Anthony D. Rollett, Ph.D.

Affiliations: 
Materials Science and Engineering Carnegie Mellon University, Pittsburgh, PA 
Area:
Structure-property relationships, computer simulation, grain boundaries
Website:
http://rollett.org/anthony/
Google:
"Anthony Rollett"
Bio:

Professor Rollett obtained an M.A. in Metallurgy and Materials Science from Cambridge University, England in 1977 and a Ph.D. in Materials Engineering from Drexel University in 1987. He worked for the Los Alamos National Laboratory for sixteen years, rising to be the Deputy Director of the Materials Science & Technology Division in 1994. He then moved to CMU to be the Department Head in Materials Science & Engineering, which position he occupied from 1995 to 2000. He became a Fellow of ASM International in 1996 and a Fellow of the Institute of Physics (UK) in 2004. He is active in the Materials Research Science & Engineering Center at CMU; is the Focal Area Point of Contact for Computational Chemistry & Materials for the DoD; is the Chair of the International Committee for the Conference on Recrystallization and Grain Growth; was Chair of the International Conference on Textures of Materials (ICOTOM) held at CMU in 2008; he also is involved in the DOE Computational Materials Science Network; and is a Fellow of the Minerals, Metals and Materials Society, 2011.
(Show less)

Mean distance: 2341.94
 
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.

Hsu T, Mahbub R, Mason JH, et al. (2020) High performance modeling of heterogeneous SOFC electrode microstructures using the MOOSE framework: ERMINE (Electrochemical Reactions in MIcrostructural NEtworks). Methodsx. 7: 100822
Sridhar SK, Stebner AP, Rollett AD. (2020) Statistical variations in predicted martensite variant volume fractions in superelastically deformed NiTi modeled using habit plane variants versus correspondence variants International Journal of Solids and Structures
Hsu T, Mason JH, Mahbub R, et al. (2020) Distributions of local electrochemistry in heterogeneous microstructures of solid oxide fuel cells using high-performance computations Electrochimica Acta. 345: 136191
Lebensohn RA, Rollett AD. (2020) Spectral methods for full-field micromechanical modelling of polycrystalline materials Computational Materials Science. 173: 109336
Jiang R, Mostafaei A, Wu Z, et al. (2020) Effect of heat treatment on microstructural evolution and hardness homogeneity in laser powder bed fusion of alloy 718 Additive Manufacturing. 35: 101282
Bhattacharyya JJ, Nair S, Pagan DC, et al. (2020) In-situ high energy X-ray diffraction study of the elastic response of a metastable β-titanium alloy Acta Materialia. 197: 300-308
Wu Z, Narra SP, Rollett A. (2020) Exploring the fabrication limits of thin-wall structures in a laser powder bed fusion process The International Journal of Advanced Manufacturing Technology. 110: 191-207
Gordon JV, Vinci RP, Hochhalter JD, et al. (2019) Quantification of location-dependence in a large-scale additively manufactured build through experiments and micromechanical modeling Materialia. 7: 100397
Jiang R, Mostafaei A, Pauza J, et al. (2019) Varied heat treatments and properties of laser powder bed printed Inconel 718 Materials Science and Engineering a-Structural Materials Properties Microstructure and Processing. 755: 170-180
Wynblatt P, Chatain D, Rollett A, et al. (2019) Origin of an unusual systematic variation in the heteroepitaxy of Ag on Ni – The roles of twinning and step alignment Acta Materialia. 168: 121-132
See more...