- 频率:
- 25KHz
- 功率:
- 1800瓦
- 规格:
- 730*540*600
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The ultrasonic cleaning machine produced by Jiangsu ultrasonic cleaning machine manufacturer is a modern cleaning equipment designed and produced for removing oil, polish, stamping oil, dust, cutting oil and other pollutants. Advantages: short cleaning time, fast speed, improved enterprise production efficiency, consistent cleanliness of the surface of the workpiece, and no damage to the surface of the workpiece. Save the waste of space, labor, water resources, chemical cleaning agents and other resources, save costs for enterprises and reduce unnecessary waste. To protect the environment, ultrasonic cleaning machine cleaning is environmentally friendly and does not pollute the ecological environment. Can realize automated and mechanized production mode.
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The principle of ultrasonic cleaning machine is mainly to convert the sound energy of the power ultrasonic frequency source into mechanical vibration through
---d:-dd transducer
The walls of the tank radiate ultrasonic waves into the cleaning fluid in the tank. Due to the radiation of ultrasonic waves, the microbubbles in the liquid in the tank can maintain vibration under the action of sound waves. When the sound pressure or sound intensity reaches a certain level, the bubbles will expand rapidly and then suddenly close. During this process, a --d:-dd shock wave
is generated at the moment when the bubble is closed, causing pressure and local temperature adjustment around the bubble. The huge pressure generated by this ultrasonic cavitation can destroy insoluble matter. The direct and repeated impact of steam-type cavitation on the dirt causes them to decompose into the solution.
On the one hand, it destroys the adsorption of dirt and the surface of the cleaning parts. On the other hand, it can cause fatigue damage of the dirt layer and the vibration of the gas bubbles will scrub the solid surface. Once there is a gap in the dirt layer, the bubbles can be drilled immediately -
- Drilling
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- Vibration causes the dirt layer to fall off due to cavitation. The two liquids quickly disperse and emulsify at the interface. When solid particles are wrapped in oil dirt and adhere to the surface of the cleaning part. The oil is emulsified and the solid particles fall off on their own. When ultrasound propagates in the cleaning fluid, it will generate positive and negative alternating sound pressures to form a jet impacting the cleaning parts. At the same time, acoustic flow and micro-acoustic flow will be generated due to nonlinear effects, and ultrasonic cavitation will occur in solids and liquids. The interface will produce high-speed micro-jet. All these effects can destroy the removal of dirt or weaken the boundary dirt layer, increase stirring and diffusion, accelerate the dissolution of soluble dirt, and strengthen the cleaning effect of chemical cleaning agents. It can be seen that any place where the liquid can be immersed and the sound field exists has a cleaning effect. It is suitable for cleaning parts with very complex surface shapes. In particular, the use of this technology can reduce the amount of chemical solvents and thus greatly reduce environmental pollution.
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