Ultrasonic built-in transducer $n Main features $n Built in design: can be directly installed inside the screening machine, making ultrasonic vibration more direct and efficient $n Output power: 5-120W $n Corrosion resistance: using corrosion-resistant materials such as stainless steel and titanium alloy $n Strong temperature adaptability: can adapt to 0-50 degrees
Ultrasonic built-in transducer
basic components
Piezoelectric element: a core component that utilizes the piezoelectric effect to generate high-frequency mechanical vibrations
Matching layer: optimizing sound energy transmission efficiency
Backing material: absorbs reverse sound waves
Shell: Waterproof and anti-corrosion sealing structure
Ultrasonic built-in transducer
advantage
Directly acting on the medium, with minimal energy loss
High system integration
easy maintenance
Can achieve local reinforcement processing
working principle
Electric energy → mechanical vibration: The ultrasonic generator provides high-frequency alternating current to excite the piezoelectric ceramic to produce vibration.
Sound energy transmission: Vibration is coupled to the working medium through a matching layer, forming an ultrasonic field.
Ultrasonic built-in transducers are widely used in industrial, medical, food and other fields due to their high efficiency and environmental friendliness. Proper selection and maintenance can significantly improve system lifespan and efficiency. If a customized plan is needed, it is necessary to optimize the design based on specific media, working conditions, and target effects.