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1-3 single crystal composites for ultrasonic transducer arrays
T. A. Ritter
, K. K. Shung
, S. E. Park
, X. Geng
, T. R. Shrout
Materials Research Institute (MRI)
Research output
:
Contribution to journal
›
Conference article
›
peer-review
5
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Scopus citations
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Keyphrases
Single Crystal
100%
Ultrasonic Transducer Arrays
100%
1-3 Composite
75%
Array Design
50%
Acoustic Impedance
50%
Coupling Coefficient
50%
PZT-5H
50%
Dielectric Constant
25%
Performance Prediction
25%
Volume Fraction
25%
Matching Layer
25%
Performance Enhancement
25%
Relaxor-PT
25%
Optimization Scheme
25%
Composite Materials
25%
One-cycle
25%
High Electromechanical Coupling
25%
Thickness Mode
25%
Coupling Variable
25%
Actual Performance
25%
Fine Spatial Scale
25%
Transducer Technology
25%
PSpice
25%
Composite Plate
25%
Array Transducer
25%
Castable
25%
Redwood
25%
Pulse Length
25%
Mode Resonance
25%
CRISTAL
25%
Extended Bandwidth
25%
Ultrasound Transducer
25%
One-dimensional Modeling
25%
Eight-element Array
25%
Engineering
Ultrasonics
100%
Transducer
100%
Coupling Coefficient
100%
Acoustic Impedance
66%
Dielectrics
33%
Piezoelectric
33%
One Dimensional
33%
Matching Layer
33%
Spatial Scale
33%
Dimensional Modeling
33%
Resonance Mode
33%
Laminated Composite Plate
33%
Element Array
33%
Composite Material
33%
Pulse Length
33%
Material Science
Single Crystal
100%
Transducer
100%
Acoustics
33%
Electronic Circuit
16%
Permittivity
16%
Piezoelectricity
16%
Electromechanical Coupling
16%
Volume Fraction
16%
Composite Material
16%
Laminated Plate
16%