300W SUS Ultrasonic Immersible Transducer 40Khz For Injector Carbon Deposit
300W Ultrasonic Immersibles For Injector carbon deposit Cleaning of Car with Generator
Advantages:
- More convenient for operation
- Stainless steel tank has resistance to wear and long work life.
- Can be moved to any tank
- Controlled by generator
- Lower cost than ultrasonic machine, same ultrasonic as ultrasonic power
- Lower shipping cost than ultrasonic machine
- All the box can be put in water to working directly, customer needs to weld tank by himself.
Specification:
| Model | JP-1006I |
| Transducer | 6pcs |
| Ultrasonic power | 300W |
| Ultrasonic frequency | 28/40Khz |
| Ultrasonic box size (L*W*H) | 305*205*100mm |
| Box weight | 8KG |
| Wiring out methods of box | Rigid or hose |
| Fixed point on box | Available |
| Flange to hang up on the tank wall | Available |
| Make according to your drawing | Available |
| Generator | 1 set |
| Generator weight | 7KG |
| Generator size |
370*280*150 |
| Packing way | Packed by plywood case |
| Double frequency | Available |
| Sweeping frequency | Available |
Other size for your choice:
| Model | Box size(mm) | Transducer | Ultrasonic Power(W) | Frequency(KHz) | Wire Method |
| JP-1006I | 305*205*100 | 6pcs | 300 | 28/40 | Rigid tube/hose |
| JP-1012I | 355*305*100 | 12pcs | 600 | 28/40 | Rigid tube/hose |
| JP-1018I | 340*280*100 | 18pcs | 900 | 28/40 | Rigid tube/hose |
| JP-1024I | 430*280*100 | 24pcs | 1200 | 28/40 | Rigid tube/hose |
| JP-1030I | 460*370*100 | 30pcs | 1500 | 28/40 | Rigid tube/hose |
| JP-1036I | 550*450*100 | 36pcs | 1800 | 28/40 | Rigid tube/hose |
| JP-1048I | 600*450*100 | 48pcs | 2400 | 28/40 | Rigid tube/hose |
| JTS-1030I | 500*300*100 | 30pcs | 1500 | 28/40 | Rigid tube/hose |
| JTS-1030I | 600*250*100 | 30pcs | 1500 | 28/40 | Rigid tube/hose |
| JTS-1036I | 600*400*100 | 36pcs | 1800 | 28/40 | Rigid tube/hose |
| JTS-1036I | 700*400*100 | 36pcs | 1800 | 28/40 | Rigid tube/hose |
| JTS-1036I | 800*350*100 | 36pcs | 1800 | 28/40 | Rigid tube/hose |
| JTS-1036I | 900*300*100 | 36pcs | 1800 | 28/40 | Rigid tube/hose |
| JTS-1036I | 1000*300*100 | 36pcs | 1800 | 28/40 | Rigid tube/hose |
| JTS-1048I | 700*500*100 | 48pcs | 2400 | 28/40 | Rigid tube/hose |
| JTS-1048I | 800*500*100 | 48pcs | 2400 | 28/40 | Rigid tube/hose |
| JTS-1048I | 900*400*100 | 48pcs | 2400 | 28/40 | Rigid tube/hose |
| JTS-1048I | 1000*400*100 | 48pcs | 2400 | 28/40 | Rigid tube/hose |
| JTS-1048I | 1100*350*100 | 48pcs | 2400 | 28/40 | Rigid tube/hose |
| JTS-1048I | 1200*300*100 | 48pcs | 2400 | 28/40 | Rigid tube/hose |
Actual usage scenarios
Application: Ultrasonic extraction
Ultrasonic extraction uses the strong cavitation effect, mechanical vibration, disturbance effect, high acceleration, emulsification, diffusion, crushing and stirring effects produced by the ultrasonic radiation pressure to increase the frequency and speed of the molecular motion of the substance, and increase the solvent penetration. Throughput, so as to accelerate the entry of the target component into the solvent, and promote the extraction
principle
Ultrasound is an elastic mechanical vibration wave, which is essentially different from electromagnetic waves. Because electromagnetic waves propagate in vacuum, and ultrasonic waves must propagate in the medium. When passing through the medium, the whole process of expansion and compression is formed.
In the liquid, the expansion process creates negative pressure. If the ultrasonic energy is strong enough, the expansion process will generate bubbles in the liquid or tear the liquid into small cavities. These cavities are closed instantaneously, and an instantaneous pressure of up to 3000 MPa is generated when they are closed, which is called cavitation, and the whole process is completed within 400 μs.
Cavitation refines substances and makes emulsions, accelerates the entry of target components into the solvent, and improves the extraction rate. In addition to cavitation, many secondary effects of ultrasound are also conducive to the transfer and extraction of target components.
The above-mentioned effects of ultrasound are very effective in extracting various target components from different types of samples.
The application of ultrasonic waves, the high temperature and high pressure generated on the contact surface of the organic solvent and the solid substrate, together with the oxidation energy of radicals generated by ultrasonic decomposition, provides high extraction energy.
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