Examples of 'piezoelectric materials' in a sentence
Meaning of "piezoelectric materials"
Piezoelectric materials are substances that have the ability to generate an electric charge in response to applied mechanical stress. These materials play a crucial role in various technologies, such as sensors, actuators, and energy harvesting devices, due to their ability to convert mechanical energy into electrical energy or vice versa
How to use "piezoelectric materials" in a sentence
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piezoelectric materials
Not all piezoelectric materials can be poled.
Ultrasound transducers are created from piezoelectric materials.
Piezoelectric materials also have pyroelectric properties.
This mobile miniature robot is actuated by piezoelectric materials.
Piezoelectric materials are another class of very useful dielectrics.
It relates specifically to the chemical machining of piezoelectric materials.
Other piezoelectric materials can be used.
They are advantageously made of piezoelectric materials.
Other piezoelectric materials such as berlinite are also used.
The majority of historic actuators are made of ceramic piezoelectric materials.
Lead in single crystal piezoelectric materials for ultrasonic transducers.
Piezoelectric materials for actuators.
Material properties for many popular piezoelectric materials are available.
Many piezoelectric materials may be employed for this purpose.
This selection of temperature avoids the piezoelectric materials from being damaged.
See also
Piezoelectric materials have two unique properties that are interrelated.
These sensors are commonly manufactured out of piezoelectric materials such as quartz.
Suitable piezoelectric materials include piezoelectric polymers and crystals.
Current research tends mainly to use piezoelectric materials based methods.
Piezoelectric materials may also be added to provide piezoelectric members.
This is especially important for medical devices employing piezoelectric materials.
Other example piezoelectric materials are quartz and polyvinylidene difluoride.
Actuators also exist which use electroactive material such as piezoelectric materials.
Ceramic piezoelectric materials such as lead zirconium niobate are preferred.
Gallium orthophosphate is one of these new piezoelectric materials with high coupling factor.
Piezoelectric materials produce a physical displacement in response to an applied electric signal.
This widens the choice of piezoelectric materials for fabricating the structure.
Piezoelectric materials may for example be provided for piezoelectric applications.
The car has been designed with piezoelectric materials in its composite materials laminate.
Piezoelectric materials are crystals which display a mechanical deformation upon application of an electric field.
Many different sizes and shapes of piezoelectric materials can be used in piezoelectric sensors.
The piezoelectric materials can not be machined to be made very thin.
Four major characteristics define the acoustic wave propagation properties of piezoelectric materials.
Different piezoelectric materials may be used as the single piezoelectric material.
This characteristic makes it possible to have a field of materials not limited to piezoelectric materials.
Suitable piezoelectric materials include quartz and directionally orientated zinc oxide.
Suitable alternative vibromechanical stimulators are available such as bimorph ceramics and piezoelectric materials.
It is also known that piezoelectric materials emit vibrational waves in particular directions.
This makes them perfectly suited for uniform power generation from the deformation of piezoelectric materials.
The plan was to use piezoelectric materials to convert unused movement energy into electricity.
LARC is also developing customised variations of piezoelectric materials.
Piezoelectric materials may generally be utilized to convert mechanical energy into electrical energy.
Scientists then developed NEMS devices from piezoelectric materials with groundbreaking results.
Early piezoelectric materials used in transducers such as barium titanate had poor temperature stability.
Ferroelectrets display strong piezoelectricity, comparable to ceramic piezoelectric materials.
This dissertation aims to apply piezoelectric materials as actuator and sensor to perform aeroelastic analysis.
To solve this problem, we developped a new approach, coupling magnetic and piezoelectric materials.
This is accomplished by using piezoelectric materials to convert mechanical strain into usable electrical energy.
Figure 2 is a schematic view of an apparatus used for the poling of cylindrical piezoelectric materials.
Piezoelectric materials can be used to convert electrical energy into mechanical energy and vice versa.
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