Perspectives of using machine learning in laser powder bed fusion for metal additive manufacturing
The adoption of laser powder bed fusion (L-PBF) for metals by the industry has been limited
despite the significant progress made in the development of the process chain. One of the …
despite the significant progress made in the development of the process chain. One of the …
Environmental impacts assessment of Bound Metal Deposition 3D printing process for stainless steel
B Iacopo, M Tommaso, P Massimiliano, V Alessio - Procedia CIRP, 2022 - Elsevier
Abstract 3D Printing consists in the manufacturing of three-dimensional products by
depositing material, usually layer by layer. Since material is added only where needed …
depositing material, usually layer by layer. Since material is added only where needed …
Sustainability assessment of products manufactured by the laser powder bed fusion (LPBF) process
Assessing the sustainability of a product is dependent on considering individual product life
cycle data. Based on the information on material, energy and information flows, evaluation …
cycle data. Based on the information on material, energy and information flows, evaluation …
[HTML][HTML] Investigation of printing turn angle effects on structural deformation and stress in selective laser melting
R Bai, S Shi, J Wang, J Luo, H Pu, W Lyu, H Naceur… - Materials & Design, 2024 - Elsevier
Additive manufacturing (AM) technology facilitates the creation of complex structures, where
the printing path significantly impacts thermal distribution, subsequently influencing stress …
the printing path significantly impacts thermal distribution, subsequently influencing stress …
Sustainable production of AlSi10Mg parts by laser powder bed fusion process
Laser powder bed fusion (L-PBF) is an additive manufacturing technology that allows
producing complex and lightweight parts without the use of specific tooling during the …
producing complex and lightweight parts without the use of specific tooling during the …
Comparative sustainability assessment of powder bed fusion and solid-state additive manufacturing processes: The case of direct metal laser sintering versus additive …
This work aims to conduct a comparative sustainability assessment between two promising
additive manufacturing methods: additive friction stir deposition (AFSD) and direct metal …
additive manufacturing methods: additive friction stir deposition (AFSD) and direct metal …
Environmental impact assessment of Arburg plastic freeforming additive manufacturing
Abstract Arburg Plastic Freeforming (APF) is an advanced and original Additive
Manufacturing (AM) technology that melts granulate thermoplastics through a heated …
Manufacturing (AM) technology that melts granulate thermoplastics through a heated …
Hybrid 3D Printing of Molten Metal Microdroplets and Polymers for Prototyping of Printed Circuit Boards Featuring Interdigitated 3D Capacitors
This paper presents layer‐by‐layer additive manufacturing (AM) of molten metal
microdroplets and dielectric materials to fabricate multilayer hybrid circuit boards featuring …
microdroplets and dielectric materials to fabricate multilayer hybrid circuit boards featuring …
[HTML][HTML] Active thermography for in-situ defect detection in laser powder bed fusion of metal
D Höfflin, C Sauer, A Schiffler, A Versch… - Journal of Manufacturing …, 2024 - Elsevier
Additive manufacturing (AM) has revolutionized production by offering design flexibility,
reducing material waste, and enabling intricate geometries that are often unachievable with …
reducing material waste, and enabling intricate geometries that are often unachievable with …
Cradle-to-gate life cycle assessment: a comparison of polymer and metal-based powder bed fusion for the production of a robot end-effector with internal conformal …
Different industries are adopting additive manufacturing (AM) technologies to produce
complex designs with minimum material wastage. The sustainability assessment of AM …
complex designs with minimum material wastage. The sustainability assessment of AM …