A review on wire arc additive manufacturing: Processing parameters, defects, quality improvement and recent advances

B Tomar, S Shiva, T Nath - Materials Today Communications, 2022 - Elsevier
Arc welding-based additive manufacturing techniques are becoming promising for metal
additive manufacturing due to their capability of economically producing large-sized …

[HTML][HTML] Wire and arc additive manufacturing: Opportunities and challenges to control the quality and accuracy of manufactured parts

D Jafari, THJ Vaneker, I Gibson - Materials & Design, 2021 - Elsevier
Wire and arc additive manufacturing (WAAM) has proven that it can produce medium to
large components because of its high-rate deposition and potentially unlimited build size …

Invited review article: Strategies and processes for high quality wire arc additive manufacturing

CR Cunningham, JM Flynn, A Shokrani, V Dhokia… - Additive …, 2018 - Elsevier
Abstract Wire Arc Additive Manufacturing (WAAM) is attracting significant attention in
industry and academia due to its ability to capture the benefits of additive manufacturing for …

Wire arc additive manufacturing: a comprehensive review and research directions

LP Raut, RV Taiwade - Journal of Materials Engineering and Performance, 2021 - Springer
Over the past years, the demand for the wire arc additive manufacturing (WAAM) is
potentially increased, and it has become a promising alternative to subtractive …

Assessment of process, parameters, residual stress mitigation, post treatments and finite element analysis simulations of wire arc additive manufacturing technique

MD Barath Kumar, M Manikandan - Metals and Materials International, 2022 - Springer
Wire arc additive manufacturing (WAAM) technique became an emerging manufacturing
technology because of its cost-effective in creating large-scale metal parts with moderately …

Wire and arc additive manufacturing of aluminum components

M Köhler, S Fiebig, J Hensel, K Dilger - Metals, 2019 - mdpi.com
An increasing demand for flexibility and product integration, combined with reduced product
development cycles, leads to continuous development of new manufacturing technologies …

Microstructure evolution and mechanical behavior of 2219 aluminum alloys additively fabricated by the cold metal transfer process

X Fang, L Zhang, H Li, C Li, K Huang, B Lu - Materials, 2018 - mdpi.com
In this research, four different welding arc modes including conventional cold metal transfer
(CMT), CMT-Pulse (CMT-P), CMT-Advanced (CMT-ADV), and CMT pulse advanced (CMT …

Parameters effect on SS304 beads deposited by wire arc additive manufacturing

DT Sarathchandra, MJ Davidson… - Materials and …, 2020 - Taylor & Francis
In the present study, the effect of process parameters in Wire Arc Additive Manufacturing
(WAAM) of Stainless Steel 304 as filler wire and mild steel as a substrate has been …

Residual stresses and distortion in the patterned printing of titanium and nickel alloys

Q Wu, T Mukherjee, C Liu, J Lu, T DebRoy - Additive Manufacturing, 2019 - Elsevier
Since the deposition patterns affect the stresses and distortions, we examined their effects
on multi-layer wire arc additive manufacturing (WAAM) of Ti-6Al-4V and Inconel 718 …

[HTML][HTML] Correlations between microstructure characteristics and mechanical properties in 5183 aluminium alloy fabricated by wire-arc additive manufacturing with …

X Fang, L Zhang, G Chen, X Dang, K Huang, L Wang… - Materials, 2018 - mdpi.com
The effect of arc modes on the microstructure and tensile properties of 5183 aluminium alloy
fabricated by cold metal transfer (CMT) processes has been thoroughly investigated. Heat …