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Experimental research characteristics of counterbalance valve for hydraulic drive control system of mobile machine

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Warianty tytułu
PL
Charakterystyki eksperymentalne zaworu równoważącego układu sterowania napędem hydraulicznym maszyny mobilnej
Języki publikacji
EN
Abstrakty
EN
Experimental studies of counterbalance valve for the hydraulic drive control systems of mobile machines are presented. According to the results of theoretical research experimental prototype of the counterbalance valve is developed. Experimental stands are elaborated, where leak tightness degree was studied and static characteristics were obtained. Dependences of operating fluids supply on the parameters of the pressure difference at its basic spool and load pressure are plotted. Transient processes in the hydraulic drive control system are analyzed, adequacy of the theoretical calculations to the elaborated mathematical models for the control system of mobile machine hydraulic drive is proved.
PL
Przedstawiono badania eksperymentalne zaworu równoważącego w układach sterowania napędem hydraulicznym maszyn mobilnych. Zgodnie z wynikami badań teoretycznych opracowano eksperymentalny prototyp zaworu równoważącego. Opracowano stanowiska eksperymentalne, na których badano stopień szczelności oraz uzyskano charakterystyki statyczne. Narysowano wpływ zasilania płynów eksploatacyjnych na różnicę ciśnień na szpuli podstawowej i ciśnienie obciążenia. Przeanalizowano procesy przejściowe w układzie sterowania napędem hydraulicznym, udowodniono zgodność obliczeń teoretycznych z opracowanymi modelami matematycznymi dla układu sterowania napędem hydraulicznym maszyny mobilnej.
Rocznik
Strony
104--109
Opis fizyczny
Bibliogr. 26 poz., rys., tab.
Twórcy
  • Vinnytsia National Technical University, Department of Technology and Automation of Mechanical Engineering, Khmelnytske shose 95, Vinnytsia, 21021, Ukraine
  • Vinnytsia National Technical University, Department of Technology and Automation of Mechanical Engineering, Khmelnytske shose 95, Vinnytsia, 21021, Ukraine
  • Vinnytsia National Technical University, Department of Technology and Automation of Mechanical Engineering, Khmelnytske shose 95, Vinnytsia, 21021, Ukraine
  • Vinnytsia National Technical University, Department of Technology and Automation of Mechanical Engineering, Khmelnytske shose 95, Vinnytsia, 21021, Ukraine
  • Ternopil Volodymyr Hnatiuk National Pedagogical University
  • Lublin University of Technology, Institute of Electronics and Information Technology, Nadbystrzycka 38A, 20-618 Lublin, Poland
  • Almaty University of Power Engineering and Telecommunications (AUPET)
  • Al-Farabi Kazakh National University, Almaty, Kazakhstan
Bibliografia
  • [1] Bing X., Ruqi D., Junhui Z., Min C., Tong, S., Pump valves coordinate control of the independent metering system for mobile machinery, Automation in Construction, (2015), 98-11
  • [2] Polishchuk L. K., Piontkevych O. V., Dynamics of adaptive drive of mobile machine belt conveyor, 22nd International Scientific Conference «MECHANIKA 2017», Kaunas University of Technology, 19 May 2017, 307-311
  • [3] Borghi M., Zardin B., Pintore F., Belluzzi F., Energy savings in the hydraulic circuit of agricultural tractors, Energy Procedia, 45 (2014), 352-361
  • [4] Bak M. K., Hansen M. R., Analysis of offshore knuckle boom crane-part one: modeling and parameter identification, Modeling, Identification and Control, 37 (2013), n.4, 157-174
  • [5] Sorensen J. K., Hansen M. R., Ebbesen M. K., Numerical and experimental study of a novel concept for hydraulically controlled negative loads, Modeling, Identification and Control, 34 (2016), n.4, 195-211
  • [6] Ritelli G. F., Vacca A., Energetic and dynamic impact of counterbalance valves in fluid power machines, Energy conversion and management, 76 (2013), 701-711
  • [7] Jalayeri E., Imam A., Tomas Z., Sepehri N., A throttle-less single-rod hydraulic cylinder positioning system: Design and experimental evaluation, Advances in Mechanical Engineering, 7 (2015), n.5, 1-14
