Additive manufacturing of metallic components–process, structure and properties

T DebRoy, HL Wei, JS Zuback, T Mukherjee… - Progress in materials …, 2018 - Elsevier
Since its inception, significant progress has been made in understanding additive
manufacturing (AM) processes and the structure and properties of the fabricated metallic …

[HTML][HTML] Holistic computational design within additive manufacturing through topology optimization combined with multiphysics multi-scale materials and process …

M Bayat, O Zinovieva, F Ferrari, C Ayas… - Progress in Materials …, 2023 - Elsevier
Additive manufacturing (AM) processes have proven to be a perfect match for topology
optimization (TO), as they are able to realize sophisticated geometries in a unique layer-by …

Modeling of additive manufacturing processes for metals: Challenges and opportunities

MM Francois, A Sun, WE King, NJ Henson… - Current Opinion in Solid …, 2017 - Elsevier
With the technology being developed to manufacture metallic parts using increasingly
advanced additive manufacturing processes, a new era has opened up for designing novel …

Microstructure modelling for metallic additive manufacturing: a review

JHK Tan, SL Sing, WY Yeong - Virtual and Physical Prototy**, 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] Layer-wise engineering of grain orientation (LEGO) in laser powder bed fusion of stainless steel 316L

KA Sofinowski, S Raman, X Wang, B Gaskey… - Additive …, 2021 - Elsevier
Additive manufacturing (AM) has opened new possibilities for site-specific microstructure
control of metal alloys. In laser powder bed fusion (LPBF) AM, the microstructure can be …

Study on microstructure and tensile properties of 316L stainless steel fabricated by CMT wire and arc additive manufacturing

C Wang, TG Liu, P Zhu, YH Lu, T Shoji - Materials Science and …, 2020 - Elsevier
An austenitic stainless steel 316L part was fabricated by cold metal transfer wire and arc
additive manufacturing (CMT-WAAM), and its microstructure, microhardness and tensile …

Programming crystallographic orientation in additive‐manufactured beta‐type titanium alloy

X Luo, T Song, A Gebert, K Neufeld, I Kaban… - Advanced …, 2023 - Wiley Online Library
Additively manufactured metallic materials typically exhibit preferential< 001> or< 110>
crystallographic orientations along the build direction. Nowadays, the challenge is to …

[HTML][HTML] 3D multi-layer grain structure simulation of powder bed fusion additive manufacturing

JA Koepf, MR Gotterbarm, M Markl, C Körner - Acta Materialia, 2018 - Elsevier
In powder bed fusion (PBF) additive manufacturing, powder layers are locally melted with a
laser or an electron beam to build a component. Hatching strategies and beam parameters …

Modeling of solidification microstructure evolution in laser powder bed fusion fabricated 316L stainless steel using combined computational fluid dynamics and …

Y Zhang, J Zhang - Additive Manufacturing, 2019 - Elsevier
This work presents a novel modeling framework combining computational fluid dynamics
(CFD) and cellular automata (CA), to predict the solidification microstructure evolution of …

Solidification microstructure simulation of Ti-6Al-4V in metal additive manufacturing: A review

J Li, X Zhou, M Brochu, N Provatas, YF Zhao - Additive Manufacturing, 2020 - Elsevier
Metal additive manufacturing (MAM) technology is now changing the pattern of the high-end
manufacturing industry, among which microstructure simulation gradually shows its …