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Meeting MS&T23: Materials Science & Technology
Symposium Phase Transformations and Microstructure Evolution during Post-Processing of Additively Manufactured Metals
Presentation Title Impact of Heat Treatment Rates on Phase Transformation in Additively Manufactured Gamma Prime Superalloys IN738LC
Author(s) Marcus Lam
On-Site Speaker (Planned) Marcus Lam
Abstract Scope Laser powder bed fusion (LPBF) can produce gamma prime-strengthened IN738LC superalloys for critical aerospace applications, but the heat-treated microstructure is inferior to the conventional. Rapid thermal cycling in LPBF inhibits the formation of large gamma/gamma prime eutectics, blocky gamma prime precipitates, and lower carbides, resulting in different microstructure responses. While prior research focused on modifying the heat-treating temperatures and durations, the effects from heat-treating rates were not studied. Heat-treating rates are crucial since the final gamma prime distribution and morphology are influenced by initial supersaturation and precipitation states. This study investigated various heating and cooling rates at different heat treatment steps. SEM, TEM, and machine learning-assisted analysis were employed to examine phase morphologies and fractions. Microstructural studies and hardness revealed that conventional heat-treating rates may cause overaging in LPBF IN738LC. The findings reflect the importance of considering heat treatment rate for LPBF alloys, particularly those strengthened by secondary phase precipitations.

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

Additive Manufacturing of 718 Ni ODS Alloys and Haynes 230 Alloys with Nanoprecipitates
Impact of Heat Treatment Rates on Phase Transformation in Additively Manufactured Gamma Prime Superalloys IN738LC
Influence of Post-process Forging on Microstructure and Properties of LPBF AlSi10Mg
Influence of Post Processing Annealing on Precipitation and Deformation Behavior of Additvely Processed Beta Titanium Alloys
Laser Reheating and Polishing of Powder-blown Directed Energy Deposition
Microstructural Evolution of One and Two Step Heat Treatments on Electron Beam Powder Bed Fusion Fabricated Haynes 282
Microstructure and Mechanical Characterization of As-deposited and Forged Wire Arc Additively Manufactured (WAAM) 316LSi
Microstructure Engineering of Specialty Alloys via Post Advanced Manufacturing Thermal Treatments
Observation of Structure Coarsening During Annealing of Additively Manufactured Ti-6Al-4V
Tuning the Precipitate Microstructure in the Selective Laser Melted Ti-6Al-2Sn-4Zr-2Mo Alloy via Post Heat Treatment
Understanding the Microstructure Evolution Pathway During the Post Heat Treatment in the Direct Energy Deposited Ti-5Al-5Mo-5V-3Cr Alloy
Use of In Situ TEM Heating to Study Transformation Pathways for Metastable Phases in New Candidate Alloys for Additive Manufacturing

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