Worm gear drives with adjustable backlash W Kacalak, M Majewski, Z Budniak Journal of Mechanisms and Robotics 8 (1), 014504, 2016 | 25 | 2016 |
Innovative design of non-backlash worm gear drives W Kacalak, M Majewski, Z Budniak Archives of Civil and Mechanical Engineering 18, 983-999, 2018 | 24 | 2018 |
Stability assessment as a criterion of stabilization of the movement trajectory of mobile crane working elements W Kacalak, Z Budniak, M Majewski International Journal of Applied Mechanics and Engineering 23 (1), 65-77, 2018 | 22 | 2018 |
Crane stability assessment method in the operating cycle W Kacalak, Z Budniak, M Majewski Transport Problems 12 (4), 141-151, 2017 | 19 | 2017 |
Computer aided analysis of the mobile crane handling system using computational intelligence methods W Kacalak, Z Budniak, M Majewski Applied Computational Intelligence and Mathematical Methods: Computational …, 2018 | 16 | 2018 |
Interactive systems for designing machine elements and assemblies W Kacalak, M Majewski, KD Stuart, Z Budniak Management and Production Engineering Review 6, 2015 | 12 | 2015 |
Reliability testing of wind farm devices based on the mean time between failures (MTBF) S Duer, M Woźniak, J Paś, K Zajkowski, D Bernatowicz, A Ostrowski, ... Energies 16 (4), 1659, 2023 | 11 | 2023 |
Interactive control systems for mobile cranes M Majewski, W Kacalak, Z Budniak, M Pajor Cybernetics Approaches in Intelligent Systems: Computational Methods in …, 2018 | 11 | 2018 |
Simulation of the movement of four-bar spatial linkage Z Budniak, T Bil International Journal of Applied Mechanics andEngineering 17 (3), 723, 2012 | 11 | 2012 |
Intelligent automated design of machine components using antipatterns W Kacalak, M Majewski, Z Budniak Intelligent Data Engineering and Automated Learning–IDEAL 2015: 16th …, 2015 | 10 | 2015 |
Teoretyczne i doświadczalne podstawy intensyfikacji obróbki wysokoenergetyczną hybrydową strugą hydrościerną J Borkowski, P Borkowski, Z Budniak, G Chomka, R Sobczak Grant KBN, T07D, 0 | 10 | |
Worm Gear Drives with Improved Kinematic Accuracy W Kacalak, M Majewski, Z Budniak, J Ponomarenkow Materials 14 (24), 7825, 2021 | 9 | 2021 |
Simulation model of a mobile crane with ensuring its stability W Kacalak, Z Budniak, M Majewski Model. Eng 29 (60), 35-43, 2016 | 8 | 2016 |
Crane stability for various load conditions and trajectories of load translocation W Kacalak, Z Budniak, M Majewski Mechanik 12, 1820-1823, 2016 | 8 | 2016 |
Przekładnie ślimakowe z regulowanym luzem bocznym W Kacalak, M Majewski, Z Budniak Mechanik 87, 2014 | 8 | 2014 |
Optimization of the movement trajectory of mobile crane working elements W Kacalak, Z Budniak, M Majewski Advances in Manufacturing, 475-484, 2018 | 7 | 2018 |
Stateczność żurawia dla różnych stanów obciążeń i trajektorii przemieszczeń ładunku W KACALAK, Z BUDNIAK, M Majewski Mechanik 89 (12), 1820--1823, 2016 | 7 | 2016 |
Modelling and analysis of the positioning accuracy in the loading systems of mobile cranes W Kacalak, Z Budniak, M Majewski Materials 15 (23), 8426, 2022 | 6 | 2022 |
Analysis of the forming process of conical-like helical surfaces with roller tools W Kacalak, Z Budniak, F Szafraniec International Journal of Applied Mechanics and Engineering 22 (1), 101-110, 2017 | 5 | 2017 |
Support system reactions in the assessment of mobile crane stability W Kacalak, Z Budniak, M Majewski Buses Tech. Exploit. Trans. Syst 12, 1014-1019, 2016 | 5 | 2016 |