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Minh Anh Luan Phan
Minh Anh Luan Phan
Research Associate - The University of Sheffield
Verified email at sheffield.ac.uk - Homepage
Title
Cited by
Cited by
Year
Grain growth during selective laser melting of a Co–Cr–Mo alloy
ZW Chen, MAL Phan, K Darvish
Journal of Materials Science, 2017
1152017
Selective laser melting of Co-29Cr-6Mo alloy with laser power 180–360 W: Cellular growth, intercellular spacing and the related thermal condition
K Darvish, ZW Chen, MAL Phan, T Pasang
Materials Characterization 135, 183-191, 2018
572018
Solidification during selective laser melting of Co-29Cr-6Mo alloy
ZW Chen, T Guraya, K Darvish, MAL Phan, T Pasang
JOM 71, 691-696, 2019
172019
Grain growth during keyhole mode pulsed laser powder bed fusion of IN738LC
ZW Chen, T Guraya, S Singamneni, MAL Phan
Jom 72, 1074-1084, 2020
122020
Horizontal growth direction of dendritic solidification during selective electron beam melting of a Co-based alloy
MAL Phan, D Fraser, S Gulizia, ZW Chen
Materials Letters 228, 242-245, 2018
122018
Mechanism of hot crack propagation and prevention of crack formation during electron beam powder bed fusion of a difficult-to-weld Co-Cr-Ni-W superalloy
MAL Phan, D Fraser, S Gulizia, ZW Chen
Journal of Materials Processing Technology 293, 117088, 2021
62021
Predictive process diagram for parameters selection in laser powder bed fusion to achieve high-density and low-cracking built parts
MAL Phan, O Dew, I Todd
Additive Manufacturing, 104145, 2024
2024
Solidification and Microstructural Control in Selective Electron Beam Melting of Co-29Cr-10Ni-7W Alloy
MAL Phan, D Fraser, Z Chen, S Gulizia
Materials Science Forum 941, 902-907, 2019
2019
Mechanisms of Hot-cracking During Electron Beam Powder Bed Fusion of Co-29Cr-10Ni-7W Alloy
MAL Phan
Auckland University of Technology, 2019
2019
In-Situ Thermal Imaging of Laser Powder Bed Fusion: Investigating the Influence of Preheating Temperatures on Cooling Rates and Melt Pool Dynamics
Y Lai, MAL Phan, C Zhu, MMJ Davies, G Maddison, MJ Hobbs, I Todd, ...
Available at SSRN 4516994, 0
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