Mechatronic systems 1 applications in transport, logistics, diagnostics, and control

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Weitere Verfasser: Wójcik, Waldemar 1949- (HerausgeberIn), Pavlov, Sergii 1964- (HerausgeberIn), Kalimoldayev, Maksat 1957- (HerausgeberIn)
Format: Elektronisch E-Book
Sprache:English
Veröffentlicht: London ; New York Routledge 2021
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505 8 |a Cover -- Half Title -- Title Page -- Copyright Page -- Table of Contents -- List of contributors -- 1 Method of project calculation of hydroimpulsive device for vibroturning with an incorporated cycle spring pressure pulse generator -- 1.1 Introduction -- 1.2 Materials and results of research -- 1.3 Conclusion -- References -- 2 Determination of the optimal parameters of the driver of a resonance vibratory stand for diagnostics of dampers -- 2.1 Introduction -- 2.2 Analysis of literary sources and statement of the problem -- 2.3 Purpose and tasks of the research -- 2.4 Materials and methods 
505 8 |a 2.5 Results and discussion -- 2.6 Conclusion -- References -- 3 Algorithm to calculate work tools of machines for performance in extreme working conditions -- 3.1 Introduction -- 3.2 Analysis of destroyed buildings and structures -- 3.3 Materials and methods -- 3.4 Results and discussion -- 3.5 Conclusion -- References -- 4 Vibration diagnostic of wear for cylinder-piston couples of pumps of a radial piston hydromachine -- 4.1 Introduction -- 4.2 Analysis of dynamical processes in RPH with spherical ball pistons -- 4.3 Dynamical model of radial piston pump with HVT 
505 8 |a 4.4 Diagnostics algorithm for pressure surges of cylinder and piston pumpcouples of RPH -- 4.5 Diagnostics algorithm for a statistical vibration signal -- 4.6 Calculation and experimental research -- 4.7 Conclusion -- References -- 5 Mathematical modeling of dynamic processes in the turning mechanism of the tracked machine with hydrovolume transmission -- 5.1 Introduction -- 5.2 Analysis of research methods of dynamic processes of power transmissions in vehicles with HVT -- 5.3 Mathematical models of transient regimes in the turning mechanism of a tracked vehicle with the HVT 
505 8 |a 5.4 Experimental and calculation research on choice of parameters of turning mechanism with HVT -- 5.5 Conclusions -- References -- 6 Forecasting reliability of use of gas-transmitting units on gas transport systems -- 6.1 Introduction -- 6.2 Analysis of the problem -- 6.3 Materials and methods of studying -- 6.4 Results and discussion -- 6.5 Conclusions -- References -- 7 Development of main gas pipeline deepening method for prevention of external effects -- 7.1 Introduction -- 7.2 Analysis of the methods and materials -- 7.3 Results and discussion -- 7.4 Conclusion -- References 
505 8 |a 8 Increasing surface wear resistance of engines by nanosized carbohydrate clusters when using ethanol motor fuels -- 8.1 Introduction -- 8.2 Analysis of the literature sources -- 8.3 Materials and methods used in the study -- 8.4 Results and discussion -- 8.5 Conclusion -- References -- 9 Method of experimental research of steering control unit of hydrostatic steering control systems and stands for their realization -- 9.1 Introduction -- 9.2 Analysis of literary data and problem statement -- 9.3 Purpose and objectives of the research -- 9.4 Materials and methods of research -- 9.5 Conclusion 
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Datensatz im Suchindex

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author2 Wójcik, Waldemar 1949-
Pavlov, Sergii 1964-
Kalimoldayev, Maksat 1957-
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author_facet Wójcik, Waldemar 1949-
Pavlov, Sergii 1964-
Kalimoldayev, Maksat 1957-
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contents Cover -- Half Title -- Title Page -- Copyright Page -- Table of Contents -- List of contributors -- 1 Method of project calculation of hydroimpulsive device for vibroturning with an incorporated cycle spring pressure pulse generator -- 1.1 Introduction -- 1.2 Materials and results of research -- 1.3 Conclusion -- References -- 2 Determination of the optimal parameters of the driver of a resonance vibratory stand for diagnostics of dampers -- 2.1 Introduction -- 2.2 Analysis of literary sources and statement of the problem -- 2.3 Purpose and tasks of the research -- 2.4 Materials and methods
2.5 Results and discussion -- 2.6 Conclusion -- References -- 3 Algorithm to calculate work tools of machines for performance in extreme working conditions -- 3.1 Introduction -- 3.2 Analysis of destroyed buildings and structures -- 3.3 Materials and methods -- 3.4 Results and discussion -- 3.5 Conclusion -- References -- 4 Vibration diagnostic of wear for cylinder-piston couples of pumps of a radial piston hydromachine -- 4.1 Introduction -- 4.2 Analysis of dynamical processes in RPH with spherical ball pistons -- 4.3 Dynamical model of radial piston pump with HVT
