3D-printable bioactivated nanocellulose–alginate hydrogels J Leppiniemi, P Lahtinen, A Paajanen, R Mahlberg, S Metsa-Kortelainen, ... ACS applied materials & interfaces 9 (26), 21959-21970, 2017 | 337 | 2017 |
The significance of spatial length scales and solute segregation in strengthening rapid solidification microstructures of 316L stainless steel T Pinomaa, M Lindroos, M Walbrühl, N Provatas, A Laukkanen Acta Materialia 184, 1-16, 2020 | 138 | 2020 |
Quantitative phase field modeling of solute trapping and continuous growth kinetics in quasi-rapid solidification T Pinomaa, N Provatas Acta Materialia 168, 167-177, 2019 | 87 | 2019 |
Quantitative 3D phase field modelling of solidification using next-generation adaptive mesh refinement M Greenwood, KN Shampur, N Ofori-Opoku, T Pinomaa, L Wang, ... Computational Materials Science 142, 153-171, 2018 | 65 | 2018 |
Ferromagnetic Interface between Nonmagnetic Perovskites R Oja, M Tyunina, L Yao, T Pinomaa, T Kocourek, A Dejneka, O Stupakov, ... Physical review letters 109 (12), 127207, 2012 | 64 | 2012 |
Phase field modeling of rapid resolidification of Al-Cu thin films T Pinomaa, JM McKeown, JMK Wiezorek, N Provatas, A Laukkanen, ... Journal of Crystal Growth 532, 125418, 2020 | 43 | 2020 |
Process-structure-properties-performance modeling for selective laser melting T Pinomaa, I Yashchuk, M Lindroos, T Andersson, N Provatas, ... Metals 9 (11), 1138, 2019 | 41 | 2019 |
Solute trapping in rapid solidification T Pinomaa, A Laukkanen, N Provatas MRS Bulletin 45 (11), 910-915, 2020 | 34 | 2020 |
Micromechanical modeling approach to single track deformation, phase transformation and residual stress evolution during selective laser melting using crystal plasticity M Lindroos, T Pinomaa, A Antikainen, J Lagerbom, J Reijonen, ... Additive Manufacturing 38, 101819, 2021 | 31 | 2021 |
Dislocation density in cellular rapid solidification using phase field modeling and crystal plasticity M Lindroos, T Pinomaa, K Ammar, A Laukkanen, N Provatas, S Forest International Journal of Plasticity 148, 103139, 2022 | 30 | 2022 |
Orientation gradients in rapidly solidified pure aluminum thin films: comparison of experiments and phase-field crystal simulations P Jreidini, T Pinomaa, JMK Wiezorek, JT McKeown, A Laukkanen, ... Physical review letters 127 (20), 205701, 2021 | 26 | 2021 |
An atomistic simulation study of rapid solidification kinetics and crystal defects in dilute Al–Cu alloys M Haapalehto, T Pinomaa, L Wang, A Laukkanen Computational Materials Science 209, 111356, 2022 | 15 | 2022 |
Development and validation of coupled erosion-corrosion model for wear resistant steels in environments with varying pH A Laukkanen, M Lindgren, T Andersson, T Pinomaa, M Lindroos Tribology International 151, 106534, 2020 | 15 | 2020 |
Effective interface model for design and tailoring of WC–Co microstructures A Laukkanen, T Pinomaa, K Holmberg, T Andersson Powder Metallurgy 59 (1), 20-30, 2016 | 15 | 2016 |
Multiscale analysis of crystalline defect formation in rapid solidification of pure aluminium and aluminium–copper alloys T Pinomaa, M Lindroos, P Jreidini, M Haapalehto, K Ammar, L Wang, ... Philosophical Transactions of The Royal Society A Mathematical Physical and …, 2022 | 13 | 2022 |
Quantitative phase field modelling of solidification N Provatas, T Pinomaa, N Ofori-Opoku CRC Press, 2021 | 12 | 2021 |
Chromium-based bcc-superalloys strengthened by iron supplements K Ma, T Blackburn, JP Magnussen, M Kerbstadt, PA Ferreirós, T Pinomaa, ... Acta Materialia 257, 119183, 2023 | 6 | 2023 |
Quantitative phase field simulations of polycrystalline solidification using a vector order parameter T Pinomaa, N Ofori-Opoku, A Laukkanen, N Provatas Physical Review E 103 (5), 053310, 2021 | 4 | 2021 |
Micromechanical modeling of failure behavior of metallic materials A Laukkanen, M Lindroos, T Andersson, T Verho, T Pinomaa Journal of Structural Mechanics 50 (3), 271-274, 2017 | 4 | 2017 |
Modeling the 3D printing of nanocellulose hydrogels A Paajanen, T Pinomaa, H Pajari, S Metsä-Kortelainen, P Lahtinen, ... NAFEMS exploring the design freedom of additive manufacturing through simulation, 2016 | 4 | 2016 |