Piezoelectric and Acoustic Materials for Transducer Applications combines discussion of the physical properties of piezoelectric and acoustic materials, with the fundamentals, design principles and fabrication methods, and their application in transducers. This book serves as a comprehensive reference on all aspects of piezoelectric materials, such as thermodynamics, crystallography, crystal chemistry, and piezoelectric composite fabrication techniques as they pertain to piezoelectric transducer design and applications.
The chapters in this book cover a wide range of topics, which are separated into four sections:
Section I. Fundamentals of Piezoelectricity
Section II. Piezoelectric and Acoustic Materials for Transducer Technology
Section III. Transducer Design and Principles
Section IV. Piezoelectric Transducer Fabrication Methods
Piezoelectric and Acoustic Materials for Transducer Applications is written by a diverse group of renowned experts from around the world, and is appropriate for scientists and engineers in a variety of disciplines.
Piezoelectric and Acoustic Materials for Transducer Applications combines discussion of the physical properties of piezoelectric and acoustic materials, with the fundamentals, design principles and fabrication methods, and their application in transducers. This book serves as a comprehensive reference on all aspects of piezoelectric materials, such as thermodynamics, crystallography, crystal chemistry, and piezoelectric composite fabrication techniques as they pertain to piezoelectric transducer design and applications.
The chapters in this book cover a wide range of topics, which are separated into four sections:
Section I. Fundamentals of Piezoelectricity
Section II. Piezoelectric and Acoustic Materials for Transducer Technology
Section III. Transducer Design and Principles
Section IV. Piezoelectric Transducer Fabrication Methods
Piezoelectric and Acoustic Materials for Transducer Applications is written by a diverse group of renowned experts from around the world, and is appropriate for scientists and engineers in a variety of disciplines.
Discusses the underlying physical principles of piezoelectric materials, important properties of ferroelectric/piezoelectric materials used in today’s transducer technology, and the principles used in transducer design Includes examples of a wide range of applications of such materials along with the appertaining rationales Provides a comprehensive, yet concise, reference to all the pertinent aspects of piezoelectric materials Contains contributions from a select-group of distinguished researchers Includes supplementary material: sn.pub/extras
Ahmad Safari
Transducer ceramics composite composite materials crystal crystallography electricity finite element method material materials mechatronics microelectromechanical system (MEMS) piezoelectricity semiconductor thermodynamics