The particle finite element method (PFEM) in thermo‐mechanical problems JM Rodriguez, JM Carbonell, JC Cante, J Oliver International journal for numerical methods in engineering 107 (9), 733-785, 2016 | 77 | 2016 |
Continuous chip formation in metal cutting processes using the Particle Finite Element Method (PFEM) JM Rodríguez, JM Carbonell, JC Cante, J Oliver International Journal of Solids and Structures 120, 81-102, 2017 | 59 | 2017 |
Numerical methods for the modelling of chip formation JM Rodríguez, JM Carbonell, P Jonsen Archives of Computational Methods in Engineering 27, 387-412, 2020 | 57 | 2020 |
Simulation of metal cutting using the particle finite-element method and a physically based plasticity model JM Rodríguez, P Jonsén, A Svoboda Computational Particle Mechanics 4, 35-51, 2017 | 41 | 2017 |
The particle finite element method for transient granular material flow: modelling and validation S Larsson, JM Rodríguez Prieto, G Gustafsson, HÅ Häggblad, P Jonsén Computational Particle Mechanics 8, 135-155, 2021 | 25 | 2021 |
Generation of segmental chips in metal cutting modeled with the PFEM JM Rodriguez Prieto, JM Carbonell, JC Cante, J Oliver, P Jonsen Computational Mechanics 61, 639-655, 2018 | 22 | 2018 |
A novel particle-based approach for modeling a wet vertical stirred media mill S Larsson, JM Rodríguez Prieto, H Heiskari, P Jonsén Minerals 11 (1), 55, 2021 | 19 | 2021 |
Modelling 3D metal cutting problems with the particle finite element method JM Carbonell, JM Rodríguez, E Oñate Computational Mechanics 66, 603-624, 2020 | 18 | 2020 |
Numerical modeling of metal cutting processes using the particle finite element method (PFEM) JM Rodríguez Universitat Politècnica de Catalunya (UPC), Barcelona, 2014 | 16 | 2014 |
Discretization approaches to model orthogonal cutting with lagrangian, arbitrary lagrangian eulerian, particle finite element method and smooth particle hydrodynamics formulations P Sridhar, JMR Prieto, KM de Payrebrune Procedia CIRP 93, 1496-1501, 2020 | 14 | 2020 |
A sensibility analysis to geometric and cutting conditions using the particle finite element method (PFEM) J Rodríguez, P Arrazola, J Cante, A Kortabarria, J Oliver Procedia CIRP 8, 105-110, 2013 | 14 | 2013 |
Implicit or explicit time integration schemes in the PFEM modeling of metal cutting processes JM Rodriguez, S Larsson, JM Carbonell, P Jonsén Computational Particle Mechanics, 1-25, 2022 | 13 | 2022 |
Dislocation density based flow stress model applied to the PFEM simulation of orthogonal cutting processes of Ti-6Al-4V JM Rodríguez, S Larsson, JM Carbonell, P Jonsén Materials 13 (8), 1979, 2020 | 11 | 2020 |
On the numerical modelling of machining processes via the Particle finite Element method (PFEM) JM Rodríguez, JCC Terán, J Oliver International Center for Numerical Methods in Engineering, 2015 | 10 | 2015 |
Dislocation density based material model applied in PFEM-simulation of metal cutting JM Rodríguez, P Jonsén, A Svoboda Procedia Cirp 58, 193-197, 2017 | 9 | 2017 |
Experimental and PFEM-simulations of residual stresses from turning tests of a cylindrical Ti-6Al-4V shaft J Holmberg, JMR Prieto, J Berglund, A Sveboda, P Jonsén Procedia CIRP 71, 144-149, 2018 | 7 | 2018 |
Modeling grinding processes—Mesh or mesh-free methods, 2D or 3D approach? P Sridhar, JM Rodríguez Prieto, KM de Payrebrune Journal of Manufacturing and Materials Processing 6 (5), 120, 2022 | 5 | 2022 |
2D linear finite element simulation of laser metal heating for digital twins D Montoya-Zapata, JM Rodríguez, A Moreno, J Posada, O Ruiz-Salguero International Journal for Simulation and Multidisciplinary Design …, 2021 | 5 | 2021 |
A particle finite element method for machining simulations JM Rodriguez Prieto, P Jonsén, A Svoboda VII European Congress on Computational Methods in Applied Sciences and …, 2016 | 5 | 2016 |
Thermomechanical simulation of orthogonal metal cutting with PFEM and SPH using a temperature-dependent friction coefficient: A comparative study JM Rodríguez Prieto, S Larsson, M Afrasiabi Materials 16 (10), 3702, 2023 | 3 | 2023 |