Amanote Research
Register
Sign In
Dynamic Electromechanical Characterization of the Ferroelectric Ceramic PZT 95/5
doi 10.1063/1.55677
Full Text
Open PDF
Abstract
Available in
full text
Date
January 1, 1998
Authors
R. E. Setchell
L. C. Chhabildas
M. D. Furnish
S. T. Montgomery
G. T. Holman
Publisher
AIP
Related search
Characterization of Porous 95/5 PZT Using Quantitative Image Analysis
Microscopy and Microanalysis
Instrumentation
Phase Transformation of "Chem-Prep" PZT 95/5-2Nb HF1035 Ceramic Under Quasi-Static Loading Conditions.
The Effects of Non-Hydrostatic Compression and Applied Electric Field on the Electromechanical Behavior of Poled PZT 95/5-2Nb Ceramic During the F{sub R1} {Yields} A{sub 0} Polymorphic Phase Transformation
Multi-Dimensional Validation Impact Tests on PZT 95/5 and ALOX
AIP Conference Proceedings
Astronomy
Physics
Ferroelectric Ceramic Materials of the Aurivillius Family
Journal of Advanced Dielectrics
Electronic Engineering
Condensed Matter Physics
Optical
Electrical
Magnetic Materials
Composites
Electronic
Ceramics
Energy Harvesting Using a PZT Ceramic Multilayer Stack
Smart Materials and Structures
Mechanics of Materials
Electronic Engineering
Signal Processing
Condensed Matter Physics
Materials Science
Civil
Molecular Physics,
Structural Engineering
Electrical
Atomic
Optics
AC Low Frequency Conductivity in PZT PFS Ferroelectric Ceramics
Czasopismo Techniczne
Switching and Energy-Storage Characteristics in PLZT 2/95/5 Antiferroelectric Ceramic System
Journal of Advanced Dielectrics
Electronic Engineering
Condensed Matter Physics
Optical
Electrical
Magnetic Materials
Composites
Electronic
Ceramics
Fabrication of Mn Doped PZT for Ceramic-Polymer Composites
Archives of Metallurgy and Materials
Alloys
Metals