4.4 Diagnostics algorithm for pressure surges of cylinder and piston pumpcouples of RPH -- 4.5 Diagnostics algorithm for a statistical vibration signal -- 4.6 Calculation and experimental research -- 4.7 Conclusion -- References -- 5 Mathematical modeling of dynamic processes in the turning mechanism of the tracked machine with hydrovolume transmission -- 5.1 Introduction -- 5.2 Analysis of research methods of dynamic processes of power transmissions in vehicles with HVT -- 5.3 Mathematical models of transient regimes in the turning mechanism of a tracked vehicle with the HVT
5.4 Experimental and calculation research on choice of parameters of turning mechanism with HVT -- 5.5 Conclusions -- References -- 6 Forecasting reliability of use of gas-transmitting units on gas transport systems -- 6.1 Introduction -- 6.2 Analysis of the problem -- 6.3 Materials and methods of studying -- 6.4 Results and discussion -- 6.5 Conclusions -- References -- 7 Development of main gas pipeline deepening method for prevention of external effects -- 7.1 Introduction -- 7.2 Analysis of the methods and materials -- 7.3 Results and discussion -- 7.4 Conclusion -- References
8 Increasing surface wear resistance of engines by nanosized carbohydrate clusters when using ethanol motor fuels -- 8.1 Introduction -- 8.2 Analysis of the literature sources -- 8.3 Materials and methods used in the study -- 8.4 Results and discussion -- 8.5 Conclusion -- References -- 9 Method of experimental research of steering control unit of hydrostatic steering control systems and stands for their realization -- 9.1 Introduction -- 9.2 Analysis of literary data and problem statement -- 9.3 Purpose and objectives of the research -- 9.4 Materials and methods of research -- 9.5 Conclusion
ctrlnum (OCoLC)1294731187
(DE-599)BVBBV047709230
discipline Mess-/Steuerungs-/Regelungs-/Automatisierungstechnik / Mechatronik
format Electronic
eBook
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spelling Mechatronic systems 1 applications in transport, logistics, diagnostics, and control edited by Waldemar Wójcik, Sergii Pavlov, Maksat Kalimoldayev
London ; New York Routledge 2021
1 Online-Ressource (xvi, 290 Seiten)
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Cover -- Half Title -- Title Page -- Copyright Page -- Table of Contents -- List of contributors -- 1 Method of project calculation of hydroimpulsive device for vibroturning with an incorporated cycle spring pressure pulse generator -- 1.1 Introduction -- 1.2 Materials and results of research -- 1.3 Conclusion -- References -- 2 Determination of the optimal parameters of the driver of a resonance vibratory stand for diagnostics of dampers -- 2.1 Introduction -- 2.2 Analysis of literary sources and statement of the problem -- 2.3 Purpose and tasks of the research -- 2.4 Materials and methods
2.5 Results and discussion -- 2.6 Conclusion -- References -- 3 Algorithm to calculate work tools of machines for performance in extreme working conditions -- 3.1 Introduction -- 3.2 Analysis of destroyed buildings and structures -- 3.3 Materials and methods -- 3.4 Results and discussion -- 3.5 Conclusion -- References -- 4 Vibration diagnostic of wear for cylinder-piston couples of pumps of a radial piston hydromachine -- 4.1 Introduction -- 4.2 Analysis of dynamical processes in RPH with spherical ball pistons -- 4.3 Dynamical model of radial piston pump with HVT
4.4 Diagnostics algorithm for pressure surges of cylinder and piston pumpcouples of RPH -- 4.5 Diagnostics algorithm for a statistical vibration signal -- 4.6 Calculation and experimental research -- 4.7 Conclusion -- References -- 5 Mathematical modeling of dynamic processes in the turning mechanism of the tracked machine with hydrovolume transmission -- 5.1 Introduction -- 5.2 Analysis of research methods of dynamic processes of power transmissions in vehicles with HVT -- 5.3 Mathematical models of transient regimes in the turning mechanism of a tracked vehicle with the HVT
5.4 Experimental and calculation research on choice of parameters of turning mechanism with HVT -- 5.5 Conclusions -- References -- 6 Forecasting reliability of use of gas-transmitting units on gas transport systems -- 6.1 Introduction -- 6.2 Analysis of the problem -- 6.3 Materials and methods of studying -- 6.4 Results and discussion -- 6.5 Conclusions -- References -- 7 Development of main gas pipeline deepening method for prevention of external effects -- 7.1 Introduction -- 7.2 Analysis of the methods and materials -- 7.3 Results and discussion -- 7.4 Conclusion -- References
8 Increasing surface wear resistance of engines by nanosized carbohydrate clusters when using ethanol motor fuels -- 8.1 Introduction -- 8.2 Analysis of the literature sources -- 8.3 Materials and methods used in the study -- 8.4 Results and discussion -- 8.5 Conclusion -- References -- 9 Method of experimental research of steering control unit of hydrostatic steering control systems and stands for their realization -- 9.1 Introduction -- 9.2 Analysis of literary data and problem statement -- 9.3 Purpose and objectives of the research -- 9.4 Materials and methods of research -- 9.5 Conclusion
