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Ing. Tomáš Babinský

Místnost116
Telefon+420 532 290 345
E-mail[javascript protected email address]
Researcher IDR-9635-2019
Pozicedoktorand - Skupina nízkocyklové únavy
Školitelprof. RNDr. Jaroslav Polák, DrSc., dr. h. c.


2023

Shahmardani M., Logvinov R., Babinský T., Guth S., Paul S., Biswas A., Vajragupta N., Hartmaier A.: Experimental Assessment and Micromechanical Modeling of Additively Manufactured Austenitic Steels under Cyclic Loading. Adv. Eng. Mater. 25 (2023) 2300103

Guth S., Babinský T., Antusch S., Klein A., Antusch S., Šulák I.: Creep-Fatigue Interaction of Inconel 718 Manufactured by Electron Beam Melting. Adv. Eng. Mater. - (2023) 20230029

Babinský T., Šulák I., Kuběna I., Man J., Weiser A., Švábenská E., Englert L., Guth S.: Thermomechanical fatigue of additively manufactured 316L stainless steel. Mater. Sci. Eng. A 869 (2023) 144831



2022

Šulák I., Obrtlík K., Babinský T., Guth S.: The low cycle fatigue behaviour of MAR-M247 superalloy under different strain rates and cycle shapes at 750 °C. Int. J. Fatigue 164 (2022) 107133

Šulák I., Babinský T., Chlupová A., Milovanović A., Náhlík L.: Effect of building direction and heat treatment on mechanical properties of Inconel 939 prepared by additive manufacturing. Journal of Mechanical Science and Technology 36 (2022) 1-6

Chlupová A., Šulák I., Babinský T., Polák J.: Intergranular fatigue crack initiation in polycrystalline copper. Mater. Sci. Eng. A 848 (2022) 143357

Guth S., Babinský T., Lang K., Hrbáček K., Šulák I.: Influence of strain-rate and cycle form on the low cycle fatigue behaviour of nickel-base superalloy MAR-M247 at high temperature. Ninth International Conference on Low Cycle Fatigue 1 (2022) 3-8



2021

Babinský T., Kuběna I., Šulák I., Kruml T., Tobiáš J., Polák J.: Surface relief evolution and fatigue crack initiation in René 41 superalloy cycled at room temperature. Mater. Sci. Eng. A 819 (2021) 141520



2019

Babinský T., Polák J.: Effective and internal stresses in 713LC and Rene 41 superalloys using analysis of the hysteresis loop shape. Procedia Struct. Integr. 23 (2019) 523-528