Ultrasonic Pharmaceutical Coating Pesticide Atomizing Nozzle 25KHz Spraying
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Ultrasonic Pharmaceutical Coating Pesticide Atomizing Nozzle 25KHz Spraying

Ultrasonic Pharmaceutical Coating Pesticide Atomizing Nozzle 25KHz Spraying

Item No: FSW-2503-L
Frequency: 25khz
Power: 1-15w
Continuous spraying amount(max): 0.5-10ml/min
Effective spraying width: 2-20mm
Spray uniformity: ≥95%
Solution viscosity: ≤30cps
Particle size: <10μm

 

 Description:

 

 

Ultrasonic Pharmaceutical Coating drug Atomizing Nozzle 25KHz Spraying is a extraordinary nozzle shape utilized in the discipline of ultrasonic atomization. In phrases of structural design, the central phase of the nozzle is geared up with a concave diaphragm or vibration chamber, surrounded with the aid of one or extra rings of protruding annular nozzles. By controlling the parameters between the coreand the annular nozzle, the atomized droplets can be focused in the middle to shape a cluster.

FUNSONIC ultrasonic nozzle physique is made of titanium alloy material, which has remarkable acoustic properties, excessive tensile strength, and wonderful corrosion resistance. The defensive shell is made of 304 or 316 stainless steel (titanium can additionally be chosen).

 

 

 

Parameters:

 

FSW2503-L

                                  Ultrasonic Gathering Nozzles 1    Ultrasonic Gathering Nozzles 2     

 

2

 

Improve Spray Efficiency :

 

1. Central concave cavity design:
The size and depth of the cavity need to be matched with the properties and flow rate of the liquid to ensure that the liquid can be fully dispersed into small droplets
You can try different concave cavity shapes, such as conical, hemispherical, etc., to optimize the aggregation effect of droplets
2.
Circular nozzle design:

The number, diameter and role of nozzles will have an effect on the awareness and insurance of spray

Generally, more than one small diameter nozzles can enhance the uniformity and attention of spray

The nozzle position needs to match the shape of the central cavity to achieve the best gathering effect
3. Optimization of ultrasonic vibration parameters:
Ultrasonic frequency and power are key factors affecting the dispersion degree of liquid droplets
Suitable parameter combinations need to be found based on specific liquid properties and flow rates
Excessive power may lead to excessive dispersion, affecting the gathering effect
4. Fluid dynamics analysis:
Numerical simulation and other methods can be used to analyze the flow state of liquid inside the nozzle
Optimize the nozzle structure to reduce turbulence and turbulence, and improve the aggregation effect of droplets in the center
5. Experimental verification and parameter tuning:

Multiple experimental assessments and parameter adjustments want to be carried out primarily based on genuine software conditions
Observe the coverage range, particle size distribution and other indicators of spray, and constantly optimize the design

 
 
Application:
Ultrasonic Spray Coating Application 5
Ultrasonic Spray Coating Application 4
Ultrasonic Spray Coating Application 10
Ultrasonic Spray Coating Application 11
Certification

 

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