Overview
Additive Manufacturing allows for the precise creation of complex and/or custom 3D shapes. This technique is used to make pieces for aerospace to medical applications. It is important to understand the microstructure of materials created using this method, to understand its advantages and liabilities.
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Recent Publications
- Martensitic transformation induced strength-ductility synergy in additively manufactured maraging 250 steel by thermal history engineering, S Mooraj, S Feng, M Luebbe, M Register, T Li, B Yavas, DP Schmidt, MW Priddy, M Pepi, MB Nicholas, VK Champagne, M Aindow, H Wen, W Chen, J Mater Sci Tech 211: 212-225 (2025). [doi: 10.1016/j.jmst.2024.05.062]
- Triplex Steel Powder Design to Avoid Hot Cracking in Laser-Powder Bed Fusion Using Computational Thermodynamics, M Sanchez-Poncela, Q Jin, RJ Hebert, M Aindow, V Amigó, R Rementeria, Addit Manuf 86: 104196 (2024). [doi: 10.1016/j.addma.2024.104196]
- Thermal Stability of Laser Track Microstructures in an Al-Cr-Co-Mn-Zr I-Phase Alloy, MX Li, S Rommel, HR Leonard, C Hung, TJ Watson, CL Benson, RJ Hebert, M. Aindow, Mater Charact 203: 113123 (2023). [doi: 10.1016/j.matchar.2023.113123]
- Laser Glazing of a Quasicrystal-Reinforced Al-Cu-Fe-Cr Alloy: Implications for Use in Additive Manufacturing, B Yavas, CJ Hung, SK Nayak, SP Alpay, M Aindow, Scripta Mater 226: 115249 (2023). [doi: 10.1016/j.scriptamat.2022.115249]
- Use of Laser Glazing to Evaluate an Al-Cr-Co-Mn-Zr Alloy Containing Icosahedral Quasicrystalline Dispersoids as a Candidate Material for Additive Manufacturing, MX Li, HR Leonard, S Rommel, C Hung, TJ Watson, T Policandriotes, RJ Hebert, M Aindow, Addit Manuf 59: 103114 (2022).
[doi: 10.1016/j.addma.2022.103114]