describe the construction and work for producing ultrasonic waves using the piezoelectric oscillator method
Question
Describe the construction and work for producing ultrasonic waves using the piezoelectric oscillator method
Solution
The construction and working of producing ultrasonic waves using the piezoelectric oscillator method can be described as follows:
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Construction: The piezoelectric oscillator consists of a piezoelectric crystal (like Quartz) sandwiched between two metal plates. These plates are connected to an electronic oscillator circuit. The crystal is cut in such a way that it has a natural frequency of oscillation in the ultrasonic range.
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Working Principle: The piezoelectric effect is the principle behind the working of a piezoelectric oscillator. When an electric field is applied across the crystal, it undergoes mechanical deformation or strain. This is known as the direct piezoelectric effect. Conversely, when mechanical stress is applied, it generates an electric field. This is known as the converse piezoelectric effect.
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Production of Ultrasonic Waves: When an alternating voltage is applied to the metal plates, the crystal starts oscillating at the frequency of the applied voltage. If this frequency is adjusted to the natural frequency of the crystal, resonance occurs. This causes the crystal to vibrate with large amplitude and produce ultrasonic waves.
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Amplification of Waves: The ultrasonic waves produced by the crystal are weak and need to be amplified. This is done by using an amplifier circuit. The amplified waves are then used for various applications like cleaning, welding, medical imaging, etc.
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Detection of Ultrasonic Waves: The detection of ultrasonic waves is also based on the piezoelectric effect. When the ultrasonic waves fall on the crystal, it produces an alternating voltage across the plates. This voltage can be measured and used to detect the presence of ultrasonic waves.
In summary, the piezoelectric oscillator method uses the piezoelectric effect to produce and detect ultrasonic waves. The key component is a piezoelectric crystal which converts electrical energy into mechanical energy and vice versa.
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