Recent development trends in metal forming Z Gronostajski, Z Pater, L Madej, A Gontarz, L Lisiecki, A Łukaszek-Sołek, ... Archives of Civil and Mechanical Engineering 19 (3), 898-941, 2019 | 140 | 2019 |
A perceptive comparison of the cellular automata and Monte Carlo techniques in application to static recrystallization modeling in polycrystalline materials L Sieradzki, L Madej Computational Materials Science 67, 156-173, 2013 | 115 | 2013 |
Computational Materials Engineering: Achieving high accuracy and efficiency in metals processing simulations M Pietrzyk, L Madej, L Rauch, D Szeliga Butterworth-Heinemann, 2015 | 89 | 2015 |
Digital Material Representation as an efficient tool for strain inhomogeneities analysis at the micro scale level L Madej, L Rauch, K Perzynski, P Cybulka Archives of Civil and Mechanical Engineering 11 (3), 661-679, 2011 | 85 | 2011 |
Models and modelling for process limits in metal forming W Volk, P Groche, A Brosius, A Ghiotti, BL Kinsey, M Liewald, L Madej, ... CIRP Annals 68 (2), 775-798, 2019 | 84 | 2019 |
Multi scale cellular automata and finite element based model for cold deformation and annealing of a ferritic–pearlitic microstructure L Madej, L Sieradzki, M Sitko, K Perzynski, K Radwanski, R Kuziak Computational Materials Science 77, 172-181, 2013 | 72 | 2013 |
Recent development in orbital forging technology J Nowak, L Madej, S Ziolkiewicz, A Plewinski, F Grosman, M Pietrzyk International Journal of Material Forming 1, 387-390, 2008 | 71 | 2008 |
Digital/virtual microstructures in application to metals engineering–A review L Madej Archives of Civil and Mechanical Engineering 17 (4), 839-854, 2017 | 60 | 2017 |
Development of the multi-scale analysis model to simulate strain localization occurring during material processing L Madej, PD Hodgson, M Pietrzyk Archives of Computational Methods in Engineering 16, 287-318, 2009 | 52 | 2009 |
Multiscale modelling of microstructure evolution during laminar cooling of hot rolled DP steels M Pietrzyk, Ł Madej, Ł Rauch, R Gołąb Archives of Civil and Mechanical Engineering 10 (4), 57-67, 2010 | 50 | 2010 |
Multi-scale rheological model for discontinuous phenomena in materials under deformation conditions L Madej, PD Hodgson, M Pietrzyk Computational Materials Science 38 (4), 685-691, 2007 | 49 | 2007 |
Concurrent and upscaling methods in multi scale modelling-case studies A Mrozek, W Kuś, T Burczyński, M Pietrzyk Computer methods in materials science 8 (1), 1-15, 2008 | 47 | 2008 |
Computer aided development of the levelling technology for flat products L Madej, K Muszka, K Perzyński, J Majta, M Pietrzyk CIRP annals 60 (1), 291-294, 2011 | 44 | 2011 |
Application of the automatic image processing in modeling of the deformation mechanisms based on the digital representation of microstructure L Rauch, L Madej International Journal for Multiscale computational engineering 8 (3), 2010 | 44 | 2010 |
The effects of deformation and microstructure inhomogeneities in the Accumulative Angular Drawing (AAD) K Muszka, L Madej, J Majta Materials Science and Engineering: A 574, 68-74, 2013 | 43 | 2013 |
Numerical modeling of dual phase microstructure behavior under deformation conditions on the basis of digital material representation L Madej, J Wang, K Perzynski, PD Hodgson Computational Materials Science 95, 651-662, 2014 | 42 | 2014 |
Tool for optimal design of manufacturing chain based on metal forming M Pietrzyk, L Madej, S Weglarczyk CIRP annals 57 (1), 309-312, 2008 | 41 | 2008 |
Discrete micro-scale cellular automata model for modelling phase transformation during heating of dual phase steels C Halder, L Madej, M Pietrzyk Archives of Civil and Mechanical Engineering 14 (1), 96-103, 2014 | 39 | 2014 |
Perceptive comparison of mean and full field dynamic recrystallization models L Madej, M Sitko, M Pietrzyk Archives of Civil and Mechanical Engineering 16, 569-589, 2016 | 33 | 2016 |
Optimization of cellular automata model for the heating of dual-phase steel by genetic algorithm and genetic programming C Halder, L Madej, M Pietrzyk, N Chakraborti Materials and Manufacturing Processes 30 (4), 552-562, 2015 | 32 | 2015 |