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Pre-Insulated Pipes

Rigid Piping System

Main advantages of this system:

1. Versatility: Suitable for a range of applications, including local and district cooling networks, industrial use, and, with restrictions, combined heat pump systems (cooling and heating).

2. Material Quality: The carrier pipes are made of high-density polyethylene (PE100), a material conforming to standard EN 12162. This material is widely used in drinking water, wastewater, and gas supply systems, ensuring durability and reliability.

3. Joining Options: The pipes can be joined using standard screwed connectors, mechanical pipe couplings, normal commercial electro-fusion fittings, or butt fusion welding technology, providing flexibility in installation methods.

4. Excellent Insulation: The insulation consists of fine-pore CFC-free rigid polyurethane foam, creating a compact composite system with outstanding insulation properties. This contributes to energy efficiency.

5. Protective Outer Casing: The outer casing meets EN 253 standards for plastic casing pipes, ensuring reliable protection against mechanical influences and preventing water penetration. This allows for installation at outdoor temperatures down to 0°C.

  • Operating temperature:  -20°C to +40°C

  • Operating pressure: PN 16

  • Dimensions: ø 125–315 mm

  • Carrier pipe: PE100

  • Insulation: Polyurethane (PUR)

  • A leak detection system (if required)

Application: Main and distribution pipes in local and district cooling networks, insulated transportation of cold water

Flexible Piping System

The main advantages of the flexible piping system are:

1. Flexibility: highly adaptable, allowing it to be easily adjusted to various pipe routing conditions. It can pass over or under existing supply pipes, and obstacles can be bypassed, providing flexibility in installation.

2. Shortest Pipe Routes: The flexible nature enables the selection of the shortest pipe routes without adhering to traditional pipe construction methods.

3. Ease of Installation: delivered in continuous coils or on a drum. This simplifies the installation process, leading to time and cost savings.

4. Joining Options: The pipes can be joined using standard screwed connectors, mechanical pipe couplings, electro-fusion fittings, or butt fusion welding technology, providing versatility in installation methods.

5. Material Quality: The use of high-density polyethylene (PE100) for the carrier pipe adheres to standard DIN EN 12201. This material is commonly used in drinking water, wastewater, and gas supply systems, ensuring a high-quality and durable product.

6. Insulation Properties: It features CFC-free polyurethane foam with excellent insulating properties, enhancing the energy efficiency of the system.

7. Cost Efficiency: The system’s adaptability, ease of installation, and reduced need for underground connections contribute to overall cost efficiency. It requires less coordination on-site, leading to quicker and simpler installations.

8. Time Efficiency: The short installation time further contributes to time efficiency, making it a technically efficient solution for district cooling networks.

  • Operating temperature:  -20°C to +40°C
  • Operating pressure: PN 16
  • Dimensions: DN 20–125
  • Carrier pipes: PE 100
  • Insulation: Polyurethane (PUR)

Application: Drinking water, district cooling, and wastewater pipes