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Modern Piezoelectric Energy-Harvesting Materials, Christopher R. Bowen; Vitaly Yu. Topolov; Hyunsun


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Автор: Christopher R. Bowen; Vitaly Yu. Topolov; Hyunsun
Название:  Modern Piezoelectric Energy-Harvesting Materials
ISBN: 9783319291413
Издательство: Springer
Классификация:






ISBN-10: 3319291416
Обложка/Формат: Hardcover
Страницы: 152
Вес: 0.43 кг.
Дата издания: 22.03.2016
Серия: Springer Series in Materials Science
Язык: English
Издание: 1st ed. 2016
Иллюстрации: 20 tables, color; 12 illustrations, color; 25 illustrations, black and white; xix, 152 p. 37 illus., 12 illus. in color.
Размер: 234 x 156 x 11
Читательская аудитория: Professional & vocational
Основная тема: Energy Harvesting
Ссылка на Издательство: Link
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Поставляется из: Германии
Описание: 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.


Advanced Piezoelectric Materials: Science and Technology

Автор: Uchino Kenji
Название: Advanced Piezoelectric Materials: Science and Technology
ISBN: 0081014856 ISBN-13(EAN): 9780081014851
Издательство: Elsevier Science
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Цена: 32844.00 р.
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Описание: Piezoelectric materials produce electric charges on their surfaces as a consequence of applying mechanical stress. They are used in the fabrication of a growing range of devices such as transducers (used, for example, in ultrasound scanning), actuators (deployed in such areas as vibration suppression in optical and microelectronic engineering), pressure sensor devices (such as gyroscopes) and increasingly as a way of producing energy. Their versatility has led to a wealth of research to broaden the range of piezoelectric materials and their potential uses. Advanced piezoelectric materials: science and technology provides a comprehensive review of these new materials, their properties, methods of manufacture and applications.After an introductory overview of the development of piezoelectric materials, Part one reviews the various types of piezoelectric material, ranging from lead zirconate titanate (PZT) piezo-ceramics, relaxor ferroelectric ceramics, lead-free piezo-ceramics, quartz-based piezoelectric materials, the use of lithium niobate and lithium in piezoelectrics, single crystal piezoelectric materials, electroactive polymers (EAP) and piezoelectric composite materials. Part two discusses how to design and fabricate piezo-materials with chapters on piezo-ceramics, single crystal preparation techniques, thin film technologies, aerosol techniques and manufacturing technologies for piezoelectric transducers. The final part of the book looks at applications such as high-power piezoelectric materials and actuators as well as the performance of piezoelectric materials under stress.With its distinguished editor and international team of expert contributors Advanced piezoelectric materials: science and technology is a standard reference for all those researching piezoelectric materials and using them to develop new devices in such areas as microelectronics, optical, sound, structural and biomedical engineering.

Nanostructured Piezoelectric Energy Harvesters

Автор: Joe Briscoe; Steve Dunn
Название: Nanostructured Piezoelectric Energy Harvesters
ISBN: 3319096311 ISBN-13(EAN): 9783319096315
Издательство: Springer
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Цена: 7182.00 р.
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Описание: Starting with a description of the fundamental principles and properties of piezo- and ferroelectric materials, where applications of bulk materials are well established, the book shows how nanostructures of these materials are being developed for energy harvesting applications.

Piezoelectric-Based Vibration-Control Systems

Автор: Nader Jalili
Название: Piezoelectric-Based Vibration-Control Systems
ISBN: 1441900691 ISBN-13(EAN): 9781441900692
Издательство: Springer
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Цена: 26122.00 р.
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Описание: "Piezoelectric-Based Vibration-control Systems: Applications in Micro/Nano Sensors and Actuators" covers: Fundamental concepts in smart (active) materials including piezoelectric and piezoceramics, magnetostrictive, shape-memory materials, and electro/magneto-rheological fluids;

Piezoelectric ZnO Nanostructure for Energy Harvesting

Автор: Leprince-Wang
Название: Piezoelectric ZnO Nanostructure for Energy Harvesting
ISBN: 1848217188 ISBN-13(EAN): 9781848217188
Издательство: Wiley
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Цена: 22010.00 р.
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Описание: Over the past decade, ZnO as an important II-VI semiconductor has attracted much attention within the scientific community over the world owing to its numerous unique and prosperous properties.

Dynamic Fracture of Piezoelectric Materials

Автор: Petia Dineva; Dietmar Gross; Ralf M?ller; Tsviatko
Название: Dynamic Fracture of Piezoelectric Materials
ISBN: 3319039601 ISBN-13(EAN): 9783319039602
Издательство: Springer
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Цена: 19564.00 р.
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Описание: This book offers a step-by-step tutorial for the application of the Boundary Integral Equation Method in mechanics. Two major parts of the book are devoted to the solution of problems in homogeneous and inhomogeneous solids.

CMOS Circuits for Piezoelectric Energy Harvesters

Автор: Thorsten Hehn; Yiannos Manoli
Название: CMOS Circuits for Piezoelectric Energy Harvesters
ISBN: 9401792879 ISBN-13(EAN): 9789401792875
Издательство: Springer
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Цена: 16769.00 р.
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Описание:

1 Introduction. 1.1 Energy Harvesting Principles. 1.2 Examples of Wireless Sensor Nodes. 1.3 State of the Art in Interface Circuits for Energy Harvesters. 1.4 Goal of this Work and Major Achievements. 1.5 Organization of the Book. References.

2 Piezoelectricity and Energy Harvester Modelling. 2.1 Theoretical Background of the Piezoelectric Effect. 2.2 Piezoelectric Converter Design Configurations. 2.3 Modeling of Kinetic Energy Harvesters. 2.4 Modeling of Piezoelectric Harvesters. References.

3 Analysis of Different Interface Circuits. 3.1 Resistor Load. 3.2 Full-wave Rectifier with Capacitor. 3.3 Synchronous Electric Charge Extraction. 3.4 Comparison Under Coupling Considerations. References.

4 Theory of the Proposed PSCE Circuit. 4.1 Basic Operation Principle. 4.2 Energy Loss Approximation Approach. 4.3 Switch Configurations. 4.4 Switching Techniques. 4.5 Evaluation. 4.6 Realization Aspects. References.

5 Implementation of the PSCE Circuit on Transistor Level. 5.1 Power Switches. 5.2 SECE Selector. 5.3 Oscillation Cancellation. 5.4 Negative Voltage Converter. 5.5 Startup.

6 Performance Analysis of the PSCE Chip. 6.1 Vibration Setup. 6.2 Characterization of Piezoelectric Harvesters. 6.3 Demonstration Platform. 6.4 PSCE Chip Performance. References.

7 Conclusions and Outlook. References.

Appendix A Mathematical Calculations. A.1 Solution of the Linear Differential Equation Systems. A.2 Flux Property. A.3 Trigonometric Relations. A.4 Numerical Calculation.


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