Description
F wind jet nozzles deliver high-impact, fan-shaped, and circular air streams designed for a wide variety of blowing applications in process processing. F wind jet nozzle is made of ABS plastic, aluminum alloy, or stainless steel. The nozzle is designed with a plurality of cylindrical jet holes, from which the air is blown out to form a fan-shaped and circular airflow. The internal structure design of the nozzle conforms to the principle of aerodynamics, which effectively reduces the air resistance during operation, ensuring that the blowing nozzle can obtain high airflow impulse while reducing working noise and air consumption.
F wind jet nozzles made of ABS material has good comprehensive performance, high impact strength, chemical stability, and good electrical properties; ABS F wind jet nozzle also has the advantages of high impact resistance, high heat resistance, flame retardant, enhanced, transparent, etc.; Good fluidity and flexibility. Secondly, the ABS F wind jet nozzle is non-toxic and tasteless, the density is 1.05~1.18g/cm3, the shrinkage rate is 0.4%~0.9%, the elastic modulus is 2Gpa, the Poisson’s ratio is 0.394, the hygroscopicity is less than 1%, and the melting temperature is 217~ 237°C thermal decomposition temperature>250°C. It also has excellent mechanical properties, its impact strength is excellent, and it can be used at extremely low temperatures.
Material characteristics
ABS F wind jet nozzles can greatly reduce noise, high blowing force but low air consumption, low noise multi-channel air nozzles divide the airflow into multiple individual air jets. F wind jet nozzle has 16 air passages to ensure optimum circulation conditions, resulting in a particularly uniform, straight, and powerful air jet.
F wind jet nozzles are suitable for 1/4 inch BSPT male threaded connections, and are designed with two positioning holes (ABS nozzles) for easy side-by-side installation of nozzles: The combined air knife it forms creates an effective air curtain.
The air pressure that the ABS F wind jet nozzle can withstand is 7 bar, and the temperature can reach 77 °C under this air pressure
Aluminum alloy F wind jet nozzle can withstand about 30 bar of air pressure and can withstand high temperatures of 250 ℃.
Stainless steel F wind jet nozzle can withstand air pressure of about 30 bar and can withstand the high temperature of 400 degrees. And the flow rate can be adjusted, which is convenient and simple to use. There are 22 nozzle holes that can produce a wide and impactful fan-shaped air curtain, which can be used for both water and air blowing.
ABS blowing nozzles are generally used in parts cooling, parts drying, parts washing, material movement, paper threading, cleaning, air drying, blow drying, dust removal, dust reduction, air blowing, etc.
Advantages
- Professional industry spray nozzle with over 15 years of experience.
- Complete QC system and strong after-sales concept.
- 3 R&D Engineers with over 10 years of experience.
- ISO9001:2015/SGS/CE certification.
- Third-party audit.
- Fast delivery.
- Accept OEM/ODM
Specs
| Brand | Jeltecn |
| Nozzle Type | F wind jet |
| Thread Size | 1/4” |
| Spray Angle | / |
| Spray Pattern | Fan-Shaped |
| Thread Type | BSPT, NPT, Male |
| Orifice Dia. (MM) | 4.8mm |
| Water Pressure | 7bar-32bar |
| Capacity(L/H) | 193L |
| Material | Stainless Steel/ABS/AL Alloy |
| Packaging | Carton |
| Certificates | ISO9001/SGS/CE |
| Payment Terms | T/T, Western Union, Paypal |
Application
■ Cooling,
■ Parts Drying,
■ Parts Washing,
■ Material Movement,
■ Paper Threading,
■ Cleaning,
■ Air Drying,
■ Blow Drying,
■ Dust Removal,
■ Dust Reduction,
■ Air Blowing
Performance Date

Jeltecn Factory

Certification

Cooperative Customers

Video
How to Select F Wind Jet Air Nozzle for Cooling
F wind jet air nozzle converts compressed air or blower air into a directed flat stream for drying, cooling and debris removal. This page should be evaluated as an engineered component: final performance depends on the liquid, pressure at the nozzle, installed geometry and the selected configuration.
Technical selection criteria
- Process fluid: identify composition, temperature, specific gravity, viscosity, suspended solids and any corrosion or erosion risk.
- Required duty: state flow per nozzle, minimum and maximum inlet pressure, operating cycle and acceptable turndown.
- Spray result: define pattern, angle, coverage width or diameter, stand-off distance, droplet requirement and allowable overspray.
- Installation: confirm thread standard, connection size, orientation, header spacing, available clearance and access for inspection.
- Materials and maintenance: match body, insert, seals and accessories to the fluid and environment; include filtration and cleaning requirements.
Where this nozzle type fits
Typical evaluation areas include parts drying, surface cooling, blow-off, air curtains and conveyor cleaning. When comparing F wind jet air nozzle with flat air nozzle, compressed air blow-off nozzle, air knife nozzle, select the pattern and construction that solve the actual process duty. A wider angle does not automatically mean better atomization, and a higher pressure does not automatically deliver the best coverage.
Engineering limits and installation checks
Published flow and spray data are normally based on defined test liquids and conditions. Viscosity, specific gravity, pressure loss, solids, temperature, nozzle wear, pulsation and nearby airflow can change field performance. Confirm the installed pressure at the nozzle—not only pump discharge pressure—and verify overlap or target coverage before finalizing a production header.
Information to include with an RFQ
Provide liquid properties, target flow, pressure range, spray angle or coverage, distance to target, material, connection, quantity, duty cycle and installation drawings. Jeltecn can use these inputs to compare the requested configuration with related spray nozzle application guidance and the complete industrial spray nozzle range.
Frequently asked questions
What determines the flow of F wind jet air nozzle?
Flow depends primarily on the selected orifice and pressure differential, then must be corrected for liquid density, viscosity and the actual piping losses.
How should this nozzle be validated before production use?
Confirm the exact model and material, review the performance table, test coverage under representative conditions and document inspection or replacement criteria.
F wind jet air nozzle Selection Summary
A F wind jet air nozzle should be selected from the required process result backward—not from connection size alone. Confirm the liquid, target flow, pressure available at the nozzle, spray geometry, material and service environment before choosing a model.
When specifying F wind jet air nozzle, document the stand-off distance, coverage or impact requirement, duty cycle, filtration and maintenance access. The final F wind jet air nozzle configuration should then be checked against representative operating conditions rather than a single catalogue point.
Related engineering terms include flat air nozzle, compressed air blow-off nozzle, air knife nozzle. These terms may describe adjacent spray patterns or constructions, but they are not automatically interchangeable. For general definitions of full-cone, flat-spray, hollow-cone, fine-spray and air-atomizing patterns, see the Spraying Systems spray-pattern reference.
For a F wind jet air nozzle quotation, include the required quantity, connection standard, material, operating range and a drawing or photo of the installation.


