piezo-, piez- +

(Greek: to press; pressure; to squeeze)


dielectric loss
An indication of the loss in dielectric property of a material.

This becomes very important at high drive levels for transducers, as it indicates the amount of heat generation one can expect in a piezoelectric device.

phlebopiezometry
The measurement of venous pressure.
piesesthesia, piezesthesia
1. Pressure sensibility or the sensation of pressure.
2. Awareness of or feeling pressure.
piezocardiogram
A graphic tracing of variation in pressure caused by the heart's pulsation, often recorded through the esophagus.
piezochemistry
1. The study of the effect that high pressure has on chemical reactions.
2. The study of chemical reactions that occur at very high pressures; such as, under the earth's crust.
piezocrystallization
In geology, the crystallization of a magma under the influence of direct pressure.
piezo effect, piezoelectric effect
1. Electricity produced by mechanical pressure on certain crystals (notably quartz or Rochelle salt); alternatively, electrostatic stress produces a change in the linear dimensions of the crystal.
2. An electromechanical effect by which mechanical forces acting upon a ferroelectric material can produce an electrical response, and electrical forces can produce a mechanical response.
piezoelectric
1. A reference to a crystalline substance the electrical property of which is changed by pressure.
2. Relating to or involving piezoelectricity; such as, piezoelectric plates.

A description of the ability of a solid to generate a voltage when subjected to a mechanical stress, or the ability to generate a mechanical force when subjected to a voltage.

When compressed, some crystalline materials will produce a voltage proportional to the applied pressure; when an electric field is applied across the material, there is a corresponding change of shape.

piezoelectrical, piezoelectrically
A reference to the generation of electricity or of electric polarity in dielectric crystals which are subjected to mechanical stress, or the generation of stress in such crystals subjected to an applied voltage.
piezoelectric ceramic
Any ceramic that exhibits piezoelectric properties.

Japanese manufacturers have shared their piezoelectric discoveries, quickly overcoming technical and manufacturing challenges and creating new markets. Japanese efforts in materials research have created piezoceramic materials competitive with the U.S. materials, but free of expensive patent restrictions.

Major Japanese piezoelectric developments include new designs of piezoceramic filters, used in radios and televisions, piezo buzzers and audio transducers that can be connected directly into electronic circuits, and the piezoelectric igniter which generates sparks for small engine ignition systems (and gas-grill lighters) by compressing a ceramic disc.

Ultrasonic transducers that could transmit sound waves through the air had existed for quite some time, but first saw major commercial use in early television remote controls.

These transducers now are mounted on several car models as an echolocation device, helping the driver determine the distance from the rear of the car to any objects that may be in its path.

piezoelectric crystal or crystals
A crystal that exhibits the piezoelectric effect; such a crystal is used in electro-audio devices; such as, crystal microphones, speakers, and phonograph pickups.

Piezoelectricity is the ability of certain crystals to generate a voltage in response to applied mechanical stress. The effect is reversible; piezoelectric crystals, subject to an externally applied voltage, can change shape by a small amount. The change is in the range of nanometers, but nevertheless there are useful applications; such as, the production and detection of sound, generation of high voltages, electronic frequency generation, and ultrafine focusing of optical assemblies.

A property known as pyroelectricity, the ability of certain mineral crystals to generate electrical charges when heated, was known of as early as the 18th century, and was named by David Brewster in 1824. In 1880, the brothers Pierre Curie and Jacques Curie predicted and demonstrated piezoelectricity using tinfoil, glue, wire, magnets, and a jeweler's saw.

They showed that crystals of tourmaline, quartz, topaz, cane sugar, and Rochelle salt (sodium potassium tartrate tetrahydrate) generate electrical polarization from mechanical stress. Quartz and Rochelle salt exhibited the most piezoelectricity. Twenty natural crystal classes exhibit direct piezoelectricity.

piezoelectric detector
An instrument used to measure seismic activity; made up of a stack of piezoelectric crystals with intervening metal foils that collect charges produced on the crystal faces when the crystals are strained by pressure from an inertial mass mounted above the stack.
piezoelectric element
A crystal; such as, quartz, that produces an electric voltage when it is twisted or squeezed, and, conversely, that twists, bends, expands, or contracts when a voltage is applied to it. Commonly used as a transducer to convert mechanical or acoustical signals into electric signals or to regulate frequency in a crystal oscillator.
piezoelectric gauge
An instrument used to measure blast pressures resulting from explosions and pressures created in firearms, using a piezoelectric substance that produces a voltage when under pressure.
piezoelectric hysteresis
The hysteretic behavior of a piezoelectric crystal in which the electric polarization depends on the stress history as well as on the mechanical stress applied to the crystal.

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