Novel approaches to the design of an ultra-fast magnetorheological valve for semi-active control Z Strecker, F Jeniš, M Kubík, O Macháček, SB Choi Materials 14 (10), 2500, 2021 | 31 | 2021 |
Hydrodynamic response time of magnetorheological fluid in valve mode: model and experimental verification M Kubík, K Šebesta, Z Strecker, F Jeniš, J Goldasz, I Mazůrek Smart Materials and Structures 30 (12), 125020, 2021 | 14 | 2021 |
Insight into the response time of fail-safe magnetorheological damper F Jeniš, M Kubík, O Macháček, K Šebesta, Z Strecker Smart Materials and Structures 30 (1), 017004, 2020 | 14 | 2020 |
Transient response of magnetorheological fluid on rapid change of magnetic field in shear mode M Kubík, J Válek, J Žáček, F Jeniš, D Borin, Z Strecker, I Mazůrek Scientific Reports 12 (1), 10612, 2022 | 13 | 2022 |
Effect of the magnetorheological damper dynamic behaviour on the rail vehicle comfort: Hardware-in-the-loop simulation F Jeniš, M Kubík, T Michálek, Z Strecker, J Žáček, I Mazůrek Actuators 12 (2), 47, 2023 | 11 | 2023 |
Stribeck curve of magnetorheological fluid within pin-on-disc configuration: an experimental investigation J Roupec, F Jeniš, Z Strecker, M Kubík, O Macháček Materials 13 (20), 4670, 2020 | 10 | 2020 |
Experimental evaluation of modified Groundhook car suspension with fast magnetorheological damper J Žáček, K Šebesta, H Mohammad, F Jeniš, Z Strecker, M Kubík Actuators 11 (12), 354, 2022 | 6 | 2022 |
Magnetorheological Yaw Damper with Short Response Time for Rail-Way Vehicle Bogie M Kubik, Z Strecker, F Jenis, O Machacek, M Prikryl, P Spalek ACTUATOR; International Conference and Exhibition on New Actuator Systems …, 2021 | 5 | 2021 |
The magnetic circuit dynamics of a magnetorheological valve with a permanent magnet M Kubík, F Jeniš, I Hašlík MATEC Web of Conferences 322, 01049, 2020 | 2 | 2020 |
Semi-active yaw dampers in locomotive running gear: New control algorithms and verification of their stabilising effect F Jeniš, T Michálek, M Kubík, A Hába, Z Strecker, J Žáček, I Mazůrek Journal of Vibration and Control, 10775463241255765, 2024 | 1 | 2024 |
Novel Approaches to the Design of an Ultra-Fast Magnetorheological Valve for Semi-Active Control. Materials 2021, 14, 2500 Z Strecker, F Jeniš, M Kubík, O Macháček, SB Choi s Note: MDPI stays neutral with regard to jurisdictional claims in published …, 2021 | 1 | 2021 |
The influence of semi-actively controlled magnetorheological bogie yaw dampers on the guiding behaviour of a railway vehicle in an S-curve: Simulation and on-track test F Jeniš, T Michálek, M Kubík, Z Strecker, J Šlapák, I Mazůrek Proceedings of the Institution of Mechanical Engineers, Part F: Journal of …, 2024 | | 2024 |
Gradient Pinch Mode of Magnetorheological Fluids: Effect of Material Composition J Žáček, Z Strecker, F Jeniš, O Macháček, J Goldasz, B Sapinski, M Vrbka, ... | | 2024 |
Fault-tolerant control of semi-active suspension in case of oil leakage of magnetorheological damper H Basargan, F Jeniš, A Mihály, P Gáspár 2023 European Control Conference (ECC), 1-6, 2023 | | 2023 |
Mechatronically Controlled Bogie of High Speed Train F Jeniš, I Mazůrek 61st International Conference of Machine Design Departments (ICMD 2020), 282-292, 2023 | | 2023 |
Modelling of secondary suspension for electric multiple unit T Michálek, F Jeniš University of West Bohemia, 2023 | | 2023 |
VLIV SEMIAKTIVNÍHO ŘÍZENÍ TLUMIČŮ VRTIVÝCH POHYBŮ NA KRITICKOU RYCHLOST ŽELEZNIČNÍHO VOZIDLA F Jeniš, T Michálek VTS pri Žilinskej univerzite v Žiline, 2023 | | 2023 |
Sprung mass positioning by semi-actively controlled damper F Jeniš, I Mazůrek MATEC Web of Conferences 322, 01051, 2020 | | 2020 |
THE SETTING OF CFD MODEL WITH MAGNETORHEOLOGICAL FLUID AND ITS INFLUENCE ON THE RESULTS M Kubík, J Roupec, F Jeniš, I Mazůrek | | |
ABRASION OF MAGNETORHEOLOGICAL FLUIDS F Jeniš, J Roupec, J Žáček, M Kubík, O Macháček, J Smilka, M Smilková, ... | | |