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Piezoelectric bending transducers = the physics of their static and dynamic behaviour : a textbook about indispensable actuators in microtechnology, mechatronics and medical technology /
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
Piezoelectric bending transducers/ by Rüdiger G. Ballas.
其他題名:
the physics of their static and dynamic behaviour : a textbook about indispensable actuators in microtechnology, mechatronics and medical technology /
作者:
Ballas, Rüdiger G.
出版者:
Berlin, Heidelberg :Springer Berlin Heidelberg : : 2025.,
面頁冊數:
xlvi, 470 p. :ill. (some col.), digital ; : 24 cm.;
Contained By:
Springer Nature eBook
標題:
Piezoelectric transducers - Industrial applications. -
電子資源:
https://doi.org/10.1007/978-3-662-70689-3
ISBN:
9783662706893
Piezoelectric bending transducers = the physics of their static and dynamic behaviour : a textbook about indispensable actuators in microtechnology, mechatronics and medical technology /
Ballas, Rüdiger G.
Piezoelectric bending transducers
the physics of their static and dynamic behaviour : a textbook about indispensable actuators in microtechnology, mechatronics and medical technology /[electronic resource] :by Rüdiger G. Ballas. - Berlin, Heidelberg :Springer Berlin Heidelberg :2025. - xlvi, 470 p. :ill. (some col.), digital ;24 cm.
Introduction -- Piezoelectricity -- Piezoelectric Functional Ceramics PZT -- Preparation and Manufacturing of PZT Ceramics -- Energy Density of Elastic Deformation -- Energy Density -- n the Electrostatic Field -- Piezoelectric Equations of State -- Static Behaviour of Piezoelectric Bending Transducers -- Lagrange Equations and Aspects of Calculus of Variations -- Hamilton's Principle and Piezoelectric Bending Transducers -- Dynamic Behaviour of Piezoelectric Bending Transducers -- Piezoelectric Bending Transducer as an -- lectromechanical System -- Measurement Setup for Piezoelectric Bending Transducers -- Comparison of Measurement Results and Analytical Calculations.
The wide range of industrial applications for piezoelectric bending transducers as actuators and high-precision positioning systems require a performance that is adapted to the respective task. The geometric dimensions of individual active and passive layers, their sequence in the layer system and their elastomechanical and electromechanical properties are key factors here. This book focuses on the analytical description of the static and dynamic behaviour of piezoelectric multilayer bending transducers. It is intended to provide students of natural and engineering sciences, in particular physics, micro- and precision engineering, measurement and sensor technology, mechatronics and automation technology, as well as engineers and scientists in practice with a solid technical tool for the design of piezoceramic bending transducers. The requirements for understanding the material are limited to basic knowledge of one- and multi-dimensional analysis as well as elementary Newtonian mechanics, technical mechanics and electricity. The Author Rudiger G. Ballas studied Microsystems Engineering at Kaiserslautern University of Applied Sciences and completed his doctorate at TU Darmstadt in the field of piezoelectric bending transducers. He holds the professorship for Electrical Engineering at the Wilhelm Buchner University of Applied Sciences in Darmstadt and has won several national and international awards in the field of piezoelectric materials and their applications. His research focuses in particular on piezoelectric materials, sensors and actuators as well as piezoelectric energy generation and (micro-)electromechanical systems (MEMS).
ISBN: 9783662706893
Standard No.: 10.1007/978-3-662-70689-3doiSubjects--Topical Terms:
1502803
Piezoelectric transducers
--Industrial applications.
LC Class. No.: TK7872.P54
Dewey Class. No.: 621.3815
Piezoelectric bending transducers = the physics of their static and dynamic behaviour : a textbook about indispensable actuators in microtechnology, mechatronics and medical technology /
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Introduction -- Piezoelectricity -- Piezoelectric Functional Ceramics PZT -- Preparation and Manufacturing of PZT Ceramics -- Energy Density of Elastic Deformation -- Energy Density -- n the Electrostatic Field -- Piezoelectric Equations of State -- Static Behaviour of Piezoelectric Bending Transducers -- Lagrange Equations and Aspects of Calculus of Variations -- Hamilton's Principle and Piezoelectric Bending Transducers -- Dynamic Behaviour of Piezoelectric Bending Transducers -- Piezoelectric Bending Transducer as an -- lectromechanical System -- Measurement Setup for Piezoelectric Bending Transducers -- Comparison of Measurement Results and Analytical Calculations.
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The wide range of industrial applications for piezoelectric bending transducers as actuators and high-precision positioning systems require a performance that is adapted to the respective task. The geometric dimensions of individual active and passive layers, their sequence in the layer system and their elastomechanical and electromechanical properties are key factors here. This book focuses on the analytical description of the static and dynamic behaviour of piezoelectric multilayer bending transducers. It is intended to provide students of natural and engineering sciences, in particular physics, micro- and precision engineering, measurement and sensor technology, mechatronics and automation technology, as well as engineers and scientists in practice with a solid technical tool for the design of piezoceramic bending transducers. The requirements for understanding the material are limited to basic knowledge of one- and multi-dimensional analysis as well as elementary Newtonian mechanics, technical mechanics and electricity. The Author Rudiger G. Ballas studied Microsystems Engineering at Kaiserslautern University of Applied Sciences and completed his doctorate at TU Darmstadt in the field of piezoelectric bending transducers. He holds the professorship for Electrical Engineering at the Wilhelm Buchner University of Applied Sciences in Darmstadt and has won several national and international awards in the field of piezoelectric materials and their applications. His research focuses in particular on piezoelectric materials, sensors and actuators as well as piezoelectric energy generation and (micro-)electromechanical systems (MEMS).
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