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Meeting 2023 TMS Annual Meeting & Exhibition
Symposium Simulations/Experiments Integration for Next Generation Hypersonic Materials
Presentation Title Composite Metal/Ceramic Coatings with Exceptional Thermal Shock Resistance
Author(s) Zachary C. Cordero, Isha Gupta
On-Site Speaker (Planned) Zachary C. Cordero
Abstract Scope Conventional ceramic TBCs and EBCs can delaminate under the extreme thermal transients experienced in hypersonic flight (e.g., on aerosurfaces or in propulsion devices). In this talk I will introduce a new class of ultra-tough metal/ceramic coatings specifically designed to withstand these extreme conditions. I will describe the processing, unique structure, and attractive properties of these coatings, then examine their performance in an exemplary application where thermal shock precludes the use of conventional EBCs.
Proceedings Inclusion? Planned:
Keywords Composites, Environmental Effects, Surface Modification and Coatings


Accelerating a Digital Twin of Direct Energy Deposition Additive Manufacturing
Composite Metal/Ceramic Coatings with Exceptional Thermal Shock Resistance
Computational Design of Ni-based SX Superalloys: A Critical Assessment of Machine-learned and Thermodynamic Models in View of Experimental Properties
Computational Discovery and Experimental Validation of Ultra-high Strength BCC Refractory Metal-based MPEAs for Extreme Environments
Degradation Resistance of Refractory Multi-principal Element Alloys for Extreme Environments
High-throughput CALPHAD Exploration of Multi-principal Element Alloy (MPEA) Space for Targeted Properties and Structure
How Do You Integrate Both Simulations and Experiments into a Materials Discovery Optimization Campaign? A Case Study in Multi-fidelity Optimization
Material Design by Additive Manufacturing of Multi-component Metal Alloys
Modeling Thermomechanical Buckling in Combined Extreme Environments
On the Deformation Processes of BCC Refractory Complex Concentrated Alloys
Phase Transforming Metal-ceramic Multilayers for Ultrahigh Temperatures
Simultaneous Bayesian Calibration of Strength, Kinetics, and Phase Boundaries

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