Ultrasonic Spray Coating System
High performance ultrasonic spray coating system which includes ultrasonic spray nozzles, ultrasonic generator, liquid delivery system, automatic motion system, heating system, exhaust system, etc. is an equipment for ultrasonic spray deposition of homogenous, durable, repeatable thin film coatings. Compared with vapor deposition and sputter depostion, ultrasonic coating can significantly reduce the intial investment on the facility cost. Compared with conventional spray coating using air nozzles, non-clogging ultrasonic nozzle high performance technology dramatically decreases the comsuption of raw materials as well as the maintenance cost.
Types Of Ultrasonic Spray Coating Systems
Benchtop Ultrasonic Coating System
Industrial Ultrasonic Coating System
Industrial Ultrasonic Coating System MAX
Ultrasonic Coating System with Conveyor
Ultrasonic Coating System for Production Line
Stent Coating System
Balloon Catheter Coating System
Benchtop Balloon Catheter Coating System
Ultrasonic Dispersion Syringe
Ultrasonic Spray Coating System Benefits
Up to 80% reduction in raw material consumption with reduced overspray and splashing.
Uniform atomized droplets deposit homogeneous coating layers.
Precise spray patterns are easily shaped for a variety of applications.
Highly controllable flow rate provides greater repeatability.
Non-clogging ultrasonic spray nozzle reduces maintenance cost and downtime.
Ultra-low flow rate capabilities, intermittent or continuous.
Ultrasonic vibrations continuously disperse the particles to avoid suspensions agglomerating.
Capable of coating with very small minimum liquid volume. Optimal for R&D scale.
High corrosive resistance.
How Ultrasonic Spray Coating Systems Work
It is a unique spray coating process using ultrasonic atomization technology. The raw material to be coated is firstly prepared into solution or suspension. The solution or suspension is uniformly atomized into fine droplets in micron scale through an ultrasonic atomizer called ultrasonic spray nozzle. Droplets deposit onto the surface of the substrate by carrier gas in a controllable flow rate, so as to form a coating layer. The ultrasonic spray deposition amount can be precisely controlled by controlling of the flow rate of the solution or suspension using liquid feeding system, which results in the coating thickness is highly controllable.
The typical coating thickness of ultrasonic spray coating machine technique is from tens of nanometers to tens of microns. The liquid feeding system is usually a precision metering pump such as syringe pump, micro gear pump, etc. The ultrasonic spray nozzle which is the core of ultrasonic coating system is fixed on an automatic motion system such as XYZ 3-axis robot arm or 6-axis robot arm to realize a scanning onto the 2-dimension or 3-dimension substrate, consequently a uniform thin film layer is coated on the substrate surface. Alternatively, one fixed nozzle array consisting of some ultrasonic nozzles spraying onto moving substrates is another typical type of ultrasonic spray coating system for volume production or the application of large area coating process.
Siansonic ultrasonic coating systems such as the benchtop coating system have already been used for various of applications in different industries such as implantable medical devices, fuel cells, solar cells, semiconductors, microfluidic chips, glass, etc. which are demonstrated in the video as below.
How Do Ultrasonic Spray Coating System Work?
An ultrasonic spray coating system, also known as a high performance ultrasonic coating machine, uses high-frequency vibrations to atomize liquid into tiny droplets that are then propelled onto a surface to create a uniform coating. The system typically consists of a liquid reservoir, an ultrasonic transducer, and a spray nozzle. The liquid is pumped into the reservoir, where the ultrasonic transducer vibrates at a frequency that creates pressure waves that break up the liquid into tiny droplets. The droplets are then propelled out of the nozzle by a gas, such as air or nitrogen, and onto the target surface. The ultrasonic coating system offers high precision and uniformity in coating thickness, making it suitable for a range of applications in industries such as electronics, medical devices, and automotive.
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