TB Slot Fan Jet Nozzle (1/8", 1/4" Quick Connect)
TB Slot Fan Jet Nozzles are commonly used in industrial applications to spray air, steam, liquid, or water in a flat fan pattern. These nozzles distribute fluid or gas flow homogeneously, covering wide areas. The quick connect feature allows for quick and easy assembly and disassembly of the nozzles, facilitating maintenance and replacement.
Below are the numerical data and detailed information related to TB Slot Fan Jet Nozzles (1/8" and 1/4" connections):
Feature | Values |
Nozzle Type |
Slot Fan Jet (Flat fan spray)
|
Connection Type |
Quick connect (1/8" and 1/4" threaded connections)
|
Outlet Pattern |
Flat (wide area fan-shaped spread)
|
Flow Rate Range |
2 L/min - 1000 L/min (varies depending on model and pressure)
|
Operating Pressure |
2 bar - 10 bar (depending on operating conditions)
|
Outlet Angle |
45° - 120° (usually between 60° - 90°)
|
Temperature Range |
-10°C to 150°C (varies depending on material type)
|
Droplet Size |
50 - 200 microns (varies depending on pressure)
|
Spray Type |
Fine, wide fan shape
|
Material Selection |
Stainless steel (SS304, SS316), brass, plastic (PVC, PP)
|
Nozzle Sizes |
1/8" and 1/4" (connection diameter)
|
Application Areas |
Cooling, humidification, washing, drying, evaporation, spray cleaning
|
Surface Coverage Area |
1 m² - 25 m² (varies depending on flow rate and outlet angle)
|
Mounting Type |
Quick connection system, easy installation and removable structure
|
Working Principle of TB Slot Fan Jet Nozzle
TB Slot Fan Jet Nozzles distribute fluid or gas in a flat fan shape at the outlet. These nozzles are generally used to spread fluid or gas homogeneously over wide areas. Quick connect fittings allow for quick assembly and disassembly of the nozzles, facilitating maintenance and replacement.
Operating Steps:
Fluid/Gas Input: Fluid (water, steam, or chemical liquid) or gas (air, steam) enters the nozzle under pressure.
Flow Direction: The pressurized fluid/gas is directed within the nozzle's internal structure and conveyed to the outlet points.
Spray Distribution: At the nozzle outlet, the fluid/gas spreads as a flat fan-shaped flow. The outlet angle ensures an even distribution of fluid on the surface.
Droplet Size: Droplet sizes are determined by the pressure used. Higher pressure results in finer droplets.
Features and Advantages
Even Distribution: Ensures even distribution of fluid or gas with a flat fan shape. Ideal for homogeneous fluid distribution over large surfaces.
Flexible Connection Options: The quick connect feature allows for quick assembly and disassembly of the nozzles. This makes maintenance and cleaning much easier.
High Efficiency: The spread of fluid or gas over a wide area provides high efficiency in cooling, humidification, washing, and spray drying processes.
Compact Design: Nozzles generally have a compact design, saving space.
Low Energy Consumption: Efficient fluid/gas distribution allows for covering larger areas with lower energy consumption.
Durable Materials: Durable materials such as stainless steel and plastic ensure long-term use in industrial conditions.
Application Areas
Cooling Systems: Provides effective cooling for industrial cooling towers, engine cooling, and hot air systems.
Humidification: Used in agriculture and greenhouse systems to maintain the moisture balance of plants.
Washing and Cleaning: Ideal for liquid cleaning processes in the food processing, automotive, and other industries. Provides effective cleaning by distributing fluid over surfaces.
Evaporation and Drying: Used in the chemical industry for evaporating or humidifying liquids.
Spray Cleaning: Provides high efficiency in spray cleaning of machines and equipment.
Steam and Air Distribution: Used for industrial steam and air distribution requirements.
Selecting TB Slot Fan Jet Nozzle
The primary factors to consider when selecting are:
Connection Size: The nozzle connection type (1/8" or 1/4") should be determined according to the need.
Outlet Angle: The outlet angle (usually 45° - 120°) can be adjusted according to the application requirements.
Flow Rate: The nozzle flow rate should be selected according to the application area. A higher flow rate is suitable for larger areas.
Operating Pressure: The pressure required by the application is important for nozzle selection. As the pressure increases, the droplet size decreases and a finer spray pattern is obtained.
Material: The material should be selected considering chemical resistance, corrosive environments, and temperature conditions (stainless steel, PVC, PTFE, etc.).
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