Viraj Singh, Ph.D.

Affiliations: 
2014 Mechanical Engineering University of Kansas, Lawrence, KS, United States 
Area:
Mechanical Engineering
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"Viraj Singh"

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Anil Misra grad student 2014 University of Kansas
 (Nonlinear Rate-Dependent Material Model with Damage and Plasticity from Granular Micromechanics Approach.)
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Publications

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Misra A, Singh V, Darabi MK. (2019) Asphalt pavement rutting simulated using granular micromechanics-based rate-dependent damage-plasticity model International Journal of Pavement Engineering. 20: 1012-1025
Kanshana JS, Khanna V, Singh V, et al. (2017) Progression and characterization of the accelerated atherosclerosis in iliac artery of New Zealand White rabbits: effect of Simvastatin. Journal of Cardiovascular Pharmacology
Singh V, Jain M, Misra A, et al. (2015) Curcuma oil ameliorates insulin resistance & associated thrombotic complications in hamster & rat. The Indian Journal of Medical Research. 141: 823-32
Song L, Ye Q, Ge X, et al. (2015) Development of methacrylate/silorane hybrid monomer system: Relationship between photopolymerization behavior and dynamic mechanical properties. Journal of Biomedical Materials Research. Part B, Applied Biomaterials
Misra A, Parthasarathy R, Singh V, et al. (2015) Micro-poromechanics model of fluid-saturated chemically active fibrous media. Zeitschrift Fur Angewandte Mathematik Und Mechanik. 95: 215-234
Singh V, Misra A, Parthasarathy R, et al. (2015) Viscoelastic properties of collagen-adhesive composites under water-saturated and dry conditions. Journal of Biomedical Materials Research. Part A. 103: 646-57
Misra A, Singh V. (2015) Thermomechanics-based nonlinear rate-dependent coupled damage-plasticity granular micromechanics model Continuum Mechanics and Thermodynamics. 27: 787-817
Misra A, Parthasarathy R, Ye Q, et al. (2014) Swelling equilibrium of dentin adhesive polymers formed on the water-adhesive phase boundary: experiments and micromechanical model. Acta Biomaterialia. 10: 330-42
Misra A, Singh V. (2014) Nonlinear granular micromechanics model for multi-axial rate-dependent behavior International Journal of Solids and Structures. 51: 2272-2282
Misra A, Parthasarathy R, Singh V, et al. (2013) Poromechanics Parameters of Fluid-Saturated Chemically Active Fibrous Media Derived from a Micromechanical Approach. Journal of Nanomechanics & Micromechanics. 3
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