Microstructure modelling for metallic additive manufacturing: a review

JHK Tan, SL Sing, WY Yeong - Virtual and Physical Prototyping, 2020 - Taylor & Francis
The microstructure of metals depends on the additive manufacturing (AM) process and the
process parameters. However, experimentation on different process parameters for different …

[HTML][HTML] State of the art of additively manufactured electromagnetic materials for topology optimized electrical machines

H Tiismus, A Kallaste, T Vaimann, A Rassõlkin - Additive Manufacturing, 2022 - Elsevier
Metal additive manufacturing (AM) technology is maturing. Although currently slower and
less reliable than traditional production methods, AM systems shine when producing parts …

Additive manufacturing of low-cost porous titanium-based composites for biomedical applications: Advantages, challenges and opinion for future development

H Attar, S Ehtemam-Haghighi, N Soro, D Kent… - Journal of Alloys and …, 2020 - Elsevier
Titanium and its alloys have received considerable attention for biomedical applications
such as orthopaedic implants due to their outstanding mechanical properties and excellent …

Wire arc additive manufacturing–a revolutionary method in additive manufacturing

N Kumar, H Bhavsar, PVS Mahesh… - Materials chemistry and …, 2022 - Elsevier
Abstract Wire Arc Additive Manufacturing (WAAM) is a revolutionary process under the
category of Direct Energy Deposition (DED) method in the field of Additive Manufacturing …

[HTML][HTML] Correlation between forming quality and spatter dynamics in laser powder bed fusion

J Yin, D Wang, L Yang, H Wei, P Dong, L Ke… - Additive …, 2020 - Elsevier
Laser powder bed fusion (LPBF) has broad application prospects due to its high fabrication
accuracy and excellent performance, but the dynamic mechanical properties of LPBF …

Microstructure and mechanical properties of pure copper manufactured by selective laser melting

X Yan, C Chang, D Dong, S Gao, W Ma, M Liu… - Materials Science and …, 2020 - Elsevier
Selective laser melting (SLM) was used to fabricate copper samples under various
processing parameters. The influence of laser linear energy density on the microstructures …

High-power laser powder bed fusion of 316L stainless steel: Defects, microstructure, and mechanical properties

G Huang, K Wei, J Deng, M Liu, X Zeng - Journal of Manufacturing …, 2022 - Elsevier
Low build rate has always been the bottleneck problem of the application and development
of laser powder bed fusion (LPBF) metal 3D printing technology. Although increasing laser …

Laser 3D printing of complex copper structures

L Constantin, Z Wu, N Li, L Fan, JF Silvain, YF Lu - Additive Manufacturing, 2020 - Elsevier
The ability to design complex copper (Cu) parts into the most efficient thermal structures is
an old dream, but difficult to realize with conventional manufacturing techniques. The recent …

[HTML][HTML] Vaporization of alloying elements and explosion behavior during laser powder bed fusion of Cu–10Zn alloy

J Yin, W Zhang, L Ke, H Wei, D Wang, L Yang… - International Journal of …, 2021 - Elsevier
Vaporization of alloying elements is an important phenomenon during laser powder bed
fusion (LPBF), especially in the laser interaction with difficult-to-form materials containing the …

Selective laser melting of Cu–Cr–Zr copper alloy: Parameter optimization, microstructure and mechanical properties

Z Ma, K Zhang, Z Ren, DZ Zhang, G Tao… - Journal of Alloys and …, 2020 - Elsevier
The combination of selective laser melting (SLM) and Cu-based alloys has attracted
attention in recent years due to the increasing requirements for components characterized …