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Pumps

Firefighting pumps are the main part of the firefighting industry. There are three types of pumps: electrical motors, diesel engines, and steam turbine systems. They are all used in industry, institutions, and houses. We supply the best pumps for your safety.
Key Features: Types of Pumps: Common types include centrifugal pumps, positive displacement pumps, and submersible pumps. Centrifugal pumps are the most widely used due to their efficiency and reliability. Power Sources: Firefighting pumps can be powered by electric motors, diesel engines, or steam turbines, providing flexibility in different operational environments. Pressure and Flow: They are designed to maintain specific pressure levels and flow rates, which are critical for effective fire suppression. Control Systems: Modern firefighting pumps often include automated control systems to start and stop the pump based on system demand.
Applications: Commercial Buildings: Used in high-rise buildings, factories, and warehouses to supply water to sprinkler systems. Industrial Facilities: Fire protection in oil refineries, chemical plants, and other high-risk environments. Marine and Offshore: Essential for ships and offshore platforms to combat fires in isolated locations. Rural and Remote Areas: Portable firefighting pumps are used where access to municipal water supplies is limited.

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Cables & Wire

Exactcables is dedicated to manufacturing custom cables that meet customer requirements effectively and profitably. To achieve this, the company prioritizes maintaining and continually improving its ISO 9001 Quality Management System. It ensures the availability of resources to produce high-quality cables, fosters a safe and technologically advanced work environment and operates with respect for the environment. Employee training and communication are emphasized to keep the workforce informed and engaged. Every employee is responsible for upholding these commitments to ensure the company’s quality objectives are met.

Gear/Suits:

Firefighting suits are made of flame-resistant fabrics like Nome x, Kevlar, or PBI. Jackets are multi-layered to provide thermal protection and water resistance. ants protect legs from heat, flames, and sharp objects.


Key Components:

  1. Firefighting Suit (Turnout Gear):

    • Outer Shell: Made of flame-resistant materials like Nomex or Kevlar, providing protection from heat, flames, and abrasions.
    • Moisture Barrier: Prevents water and chemicals from penetrating the suit while allowing breathability.
    • Thermal Liner: Offers insulation to shield against extreme heat.

Firefighters in aluminized suits walk amidst smoke and rescue vehicles at a fire scene.
Firefighter in reflective uniform ready for action by a fire truck.

Firefighting Gloves:

Material: Heat-resistant leather or synthetic materials like Kevlar. Features: It has thermal insulation to protect hands from extreme heat. Also it moisture barriers to keep hands dry. It has an ergonomic design for dexterity and grip and cut resistance for handling sharp objects.

Close-up of a firefighter using a transceiver with gloved hands for communication.
A firefighter in uniform rests inside a vehicle with gear including gloves and flashlight.
Brave firefighter in full gear, running with hose for emergency response.

Fire Hoses :

Modern fire hoses consist of outer layers of woven fabric with an inner rubber layer. The usual working pressure for a fire hose ranges from 8 to 20 bar, with a bursting pressure exceeding 110 bar. The manufacturing process involves preparing yarn, weaving jackets, extruding the liner, forming the hose, and pressure testing. The materials used in fire hoses allow them to be stored wet without rotting and to resist the damaging effects of sunlight and chemicals.

 Modern fire hoses commonly use synthetic fibers like polyester or nylon for the fabric and synthetic rubbers for linings and coatings. The manufacturing process involves preparing yarn, weaving jackets, extruding the liner, and testing pressure to meet safety standards.

Modern fire hoses are typically made from synthetic materials like polyester or nylon for the outer jacket and synthetic rubber for the inner lining. These materials are chosen for their durability, resistance to rot, chemicals, and high-pressure conditions. The woven fabric jacket provides strength and protection, while the rubber lining ensures a leak-proof seal.

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