Fabrication of Al-11.2Si Components by Direct Laser Metal Deposition for Automotive Applications
Amrinder Singh, Abhishek Ramakrishnan, Guru Dinda
J Weld Join. 2017;35(4):67-73.   Published online 2017 Jul 20     DOI: https://doi.org/10.5781/JWJ.2017.35.4.10
Citations to this article as recorded by Crossref logo
Nanoscale engineering of low-misfit TiB2/Al3(Sc,Zr)/α-Al multi-interface to improve strength-ductility synergy for direct energy deposited aluminum alloy
Yang Li, Yihao Wang, Lei Hu, Tingting Chen, Gang Ji, Han Chen, Hongze Wang, Haowei Wang, Zhe Chen
Additive Manufacturing.2024; 79: 103913.     CrossRef
Investigations of the processing–structure–performance relationships of an additively manufactured AlSi10Mg alloy via directed energy deposition
Shuoqing Shi, Xin Lin, Lilin Wang, Zhennan Wang, Lei Wei, Haiou Yang, Yao Tang, Weidong Huang
Journal of Alloys and Compounds.2023; 944: 169050.     CrossRef
Geometrical study of 5356 aluminium alloy by means of a concentric wire laser metal deposition
Mikel Madarieta, Edgar Irazu, Iker Garmendia, Jon Flores, Carlos Soriano
Procedia CIRP.2022; 113: 361.     CrossRef
Directed energy deposition additive manufacturing of a Sc/Zr-modified Al–Mg alloy: Effect of thermal history on microstructural evolution and mechanical properties
Zihong Wang, Xin Lin, Nan Kang, Jing Chen, Yao Tang, Hua Tan, Xiaobin Yu, Haiou Yang, Weidong Huang
Materials Science and Engineering: A.2021; 802: 140606.     CrossRef
Thermoelectric magnetohydrodynamic control of melt pool dynamics and microstructure evolution in additive manufacturing
A. Kao, T. Gan, C. Tonry, I. Krastins, K. Pericleous
Philosophical Transactions of the Royal Society A:.2020; 378(2171): 20190249.     CrossRef
Microstructure and mechanical properties of laser metal deposited AlSi10Mg alloys
Xian Wang, Liqun Li, Jingyu Qu, Wang Tao
Materials Science and Technology.2019; 35(18): 2284.     CrossRef