Pascal Bellon
Affiliations: | University of Illinois, Urbana-Champaign, Urbana-Champaign, IL |
Area:
Materials Science Engineering, Condensed Matter PhysicsGoogle:
"Pascal Bellon"Mean distance: (not calculated yet)
Children
Sign in to add traineeRaul A. Enrique | grad student | 2001 | UIUC |
Jia Ye | grad student | 2006 | UIUC |
Wenjun Cai | grad student | 2010 | UIUC |
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Publications
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Li Q, Shang X, Janicek B, et al. (2020) Evolution of Nb oxide nanoprecipitates in Cu during reactive mechanical alloying Journal of Materials Research. 35: 98-111 |
Daniels C, Bellon P. (2020) Hybrid kinetic Monte Carlo algorithm for strongly trapping alloy systems Computational Materials Science. 173: 109386 |
Soisson F, Bellon P, Martin G. (2019) Two-phase dynamical equilibria driven by irradiation in ordered alloys. Physical Review. B, Condensed Matter. 46: 11332-11345 |
Salomons E, Bellon P, Soisson F, et al. (2019) Dynamical lattice models for binary alloys under irradiation: Mean-field solutions and Monte Carlo simulations. Physical Review. B, Condensed Matter. 45: 4582-4593 |
Bellon P. (2019) Grand canonical stochastic potential for ordering and phase coexistence in driven systems. Physical Review. B, Condensed Matter. 45: 7517-7520 |
Grandjean Y, Bellon P, Martin G. (2019) Kinetic model for equilibrium and nonequilibrium segregation in concentrated alloys under irradiation. Physical Review. B, Condensed Matter. 50: 4228-4231 |
Bellon P, Martin G. (2019) Irradiation-induced formation of metastable phases: A master-equation approach. Physical Review. B, Condensed Matter. 38: 2570-2582 |
Cai W, Bellon P. (2019) Effect of annealing treatment on the dry sliding wear behavior of copper Wear. 1187-1194 |
Cai W, Bellon P, Beaudoin AJ. (2019) Probing the subsurface lattice rotation dynamics in bronze after sliding wear Scripta Materialia. 172: 6-11 |
Verma N, Pant N, Beach JA, et al. (2019) Effects of ternary alloy additions on the microstructure of highly immiscible Cu alloys subjected to severe plastic deformation: An evaluation of the effective temperature model Acta Materialia. 170: 218-230 |