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 …

Metallurgy, mechanistic models and machine learning in metal printing

T DebRoy, T Mukherjee, HL Wei, JW Elmer… - Nature Reviews …, 2021 - nature.com
Additive manufacturing enables the printing of metallic parts, such as customized implants
for patients, durable single-crystal parts for use in harsh environments, and the printing of …

Progress in additive manufacturing on new materials: A review

N Li, S Huang, G Zhang, R Qin, W Liu, H Xiong… - Journal of Materials …, 2019 - Elsevier
Recent efforts and advances in additive manufacturing (AM) on different types of new
materials are presented and reviewed. Special attention is paid to the material design of …

Directed energy deposition of metals: processing, microstructures, and mechanical properties

SH Li, P Kumar, S Chandra… - International Materials …, 2023 - journals.sagepub.com
Amongst the many additive manufacturing (AM) techniques, directed energy deposition
(DED) is a prominent one, which can also be used for the repair of damaged components. In …

Solidification in metal additive manufacturing: challenges, solutions, and opportunities

S Chandra, J Radhakrishnan, S Huang, S Wei… - Progress in Materials …, 2024 - Elsevier
The physics of alloy solidification during additive manufacturing (AM) in methods such as
laser powder bed fusion (LPBF), electron beam powder bed fusion (EPBF), and laser …

Effects of laser additive manufacturing on microstructure and crystallographic texture of austenitic and martensitic stainless steels

F Khodabakhshi, MH Farshidianfar, AP Gerlich… - Additive …, 2020 - Elsevier
Powder-fed laser additive manufacturing (LAM) based on directed energy deposition (DED)
technology is used to produce S316-L austenitic, and S410-L martensitic stainless steel …

[HTML][HTML] Microstructure evolution and mechanical properties of wire-feed electron beam additive manufactured Ti-5Al-2Sn-2Zr-4Mo-4Cr alloy with different subtransus …

G Zhang, H Xiong, H Yu, R Qin, W Liu, H Yuan - Materials & Design, 2020 - Elsevier
Wire-feed electron beam additive manufacturing (EBAM) is a promising manufacturing
process for fabrication large-scale, fully dense and near net shape metallic components …

[HTML][HTML] Wire-fed electron beam directed energy deposition of Ti–6Al–2Zr–1Mo–1V alloy and the effect of annealing on the microstructure, texture, and anisotropy of …

G Zhang, N Li, J Gao, H Xiong, H Yu, H Yuan - Additive Manufacturing, 2022 - Elsevier
Wire-fed electron beam directed energy deposition (EB-DED) is gaining increasing attention
owing to its significant advantage of producing high-quality, large-scale metallic …

航空装备电子束增材制造技术发展及路线图.

张国栋, 许乔郅, 郑涛, 郭绍庆… - Journal of Aeronautical …, 2023 - search.ebscohost.com
增材制造技术在航空装备领域具有广泛的发展前景. 作为重要的金属增材制造工艺方法,
电子束增材制造正处于快速发展阶段. 电子束熔丝增材制造技术可满足航空大尺寸结构件的快速 …

Texture evolution as a function of scan strategy and build height in electron beam melted Ti-6Al-4V

AI Saville, SC Vogel, A Creuziger, JT Benzing… - Additive …, 2021 - Elsevier
Metal additive manufacturing (AM) enables customizable, on-demand parts, allowing for
new designs and improved engineering performance. Yet, the ability to control AM metal …