Development Of Lead Free Relaxor Ferroelectric Na Knbo3 Based Ceramics And Applications For Piezoelectric Acoustic Actuators PDF Download

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Lead-free Piezo-Ceramic Solid Solutions

Lead-free Piezo-Ceramic Solid Solutions
Author: R. Saravanan
Publisher: Materials Research Forum LLC
Total Pages: 176
Release: 2018-11-25
Genre: Technology & Engineering
ISBN: 194529194X

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Discover in this book the results of a systematic investigation of the dielectric, ferroelectric and piezoelectric properties of promising lead-free solid solution ceramics. Lead-based perovskite ceramics are most important for piezoelectric and ferroelectric devices, but the toxicity of lead has raised serious environmental issues. This is why much research presently is concerned with the development of efficient lead-free systems. Lead-free ceramics with the most promising piezoelectric properties are based on barium titanate, modified sodium potassium niobate, sodium bismuth titanate, etc. The present book presents the results of a systematic investigation of the dielectric, ferroelectric and piezoelectric properties of this type of lead-free solid solution ceramics as obtained by way of powder X-ray diffraction, scanning electron microscopy, energy dispersive X-ray spectroscopy, UV-visible spectroscopy, dielectric, ferroelectric and piezoelectric measurements. Also determined was the electron density distribution of five series of lead-free barium titanate piezoelectric ceramics using experimental X-ray diffraction data.


Studies of Novel Lead-free Piezoelectric and Relaxor Ferroelectric Materials

Studies of Novel Lead-free Piezoelectric and Relaxor Ferroelectric Materials
Author: Chao Lei
Publisher:
Total Pages: 0
Release: 2008
Genre: Ceramic materials
ISBN:

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The (1-x)BaTiO32013xBaSnO3 perovskite solid solution ceramics were prepared by solid state reaction and studied by dielectric spectroscopy. The temperature-composition phase diagram of this pseudo-binary system has been established, which delimits the paraelectric, ergodic polar cluster, nonergodic ferroeletric and relaxor phases, and indicates a crossover from ferroelectric to relaxor behavior at xc= 0.19. The mechanisms of the dielectric response in different parts of the phase diagram are discussed. In particular, the crossover from a diffuse ferroelectric phase transition to relaxor behavior is attributed to the appearance at x > xc of the additional dielectric contribution arising from the flipping of the local polarization of the polar clusters. The structure and the dielectric and ferroelectric properties of the (1-x)BaTiO3--xAgNbO3 (BT-AN) solid solution ceramics were investigated. The most interesting feature of this system is that it exhibits re-entrant-like phenomenon which means that the relaxor state occurs after the para- to ferro-electric phase transition upon cooling, i.e., inside the ferroelectric phase. The temperature-composition phase diagram of BT-AN system has been established. This anomalous relaxation behaviour can be attributed to compositional segregation into mesoscopic ferroelectric regions (with x = 0) and AN-substituted regions (x > 0). This unusual phase transition sequence has never been reported in canonical lead-based ferroelectrics. In the search for new lead-free materials with high piezoelectric performance, the ceramics of (1-x)(K0.5Na0.5)NbO32013xAgNbO3 (KNN-AN) solid solution have been designed and prepared. It is shown that they exhibit piezoelectric properties which are comparable or superior to the hot-pressed KNN ceramics and other KNN-based systems. In particular, the piezoelectric properties exhibit very good thermal stability up to high temperatures, presenting a significant improvement from most KNN-based piezoceramics. Novel lead-free solid solutions of (1-x)(Na0.5Bi0.5)TiO32013xAgNbO3 (NBT-AN) were prepared and characterized. The dielectric constant was found to be stable in a wide temperature range, indicating that this system is promising for such application as ceramic capacitors within a wide temperature range, especially at high temperatures. In addition, the transparency of the NBT-AN ceramics obtained by sintering in O2 opens a road towards new applications in the field of electro-optics.


