Direct Axial Flow Fan
Direct Axial Flow Fan

Direct Axial Flow Fan

Direct Axial Flow Fan Specification

  • Power Source
  • Electric
  • Temperature
  • Ambient to 60C
  • Automation Grade
  • Manual / Semi-automatic
  • Orientation
  • Horizontal / Vertical
  • Usage & Applications
  • Ventilation, Exhaust, Industrial Cooling, HVAC, Air Circulation
  • Efficiency
  • Up to 85%
  • Air Flow
  • High, up to 60,000 CFM
  • Product Type
  • Direct Axial Flow Fan
  • Material
  • Mild Steel / Galvanized Steel / Aluminum
  • Cooling System
  • Air Cooled
  • Noise Level
  • 75 dB(A)
  • Processing Time
  • Continuous Operation
  • Capacity
  • 500 to 60,000 CFM (Cubic Feet per Minute)
  • Voltage
  • 380V / 415V
  • Weight
  • Varies with model; approx. 50-300 kg
  • Dimension (L*W*H)
  • As per model specification (e.g. 600 x 600 x 400 mm and above)
  • Surface
  • Powder Coated / Painted
  • Blade Material
  • Aluminum Alloy / Galvanized Steel
  • Impeller Type
  • Aerofoil / Cast Aluminum
  • Frame Material
  • Mild Steel / Stainless Steel (Optional)
  • Protection Class
  • IP55 or above
  • Operating Frequency
  • 50/60 Hz
  • Installation Type
  • Duct Mounted / Wall Mounted / Free Standing
  • Number of Blades
  • 4, 6 or 8 (Depending on Model)
  • Motor Type
  • Totally Enclosed Fan Cooled (TEFC)
  • Speed
  • 960 / 1440 / 2880 RPM
  • Mounting
  • Flange / Foot Mounted
  • Rotation
  • Clockwise / Counter-clockwise
 
 

About Direct Axial Flow Fan

Direct Axial Flow Fan

 

Our organization is extensively recognized as one of the authentic and leading manufacturers, suppliers and exporters of quality-approved Direct Axial Flow Fan. These products are fabricated using high quality raw material, which is procured from our highly trusted and reliable vendor in the industry. Moreover, we employ latest machines and equipments for obtaining seamless finish product.

 

Features:

  • Seamless finish
  • Highly durability
  • Reliable performance

Product Details:

Impeller : 

  • Fan hub shall be fabricated of die formed stamped aluminium casted airfoil blades

Housing :
 
  • Fan housing are contracted of continuously welded, heavy gauge steel for strength and rigidity. Flanges on both the intent and outlet are integrally rolled and welded for attachment to duct work or accessories

Motor : 

  • A variety of single and three phase motors are available in open drip proof (ODP)
  • Explosion proof (EXP) and totally enclosed fan cooled (TEFC) enclosures
  • An adjustable mounting platform
  • Pivots to allow infinite belt tension adjustment

Accessories : 

  • Canvas connection
  • Companion flanges
  • Support legs
  • Belt guard
  • Screening
  • General Observation Door

Finish :

  • Powder coated/Enamel paint

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Versatile Installation Options

The Direct Axial Flow Fan accommodates various installation scenarios-whether duct-mounted, wall-mounted, or free-standing-to suit industrial, commercial, and HVAC environments. Its flange or foot mounting enables seamless integration into new or existing systems, ensuring effortless adaptation to specific ventilation or cooling requirements.


High Performance and Durability

With a powerful Totally Enclosed Fan Cooled (TEFC) motor and blade options made from aluminum alloy or galvanized steel, this fan promises reliable operation even in demanding conditions. Its robust construction (mild steel or stainless steel frames) and IP55 or higher protection class safeguard against dust and water ingress, ensuring extended service life.


Efficient Air Movement for Multiple Applications

Designed for continuous use, the axial flow fan moves substantial volumes of air-up to 60,000 CFM-making it ideal for industrial ventilation, exhaust, and climate control. Multiple speed settings (960, 1440, 2880 RPM) and automation grades (manual or semi-automatic) optimize performance to meet diverse operational demands.

FAQ's of Direct Axial Flow Fan:


Q: How should I select the appropriate model of Direct Axial Flow Fan for my facility?

A: Model selection depends on factors like required airflow (CFM), installation environment (duct, wall, or free-standing), mounting type, and available space. Consider the operating voltage, speed (RPM), protection rating (IP55+), and temperature range of your application. Our technical team can help match the correct size and configuration to your needs.

Q: What are the primary benefits of using a TEFC motor in this axial fan?

A: A Totally Enclosed Fan Cooled (TEFC) motor protects the internal components from dust, moisture, and contaminants, extending motor life and ensuring reliable operation in harsh industrial environments. It also helps maintain consistent performance during continuous use.

Q: When is regular maintenance necessary for this fan, and what does it involve?

A: Routine maintenance is typically recommended every 6-12 months, depending on environmental conditions and usage. Key steps include inspecting blades, checking the motor and electrical connections, cleaning the fan surface, and ensuring mounting hardware is secure. This maintains efficiency and safety.

Q: Where can the axial flow fan be used effectively?

A: This fan is ideal for use in industrial ventilation, exhaust systems, HVAC setups, factories, warehouses, commercial kitchens, and other areas requiring significant air movement or cooling. Its versatile mounting and material options make it suitable for a wide range of applications.

Q: What is the installation process for the Direct Axial Flow Fan?

A: Installation involves securely mounting the fan according to your chosen configuration-flange or foot mounting-using the appropriate fixings in a duct, on a wall, or as a free-standing unit. Electrical connections should match your voltage and frequency requirements and be carried out by a qualified electrician for safety and compliance.

Q: How does the fan achieve up to 85% efficiency in air delivery?

A: High efficiency is achieved through precision-engineered aerofoil or cast aluminum impellers, aerodynamic blade design, and optimal motor selection. This combination minimizes resistance and energy loss while maximizing airflow, ensuring substantial performance gains in demanding settings.

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