Effective optimization of the production of Ti-6Al-4 V using AM requires a fundamental understanding of the relative importance of different microstructural features to the …
S Ivanov, M Gushchina, A Artinov, M Khomutov… - Materials, 2021 - mdpi.com
In the present work, the mechanical properties of the DLD-processed Ti-6Al-4V alloy were obtained by tensile tests performed at different temperatures, ranging from 20° C to 800° C …
Additive manufacturing (AM) is well-known for its capability to produce and repair intricate parts eg, Ni-based superalloy components used in aero-engine applications. However, a …
S Ivanov, A Artinov, E Zemlyakov, I Karpov, S Rylov… - Materials, 2021 - mdpi.com
The present work seeks to extend the level of understanding of the stress field evolution during direct laser deposition (DLD) of a 3.2 mm thick multilayer wall of Ti-6Al-4V alloy by …
Y Xiao, X Wang, W Yang, XX Yao, Z Yang, Y Lu… - Additive …, 2024 - Elsevier
Smart manufacturing in metal additive manufacturing (MAM) relies on real-time process optimization through the prediction of unbuilt parts using data from built parts. Melt pool …
Z Xu, H Wang, H Tang, X Cheng, Y Zhu - Journal of Materials Science, 2022 - Springer
The intrinsic directional positive thermal gradient of additive manufacturing usually leads to columnar grains crossing several layers and corresponding anisotropy in mechanical …
C Cao, P Liu, Y Zou, F Liao, H Luo, J Zhang… - Journal of Materials …, 2024 - Elsevier
The laser direct energy deposition (L-DED) is well-suited for metal manufacturing, offering advantages of excellent performance, high precision, intricate structures and material …
M Cheng, X Zou, T Chang, L Liu - Materials, 2024 - mdpi.com
In the process of directed energy deposition (DED), the grain structure of the deposited samples is determined by two aspects. The first is the initial solidification grain structure; the …