Metal additive manufacturing (AM) typically suffers from high degrees of variability in the properties/performance of the fabricated parts, particularly due to the lack of understanding and control over the physical mechanisms that govern microstructure formation during fabrication. This paper directly addresses an important problem in metal AM: the determination of the thermal history of the deposited material. Any attempts to link process to microstructure in AM would need to consider the thermal history of the material. In situ monitoring only provides partial information and simulations may be necessary to have a comprehensive understanding of the thermo-physical conditions to which the deposited material is subjected. We address this i...
Selective Laser Melting (SLM) is a powder-based additive manufacturing technology that is already in...
Additive Manufacturing (AM) is an increasingly attractive advanced manufacturing technology that man...
In this work the numerical simulation of Additive Manufacturing (AM) processes is addressed. The num...
Metal additive manufacturing (AM) typically suffers from high degree of variability in the propertie...
Metal additive manufacturing (AM) or metal three-dimensional (3D) printing offers significant benefi...
Metal Additive manufacturing (AM) such as Laser Powder-Bed Fusion (LPBF) processes offer new opportu...
As additive manufacturing (AM) matures, models are beginning to take a more prominent stage in desig...
Laser Powder Bed Fusion (LPBF) is a fast-developing metal additive manufacturing process offering un...
Purpose This paper aims to address the numerical simulation of additive manufacturing (AM) processe...
Input of accurate material and simulation parameters is critical for accurate predictions in Laser ...
Laser Powder-Bed Fusion processes capable of processing metallic materials are a set of relatively n...
Laser powder bed fusion (L-PBF) is a relatively young metallurgical processing method which has many...
Quality and reliability of additively manufactured (AM) parts using the Laser Powder Bed Fusion (LPB...
Laser powder bed fusion (L-PBF) is a relatively young metallurgical processing method which has m...
A longstanding challenge is to optimize additive manufacturing (AM) process in order to reduce AM co...
Selective Laser Melting (SLM) is a powder-based additive manufacturing technology that is already in...
Additive Manufacturing (AM) is an increasingly attractive advanced manufacturing technology that man...
In this work the numerical simulation of Additive Manufacturing (AM) processes is addressed. The num...
Metal additive manufacturing (AM) typically suffers from high degree of variability in the propertie...
Metal additive manufacturing (AM) or metal three-dimensional (3D) printing offers significant benefi...
Metal Additive manufacturing (AM) such as Laser Powder-Bed Fusion (LPBF) processes offer new opportu...
As additive manufacturing (AM) matures, models are beginning to take a more prominent stage in desig...
Laser Powder Bed Fusion (LPBF) is a fast-developing metal additive manufacturing process offering un...
Purpose This paper aims to address the numerical simulation of additive manufacturing (AM) processe...
Input of accurate material and simulation parameters is critical for accurate predictions in Laser ...
Laser Powder-Bed Fusion processes capable of processing metallic materials are a set of relatively n...
Laser powder bed fusion (L-PBF) is a relatively young metallurgical processing method which has many...
Quality and reliability of additively manufactured (AM) parts using the Laser Powder Bed Fusion (LPB...
Laser powder bed fusion (L-PBF) is a relatively young metallurgical processing method which has m...
A longstanding challenge is to optimize additive manufacturing (AM) process in order to reduce AM co...
Selective Laser Melting (SLM) is a powder-based additive manufacturing technology that is already in...
Additive Manufacturing (AM) is an increasingly attractive advanced manufacturing technology that man...
In this work the numerical simulation of Additive Manufacturing (AM) processes is addressed. The num...