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Piezoelectric Transducers

Piezoelectric Transducers

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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.

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Keywords

  • 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
  • History of engineering & technology
  • 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
  • Technology, engineering, agriculture
  • Technology: general issues
  • 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

Links

DOI: 10.3390/books978-3-03936-857-0

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