- Develop a framework for converting prior expert knowledge into actionable materials intelligence to quickly identify feasible materials spaces.
- Combine multiple information sources, consisting of optimally trained physics-informed ML models or ML-augmented physics simulations capable of emulating yet-to-be-explored materials spaces, to accelerate the discovery of complex materials using advanced Bayesian methods.
- Leverage a fully integrated and automated platform for high-throughput synthesis and processing of bulk complex metal alloys, with unique experimental facilities for their rapid characterization under high strain rates.
- Train a new generation of highly skilled researchers to address the US Army’s strategic needs in AI/ML-powered advanced materials innovation.
Our vision is to create a versatile and transferrable framework that is materials and application agnostic to expedite the discovery of Army-relevant materials.
Our mission is to deploy this framework as an integrated experimental-computational – AI/ML platform to accelerate the discovery of materials for high strain-rate and other Army-relevant applications.