peer reviewedIn this study, a data-driven deep learning model for fast and accurate prediction of temperature evolution and melting pool size of metallic additive manufacturing processes are developed. The study focuses on bulk experiments of the M4 high-speed steel material powder manufactured by Direct Energy Deposition. Under non-optimized process parameters, many deposited layers (above 30) generate large changes of microstructure through the sample depth caused by the high sensitivity of the cladding material on the thermal history. A 2D finite element analysis (FEA) of the bulk sample, validated in a previous study by experimental measurements, is able to achieve numerical data defining the temperature field evolution under different ...
Abstract Metal additive manufacturing provides remarkable flexibility in geometry and component desi...
Numerical simulation of metal additive processes are computationally intensive tasks. Iterative sol...
Additive manufacturing (AM) is a rapidly growing industry that creates intricate industrial parts. O...
peer reviewedTypical computer-based parameter optimization and uncertainty quantification of the add...
peer reviewedIn the last decade, machine learning is increasingly attracting researchers in several ...
High-fidelity, data-driven models that can quickly simulate thermal behavior during additive manufac...
Additive manufacturing (AM) is an emerging manufacturing technology that constructs complex parts th...
In Direct Energy Deposition (DED), the melt pool temperature is a critical control parameter that a...
In-situ monitoring of the additive layer characteristics in the directed energy deposition (DED) pro...
This paper presents an investigation of the rapid variations in the temperature of metal melt pool f...
Additive manufacturing (AM) processes are among the manufacturing methods implemented in various ind...
Melt pool temperature contains abundant information on metallurgical and mechanical aspects of produ...
Additive manufacturing (AM) became popular in the 1980s which involves printing objects layer by lay...
Laser Wire Additive manufacturing (LWAM) requires a clear understanding of process parameters and th...
Directed energy deposition (DED) is a rising field in the arena of metal additive manufacturing and ...
Abstract Metal additive manufacturing provides remarkable flexibility in geometry and component desi...
Numerical simulation of metal additive processes are computationally intensive tasks. Iterative sol...
Additive manufacturing (AM) is a rapidly growing industry that creates intricate industrial parts. O...
peer reviewedTypical computer-based parameter optimization and uncertainty quantification of the add...
peer reviewedIn the last decade, machine learning is increasingly attracting researchers in several ...
High-fidelity, data-driven models that can quickly simulate thermal behavior during additive manufac...
Additive manufacturing (AM) is an emerging manufacturing technology that constructs complex parts th...
In Direct Energy Deposition (DED), the melt pool temperature is a critical control parameter that a...
In-situ monitoring of the additive layer characteristics in the directed energy deposition (DED) pro...
This paper presents an investigation of the rapid variations in the temperature of metal melt pool f...
Additive manufacturing (AM) processes are among the manufacturing methods implemented in various ind...
Melt pool temperature contains abundant information on metallurgical and mechanical aspects of produ...
Additive manufacturing (AM) became popular in the 1980s which involves printing objects layer by lay...
Laser Wire Additive manufacturing (LWAM) requires a clear understanding of process parameters and th...
Directed energy deposition (DED) is a rising field in the arena of metal additive manufacturing and ...
Abstract Metal additive manufacturing provides remarkable flexibility in geometry and component desi...
Numerical simulation of metal additive processes are computationally intensive tasks. Iterative sol...
Additive manufacturing (AM) is a rapidly growing industry that creates intricate industrial parts. O...