3D Printing of BaTiO3/PVDF Composites with Electric In Situ Poling for Pressure Sensor Applications H Kim, F Torres, D Villagran, C Stewart, Y Lin, TLB Tseng Macromolecular Materials and Engineering 302 (11), 1700229, 2017 | 179 | 2017 |
Development of functionalized multi-walled carbon-nanotube-based alginate hydrogels for enabling biomimetic technologies B Joddar, E Garcia, A Casas, CM Stewart Scientific reports 6 (1), 32456, 2016 | 128 | 2016 |
Effect of specimen thickness on the fracture resistance of hot mix asphalt in the disk-shaped compact tension (DCT) configuration CM Stewart, CW Oputa, E Garcia Construction and Building Materials 160, 487-496, 2018 | 71 | 2018 |
Increased piezoelectric response in functional nanocomposites through multiwall carbon nanotube interface and fused-deposition modeling three-dimensional printing H Kim, F Torres, MT Islam, MD Islam, LA Chavez, CAG Rosales, ... MRS Communications 7 (4), 960-966, 2017 | 60 | 2017 |
The influence of printing parameters, post-processing, and testing conditions on the properties of binder jetting additive manufactured functional ceramics LA Chavez, P Ibave, B Wilburn, D Alexander IV, C Stewart, R Wicker, ... Ceramics 3 (1), 65-77, 2020 | 56 | 2020 |
A hybrid constitutive model for creep, fatigue, and creep-fatigue damage C Stewart Ph. D. Dissertation, Department of Mechanical and Aerospace Engineering …, 2013 | 52* | 2013 |
Finite-element analysis of waspaloy using sinh creep-damage constitutive model under triaxial stress state MS Haque, CM Stewart Journal of Pressure Vessel Technology 138 (3), 031408, 2016 | 42 | 2016 |
Comparative analysis of the sin-hyperbolic and Kachanov–Rabotnov creep-damage models MS Haque, CM Stewart International Journal of Pressure Vessels and Piping 171, 1-9, 2019 | 41 | 2019 |
Comparison of fracture test standards for a super pave dense-graded hot mix asphalt CM Stewart, JG Reyes, VM Garcia Engineering Fracture Mechanics 169, 262-275, 2017 | 40 | 2017 |
An anisotropic tertiary creep damage constitutive model for anisotropic materials CM Stewart, AP Gordon, YW Ma, RW Neu International Journal of Pressure Vessels and Piping 88 (8-9), 356-364, 2011 | 40 | 2011 |
Strain and damage-based analytical methods to determine the Kachanov–Rabotnov tertiary creep-damage constants CM Stewart, AP Gordon International Journal of Damage Mechanics 21 (8), 1186-1201, 2012 | 36 | 2012 |
The disparate data problem: The calibration of creep laws across test type and stress, temperature, and time scales MS Haque, CM Stewart Theoretical and Applied Fracture Mechanics 100, 251-268, 2019 | 32 | 2019 |
The stress-sensitivity, mesh-dependence, and convergence of continuum damage mechanics models for creep MS Haque, CM Stewart Journal of Pressure Vessel Technology 139 (4), 041403, 2017 | 30 | 2017 |
Exploiting Functional Relationships Between MPC Omega, Theta, and Sinh-Hyperbolic Continuum Damage Mechanics Model MS Haque, CM Stewart Pressure Vessels and Piping Conference 50428, V06AT06A052, 2016 | 30 | 2016 |
A continuum damage mechanics (CDM) based Wilshire model for creep deformation, damage, and rupture prediction JA Cano, CM Stewart Materials Science and Engineering: A 799, 140231, 2021 | 29 | 2021 |
Modeling the creep deformation, damage, and rupture of Hastelloy X Using MPC omega, theta, and sin-hyperbolic models MS Haque, CM Stewart Pressure Vessels and Piping Conference 50428, V06AT06A050, 2016 | 29 | 2016 |
Fatigue crack growth of a hot mix asphalt using digital image correlation CM Stewart, E Garcia International journal of fatigue 120, 254-266, 2019 | 28 | 2019 |
Modeling the temperature dependence of tertiary creep damage of a Ni-based alloy CM Stewart, AP Gordon | 28 | 2009 |
Characterization of the Creep Deformation and Rupture Behavior of DS GTD-111 Using the Kachanov–Rabotnov Constitutive Model CM Stewart, AP Gordon, EA Hogan, A Saxena | 22 | 2011 |
Mechanical behavior of differently oriented electron beam melting Ti–6Al–4V Components Using digital image correlation E Arrieta, M Haque, J Mireles, C Stewart, C Carrasco, RB Wicker Journal of Engineering Materials and Technology 141 (1), 011004, 2019 | 20 | 2019 |