110Khz High Frequency Ultrasonic Vortexing Spraying Coating Nozzles
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110Khz High Frequency Ultrasonic Vortexing Spraying Coating Nozzles

110Khz High Frequency Ultrasonic Vortexing Spraying Coating Nozzles

Item No: FSW-1108-L
Frequency: 110khz
Power: 1-15w
Type: Conemist Spray Nozzle
Spray Lquid: 0.5-12ml/min
Spray width: 50-100mm
Spray uniformity: ≥95%
Solution viscosity: ≤20cps
Atomized particles (median value): 15-28μm(Distilled water)

 

 Description:

 

110Khz High Frequency Ultrasonic Vortexing Spraying Coating Nozzles is a kind of nozzle that makes use of ultrasonic vibration and vortex impact to generate atomization. It combines ultrasonic technological know-how and eddy modern-day science to atomize beverages into tiny droplets.

The working precept of 110Khz High Frequency Ultrasonic Vortexing Spraying Coating Nozzles is as follows: the nozzle includes an ultrasonic transmitter and an vortex gadget inside. Ultrasonic emitters generate sound waves via high-frequency vibrations, dispersing liquid into tiny droplets. At the identical time, the vortex system varieties a vortex drift of the liquid by way of rotating it. This vortex impact can in addition refine the droplets, making them extra uniform and fine.

 

 

Parameters:

 

FSW-1108-L

 

 Overview of the Production Process :

 

1. Material selection Ultrasonic vibrator:

Choose a appropriate piezoelectric materials (such as PZT) as the vibrator to generate high-frequency sound waves.

Nozzle material: Typically, corrosion-resistant substances such as stainless metal or plastic are used to make sure sturdiness and adaptability.

Shell material: Choose light-weight and long lasting substances such as aluminum alloy or plastic.

2. Design Structural design:

Design the usual shape of the nozzle, consisting of the graph of the vibrator, nozzle, and liquid inlet and outlet.

Fluid dynamics: Optimize nozzle sketch to make sure easy liquid waft and top atomization effect.

3. Production of vibrators Piezoelectric ceramic processing:

Cutting piezoelectric ceramics into the preferred shape, typically a disc or rectangle.

Electrode bonding: Attach electrodes on each facets of the piezoelectric ceramic to make certain high-quality conduction of current.

4. Nozzle production Nozzle molding:

Manufacturing nozzles thru injection molding or mechanical processing in accordanceto diagram drawings.

Aperture control: Ensure that the nozzle aperture meets the diagram necessities to acquire the preferred atomization effect.

5. Assembly Component assembly:

Assemble the vibrator, nozzle, and different elements to make certain a tightly closed connection.

Sealing treatment: Use sealing rings or sealants to make certain that solutions do no longer leak and enhance durability.

6. Testing Performance testing:

Conduct overall performance trying out on the assembled nozzle to test the atomization effect, spray uniformity, and liquid go with the flow rate.

Durability testing: Conduct long-term operation assessments to make sure the balance of the device below excessive loads.

7. Adjustment and optimization Data analysis:

Adjust graph or substances primarily based on check outcomes to optimize nozzle performance.

Batch manufacturing preparation: After confirming performance, put together for batch manufacturingto make sure consistency and first-class control.

8. Quality control Factory inspection:

Each nozzle need to bear strict great trying out earlier than leaving the manufacturing facility to make sure compliance with standards.

 

 

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Application:

 

Ultrasonic Spray Coating Application 8
Ultrasonic Spray Coating Application 13
Ultrasonic Spray Coating Application 3
Ultrasonic Spray Coating Application 5
Ultrasonic Spray Coating Application 17
Ultrasonic Spray Coating Application 10

 

Certification

 

Certification

 

 

Our Laboratory

 

product-1200-800
Lab

 

Our Production Line

 

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Packing&Delivery

 

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Our Team

 

MTXXMH20240126222924157001

 

Company Exhibition

 

2024 1001
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product-800-600

 

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