Chi, Q.; Hu, M.; Wang, J.; Yan, S.; Xue, M.; Wu, S.; Cheng, F.
Forging-Submerged Arc Additive Hybrid Manufacturing of the Mn-Mo-Ni Component: In Situ Reheat Cycles Inducing the Homogenization of the HAZ Microstructure. Materials 2025, 18, 20.
https://doi.org/10.3390/ma18010020
AMA Style
Chi Q, Hu M, Wang J, Yan S, Xue M, Wu S, Cheng F.
Forging-Submerged Arc Additive Hybrid Manufacturing of the Mn-Mo-Ni Component: In Situ Reheat Cycles Inducing the Homogenization of the HAZ Microstructure. Materials. 2025; 18(1):20.
https://doi.org/10.3390/ma18010020
Chicago/Turabian Style
Chi, Qiang, Meijuan Hu, Jun Wang, Shuai Yan, Manye Xue, Shaojie Wu, and Fangjie Cheng.
2025. "Forging-Submerged Arc Additive Hybrid Manufacturing of the Mn-Mo-Ni Component: In Situ Reheat Cycles Inducing the Homogenization of the HAZ Microstructure" Materials 18, no. 1: 20.
https://doi.org/10.3390/ma18010020
APA Style
Chi, Q., Hu, M., Wang, J., Yan, S., Xue, M., Wu, S., & Cheng, F.
(2025). Forging-Submerged Arc Additive Hybrid Manufacturing of the Mn-Mo-Ni Component: In Situ Reheat Cycles Inducing the Homogenization of the HAZ Microstructure. Materials, 18(1), 20.
https://doi.org/10.3390/ma18010020