The 750W explosion proof axial fan has compact size and can be placed flexibly. Industrial axial fans provide reliable performance in corrosive or high temperature environments.
Specification
- Model: ATO-FBT355-750W
- Rotational Speed: 2900 rpm
- Pole: 2 Pole
- Flow Rate: 6542 m/h
- Motor Power: 750W
- Full Pressure: 373 Pa
- Blade Angle: 30°
- Voltage: 220V/380V
- Noise: ≤ 82 dBA
- Weight: 25kg
Features
- The surface of the fiberglass reinforced plastic anti-corrosion casing is smooth and even, treated with high-temperature spray painting.
- Explosion proof tube axial fan is made of fiberglass reinforced plastic (FRP), and the rest of the parts are anticorrosive treated, which can be used to convey corrosive gases.
- 750W explosion-proof motor uses pure copper coils, providing strong sealing to ensure the air volume of the fan blades.
- Explosion proof tube axial fan has the advantages of large air volume, low noise, energy saving and environmental protection.
Dimension
- Flare Diameter A: 452
- Height H: 328
- Impeller Diameter: 348
- Right Angle Side Distance B: 420-423
Applications
Axial flow fans are widely used in various industries and applications, including ventilation systems for buildings, cooling systems for data centers, air conditioning systems for automobiles and aircraft, power generation plants, and industrial processes such as chemical and food processing.
Tips: What is an explosion-proof tube axial fan?
An explosion-proof tube axial fan is a type of fan specifically designed to operate safely in environments where there is a risk of explosion. These fans are commonly used in industrial settings where flammable gases, vapors, or dust particles are present, such as chemical plants, refineries, paint booths, or grain silos.
The primary purpose of an explosion-proof tube axial fan is to prevent the ignition of flammable substances or the propagation of flames in case of an internal spark or external explosion. These fans are constructed with special features and materials to meet stringent safety standards and minimize the risk of causing an explosion.