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Working principle and structural characteristics of ultrasonic vibrating screen

First, the working principle of ultrasonic vibrating screen:

Ultrasonic vibrating screen is a new product combining ultrasonic generator and vibrating screen. The principle is to convert 220V, 50Hz or 110V, 60Hz power to 18--40kHz high frequency power, and then use the The sonic vibrator head converts high-frequency electrical energy into mechanical energy, so that the sieve surface generates supersonic vibrations that are not visible to the naked eye, so that ultra-fine powders receive huge ultrasonic acceleration, so that the materials on the sieve surface always remain suspended, thereby suppressing stickiness. Attaching, friction, leveling down, wedging and other network blocking factors, so as to achieve the purpose of screening and cleaning, making ultra-fine powder screening easy. Particularly suitable for users of high-quality, fine powder.
Structure and characteristics of ultrasonic vibrating screen
Improve the low-density powder's leveling down (light contact between the powder and the mesh port) and slip effect in the gravity settlement, improve the retention or wedging of high-density metal in the mesh port, and solve the strong adsorption, easy agglomeration, high static electricity, and high precision , High density, light specific gravity and other screening problems, with superior performance!



 
Realize a big breakthrough in the performance of the ultrasonic vibrating screen, thereby improving the screening efficiency and screening quality. It is expressed by the sieving pass rate. In general, the pass rate is increased by 50% -400% than that without ultrasonic vibrating screen.
1: While achieving high precision and high mesh screening, control a narrow range of particle size;
2: Single-layer and multi-layer can be used, a set of intelligent ultrasonic generator can use three transducers at the same time;
3: Thorough sieve self-cleaning function: more than 500 mesh sieving, no mesh clogging, and no screening efficiency attenuation;
4: Solve the screening problems such as strong adsorption, easy agglomeration, high static electricity, high precision, high density, and light specific gravity;
5: Ensure that the characteristics of the processed materials remain unchanged;
6: The screening accuracy can be improved by 1-100%, and the output can be increased by 1-8 times.

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