Synopses & Reviews
Develop high-performance hydraulic and pneumatic power systems
Design, operate, and maintain fluid and pneumatic power equipment using the expert information contained in this authoritative volume. Fluid Power Engineering presents a comprehensive approach to hydraulic systems engineering with a solid grounding in hydrodynamic theory. The book explains how to create accurate mathematical models, select and assemble components, and integrate powerful servo valves and actuators. You will also learn how to build low-loss transmission lines, analyze system performance, and optimize efficiency. Work with hydraulic fluids, pumps, gauges, and cylindersDesign transmission lines using the lumped parameter modelMinimize power losses due to friction, leakage, and line resistanceConstruct and operate accumulators, pressure switches, and filtersDevelop mathematical models of electrohydraulic servosystemsConvert hydraulic power into mechanical energy using actuatorsPrecisely control load displacement using HSAs and control valvesApply fluid systems techniques to pneumatic power systems
Synopsis
A detailed look at theory and applications necessary for fluid power engineering
This authoritative guide is essential for mechanical engineers who engage in the design and handling of fluid power equipment, which include both hydraulic and pneumatic power types of equipment.
Fluid Power Engineering helps you to build a solid theoretical background, which will enable further study and analysis of static and dynamic performance of different fluid power elements and systems. The book features end-of-chapter problems and problem-solving case studies, making it appropriate for graduate level mechanical engineering students.
Synopsis
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Develop high-performance hydraulic and pneumatic power systems
Design, operate, and maintain fluid and pneumatic power equipment using the expert information contained in this authoritative volume. Fluid Power Engineering presents a comprehensive approach to hydraulic systems engineering with a solid grounding in hydrodynamic theory. The book explains how to create accurate mathematical models, select and assemble components, and integrate powerful servo valves and actuators. You will also learn how to build low-loss transmission lines, analyze system performance, and optimize efficiency.
- Work with hydraulic fluids, pumps, gauges, and cylinders
- Design transmission lines using the lumped parameter model
- Minimize power losses due to friction, leakage, and line resistance
- Construct and operate accumulators, pressure switches, and filters
- Develop mathematical models of electrohydraulic servosystems
- Convert hydraulic power into mechanical energy using actuators
- Precisely control load displacement using HSAs and control valves
- Apply fluid systems techniques to pneumatic power systems