James W. Foulk, Ph.D.

Affiliations: 
2007 University of California, Berkeley, Berkeley, CA, United States 
Area:
Mechanical Engineering, Materials Science Engineering
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"James Foulk"

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Robert O. Ritchie grad student 2007 UC Berkeley
 (A micromechanical basis for predicting the evolution of grain bridging.)
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Publications

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Lim H, Battaile CC, Bishop JE, et al. (2019) Investigating mesh sensitivity and polycrystalline RVEs in crystal plasticity finite element simulations International Journal of Plasticity. 121: 101-115
Karlson KN, Alleman C, Foulk JW, et al. (2019) Sandia Fracture Challenge 3: detailing the Sandia Team Q failure prediction strategy International Journal of Fracture. 218: 149-170
Alleman CN, Foulk JW, Mota A, et al. (2018) Concurrent multiscale modeling of microstructural effects on localization behavior in finite deformation solid mechanics Computational Mechanics. 61: 207-218
Lim H, Abdeljawad F, Owen SJ, et al. (2016) Incorporating physically-based microstructures in materials modeling: Bridging phase field and crystal plasticity frameworks Modelling and Simulation in Materials Science and Engineering. 24
Karlson KN, Foulk JW, Brown AA, et al. (2016) Sandia fracture challenge 2: Sandia California’s modeling approach International Journal of Fracture. 1-17
Boyce BL, Kramer SLB, Bosiljevac TR, et al. (2016) The second Sandia Fracture Challenge: predictions of ductile failure under quasi-static and moderate-rate dynamic loading International Journal of Fracture. 198: 5-100
Emery JM, Field RV, Foulk JW, et al. (2015) Predicting laser weld reliability with stochastic reduced-ordermodels International Journal For Numerical Methods in Engineering
Dadfarnia M, Somerday BP, Schembri PE, et al. (2014) On modeling hydrogen-induced crack propagation under sustained load Jom. 66: 1390-1398
Nibur KA, Somerday BP, Marchi CS, et al. (2013) The relationship between crack-tip strain and subcritical cracking thresholds for steels in high-pressure hydrogen gas Metallurgical and Materials Transactions a: Physical Metallurgy and Materials Science. 44: 248-269
Reedy ED, Boyce BL, Foulk JW, et al. (2011) Predicting fracture in micrometer-scale polycrystalline silicon mems structures Journal of Microelectromechanical Systems. 20: 922-932
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