWD) process is studied as an additive manuf...
In this work, the micro laser metal wire deposition (µLMWD) process is studied as an additive manuf...
Direct metal deposition technologies produce complex, near net shape components from CAD solid model...
A systematic four-stage methodology was developed and applied to the Laser Metal Deposition with Wir...
A systematic four-stage methodology was developed and applied to the Laser Metal Deposition with Wir...
Most direct laser deposition (DLD) processes utilise metallic powders to obtain near net shape objec...
Direct metal deposition (DMD) is a method of metallic part fabrication under the classification of a...
In this research, laser cladding characteristics were investigated for various filler metal feeding ...
Laser Metal Wire Deposition (LMWD) is an additive manufacturing process which is based on melting ...
Laser Metal Wire Deposition (LMWD) is an additive manufacturing process which is based on melting ...
Laser Metal Wire Deposition (LMWD) is an additive manufacturing process which is based on melting ...
Direct metal deposition technologies produce complex, near net shape components from Computer Aided ...
The aeronautical sector is considering additive manufacturing as an alternative for the manufacture ...
In some applications of Laser Metal Deposition (LMD) the advantages of the utilization of wire inste...
In this work, the micro laser metal wire deposition (µLMWD) process is studied as an additive manuf...
In this work, the micro laser metal wire deposition (µLMWD) process is studied as an additive manuf...
In this work, the micro laser metal wire deposition (µLMWD) process is studied as an additive manuf...
Direct metal deposition technologies produce complex, near net shape components from CAD solid model...
A systematic four-stage methodology was developed and applied to the Laser Metal Deposition with Wir...
A systematic four-stage methodology was developed and applied to the Laser Metal Deposition with Wir...