Search Results
Magnetically aligned electrodes predicted to increase lithium-ion battery capacity by as much as 25%
CMI research at Ames Laboratory developed a coupled electrochemical-thermal-mechanical model to predict the electrochemical degradation and performance of magnetically aligned electrodes in lithium-ion batteries for fast-charging applications
CMI research conducted at Ames Laboratory developed a finite-element (FE) model for a SmCo5 magnet matrix with Sm2O3 impurities. The results accurately predict the stress distribution from a three-point bend analysis to identify domains of stress concentration and failure.
CMI researchers at Ames Laboratory and Oak Ridge National Laboratory designed and demonstrated a new reactor for producing rare earth magnet materials in high magnetic fields via hydrogenation-disproportionation-desorption-recombination (HDDR) chemistry.
CMI researchers at Ames Laboratory and Oak Ridge National Laboratory demonstrated increases in coercivity and energy product and tuning of phase transformation temperatures in alnico using high magnetic field processing
Ames Laboratory Scientist-II
Insider - August 2020
CMI researchers at Oak Ridge National Laboratory developed a critical materials recovery and circular economy research laboratory
CMI researchers at Oak Ridge National Laboratory developed a machine vision for automated pattern recognition
CMI researchers at Lawrence Livermore National Laboratory, Idaho National Laboratory and Pennsylvania State University working on biosorption used a novel protein for selective binding with rare earth elements
Research Scientist IV; Adjunct Professor , DMSE, Ames National Lab