This book presents new approaches to R&D of piezoelectric actuators and generators of different types based on established, original constructions and contemporary research into framework of theoretical, experimental, and numerical methods of physics, mechanics, and materials science. Improved technical solutions incorporated into the devices demonstrate high output values of voltage and power, allowing application of the goods in various areas of energy harvesting. The book is divided into seven chapters, each presenting main results of the chapter, along with a brief exposition of novel…mehr
This book presents new approaches to R&D of piezoelectric actuators and generators of different types based on established, original constructions and contemporary research into framework of theoretical, experimental, and numerical methods of physics, mechanics, and materials science. Improved technical solutions incorporated into the devices demonstrate high output values of voltage and power, allowing application of the goods in various areas of energy harvesting. The book is divided into seven chapters, each presenting main results of the chapter, along with a brief exposition of novel findings from around the world proving context for the author's results. It presents particular results of the Soviet and Russian schools of Mechanics and Material Sciences not previously available outside of Russia.
Produktdetails
Produktdetails
Innovation and Discovery in Russian Science and Engineering
Professor DrSc. Sergey N. Shevtsov is Head of Laboratory, South Scientific Center of the Russian Academy of Sciences, Rostov- on-Don, Russia.
Inhaltsangabe
Preface.- Introduction.- General statement of the problems of electroelasticity.- Power high stroke flex-tensional piezoelectric actuator with optimized geometry.- Modeling of stack type piezoelectric generators.- Modeling of cantilever type piezoelectric generators.- Experimental investigations of piezoelectric generators.- Identification of defects in cantilever elastic rod.- Set-up for studying oscillation parameters and identification of defects in rod constructions.- Appendixes.
Preface.- Introduction.- General statement of the problems of electroelasticity.- Power high stroke flex-tensional piezoelectric actuator with optimized geometry.- Modeling of stack type piezoelectric generators.- Modeling of cantilever type piezoelectric generators.- Experimental investigations of piezoelectric generators.- Identification of defects in cantilever elastic rod.- Set-up for studying oscillation parameters and identification of defects in rod constructions.- Appendixes .
Preface.- Introduction.- General statement of the problems of electroelasticity.- Power high stroke flex-tensional piezoelectric actuator with optimized geometry.- Modeling of stack type piezoelectric generators.- Modeling of cantilever type piezoelectric generators.- Experimental investigations of piezoelectric generators.- Identification of defects in cantilever elastic rod.- Set-up for studying oscillation parameters and identification of defects in rod constructions.- Appendixes.
Preface.- Introduction.- General statement of the problems of electroelasticity.- Power high stroke flex-tensional piezoelectric actuator with optimized geometry.- Modeling of stack type piezoelectric generators.- Modeling of cantilever type piezoelectric generators.- Experimental investigations of piezoelectric generators.- Identification of defects in cantilever elastic rod.- Set-up for studying oscillation parameters and identification of defects in rod constructions.- Appendixes .
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