  • [8] Musina L. S., Tselischev D. V., Tselischev V. A., Konstantinov S. Y., Musalimov R. S., Providing Cavitation-Free Operation of Hydraulic Systems under Passing Load in Hydraulic Actuator, Modern Applied Science, 9 (2015), n.4, 276-283
  • [9] Herakovič N., Duhovnik J., Šimic M., CFD simulation of flow force reduction in hydraulic valves, Tehnicki vjesnik/Technical Gazette, 22 (2015), n.2, 453-463
  • [10] Burennikov Y., Kozlov L., Pyliavets V., Piontkevych O., Mechatronic Hydraulic Drive with Regulator, Based on Artificial Neural Network, IOP Conference Series: Materials Science and Engineering, 209 (2017), n.1, 012071
  • [11] Iskovych-Lototsky R. D., Zelinska O. V., Ivanchuk Y. V., Veselovska N. R., Development of the evaluation model of technological parameters of shaping workpieces from powder materials, Eastern-European Journal of Enterprise Technologies, 1 (2017), n.85, 9-17
  • [12] Polishchuk L., Kharchenko Ye., Piontkevych O., Koval O., The research of the dynamic processes of control system of hydraulic drive of belt conveyors with variable cargo flows, Eastern-European Journal of Enterprise Technologies, 2 (2016), n.8(80), 22-29
  • [13] Kozlov L. G., Piontkevych O. V., Hydraulic drive with pilot controlled check valve, Pat. 107185 Ukraine, IPC E 02 F 9/22., 8p, (2016)
  • [14] Piontkevych О. V., Impact of the parameters of the control system of mobile operation machine hydraulic drive on dynamic characteristics, Bulletin of machine building and transport, 2 (2016), n.4, 68-76
  • [15] Kozlov L., Burenniko Yu., Piontkevych O., Paslavska O., Optimization of design parameters of the counterbalance valve for the front-end loader hydraulic drive, Proceedings of 22nd International Scientific Conference «MECHANIKA 2017», Kaunas University of Technology, Lithuania, (2017), 195-200
  • [16] Kozlov L., Piontkevych О., Semichasnova N., Ubidia Rodriges D. D., The experimental stand for determining the characteristics of the hydraulic drive control system with the multifunctional counterbalance valve, ІІ International scientificengineering conference «Hydraulic and pnevmatic drive of machines»: International scientific-engineering conference, (2016), 119-120
  • [17] Adler Yu. P., Markova E. V., Granovsky Yu. V., Planning an experiment when searching for optimal conditions, “Science”, (1976), 280
  • [18] Azarov O. D., Dudnyk O. V., Kaduk O. V., Smolarz A., Burlibay A., Method of correcting of the tracking ADC with weight redundancy conversion characteristic, Proc. SPIE, 9816 (2015)
  • [19] Azarov O. D., Murashchenko O. G., Chernyak O. I., Smolarz A., Kashaganova G., Method of glitch reduction in DAC with weight redundancy, Proc. SPIE, 9816 (2015)
  • [20] Osadchuk V. S., Osadchuk A. V., The magneticreactive effect in transistors for construction transducers of magnetic field, Electronics and Electrical Engineering, Technologija, 109 (2011), n.3, 119-122
  • [21] Osadchuk V. S., Osadchuk A. V., The microelectronic transducers of pressure with the frequency, Electronics and Electrical Engineering, Technologija, 121 (2012), n.5, 105-108
  • [22] Vasilevskyi O. M., Advanced mathematical model of measuring the starting torque motors, Technical Electrodynamics, 6 (2013), 76-81
  • [23] Pavlov S. V., Kozhemiako V. P., Kolesnik P. F., et al., Physical principles of biomedical optics: monograph, VNTU, (2010), 152
  • [24] Vassilenko V., Valtchev S., Teixeira J. P., Pavlov S., Energy harvesting: an interesting topic for education programs in engineering specialities, «Internet, Education, Science” (IES2016), (2016), 149-156
  • [25] Vasilevskyi O. M., Yakovlev M. Y., Kulakov P. I., Spectral method to evaluate the uncertainty of dynamic measurements, Technical Electrodynamics, 4 (2017), 72-78.
  • [26] Voronin A., Ajtchanov B., Partyka J., Aldibekova A., Elemements automatic control of hydrodynamic systems, Informatyka Automatyka Pomiary w Gospodarce i Ochronie Srodowiska, 2 (2013), 35-36
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2019).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-92ff1c97-f9c4-46a4-a508-69122cb6aee7
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