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Meeting 2024 TMS Annual Meeting & Exhibition
Symposium Accelerated Discovery and Insertion of Next Generation Structural Materials
Presentation Title Navigating the BCC-B2 Refractory Alloy Space: Stability and Thermal Processing with Ru-B2 Precipitates
Author(s) Sebastian A. Kube, Carolina Frey, Chiyo McMullin, Ben Neuman, Kaitlyn M. Mullin, Tresa M. Pollock
On-Site Speaker (Planned) Sebastian A. Kube
Abstract Scope Refractory Multi Principal Element Alloys (RMPEAs) could provide next-generation high-temperature alloys, but especially their combination of ductility and high-temperature strength remains insufficient. Emulating superalloy γ-γ’ microstructures, RMPEAs combining a ductile BCC matrix with embedded B2 precipitates for strengthening could meet this goal. Using high-throughput CALPHAD, we screen across 3,500 potential BCC-B2 systems. The highest stabilities are predicted for alloys combining Ru-based B2s with refractory BCC elements. We rapidly synthesize and characterize the microstructures of 18 such alloys after various heat treatments. Many of these alloys exhibit large B2 fractions stable beyond 1300°C and allow thermal processing via a dissolution-precipitation pathway. While RuTi alloys offer robust stability and processability, RuAl is prone to forming competing phases. The RuHf B2 is exceptionally stable beyond 1900°C but difficult to solutionize. The mechanical properties of the RuTi-based alloys are studied at room temperature and 1200°C. Altogether, these alloys offer great design flexibility and surpass the stability and processability of previous BCC-B2 RMPEAs.
Proceedings Inclusion? Planned:

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

Accelerated Computational Insertion of Structural Materials
Accelerating Materials Discovery of HEA’s through Constraint Based High Throughput Design, Synthesis and Batch Bayesian Optimization Framework
Amorphous to Crystalline: High-throughput Thermal Stability Investigation on IV- and V- group Refractory High-entropy Alloy Systems
An Experimental High Throughput to High Fidelity Study Towards Discovering Al-Cr Containing Corrosion-resistant Compositionally Complex Alloys
Computational Design of Complex Concentrated Alloys for Nuclear Applications
Design of Alloys Resistant to Molten Salt Corrosion via Machine Learning and Optimization Algorithms
Energy Absorption Properties of Filled and Unfiled Lattice Materials under Impact Loading
High-throughput Exploration of Nanotwin Synthesis Domains
High Throughput Exploration and Optimization of the Mechanical Properties of FCC Complex Concentrated Alloys for Extreme Conditions
Interoperable Batch Bayesian Optimization Techniques for Efficient Property Discovery of Metals
Laser-scanning of Arc-melted Al Alloys: Are They Representative of Additively Manufactured Ones
Machine Learning-CALPHAD Assisted Design of L12-strengthened Ni-Al-Co-Cr-Fe-Ti Complex Concentrated Superalloy for Multi-property Optimization
Machine Learning and CALPHAD Assisted Design of High Performance Structural High Entropy Alloys
Navigating the BCC-B2 Refractory Alloy Space: Stability and Thermal Processing with Ru-B2 Precipitates
Novel High-temperature Zirconium Alloys for Fusion Applications
Physics-informed Creep Rupture Life Modeling of High Temperature Alloys for Energy Applications
Prevention of Strain Age Cracking in Additively Manufactured, High-temperature Superalloys

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