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Home> News>Recent news>What are the advantages of Ultrasonic Cleaning Line?

What are the advantages of Ultrasonic Cleaning Line?

From:Zhaoqing second machine tool works Co., Ltd.     Release time:2019-08-20

Overview:On the one hand, it damages the adsorption of dirt and the appearance of the cleaning member, on the other hand, it can cause the fatigue damage of the dirt layer to be rejected, and the oscillation of the gas-type bubble wipes the solid appearance.

What are the advantages of Ultrasonic Cleaning Line?

On the one hand, it damages the adsorption of dirt and the appearance of the cleaning member, on the other hand, it can cause the fatigue damage of the dirt layer to be rejected, and the oscillation of the gas-type bubble wipes the solid appearance. Once the dirt layer is sewable, the bubble immediately becomes "" Drilling into the "oscillation" causes the dirt layer to fall. Because of the cavitation, the two liquids are emulsified at the interface and are emulsified. When the solid particles are wrapped by the oil and adhere to the appearance of the cleaning member, the oil is emulsified and the solid particles fall by themselves. When the ultrasonic wave is transmitted in the cleaning liquid, a positive and negative alternating sound pressure occurs, which constitutes a jet and impacts the cleaning member.

Ultrasonic Cleaning Line

Together, acoustic and micro-acoustic flows occur due to nonlinear effects, and ultrasonic cavitation produces high-speed microjets at the solid and liquid interfaces. All of these effects can damage dirt, remove or weaken the dirt layer, add mixing, Diffusion, accelerate the dissolution of soluble dirt, and strengthen the cleaning effect of chemical cleaning agents. It can be seen that all the liquids that can be immersed in the sound field and have a cleaning effect are suitable for the cleaning of parts with very complicated external shapes. In particular, the use of this technology can reduce the amount of chemical solvents and then greatly reduce environmental pollution.

The second ultrasonic wave is transmitted in the liquid, so that the liquid and the cleaning tank oscillate together at the ultrasonic frequency, and the liquid and the cleaning tank have their own natural frequencies when oscillating, and the oscillation frequency is the sound frequency, so people hear the click sound.

In addition, during the cleaning process, the bubbles visible to the naked eye are not vacuum core group bubbles, but air bubbles, which inhibit the cavitation and reduce the cleaning power. As long as the air bubbles in the liquid are completely towed away, the cavitation vacuum core group bubbles can reach the optimum effect.


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