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Gary D. Seidel
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Micromechanical analysis of the effective elastic properties of carbon nanotube reinforced composites
GD Seidel, DC Lagoudas
Mechanics of materials 38 (8-10), 884-907, 2006
5762006
A micromechanics model for the electrical conductivity of nanotube-polymer nanocomposites
GD Seidel, DC Lagoudas
Journal of Composite Materials 43 (9), 917-941, 2009
2072009
Computational micromechanics of clustering and interphase effects in carbon nanotube composites
DC Hammerand, GD Seidel, DC Lagoudas
Mechanics of Advanced Materials and Structures 14 (4), 277-294, 2007
1192007
Effective mechanical properties of “fuzzy fiber” composites
G Chatzigeorgiou, GD Seidel, DC Lagoudas
Composites Part B: Engineering 43 (6), 2577-2593, 2012
932012
On the contribution of carbon nanotube deformation to piezoresistivity of carbon nanotube/polymer composites
AI Oliva-Avilés, F Avilés, GD Seidel, V Sosa
Composites Part B: Engineering 47, 200-206, 2013
872013
Multiscale modeling of the effects of nanoscale load transfer on the effective elastic properties of unfunctionalized carbon nanotube–polyethylene nanocomposites
Y Li, GD Seidel
Modelling and Simulation in Materials Science and Engineering 22 (2), 025023, 2014
752014
Self-sensing of elastic strain, matrix yielding and plasticity in multiwall carbon nanotube/vinyl ester composites
JJ Ku-Herrera, F Avilés, GD Seidel
Smart Materials and Structures 22 (8), 085003, 2013
712013
Analysis of clustering, interphase region, and orientation effects on the electrical conductivity of carbon nanotube–polymer nanocomposites via computational micromechanics
GD Seidel, AS Puydupin-Jamin
Mechanics of Materials 43 (12), 755-774, 2011
632011
Electromechanical peridynamics modeling of piezoresistive response of carbon nanotube nanocomposites
N Prakash, GD Seidel
Computational Materials Science 113, 154-170, 2016
612016
Multiscale modeling of the interface effects in CNT-epoxy nanocomposites
Y Li, GD Seidel
Computational Materials Science 153, 363-381, 2018
602018
Computational micromechanics modeling of inherent piezoresistivity in carbon nanotube–polymer nanocomposites
X Ren, GD Seidel
Journal of Intelligent Material Systems and Structures 24 (12), 1459-1483, 2013
602013
Dielectrophoretic modeling of the dynamic carbon nanotube network formation in viscous media under alternating current electric fields
AI Oliva-Avilés, F Avilés, V Sosa, GD Seidel
Carbon 69, 342-354, 2014
592014
Computational micromechanics analysis of electron-hopping-induced conductive paths and associated macroscale piezoresistive response in carbon nanotube–polymer nanocomposites
AK Chaurasia, GD Seidel
Journal of Intelligent Material Systems and Structures 25 (17), 2141-2164, 2014
562014
A model for predicting the evolution of damage in viscoelastic particle-reinforced composites
GD Seidel, DH Allen, KLE Helms, SE Groves
Mechanics of Materials 37 (1), 163-178, 2005
552005
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 micromechanics modeling of piezoresistivity in carbon nanotube–polymer nanocomposites
X Ren, GD Seidel
Composite Interfaces 20 (9), 693-720, 2013
482013
A micromechanics model for the thermal conductivity of nanotube-polymer nanocomposites
GD Seidel, DC Lagoudas
472008
Multiscale modeling of functionalized interface effects on the effective elastic material properties of CNT–polyethylene nanocomposites
Y Li, GD Seidel
Computational Materials Science 107, 216-234, 2015
462015
Computational electromechanical peridynamics modeling of strain and damage sensing in nanocomposite bonded explosive materials (NCBX)
N Prakash, GD Seidel
Engineering Fracture Mechanics 177, 180-202, 2017
452017
Modeling of mesoscale dispersion effect on the piezoresistivity of carbon nanotube-polymer nanocomposites via 3D computational multiscale micromechanics methods
X Ren, AK Chaurasia, AI Oliva-Avilés, JJ Ku-Herrera, GD Seidel, F Avilés
Smart Materials and Structures 24 (6), 065031, 2015
452015
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