Diode area melting of Ti6Al4V using 808 nm laser sources and variable multi-beam profiles
Author:
Funder
EPSRC
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,General Materials Science
Reference46 articles.
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3. A Review on Direct Metal Laser Sintering: Process Features and Microstructure Modeling;Nandy;Lasers Manuf. Mater. Process.,2019
4. P. Mishra, T. Ilar, F. Brueckner, A. Kaplan, Energy efficiency contributions and losses during selective laser melting. J. Laser Appl. 30 (2018) 032304. 10.2351/1.5040603.
5. Use of 450–808 nm diode lasers for efficient energy absorption during powder bed fusion of Ti6Al4V;Alsaddah;Int. J. Adv. Manuf. Technol.,2021
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1. Multi-laser powder bed fusion of Ti6Al4V: Diode area melting utilizing low-power 450 nm diode lasers;Journal of Materials Processing Technology;2024-04
2. Dynamic beam shaping—Improving laser materials processing via feature synchronous energy coupling;CIRP Annals;2024
3. Parameter prediction and laser alignment for synergistic Multi-Laser Powder Bed Fusion;Procedia CIRP;2024
4. Revealing the intensified preferred orientation and factors dominating the anisotropic mechanical properties of laser powder bed fusion Ti‐6Al‐4V alloy after heat treatment;Journal of Alloys and Compounds;2023-07
5. Diode Area Melting: Multi-Laser Powder Bed Fusion of Ti-6al-4v Using Low-Power 450 Nm Diode Laser Sources;2023
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