Nitin P. Daphalapurkar, Ph.D.

Affiliations: 
2008 Mechanical Engineering Oklahoma State University, Stillwater, OK, United States 
Area:
Materials Science Engineering, Applied Mechanics, Mechanical Engineering
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"Nitin Daphalapurkar"

Parents

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Hongbing Lu grad student 2008 Oklahoma State University
 (Modeling and simulation of dynamic problems in solid mechanics using material point method.)
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Publications

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Carlsen RW, Daphalapurkar NP. (2015) The importance of structural anisotropy in computational models of traumatic brain injury. Frontiers in Neurology. 6: 28
Cao B, Daphalapurkar NP, Ramesh KT. (2015) Ultra-high-strain-rate shearing and deformation twinning in nanocrystalline aluminum Meccanica. 50: 561-574
Wright TW, Daphalapurkar NP, Ramesh KT. (2014) Stability of ideal fcc twin boundaries Journal of the Mechanics and Physics of Solids. 73: 228-241
Daphalapurkar NP, Wilkerson JW, Wright TW, et al. (2014) Kinetics of a fast moving twin boundary in nickel Acta Materialia. 68: 82-92
Kimberley J, Ramesh KT, Daphalapurkar NP. (2013) A scaling law for the dynamic strength of brittle solids Acta Materialia. 61: 3509-3521
Daphalapurkar NP, Ramesh KT. (2012) Designer materials for a secure future Proceedings of Spie - the International Society For Optical Engineering. 8373
Daphalapurkar NP, Ramesh KT. (2012) Orientation dependence of the nucleation and growth of partial dislocations and possible twinning mechanisms in aluminum Journal of the Mechanics and Physics of Solids. 60: 277-294
Daphalapurkar NP, Ramesh KT, Graham-Brady L, et al. (2011) Predicting variability in the dynamic failure strength of brittle materials considering pre-existing flaws Journal of the Mechanics and Physics of Solids. 59: 297-319
Daphalapurkar NP, Wang F, Fu B, et al. (2011) Determination of Mechanical Properties of Sand Grains by Nanoindentation Experimental Mechanics. 51: 719-728
Daphalapurkar NP, Dai C, Gan RZ, et al. (2009) Characterization of the linearly viscoelastic behavior of human tympanic membrane by nanoindentation. Journal of the Mechanical Behavior of Biomedical Materials. 2: 82-92
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