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230811 ||| eng |
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|a 9783036578668
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|a books978-3-0365-7867-5
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|a 9783036578675
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100 |
1 |
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|a Casoli, Paolo
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245 |
0 |
0 |
|a Application and Analysis in Fluid Power Systems
|h Elektronische Ressource
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260 |
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|a Basel
|b MDPI - Multidisciplinary Digital Publishing Institute
|c 2023
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300 |
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|a 1 electronic resource (286 p.)
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653 |
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|a hydromechanical
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653 |
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|a high pressure control system
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653 |
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|a supervised learning
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653 |
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|a efficiency
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653 |
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|a process planning
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653 |
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|a excavator
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653 |
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|a condition monitoring
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653 |
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|a electro-hydrostatic actuator
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653 |
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|a fluid power
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653 |
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|a operation point
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653 |
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|a variable displacement
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653 |
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|a pressure control system
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653 |
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|a volumetric
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653 |
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|a control methods
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653 |
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|a finite element method
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653 |
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|a fault detection and diagnosis
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653 |
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|a throttle loss reduction
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653 |
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|a active control
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653 |
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|a operation range
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653 |
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|a feature selection
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653 |
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|a counterbalance
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653 |
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|a load-holding valve
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653 |
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|a simulation-based design
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653 |
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|a hydraulic press
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653 |
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|a neural networks
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653 |
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|a mode selection
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653 |
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|a design of experiments
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653 |
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|a flow control valve
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653 |
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|a hydraulic systems
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653 |
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|a flow ripple
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653 |
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|a pump-controlled systems
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653 |
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|a noise and vibration
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653 |
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|a feature extraction
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653 |
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|a load sensing
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653 |
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|a trochoidal profile
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653 |
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|a hydraulic hybrid drivetrains
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653 |
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|a gerotor technology
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653 |
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|a reinforcement learning
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653 |
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|a pressure ripple
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653 |
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|a Research & information: general / bicssc
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653 |
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|a miniature applications
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653 |
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|a linear-quadratic Gaussian controller
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653 |
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|a risk prioritization
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653 |
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|a Taguchi method
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653 |
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|a Physics / bicssc
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653 |
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|a industrial hydraulics
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653 |
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|a axial piston pump
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653 |
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|a stability
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653 |
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|a positive displacement pump
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653 |
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|a multi-pressure rail system
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653 |
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|a energy saving
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653 |
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|a energy balance
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653 |
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|a oscillation damping
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653 |
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|a multi-chamber actuator
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653 |
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|a overcenter
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653 |
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|a embedded control
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653 |
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|a hydraulic drives
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653 |
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|a gear pump
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653 |
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|a agricultural tractors and implements
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653 |
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|a FMEA
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653 |
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|a digital hydraulics
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653 |
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|a energy savings
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|a mobile machinery
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653 |
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|a swash-plate
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653 |
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|a exoskeletons
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653 |
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|a contact stress
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700 |
1 |
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|a Rundo, Massimo
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700 |
1 |
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|a Casoli, Paolo
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700 |
1 |
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|a Rundo, Massimo
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041 |
0 |
7 |
|a eng
|2 ISO 639-2
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989 |
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|b DOAB
|a Directory of Open Access Books
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500 |
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|a Creative Commons (cc), https://creativecommons.org/licenses/by/4.0/
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024 |
8 |
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|a 10.3390/books978-3-0365-7867-5
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856 |
4 |
2 |
|u https://directory.doabooks.org/handle/20.500.12854/101346
|z DOAB: description of the publication
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856 |
4 |
0 |
|u https://www.mdpi.com/books/pdfview/book/7441
|7 0
|x Verlag
|3 Volltext
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082 |
0 |
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|a 000
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082 |
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|a 333
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|a 530
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|a 600
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|a This reprint focuses on the recent advances in fluid power technology reporting results in a wide range of applications. Studies concerning the developments of pumps both at constant and variable displacement are reported. Analyses are focused on the improvement of efficiency, control, design and pressure ripple reduction. About fluid power, several applications are investigated with the aim of reducing energy losses, in particular implementations in an excavator, a hybrid transmission and a system for agricultural solutions are described. Applications are studied focusing also on the effects of a particular load holding valve, and facing the relevant aspects of the condition monitoring, failure modes and effects analysis. The fluid power covers a very wide range of application as demonstrated by the paper concerning an exoskeleton device. Finally, a particular application concerning a gas pressure regulator with lower noise emission is reported.
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