Kumar S. Vemaganti, Ph.D.

Affiliations: 
2000 University of Texas at Austin, Austin, Texas, U.S.A. 
Area:
mathematics / Civil / Aerospace / Biomedical Engineering
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"Kumar Vemaganti"

Parents

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J. Tinsley Oden grad student 2000 UT Austin (E-Tree)
 (Goal-oriented adaptive modeling of heterogeneous elastic solids.)
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Publications

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Long T, Shende S, Lin CY, et al. (2022) Experiments and hyperelastic modeling of porcine meniscus show heterogeneity at high strains. Biomechanics and Modeling in Mechanobiology
Kenja K, Madireddy S, Vemaganti K. (2020) Calibration of hyperelastic constitutive models: the role of boundary conditions, search algorithms, and experimental variability. Biomechanics and Modeling in Mechanobiology
Roy A, Sista B, Vemaganti K. (2020) Testing the Validity of Greenwood and Tripp’s Sum Surface Assumption for Elastic-Plastic Contact Journal of Tribology. 142
Vemaganti K, Madireddy S, Kedari S. (2019) On the inference of viscoelastic constants from stress relaxation experiments Mechanics of Time-Dependent Materials. 24: 1-24
Bhagwat P, Sista B, Vemaganti K. (2017) A Computational Study of the Effects of Strain Hardening in Micro-asperity Friction Models Tribology Letters. 65
Madireddy S, Sista B, Vemaganti K. (2016) Bayesian calibration of hyperelastic constitutive models of soft tissue Journal of the Mechanical Behavior of Biomedical Materials. 59: 108-127
Madireddy S, Sista B, Vemaganti K. (2015) Bayesian calibration of hyperelastic constitutive models of soft tissue. Journal of the Mechanical Behavior of Biomedical Materials. 59: 108-127
Sista B, Vemaganti K. (2015) A Computational Study of Dry Static Friction Between Elastoplastic Surfaces Using a Statistically Homogenized Microasperity Model Journal of Tribology. 137
Madireddy S, Sista B, Vemaganti K. (2015) A Bayesian approach to selecting hyperelastic constitutive models of soft tissue Computer Methods in Applied Mechanics and Engineering. 291: 102-122
Sista B, Vemaganti K. (2014) Estimation of statistical parameters of rough surfaces suitable for developing micro-asperity friction models Wear. 316: 6-18
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