Matthew J. Kramer
Matthew J. Kramer
Division Director, Materials Sciences and Engineering, Ames Laboratory
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Cited by
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Highly optimized embedded-atom-method potentials for fourteen fcc metals
HW Sheng, MJ Kramer, A Cadien, T Fujita, MW Chen
Physical Review B 83 (13), 134118, 2011
Analysis of semi-empirical interatomic potentials appropriate for simulation of crystalline and liquid Al and Cu
MI Mendelev, MJ Kramer, CA Becker, M Asta
Philosophical Magazine 88 (12), 1723-1750, 2008
Development of suitable interatomic potentials for simulation of liquid and amorphous Cu–Zr alloys
MI Mendelev, MJ Kramer, RT Ott, DJ Sordelet, D Yagodin, P Popel
Philosophical Magazine 89 (11), 967-987, 2009
Using atomistic computer simulations to analyze x-ray diffraction data from metallic glasses
MI Mendelev, DJ Sordelet, MJ Kramer
Journal of Applied Physics 102 (4), 043501, 2007
Prospects for non-rare earth permanent magnets for traction motors and generators
MJ Kramer, RW McCallum, IA Anderson, S Constantinides
Jom 64 (7), 752-763, 2012
Cerium: an unlikely replacement of dysprosium in high performance Nd–Fe–B permanent magnets
AK Pathak, M Khan, KA Gschneidner Jr, RW McCallum, L Zhou, K Sun, ...
Advanced Materials 27 (16), 2663-2667, 2015
Current progress and future challenges in rare-earth-free permanent magnets
J Cui, M Kramer, L Zhou, F Liu, A Gabay, G Hadjipanayis, ...
Acta Materialia 158, 118-137, 2018
Structural heterogeneity and medium-range order in metallic glasses
M Li, CZ Wang, SG Hao, MJ Kramer, KM Ho
Physical Review B 80 (18), 184201, 2009
On-the-fly machine-learning for high-throughput experiments: search for rare-earth-free permanent magnets
AG Kusne, T Gao, A Mehta, L Ke, MC Nguyen, KM Ho, V Antropov, ...
Scientific reports 4 (1), 1-7, 2014
Boron-doped molybdenum silicides for structural applications
M Akinc, MK Meyer, MJ Kramer, AJ Thom, JJ Huebsch, B Cook
Materials Science and Engineering: A 261 (1-2), 16-23, 1999
Hole filling, charge transfer and superconductivity in Nd1+ xBa2− xCu3O7+ δ
MJ Kramer, SI Yoo, RW McCallum, WB Yelon, H Xie, P Allenspach
Physica C: Superconductivity 219 (1-2), 145-155, 1994
Practical aspects of modern and future permanent magnets
RW McCallum, LH Lewis, R Skomski, MJ Kramer, IE Anderson
Annual Review of Materials Research 44, 451-477, 2014
Processing and mechanical properties of a molybdenum silicide with the composition Mo–12Si–8.5 B (at.%)
JH Schneibel, MJ Kramer, ÷ ‹nal, RN Wright
Intermetallics 9 (1), 25-31, 2001
Nanoscale Structure and Structural Relaxation in Bulk Metallic Glass
J Hwang, ZH Melgarejo, YE Kalay, I Kalay, MJ Kramer, DS Stone, ...
Physical review letters 108 (19), 195505, 2012
A Mo–Si–B intermetallic alloy with a continuous α-Mo matrix
JH Schneibel, MJ Kramer, DS Easton
Scripta Materialia 46 (3), 217-221, 2002
Compressive creep behavior of Mo5Si3 with the addition of boron
MK Meyer, MJ Kramer, M Akinca
Intermetallics 4 (4), 273-281, 1996
Nature of the cubic to rhombohedral structural transformation in thermoelectric material
BA Cook, MJ Kramer, X Wei, JL Harringa, EM Levin
Journal of Applied Physics 101 (5), 053715, 2007
Controlled Anisotropic Growth of Co‐Fe‐P from Co‐Fe‐O Nanoparticles
A Mendoza‐Garcia, H Zhu, Y Yu, Q Li, L Zhou, D Su, MJ Kramer, S Sun
Angewandte Chemie 127 (33), 9778-9781, 2015
Architecture and magnetism of alnico
L Zhou, MK Miller, P Lu, L Ke, R Skomski, H Dillon, Q Xing, A Palasyuk, ...
Acta Materialia 74, 224-233, 2014
Development of interatomic potentials appropriate for simulation of liquid and glass properties of NiZr2 alloy
MI Mendelev, MJ Kramer, SG Hao, KM Ho, CZ Wang
Philosophical Magazine 92 (35), 4454-4469, 2012
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