Piezoelectric Ceramics

Piezoelectric Ceramics
Author: Ernesto Suaste-Gomez
Publisher: BoD – Books on Demand
Total Pages: 306
Release: 2010-10-05
Genre: Technology & Engineering
ISBN: 9533071222

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This book reviews a big window of opportunity for piezoelectric ceramics, such as new materials, material combinations, structures, damages and porosity effects. In addition, applications of sensors, actuators, transducers for ultrasonic imaging, positioning systems, energy harvesting, biomedical and microelectronic devices are described. The book consists of fourteen chapters. The genetic algorithm is used for identification of RLC parameters in the equivalent electrical circuit of piezoelectric transducers. Concept and development perspectives for piezoelectric energy harvesting are described. The characterization of principal properties and advantages of a novel device called ceramic-controlled piezoelectric with a Pt wire implant is included. Bio-compatibility studies between piezoelectric ceramic material and biological cell suspension are exposed. Thus, piezoelectric ceramics have been a very favorable solution as a consequence of its high energy density and the variety of fabrication techniques to obtain bulk or thin films devices. Finally, the readers will perceive a trend analysis and examine recent developments in different fields of applications of piezoelectric ceramics.


Lead-Free Piezoelectrics

Lead-Free Piezoelectrics
Author:
Publisher:
Total Pages: 538
Release: 2011-11-01
Genre:
ISBN: 9781441995995

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Piezoelectric Ceramics

Piezoelectric Ceramics
Author:
Publisher:
Total Pages: 127
Release: 1996
Genre:
ISBN:

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Piezoelectric Materials

Piezoelectric Materials
Author: Toshio Ogawa
Publisher: BoD – Books on Demand
Total Pages: 240
Release: 2016-08-24
Genre: Technology & Engineering
ISBN: 9535125583

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The science and technology in the area of piezoelectric ceramics are extremely progressing, especially the materials research, measurement technique, theory and applications, and furthermore, demanded to fit social technical requests such as environmental problems. While they had been concentrated on piezoelectric ceramics composed of lead-containing compositions, such as lead zirconate titanate (PZT) and lead titanate, at the beginning because of the high piezoelectricity, recently lead water pollution by soluble PZT of our environment must be considered. Therefore, different new compositions of lead-free ceramics in order to replace PZT are needed. Until now, there have been many studies on lead-free ceramics looking for new morphotropic phase boundaries, ceramic microstructure control to realize high ceramic density, including composites and texture developments, and applications to new evaluation techniques to search for high piezoelectricity. The purpose of this book is focused on the latest reports in piezoelectric materials such as lead-free ceramics, single crystals, and thin films from viewpoints of piezoelectric materials, piezoelectric science, and piezoelectric applications.


Handbook of Advanced Ceramics

Handbook of Advanced Ceramics
Author: Tadashi Takenaka
Publisher: Elsevier Inc. Chapters
Total Pages: 61
Release: 2013-04-11
Genre: Technology & Engineering
ISBN: 0128057254

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Piezoelectric Ceramics

Piezoelectric Ceramics
Author: Bernard Jaffe
Publisher: Elsevier
Total Pages: 328
Release: 2012-12-02
Genre: Technology & Engineering
ISBN: 0323155685

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Piezoelectric Ceramics focuses on the relationship between piezoelectricity and ferroelectricity as they apply to ceramics, taking into consideration the properties of materials that are being used and possibly be used in the industries. Composed of 12 chapters, the book starts by tracing the history of piezoelectricity and how this affects ceramics. The different measurement techniques are discussed, including dielectric, ferroelectric, and piezoelectric measurements. The book proceeds by discussing Perovskite structure and barium titanate. Covered areas include electric field, piezoelectric properties, particle size effect, and dielectric strength. The properties, compositions, and reactions of various perovskites are discussed. Numerical analyses are presented in this regard. The book also offers interpretations of the experiments conducted. The discussions end with the processes involved in the manufacture and applications of piezoelectric ceramics. Concerns in manufacturing include calcination, grinding, mixing, electroding, firing, and quality control. Piezolectric ceramics are applied in air transducers, instrument transducers, delay line transducers, underwater sound ultrasonic power, and wave filters. The book is important for readers interested in doing research on ceramics.


