<p/><br></br><p><b> About the Book </b></p></br></br>"Hydraulic control systems are used across many engineering applications to provide motion and force control of mechanical systems. With respect to competing technologies for transmitting mechanical power (i.e. mechanical drives or electrical drives), hydraulic drives offer favorable characteristics from both the power to weight ratio and control perspectives. State-of-art hydraulic systems can be up to one order of magnitude lighter than electric systems with the same power (or torque) level. Also, compared to mechanical drives hydraulic systems offer a greater layout flexibility thanks to the versatile design of the piping or hoses system that connects the hydraulic components. Hydraulic drive technology also easily offers solutions for advanced actuator control, in terms of output velocity and force, motion reversals as well as safety functions"--<p/><br></br><p><b> Book Synopsis </b></p></br></br><b>HYDRAULIC FLUID POWER</b> <p><b>LEARN MORE ABOUT HYDRAULIC TECHNOLOGY IN HYDRAULIC SYSTEMS DESIGN WITH THIS COMPREHENSIVE RESOURCE</b><p><i>Hydraulic Fluid Power</i> provides readers with an original approach to hydraulic technology education that focuses on the design of complete hydraulic systems. Accomplished authors and researchers Andrea Vacca and Germano Franzoni begin by describing the foundational principles of hydraulics and the basic physical components of hydraulics systems. They go on to walk readers through the most practical and useful system concepts for controlling hydraulic functions in modern, state-of-the-art systems.<p>Written in an approachable and accessible style, the book's concepts are classified, analyzed, presented, and compared on a system level. The book also provides readers with the basic and advanced tools required to understand how hydraulic circuit design affects the operation of the equipment in which it's found, focusing on the energy performance and control features of each design architecture. Readers will also learn how to choose the best design solution for any application.<p>Readers of <i>Hydraulic Fluid Power</i> will benefit from: <ul><li>Approaching hydraulic fluid power concepts from an "outside-in" perspective, emphasizing a problem-solving orientation</li><li>Abundant numerical examples and end-of-chapter problems designed to aid the reader in learning and retaining the material</li><li>A balance between academic and practical content derived from the authors' experience in both academia and industry</li><li>Strong coverage of the fundamentals of hydraulic systems, including the equations and properties of hydraulic fluids</li></ul><p><i>Hydraulic Fluid Power</i> is perfect for undergraduate and graduate students of mechanical, agricultural, and aerospace engineering, as well as engineers designing hydraulic components, mobile machineries, or industrial systems.<p/><br></br><p><b> About the Author </b></p></br></br><p><b>ANDREA VACCA</b> is the Maha Chair for Fluid Power Systems at Purdue University and he leads Purdue's Maha Fluid Power Research Center. He obtained his MSc at the University of Parma and his doctorate in Energy Systems at the University of Florence. He has written over 150 technical papers on fluid power technology and was awarded the 2019 Joseph Bramah Medal by the Institution of Mechanical Engineers for contributions to fluid power research.</p><p><b>GERMANO FRANZONI</b> obtained his Ph.D. in mechanical engineering in 2006 from the University of Parma, Italy. Since then, he has worked in the Hydraulics Industry, both in Europe and USA. He is currently part of the Mobile Systems Engineering team for North America at Parker Hannifin. He specializes in systems design, business development and R&D. He works side by side with the major OEMs in the construction, mining, vocational truck and military markets. He holds two patents and has several patent pending applications. He is author of several scientific papers and has presented at various fluid power conferences and symposia.</p>
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