Pneumatic Louver

Pneumatic Louver: Flexible and Durable Solutions for Industrial and Marine Usage

Hammadde Engineering’s pneumatic louver solutions are ideal for precise control of air flow in industrial and ship ventilation systems. These products, offering efficiency and ease of use in both air conditioning ventilation and heating applications, effectively provide air volume adjustment and pressure control in blowing and suction ducts. With options in carbon steel, stainless steel, or aluminum materials, we offer solutions suitable for all kinds of usage needs.

Key Features:

  • Stepless Air Adjustment: The air flow can be adjusted from 0% to 100%, adapting to different needs and conditions.
  • Durable Structure: Options in galvanized sheet, carbon steel, or aluminum body are resistant to high temperatures (up to 400°C) and offer long-term usage.
  • Flexible Blade Structure: Overlapping blades in the closed position create a leak-proof structure, preventing air passage.
  • Optional Sealing Gasket: An optional sealing gasket further effectively controls the air flow.
  • Motor Options: Available with electric or pneumatic motor options, providing solutions suitable for different system needs.

Special Design for Marine Use:

The ship-type pneumatic louver provides quick and effective air flow interruption in emergencies inside the ship. This model, remotely controllable via a central system, cuts off the air flow quickly and effectively with a pneumatic piston. This feature enhances air quality and safety on the ship, allowing for rapid response in emergencies.

The Quality of Hammadde Engineering:

At Hammadde Engineering, we offer high-quality pneumatic louver solutions to meet your needs in both the industrial and maritime sectors. Our products, which can be made of carbon steel, stainless steel, or aluminum, stand out in the industry with their durability, efficiency, and user-friendly design. Contact us for your pneumatic louver needs and experience the Hammadde Engineering difference in your projects.