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Wójcik, Waldemar 1949- (DE-588)1139300075 edt
Pavlov, Sergii 1964- (DE-588)1213907373 edt
Kalimoldayev, Maksat 1957- (DE-588)1213927358 edt
Erscheint auch als Online-Ausgabe 978-1-003-22413-6
Erscheint auch als Druck-Ausgabe, hbk 978-1-032-10583-3
Erscheint auch als Druck-Ausgabe, pbk 978-1-032-12335-6
spellingShingle Mechatronic systems 1 applications in transport, logistics, diagnostics, and control
Cover -- Half Title -- Title Page -- Copyright Page -- Table of Contents -- List of contributors -- 1 Method of project calculation of hydroimpulsive device for vibroturning with an incorporated cycle spring pressure pulse generator -- 1.1 Introduction -- 1.2 Materials and results of research -- 1.3 Conclusion -- References -- 2 Determination of the optimal parameters of the driver of a resonance vibratory stand for diagnostics of dampers -- 2.1 Introduction -- 2.2 Analysis of literary sources and statement of the problem -- 2.3 Purpose and tasks of the research -- 2.4 Materials and methods
2.5 Results and discussion -- 2.6 Conclusion -- References -- 3 Algorithm to calculate work tools of machines for performance in extreme working conditions -- 3.1 Introduction -- 3.2 Analysis of destroyed buildings and structures -- 3.3 Materials and methods -- 3.4 Results and discussion -- 3.5 Conclusion -- References -- 4 Vibration diagnostic of wear for cylinder-piston couples of pumps of a radial piston hydromachine -- 4.1 Introduction -- 4.2 Analysis of dynamical processes in RPH with spherical ball pistons -- 4.3 Dynamical model of radial piston pump with HVT
4.4 Diagnostics algorithm for pressure surges of cylinder and piston pumpcouples of RPH -- 4.5 Diagnostics algorithm for a statistical vibration signal -- 4.6 Calculation and experimental research -- 4.7 Conclusion -- References -- 5 Mathematical modeling of dynamic processes in the turning mechanism of the tracked machine with hydrovolume transmission -- 5.1 Introduction -- 5.2 Analysis of research methods of dynamic processes of power transmissions in vehicles with HVT -- 5.3 Mathematical models of transient regimes in the turning mechanism of a tracked vehicle with the HVT
5.4 Experimental and calculation research on choice of parameters of turning mechanism with HVT -- 5.5 Conclusions -- References -- 6 Forecasting reliability of use of gas-transmitting units on gas transport systems -- 6.1 Introduction -- 6.2 Analysis of the problem -- 6.3 Materials and methods of studying -- 6.4 Results and discussion -- 6.5 Conclusions -- References -- 7 Development of main gas pipeline deepening method for prevention of external effects -- 7.1 Introduction -- 7.2 Analysis of the methods and materials -- 7.3 Results and discussion -- 7.4 Conclusion -- References
8 Increasing surface wear resistance of engines by nanosized carbohydrate clusters when using ethanol motor fuels -- 8.1 Introduction -- 8.2 Analysis of the literature sources -- 8.3 Materials and methods used in the study -- 8.4 Results and discussion -- 8.5 Conclusion -- References -- 9 Method of experimental research of steering control unit of hydrostatic steering control systems and stands for their realization -- 9.1 Introduction -- 9.2 Analysis of literary data and problem statement -- 9.3 Purpose and objectives of the research -- 9.4 Materials and methods of research -- 9.5 Conclusion
Systementwurf (DE-588)4261480-6 gnd
Mechatronik (DE-588)4238812-0 gnd
subject_GND (DE-588)4261480-6
(DE-588)4238812-0
title Mechatronic systems 1 applications in transport, logistics, diagnostics, and control
title_auth Mechatronic systems 1 applications in transport, logistics, diagnostics, and control
title_exact_search Mechatronic systems 1 applications in transport, logistics, diagnostics, and control
title_full Mechatronic systems 1 applications in transport, logistics, diagnostics, and control edited by Waldemar Wójcik, Sergii Pavlov, Maksat Kalimoldayev
title_fullStr Mechatronic systems 1 applications in transport, logistics, diagnostics, and control edited by Waldemar Wójcik, Sergii Pavlov, Maksat Kalimoldayev
title_full_unstemmed Mechatronic systems 1 applications in transport, logistics, diagnostics, and control edited by Waldemar Wójcik, Sergii Pavlov, Maksat Kalimoldayev
title_short Mechatronic systems 1
title_sort mechatronic systems 1 applications in transport logistics diagnostics and control
title_sub applications in transport, logistics, diagnostics, and control
topic Systementwurf (DE-588)4261480-6 gnd
Mechatronik (DE-588)4238812-0 gnd
topic_facet Systementwurf
Mechatronik
work_keys_str_mv AT wojcikwaldemar mechatronicsystems1applicationsintransportlogisticsdiagnosticsandcontrol
AT pavlovsergii mechatronicsystems1applicationsintransportlogisticsdiagnosticsandcontrol
AT kalimoldayevmaksat mechatronicsystems1applicationsintransportlogisticsdiagnosticsandcontrol