Simulation of melt pool behaviour during additive manufacturing: Underlying physics and progress

PS Cook, AB Murphy - Additive Manufacturing, 2020 - Elsevier
Reliable computational models of metal additive manufacturing will assist in optimising part
quality, and are likely to play a role in component qualification. A key component of these …

Thermophysical phenomena in metal additive manufacturing by selective laser melting: fundamentals, modeling, simulation, and experimentation

C Meier, RW Penny, Y Zou, JS Gibbs… - Annual Review of Heat …, 2017 - dl.begellhouse.com
Among the many additive manufacturing (AM) processes for metallic materials, selective
laser melting (SLM) is arguably the most versatile in terms of its potential to realize complex …

Molten pool behavior and effect of fluid flow on solidification conditions in selective electron beam melting (SEBM) of a biomedical Co-Cr-Mo alloy

Y Zhao, Y Koizumi, K Aoyagi, D Wei, K Yamanaka… - Additive …, 2019 - Elsevier
Selective electron beam melting (SEBM) is a type of additive manufacturing (AM) that
involves multiple physical processes. Because of its unique process conditions compared to …

Numerical Modeling of Heat Distribution in the Electron Beam Melting® of Ti-6Al-4V

M Jamshidinia, F Kong… - Journal of …, 2013 - asmedigitalcollection.asme.org
Electron beam melting®(EBM) is one of the fastest growing additive manufacturing
processes capable of building parts with complex geometries, made predominantly of Ti …

Feasibility study of an extrusion-based direct metal additive manufacturing technique

M Annoni, H Giberti, M Strano - Procedia Manufacturing, 2016 - Elsevier
A new extrusion-based additive manufacturing technique is described in this paper together
with the main components of the machine capable of carrying out the process. Innovative …

Fatigue properties of a dental implant produced by electron beam melting®(EBM)

M Jamshidinia, L Wang, W Tong, R Ajlouni… - Journal of Materials …, 2015 - Elsevier
Fatigue properties of a dental abutment with a lattice structure were investigated. Electron
Beam Melting®(EBM) was used to produce the dental abutments, made of Ti-6Al-4 V. Four …

On phase change and latent heat models in metal additive manufacturing process simulation

SD Proell, WA Wall, C Meier - Advanced Modeling and Simulation in …, 2020 - Springer
This work proposes an extension of phase change and latent heat models for the simulation
of metal powder bed fusion additive manufacturing processes on the macroscale and …

Effect of specimen geometry and orientation on tensile properties of Ti-6Al-4V manufactured by electron beam powder bed fusion

G Shanbhag, E Wheat, S Moylan, M Vlasea - Additive Manufacturing, 2021 - Elsevier
Tensile testing is often proposed as the preferred methodology to qualify builds and
materials produced through additive manufacturing. While there is already work …

The bio-compatible dental implant designed by using non-stochastic porosity produced by Electron Beam Melting®(EBM)

M Jamshidinia, L Wang, W Tong… - Journal of Materials …, 2014 - Elsevier
The application of non-stochastic lattice structures for building a bio-compatible dental
abutment is investigated. The bio-compatible dental implant should mimic the micro-motion …

Film cooling measurements for a laidback fan-shaped hole: effect of coolant crossflow on cooling effectiveness and heat transfer

M Fraas, T Glasenapp, A Schulz… - Journal of …, 2019 - asmedigitalcollection.asme.org
Internal coolant passages of gas turbine vanes and blades have various orientations relative
to the external hot gas flow. As a consequence, the inflow of film cooling holes varies as …