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Naveen Prakash
Naveen Prakash
Corning Incorporated, Los Alamos National Laboratory (Former), Virginia Tech (Former)
Verified email at corning.com - Homepage
Title
Cited by
Cited by
Year
Electromechanical peridynamics modeling of piezoresistive response of carbon nanotube nanocomposites
N Prakash, GD Seidel
Computational Materials Science 113, 154-170, 2016
612016
A novel two-parameter linear elastic constitutive model for bond based peridynamics
N Prakash, GD Seidel
56th AIAA/ASCE/AHS/ASC structures, structural dynamics, and materials …, 2015
502015
Computational Electromechanical Peridynamics Modeling of Strain and Damage Sensing in Nanocomposite Bonded Explosive Materials (NCBX)
N Prakash, GD Seidel
Engineering Fracture Mechanics, 2017
452017
A Multi-threaded Method to Assemble a Sparse Stiffness Matrix for Quasi-static Solutions of Linearized Bond-Based Peridynamics
N Prakash, RJ Stewart
Journal of Peridynamics and Nonlocal Modeling, 2020
262020
Effects of microscale damage evolution on piezoresistive sensing in nanocomposite bonded explosives under dynamic loading via electromechanical peridynamics
N Prakash, GD Seidel
Modelling and Simulation in Materials Science and Engineering 26 (1), 015003, 2017
232017
Mesoscale Strain and Damage Sensing in Nanocomposite Bonded Energetic Materials under Low Velocity Impact with Frictional Heating via Peridynamics
KK Talamadupula, S Povolny, N Prakash, GD Seidel
Modelling and Simulation in Material Science and Engineering, 2020
172020
A meshfree peridynamic model for brittle fracture in randomly heterogeneous materials
Y Fan, H You, X Tian, X Yang, X Li, N Prakash, Y Yu
Computer Methods in Applied Mechanics and Engineering 399, 115340, 2022
162022
Piezoresistive detection of simulated hotspots and the effects of low velocity impact at the mesoscale in nanocomposite bonded energetic materials via multiphysics peridynamics …
KK Talamadupula, S Povolny, N Prakash, GD Seidel
Computational Materials Science 188, 110211, 2021
142021
Investigation of microscale fracture mechanisms in glass–ceramics using peridynamics simulations
N Prakash, B Deng, RJ Stewart, CM Smith, JT Harris
Journal of the American Ceramic Society 105 (6), 4304-4320, 2022
112022
Calibrating Bond-Based Peridynamic Parameters Using a Novel Least Squares Approach
N Prakash
Journal of Peridynamics and Nonlocal Modeling, 1-11, 2018
102018
Frangible glass articles and methods of making the same
JTHJJMCNPVMSCSRJ Stewart
US Patent App. 11/827,559, 2023
7*2023
Bison improvements for robustness and speed
BW Spencer, RL Williamson, AD Lindsay, F Kong, RJ Gardner, JD Hales, ...
Idaho National Lab.(INL), Idaho Falls, ID (United States), 2018
72018
Coupled electromechanical peridynamics modeling of strain and damage sensing in carbon nanotube reinforced polymer nanocomposites
N Prakash
Virginia Tech, 2017
72017
Coupled electromechanical peridynamic modeling of strain and damage sensing in granular energetic materials
N Prakash, GD Seidel
58th AIAA/ASCE/AHS/ASC Structures, Structural Dynamics, and Materials …, 2017
62017
A coupled electromechanical peridynamics framework for modeling carbon nanotube reinforced polymer composites
N Prakash, GD Seidel
57th AIAA/ASCE/AHS/ASC Structures, Structural Dynamics, and Materials …, 2016
62016
Detecting “Hot-Spot” Damage in Granular Energetics Using a Thermo-electromechanical Peridynamics Model
S Povolny, KK Talamadupula, N Prakash, GD Seidel
AIAA Scitech 2019 Forum, 0962, 2019
32019
Modeling dynamic fragmentation of tempered glass
RJ Stewart, N Prakash
Engineering Fracture Mechanics 289, 109422, 2023
22023
A General Numerical Method to Model Anisotropy in Discretized Bond-Based Peridynamics
N Prakash
Journal of Peridynamics and Nonlocal Modeling 4 (2), 257-302, 2022
22022
Strain and damage sensing at the mesoscale in energetic materials in response to localized thermal loads
SJ Povolny, KT Talamadupula, N Prakash, GD Seidel
Behavior and Mechanics of Multifunctional Materials XIII 10968, 48-55, 2019
12019
A general constitutive framework for the combined creep, plasticity and swelling behavior of nuclear fuels in an implicit hypoelastic formulation
N Prakash, C Matthews, D Versino, C Unal
https://doi.org/10.2172/1493517, 2019
12019
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Articles 1–20