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100Khz Ultrasonic Hydrogen Production Electrolyte Membrane Double-Sided Catalyst Coating

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100Khz Ultrasonic Hydrogen Production Electrolyte Membrane Double-Sided Catalyst Coating

Brand Name : FUNSONIC

Model Number : FS650Y

Certification : CE

Place of Origin : CHINA

MOQ : 1 UNIT

Price : Negotation

Payment Terms : T/T, Western Union

Supply Ability : 1000 unit per month

Packaging Details : Packed by Wooden Case

Production Name : Production Ultrasonic Spraying System

Frequency : 20-200khz for selection

Max Power : 1-15w

Continuous Spraying Volume Max : 20-1200ml/h/pcs,Scalable

Effective Spraying Width : 2-260mm/pcs,Scalable

Spray Uniformity : ≥95%

Solution Viscosity : ≤30cps

Input Voltage : 220V±10%/50-60Hz

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100Khz Ultrasonic Hydrogen Production Electrolyte Membrane Double-sided Catalyst Coating

Description:

Customized 100Khz ultrasonic hydrogen production electrolyte membrane double-sided catalyst coating developed by FUNSONIC is fully automatic, capable of double-sided coating, and can apply different catalyst formulations to both the anode and cathode sides of the membrane. Through customer practice, it has been proven that the durability and repeatability of ultrasonic coating are superior to other coating methods, greatly extending the service life of PEM coating.

Parameters:

Product Type

Automatic Flipping Ultrasonic Spray Coating Machine

FS650Y

Spray Nozzle Operating Frequency 20-200KHz (Normally use 60100K)
Nozzle Power 1-15W
Continuous Spraying Volume Max Determine based on the type and quantity of nozzles configured (Max 5 Nozzles)
Effective Spraying Width Determine based on the type and quantity of nozzles configured
Spray Uniformity ≥95%
Solution Conversion Rate ≥95%
Dry Film Thickness 20nm-100μm
Solution Viscosity ≤30cps
Temperature Range -10-60℃
Atomized Particles (Median Value) 10-45μm (distilled water), determined by the frequency of the nozzle
Diversion Pressure Max ≤0.15MPA
Material of the contact solution part SUS304, Titanium, PTFE
Exercise Mode A spraying control system independently developed by FUNSONIC based on the Windows system, with PLC control, 15.6-inch full-color touch screen, XYZ three-axis imported servo motor, R-axis start rotation, and fully enclosed precision screw module+Horizontal automatic conveying mechanism+Automatic flipping machine
Control Mode PLC control, operation control system developed based on Windows system, supporting remote operation, upgrading, etc
Control Content The touch screen integrates ultrasonic nozzle, liquid supply, heating, adsorption, ultrasonic dispersion and other controls, and also has system monitoring, alarm and other functions
Liquid Supply Method Precision injection pump
Ultrasonic Dispersion System (Optional) 20ml or 50ml, 40K, biological grade sampler
Conveying Speed 1-100mm/s

Quantitative Indicators:

1. Spray rate
Definition: The amount of ink sprayed per unit time, usually expressed in milliliters per minute (mL/min) or grams per minute (g/min).
Measurement method: It can be obtained by measuring the volume of liquid sprayed by the nozzle within a specific time.
2. Uniformity of spraying
Definition: The thickness and distribution uniformity of the sprayed surface.
Measurement method: Use a thickness gauge or scanning electron microscope (SEM) to analyze the sprayed layer and calculate the thickness differences in different areas.
3. Coverage rate
Definition: The proportion of the area covered by the sprayed material to the total area of the substrate.
Measurement method: Measure the area ratio of the sprayed area to the unpainted area using image analysis software.
4. Catalytic activity
Definition: The efficiency of a catalyst in a specific reaction, usually expressed in terms of conversion rate or selectivity.
Measurement method: Calculate catalytic activity by experimentally measuring the changes in substance concentration before and after the reaction.
5. Material utilization rate
Definition: The ratio of the amount of catalyst effectively utilized to the actual amount of catalyst sprayed.
Measurement method: Calculate the loss rate by weighing the amount of catalyst before and after spraying.
6. Spray quality
Definition: The adhesion, wear resistance, and chemical stability of the spray coating.
Measurement method: Conduct standardized adhesion and wear resistance tests.
7. Economic analysis
Definition: The cost-effectiveness of the spraying process, including material costs, time costs, and equipment maintenance costs.
Measurement method: Evaluate the economy by calculating the total cost and spraying efficiency per unit area of spraying.
8. Environmental impact
Definition: The impact on the environment during the spraying process, including the amount of exhaust gas and wastewater emissions.
Measurement method: Monitor emissions during the spraying process and conduct a life cycle assessment (LCA).

100Khz Ultrasonic Hydrogen Production Electrolyte Membrane Double-sided Catalyst Coating

100Khz Ultrasonic Hydrogen Production Electrolyte Membrane Double-Sided Catalyst Coating100Khz Ultrasonic Hydrogen Production Electrolyte Membrane Double-Sided Catalyst Coating


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