A phase field formulation for hydrogen assisted cracking E Martínez-Pañeda, A Golahmar, CF Niordson Computer Methods in Applied Mechanics and Engineering 342, 742-761, 2018 | 346 | 2018 |
Phase field fracture modelling using quasi-Newton methods and a new adaptive step scheme PK Kristensen, E Martínez-Pañeda Theoretical and Applied Fracture Mechanics 107, 102446, 2020 | 217 | 2020 |
Abaqus2Matlab: A suitable tool for finite element post-processing G Papazafeiropoulos, M Muñiz-Calvente, E Martínez-Pañeda Advances in Engineering Software 105, 9-16, 2017 | 199 | 2017 |
Phase field modelling of crack propagation in functionally graded materials S Natarajan, RK Annabattula, E Martínez-Pañeda Composites Part B: Engineering 169, 239-248, 2019 | 190 | 2019 |
Strain gradient plasticity-based modeling of hydrogen environment assisted cracking E Martínez-Pañeda, CF Niordson, RP Gangloff Acta Materialia 117, 321-332, 2016 | 143 | 2016 |
On fracture in finite strain gradient plasticity E Martínez-Pañeda, CF Niordson International Journal of Plasticity 80, 154-167, 2016 | 132 | 2016 |
A phase field formulation for dissolution-driven stress corrosion cracking C Cui, R Ma, E Martínez-Pañeda Journal of the Mechanics and Physics of Solids 147, 104254, 2021 | 130 | 2021 |
Modeling damage and fracture within strain-gradient plasticity E Martínez-Pañeda, C Betegón International Journal of Solids and Structures 59, 208-215, 2015 | 119 | 2015 |
A phase field model for elastic-gradient-plastic solids undergoing hydrogen embrittlement PK Kristensen, CF Niordson, E Martínez-Pañeda Journal of the Mechanics and Physics of Solids 143, 104093, 2020 | 118 | 2020 |
A cohesive zone framework for environmentally assisted fatigue S del Busto, C Betegón, E Martínez-Pañeda Engineering Fracture Mechanics 185, 210-226, 2017 | 114 | 2017 |
Strain gradient plasticity modeling of hydrogen diffusion to the crack tip E Martínez-Pañeda, S del Busto, CF Niordson, C Betegón International Journal of Hydrogen Energy 41 (24), 10265-10274, 2016 | 100 | 2016 |
Numerical analysis of quasi-static fracture in functionally graded materials E Martínez-Pañeda, R Gallego International Journal of Mechanics and Materials in Design 11, 405-424, 2015 | 100 | 2015 |
An assessment of phase field fracture: crack initiation and growth PK Kristensen, CF Niordson, E Martínez-Pañeda Philosophical Transactions of the Royal Society A 379 (2203), 20210021, 2021 | 97 | 2021 |
A simple and robust Abaqus implementation of the phase field fracture method Y Navidtehrani, C Betegón, E Martínez-Pañeda Applications in Engineering Science 6, 100050, 2021 | 95 | 2021 |
Phase field modelling of fracture and fatigue in Shape Memory Alloys M Simoes, E Martínez-Pañeda Computer Methods in Applied Mechanics and Engineering 373, 113504, 2021 | 93 | 2021 |
On the suitability of slow strain rate tensile testing for assessing hydrogen embrittlement susceptibility E Martínez-Pañeda, ZD Harris, S Fuentes-Alonso, JR Scully, JT Burns Corrosion Science 163, 108291, 2020 | 88 | 2020 |
Analysis of the influence of microstructural traps on hydrogen assisted fatigue R Fernández-Sousa, C Betegón, E Martínez-Pañeda Acta Materialia 199, 253-263, 2020 | 85 | 2020 |
Phase field predictions of microscopic fracture and R-curve behaviour of fibre-reinforced composites W Tan, E Martínez-Pañeda Composites Science and Technology 202, 108539, 2021 | 84 | 2021 |
The role of plastic strain gradients in the crack growth resistance of metals E Martínez-Pañeda, VS Deshpande, CF Niordson, NA Fleck Journal of the Mechanics and Physics of Solids 126, 136-150, 2019 | 83 | 2019 |
A generalised phase field model for fatigue crack growth in elastic–plastic solids with an efficient monolithic solver Z Khalil, AY Elghazouli, E Martinez-Paneda Computer Methods in Applied Mechanics and Engineering 388, 114286, 2022 | 81 | 2022 |