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Piezoelectric Transducers : Materials, Devices and Applications



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Autore: Sanchez-Rojas Jose Luis Visualizza persona
Titolo: Piezoelectric Transducers : Materials, Devices and Applications Visualizza cluster
Pubblicazione: Basel, Switzerland, : MDPI - Multidisciplinary Digital Publishing Institute, 2020
Descrizione fisica: 1 online resource (524 p.)
Soggetto topico: History of engineering and technology
Soggetto non controllato: 1-3 composite
acoustic telemetry
active vibration control
adaptive lens
AlN thin film
aluminum nitride
analytical model
anisotropic vibration tactile model
aqueous environments
asymmetric hysteresis
bistability
Bouc-Wen model
capacitive pressure sensors
cardiac output
cascade-connected transducer
center-frequency
ciliary bodies touch beam
class-C power amplifier
coating
compensation control
COMSOL
concrete early-age strength
control algorithm
critical stress method
cut-in wind speed
cut-out wind speed
cylindrical composite
cymbal structure
damage depth
damage detection
damping
debonding
diode expander
Duhem model
electromechanical characteristics
electromechanical coupling
electromechanical impedance
energy conservation method
energy harvesting
evidence theory
experimental-measurement
feedforward hysteresis compensation
finite element
finite element analysis
finite element method (FEM)
flexible micro-devices
flexible support
fluid-structure interaction
fluid-structure interaction (FSI)
force amplification effect
frequency tuning
frequency up-conversion
frequency up-conversion mechanism
hearing compensation
Hebb learning rules
high frequency
human factor experiment
human-limb motion
hybrid energy harvester
hysteresis compensation
hysteresis model
hysteresis modeling
impact
impedance-based technique
implantable middle ear hearing device
in-situ pressure sensing
leg
lever mechanism
low frequency
low frequency vibration
magnetostatic force
mark point recognition
maturity method
measurement while drilling
MEMS
MFA control
micro electromechanical systems (MEMS)
microactuator
miniature
moving mesh
multi-directional vibration
multimodal structures
multiphysics simulation
n/a
nano-positioner
nanopositioning stage
non-destructive testing
nondestructive testing
nonlinear resonator
numerical analysis
P-type IL
petroleum acoustical-logging
phased array
physiological applications
piecewise fitting
piezo-electromagnetic coupling
piezoceramic/epoxy composite
piezoelectric
piezoelectric actuator
piezoelectric actuators
piezoelectric actuators (PEAs)
piezoelectric bimorph
piezoelectric ceramic materials
piezoelectric ceramics actuators
piezoelectric current sensing device
piezoelectric cylindrical-shell transducer
piezoelectric devices
piezoelectric diaphragm pump
piezoelectric effect
piezoelectric energy harvester
piezoelectric hysteresis
piezoelectric material
piezoelectric resonance pump
piezoelectric smart structure
piezoelectric tactile feedback devices
piezoelectric transducer
piezoelectric transducers
piezoelectric vibration energy harvester
piezoelectricity
PIN-PMN-PT
pipelines
point-of-care ultrasound systems
polynomial-modified PI (PMPI) model
positioning
Prandtl-Ishlinskii (PI) model
PZT (piezoelectric) sensors
PZT thick film
quality factor
reliability
resonance
resonant accelerometer
resonator
robot
seawater
sensitivity
sensor characterization
single-neuron adaptive control
SM control
small size
SmartRock
square piezoelectric vibrator
stepping motor
stick-slip
stick-slip frication
stimulating site
structural health monitoring
supervised learning
thermal expansion
trajectory control
trajectory planning
transducer
transverse impact
traveling wave
traveling waves
two-wire power cord
ultrasonic waves
underwater networks
up-conversion
vibration energy harvester
vibration-based energy harvesting
visual servo control
waterproof
wireless sensor networks
z-axis
Persona (resp. second.): Sanchez-RojasJose Luis
Sommario/riassunto: Advances in miniaturization of sensors, actuators, and smart systems are receiving substantial industrial attention, and a wide variety of transducers are commercially available or with high potential to impact emerging markets. Substituting existing products based on bulk materials, in fields such as automotive, environment, food, robotics, medicine, biotechnology, communications, and other technologies, with reduced size, lower cost, and higher performance, is now possible, with potential for manufacturing using advanced silicon integrated circuits technology or alternative additive techniques from the mili- to the nano-scale. In this Special Issue, which is focused on piezoelectric transducers, a wide range of topics are covered, including the design, fabrication, characterization, packaging, and system integration or final applications of mili/micro/nano-electro-mechanical systems based transducers.
Altri titoli varianti: Piezoelectric Transducers
Titolo autorizzato: Piezoelectric Transducers  Visualizza cluster
Formato: Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione: Inglese
Record Nr.: 9910674028803321
Lo trovi qui: Univ. Federico II
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