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Modern Piezoelectric Energy-Harvesting Materials: Springer Series in Materials Science, cartea 238

Autor Christopher R. Bowen, Vitaly Yu. Topolov, Hyunsun Alicia Kim
en Limba Engleză Hardback – 22 mar 2016
This book covers the topic of vibration energy harvesting using piezoelectric materials. Piezoelectric materials are analyzed in the context of their electromechanical coupling, heterogeneity, microgeometry and interrelations between electromechanical properties. Piezoelectric ceramics and composites based on ferroelectrics are advanced materials that are suitable for harvesting mechanical energy from vibrations using inertial energy harvesting which relies on the resistance of a mass to acceleration and kinematic energy harvesting which couples the energy harvester to the relative movement of different parts of a source. In addition to piezoelectric materials, research efforts to develop optimization methods for complex piezoelectric energy harvesters are also reviewed. The book is important for specialists in the field of modern advanced materials and will stimulate new effective piezotechnical applications.
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Specificații

ISBN-13: 9783319291413
ISBN-10: 3319291416
Pagini: 200
Ilustrații: XIX, 152 p. 37 illus., 12 illus. in color.
Dimensiuni: 155 x 235 x 11 mm
Greutate: 0.42 kg
Ediția:1st ed. 2016
Editura: Springer International Publishing
Colecția Springer
Seria Springer Series in Materials Science

Locul publicării:Cham, Switzerland

Public țintă

Research

Cuprins

Preface.- The Piezoelectric Medium and Its Characteristics.- Electromechanical Coupling Factors and Their Anisotropy in Piezoelectric and Ferroelectric Materials.- Figures of Merit of Modern Piezo-active Ceramics and Composites.- Piezoelectric Mechanical Energy Harvesters and Related Materials.- Piezoelectric Energy-harvesting Materials Characterization: New Trends in the Study.

Textul de pe ultima copertă

This book covers the topic of vibration energy harvesting using piezoelectric materials. Piezoelectric materials are analyzed in the context of their electromechanical coupling, heterogeneity, microgeometry and interrelations between electromechanical properties. Piezoelectric ceramics and composites based on ferroelectrics are advanced materials that are suitable for harvesting mechanical energy from vibrations using inertial energy harvesting which relies on the resistance of a mass to acceleration and kinematic energy harvesting which couples the energy harvester to the relative movement of different parts of a source. In addition to piezoelectric materials, research efforts to develop optimization methods for complex piezoelectric energy harvesters are also reviewed. The book is important for specialists in the field of modern advanced materials and will stimulate new effective piezotechnical applications.

Caracteristici

Details the importance of piezoelectric materials for modern materials science Explains the analysis of electromechanical properties and related parameters in various piezoelectric media Gives guidance to energy-harvesting with piezoelectric materials Contains numerous examples to energy harvesting Presents applications to novel energy-harvesting materials with outstanding electromechanical properties Includes supplementary material: sn.pub/extras