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Methods for High-Throughput Alloy Discovery
This invention involves a software system, platform, and method for high-throughput alloy discovery and screening. It leverages an industrial practice of scrap remelting to systematically harvest chemistry-control samples, followed by storage and recycling. This process can provide higher throughput than conventional alloy synthesis conducted in laboratories....
Published: 3/23/2026   |   Updated: 3/23/2026   |   Inventor(s): Marat Latypov
Keywords(s):  
Category(s): Technology Classifications > Engineering & Physical Sciences > Industrial & Manufacturing, Technology Classifications > Materials > Metals, Technology Classifications > Software & Information Technology > Manufacturing
Wafer-Scale Synthesis and Deposition of One-Dimensional Materials with Precisely Controlled Intervals on Thermally Treated Substrates
This invention introduces a novel method for wafer-scale alignment and synthesis of one-dimensional (1D) materials, using thermally treated substrates to create step-like surface features that act as templates for precise material deposition. This technique involves creating patterned features on the surface of a substrate using high-temperature annealing....
Published: 10/31/2025   |   Updated: 3/3/2025   |   Inventor(s): Zafer Mutlu, Kentaro Yumigeta, Muhammed Yusufoglu
Keywords(s):  
Category(s): Technology Classifications > Engineering & Physical Sciences > Industrial & Manufacturing, Technology Classifications > Materials > Metals, Technology Classifications > Materials > Processing
Method of Determining the Microstructure of Additively Manufactured Metallic Materials using In-Situ Process Monitoring Data
The technology is a method that can improve additive manufacturing by actively monitoring the deposition of materials. In this novel method, the in-situ monitoring data plays a critical role in enhancing the understanding and control of microstructural development during the printing process. By leveraging this data, the technology can dynamically adjust...
Published: 3/13/2025   |   Updated: 1/12/2024   |   Inventor(s): Andrew Wessman, Mohammed Shafae
Keywords(s):  
Category(s): Technology Classifications > Materials > Metals, Technology Classifications > Engineering & Physical Sciences > Industrial & Manufacturing
Producing Environmentally Benign Materials from Mine Tailings using Hydrocarbon Polymerization
This invention is a way of making mine tailings more environmentally-friendly and efficient. The method stabilizes the mine tailings by creating a solid product of easily removable heavy metals that, in the event of failure, can devastate the surrounding environment if still present. This technology can be used in the nano-composite fabrication of hydrophobic,...
Published: 8/1/2024   |   Updated: 5/17/2018   |   Inventor(s): Jaeheon Lee
Keywords(s):  
Category(s): Technology Classifications > Engineering & Physical Sciences > Industrial & Manufacturing > Mining, Technology Classifications > Materials > Processing, Technology Classifications > Materials > Metals