Design of Na-based Perovskites Based Dielectric and Piezoelectric Ceramics

Design of Na-based Perovskites Based Dielectric and Piezoelectric Ceramics
Author: Lisheng Gao
Publisher:
Total Pages:
Release: 2019
Genre:
ISBN:

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Lead-based ceramics have been widely used in piezoelectric and capacitor applications, such as sensors, actuators, acoustic transducers, and multilayer capacitors. In addition, high voltage switching antiferroelectric dielectrics are typically based on PbZrO3-based ceramics. Despite the extraordinary performance of lead-based piezoelectric and high voltage capacitive ceramics, concerns exist owing to the toxicity of lead in electronic devices, particularly in the European Union, which has pushed research and development to seek high-performance, lead-free alternatives. Fundamental studies have investigated structure-property processing relations. Methodologies such as the use of Rayleigh studies were performed on (Na, K)NbO3 (NKN) ceramics, sintered under different temperatures and low oxygen partial pressure (pO2). It was found that the extrinsic contribution from domain wall motions partly contributed to high-field dielectric and piezoelectric responses. By raising the sintering temperature, both reversible and irreversible coefficients increase. However, the sintering atmosphere has relatively limited impact on performance. An effective electrostrictive coefficient Q^* was introduced to couple the dielectric and piezoelectric properties in these polycrystalline ceramics. It was found that the Q^* value was invariant in samples processed under different conditions. Furthermore, in contrasting dielectric loss with electromechanical loss, the ratio of 180 domain wall motion contributions in NKN can be estimated. The percentage of non-180 domain wall motion contribution was independent from the processing of the materials.Another strategy to enhance piezoelectric performance of the NKN was by aligning the grains along a preferred crystallographic orientation, via a process known as texturing. The NKN was found to be easily textured along 001PC (PC: pseudocubic) in the low pO2 atmosphere, within a range compatible for base metal cofiring, such as Cu. The d_33^*was enhanced up to 680 pm/V. It was considered that there were two factors behind the enhancement of piezoelectric properties; (1) the ceramic was well textured along 001PC direction, and (2) the dissolution of NaNbO3 templates resulted in a polymorphic phase boundary shift to room temperature. A device engineering strategy was to fabricate multilayer structures with integrated interdigitated base-metal electrodes. A polypropylene carbonate (PPC) polymer binder system was used and formulated for these Na-based piezoelectrics and dielectrics. Many of the traditional binders such as (PVB) polyvinyl butrayl had issues of residual carbon in low oxygen partial pressure processing and could limit dielectric performance. PPC enabled clean burnout under a low pO2 environment at low temperatures. In a prototype demonstration, a (Na, K)NbO3 multilayer actuator with Cu inner electrodes was then fabricated in low pO2 atmosphere. The prototype multilayer devices showed reasonable piezoelectric properties with normalized strain coefficient (d_33^*) of 220 pm/V. The value was lower than that of the bulk ceramic, due to mechanical clamping from the interdigitating structure. There was no residual carbon, interdiffusion, alloy formation, or oxidation in the vicinity of metal-ceramic interfaces. Such results demonstrate potential application in using Cu in the inner electrodes for lead-free piezoelectrics, providing a route to high strain actuators. The low pO2 sintered ceramics underwent a re-oxidation process to compensate the oxygen vacancies, to improve reliability and dielectric losses. Therefore, it is essential to understand the kinetics of the re-oxidation process to retain the ceramics. To investigate the re-oxidation of NKN, an in -situ impedance spectroscopy was used on a model system with one active layer. Effective conductivities were extrapolated from the impedance spectra for samples annealed between 500C and 700C. The increasing impedance (improved resistance) of NKN during the re-oxidation process demonstrated that the incorporated atmospheric oxygen diffused into the ceramics, backfilling the oxygen vacancies generated in the higher-temperature sintering process. The effective ionic diffusion coefficient D was obtained using the conductivity relaxation technique, with the assumption of a two-dimensional diffusion model. Diffusivity was found on the scale of 10-6 cm2 s-1 between 500C and 700C. The re-oxidation times for devices of differing sizes at higher temperatures were predicted, and it was found that larger-size devices will require exceptionally long annealing time to compensate the oxygen vacancies. In addition, the end member NaNbO3 itself is also of interest for capacitive applications as an antiferroelectric dielectric. NaNbO3 solid solutions were explored and investigated to achieve stabilized antiferroelectric (AFE) P (with space group Pbma) phase over the ferroelectric (FE) Q (with space group P21ma) phase. It turns out that doping and considering trends of the crystal chemical Goldschmidt tolerance factor of the material can stabilize the antiferroelectric P phase in NaNbO3. Two unique modification strategies by adding A2+B4+O3 type CaHfO3 and A3+B3+O3 type BiScO3 into the solid solution were demonstrated. After being modified, it was found that the AFE P phase was stabilized by lowering the tolerance factor. Such stabilization was verified by transmission electron microscopy (TEM), with only {010} type superlattice diffraction patterns and electric field induced double P-E hysteresis loops.