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Medical Testing Tube Ultrasonic Coated System 60Khz Penetrator
Nozzle Nebulizer
Description:
The vacuum blood collection and ultrasonic spraying technology uses
a probe type ultrasonic nozzle to coat the inner wall of the blood
collection or injection tube. It mainly has the following
applications:
1. Surface coating of blood collection vessels: Ultrasonic probing
spray can be used to form a thin film or coating on the surface of
vacuum blood collection vessels. This coating can be used to
improve the biocompatibility, anticoagulation, or prevent
thrombosis of blood collection vessels.
2. Antibacterial coating: Through ultrasonic probing spraying,
antibacterial agents or materials with antibacterial properties can
be sprayed on the surface of vacuum blood collection vessels. This
helps to reduce the risk of bacterial contamination during the
blood collection process of blood collection vessels.
3. Vascular markers: Ultrasonic probing spray can be used to spray
visible markers, such as fluorescent dyes or other visualization
agents, on vacuum blood collection vessels. This helps to make it
easier to observe and locate the blood collection vessel during the
blood collection process.
Parameters:
Product Type | Syringe Tube Ultrasonic Spray Coating FS800 |
Spray Nozzle Operating Frequency | 60KHz (Optional 40Khz) |
Nozzle Power | 1-15W |
Continuous Spraying Volume Max | 0.01-2ml/min |
Effective Spraying Width | 1-m |
Spray Uniformity | ≥95% |
Solution Conversion Rate | ≥95% |
Solution Viscosity | ≤15cps |
Temperature Range | -10-60℃ |
Diversion Pressure Max | ≤0.01MPA |
Input Voltage | 220V±10%/50-60Hz |
Control Mode | XYZ adopts imported servo motors for all three axes |
Control Content | PLC control, touch screen+buttons |
Liquid Supply Method | Precision injection pump |
The selection of nozzle shape and size for ultrasonic spraying machines requires consideration of multiple factors, including coating properties, spraying requirements, and equipment specifications. Here are some general guiding principles:
1. Coating viscosity: Coatings with lower viscosity typically
require smaller nozzle apertures and smaller outlet diameters to
ensure uniform and smooth spraying. Higher viscosity coatings may
require larger nozzle apertures and outlet diameters for better
spraying of the coating.
2. Spraying requirements: The goals and requirements of spraying
can also affect the selection of nozzles. For example, if you need
to achieve small spray patterns or fine spray control, you may need
to choose a nozzle with a smaller nozzle outlet. For applications
that require large-scale rapid spraying, it may be necessary to
choose a nozzle with a larger nozzle outlet.
3. Particle size of coating: Ultrasonic spraying machines are
usually used to disperse coatings into small particles for
spraying, so the size of coating particles also affects the
selection of nozzles. Smaller paint particles typically require a
smaller nozzle aperture.
4. Equipment specifications: The specific specifications and design
of the ultrasonic spraying machine may also limit the selection of
nozzles. It is necessary to select a matching nozzle based on the
technical specifications, operating frequency, amplitude and other
parameters of the equipment.
When selecting a nozzle, it is usually necessary to conduct
experiments and tests to determine the optimal nozzle shape and
size. It can be evaluated and adjusted based on factors such as the
fluidity of the coating, spraying effect, and coating thickness. In
addition, you can consult the professional technical team of
FUNSONIC. FUNSONIC has professional spray application engineers who
can provide more specific advice and guidance.
Medical Testing Tube Ultrasonic Coated System 60Khz Penetrator
Nozzle Nebulizer