Jonghyun Lee, Ph.D.

Affiliations: 
2007 University of Massachusetts, Amherst, Amherst, MA 
Area:
Mechanical Engineering, Materials Science Engineering
Google:
"Jonghyun Lee"

Parents

Sign in to add mentor
Robert W. Hyers grad student 2007 U Mass Amherst
 (Non-contact measurement of creep resistance of ultra-high-temperature materials.)
Douglas M. Matson post-doc 2013 Iowa State
BETA: Related publications

Publications

You can help our author matching system! If you notice any publications incorrectly attributed to this author, please sign in and mark matches as correct or incorrect.

Xiao X, Brillo J, Lee J, et al. (2021) Impact of convection on the damping of an oscillating droplet during viscosity measurement using the ISS-EML facility. Npj Microgravity. 7: 36
BRACKER GP, BAKER EB, NAWER J, et al. (2020) The effect of flow regime on surface oscillations during electromagnetic levitation experiments High Temperatures-High Pressures. 49: 49-60
Xiao X, Lee J, Hyers RW, et al. (2019) Numerical representations for flow velocity and shear rate inside electromagnetically levitated droplets in microgravity. Npj Microgravity. 5: 7
Lee J, SanSoucie MP. (2017) Experiments using a Ground-Based Electrostatic Levitator and Numerical Modeling of Melt Convection for the Iron-Cobalt System in Support of Space Experiments. Jom (Warrendale, Pa. : 1989). 69: 1298-1302
Matson DM, Xiao X, Rodriguez JE, et al. (2017) Use of Thermophysical Properties to Select and Control Convection During Rapid Solidification of Steel Alloys Using Electromagnetic Levitation on the Space Station Jom. 69: 1311-1318
Lee J, Wall JJ, Rogers JR, et al. (2015) Non-contact measurements of creep properties of niobium at 1985 °c Measurement Science and Technology. 26
Lee J, Rodriguez JE, Hyers RW, et al. (2015) Measurement of Density of Fe-Co Alloys Using Electrostatic Levitation Metallurgical and Materials Transactions B: Process Metallurgy and Materials Processing Science. 46: 2470-2475
Lee J, Xiao X, Matson DM, et al. (2014) Numerical Prediction of the Accessible Convection Range for an Electromagnetically Levitated Fe50Co50 Droplet in Space Metallurgical and Materials Transactions B: Process Metallurgy and Materials Processing Science. 46: 199-207
Lee J, Matson DM, Binder S, et al. (2014) Magnetohydrodynamic modeling and experimental validation of convection inside electromagnetically levitated Co-Cu droplets Metallurgical and Materials Transactions B: Process Metallurgy and Materials Processing Science. 45: 1018-1023
Lee J, Bradshaw RC, Hyers RW, et al. (2007) Non-contact measurement of creep resistance of ultra-high-temperature materials Materials Science and Engineering A. 463: 185-196
See more...