Reprint

Application and Analysis in Fluid Power Systems

Edited by
June 2023
286 pages
  • ISBN978-3-0365-7866-8 (Hardback)
  • ISBN978-3-0365-7867-5 (PDF)

This book is a reprint of the Special Issue Application and Analysis in Fluid Power Systems that was published in

Chemistry & Materials Science
Engineering
Environmental & Earth Sciences
Physical Sciences
Summary

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.

Format
  • Hardback
License
© 2022 by the authors; CC BY-NC-ND license
Keywords
fluid power; hydraulic hybrid drivetrains; digital hydraulics; energy savings; efficiency; excavator; electro-hydrostatic actuator; load sensing; energy saving; pump-controlled systems; axial piston pump; variable displacement; swash-plate; hydromechanical; volumetric; efficiency; operation point; operation range; load-holding valve; counterbalance; overcenter; energy balance; hydraulic systems; mobile machinery; positive displacement pump; active control; flow ripple; pressure ripple; reinforcement learning; multi-chamber actuator; mode selection; agricultural tractors and implements; high pressure control system; multi-pressure rail system; energy savings; throttle loss reduction; FMEA; fluid power; flow control valve; risk prioritization; condition monitoring; fault detection and diagnosis; industrial hydraulics; hydraulic press; supervised learning; neural networks; feature extraction; feature selection; linear-quadratic Gaussian controller; axial piston pump; embedded control; trochoidal profile; gear pump; gerotor technology; contact stress; finite element method; design of experiments; Taguchi method; simulation-based design; process planning; fluid power; exoskeletons; hydraulic drives; digital hydraulics; miniature applications; control methods; pressure control system; stability; noise and vibration; oscillation damping