264L Ultrasonic Blind Curtain Cleaner 3000W 28/40KHz With Drain Holder and Rinsing Tank
The advantages of the ultrasonic cleaning machine are: the ultrasonic cleaning effect is good, and the operation is simple. The sound that people hear is the acoustic signal with a frequency of 20-20000 Hz. The sound wave higher than 20000 Hz is called ultrasonic wave. The transmission of sound wave propagates longitudinally according to the sinusoidal curve, generating a large number of small bubbles. One reason is that a tensile stress is locally generated in the liquid to form a negative pressure. The decrease in pressure causes the gas originally dissolved in the liquid to be supersaturated, and escapes from the liquid to become small bubbles; another reason is that the strong tensile stress tears the liquid. "Become a hollow, called cavitation.
Same series with different size for your choice:
Model | 1st tank volume | 1st tank size | Transducers | Ultrasonic Power | Heating power | Frequency |
JP-2036T | 160L | 2000*200*400mm | 36pcs | 1800W | 4500W | 28/40KHz |
JP-2060T | 264L | 2400*220*500mm | 60pcs | 3000W | 6000W | 28/40KHz |
JP-2072T | 330L | 3000*220*500mm | 72pcs | 3600W | 12000W | 28/40KHz |
Specification
Model | JP-2060T |
1st Tank Volume | 264L Ultrasonic Cleaning tank with filtration cycle system |
2nd Tank Volume | 264L Ultrasonic Rinsng tank |
1st tank size | 2400*220*500mm |
2nd tank size | 2400*220*500mm |
Transducers | 60pcs |
Ultrasonic Power | 3000W |
Heating Power of Ultrasonic tank | 6000W |
Frenquency | 28KHz/40KHz |
Generator | 2pcs |
Timer | 0~99 minutes adjustable |
Heater | Room temperature~99℃ adjustable |
Material | SUS 304 default, can be SUS 316 |
Power Supply | AC 220V 3 phase ; AC 380V 3 phase |
N.W. | 300G |
G.W. | 350KG Wrapped by film in wooden case |
Lead time | 18 working days |
Warranty | 1 year warranty period, technique support all time |
Certificates | CE, RoHS, FCC, SGS |
Advantage | Filter the dirty water; keep the water clear in tank; lower the frequency of changing water |
Feature:
1. It's designed for cleaning blind curtains.
2.There are 2 tanks, one is for Ultrasonic clean with heating function, you
can put chemicals in it to clean, another is rinsing tank for removing the
chemicals from curtain.
3. There is a high holder to support the blind curtain, and a leachate
frame to hold the wet curtain
Ultrasonic waves propagate in the liquid, causing the liquid to vibrate together with the cleaning tank at the ultrasonic frequency. When the liquid and the cleaning tank vibrate, they have their own natural frequencies. This vibration frequency is the acoustic frequency, so people hear the humming sound. With the continuous development of the cleaning industry, more and more industries and enterprises have applied ultrasonic cleaning machines.
The most suitable cleaning temperature for the water cleaning solution is 50-60 ° C. Especially in the case of cold weather, if the temperature of the cleaning solution is low, the cavitation effect is poor, and the cleaning effect is also poor. Therefore, some washing machines are wound around the heating cylinder to heat the heating wire for temperature control. When the temperature rises, cavitation is easy to occur, so the cleaning effect is good. When the temperature continues to rise, the gas pressure in the bubble increases, causing the impact sound pressure to drop, reflecting the multiplication of the two factors.
Images:
Principle
The principle of the ultrasonic cleaning machine is mainly to convert the sound energy of the power ultrasonic frequency source into mechanical vibration through the transducer, and to irradiate the ultrasonic wave into the cleaning liquid in the groove through the cleaning tank wall. Due to the radiation of the ultrasonic waves, the microbubbles in the liquid in the tank can be kept vibrated by the action of the sound waves. The adsorption of the dirt and the surface of the cleaning member is destroyed, causing fatigue damage of the dirt layer to be rejected, and the vibration of the gas type bubble scrubs the solid surface.