LNG Gas Cylinder Machinery Production Line

Ultrasonic cleaning machine for pipe fittings

Item No.: Ultrasonic cleaning machine for pipe fit
In the cylinder cleaning system of LNG tank production line the core machine isUltrasonic cleaning machine , and its main function is Used for cleaning small pipe fittings.
Description
Description
Basic Info
Model NO. EN source
Name Of Machine Ultrasonic cleaning machine
The size of the inner tank of Length 1000mm
The size of the inner tank of Width 500mm
The size of the inner tank of Height 300mm
Dimensions 1200 mm×650 mm×750 mm
After-sales Service 3-Year Warranty
Ultrasonic frequency 28KHz
Ultrasonic power 2700W
Heating power 6000W
·Note: all the machines of our company are customized. Please consult the salesman for specific parameters
 
Product Description
01Ultrasonic cleaning machine for pipe fittings
In the cylinder cleaning system of LNG tank production line the core machine isUltrasonic cleaning machine , and its main function is Used for cleaning small pipe fittings.
02Ultrasonic cleaning machine for pipe fittings
The cleaning inner tank is made of SUS304 stainless steel plate with a thickness of 2.0mm. The ultrasonic radiation surface is made of SUS316L stainless steel plate with a thickness of 2.5mm. The shell is made of SUS201 stainless steel wire drawing board with a thickness of 1.2mm. A drain valve is installed at the bottom of the cleaning machine tank. Four industrial casters are installed at the bottom for easy operation.
The ultrasonic generator adopts the current separately excited oscillating circuit, which increases the output power by more than 15% compared with the self-excited oscillating circuit.
The working voltage of the ultrasonic generator device is 220 V AC±10%, and the ultrasonic generator has protection measures such as overvoltage, overcurrent, and output short circuit.
The ultrasonic generator has the function of automatic frequency tracking, so that the load changes and the ultrasonic waves are consistent. The frequency is slightly automatically adjusted under different working conditions, so that the transducer always works in the best state, and the energy conversion efficiency reaches the maximum. The best results can be achieved under working conditions.

 
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