HDPE Pipes PE 80 Pressure 10 Bar Diameter 630 mm Thickness 46.3 mm Black | NEPROPLAST
Description
NEPROPLAST HDPE pipes, PE80 grade, handle 10 bar pressure with a 630 mm diameter and 46.3 mm wall thickness. Built for potable and agricultural water lines in Oman, they resist heat, UV, bacteria, and insects, and join easily via electric welding.
Product Description
NEPROPLAST HDPE pipes are engineered for reliable water conveyance in demanding Omani conditions. Made from high-density polyethylene (PE80), these pipes offer a balanced combination of lightweight handling and robust structural integrity, making them a preferred choice for infrastructure projects across Muscat, Salalah, and Sohar.
These pipes are specifically designed to withstand the harsh Omani climate, including intense heat and prolonged UV exposure. Their inherent resistance to bacteria and insects ensures water quality remains uncompromised, while eliminating the need for external painting or protective coatings. The smooth inner surface minimizes friction losses, enhancing flow efficiency for both potable and agricultural applications.
Installation is streamlined through electric welding, which creates secure, leak-proof joints that maintain system integrity over the long term. The pipes can also be custom-formed to suit specific project layouts, offering flexibility for complex piping networks.
Key Specifications
- Outside diameter: 630 mm
- Nominal pressure: 10 Bar
- Wall thickness: 46.3 mm
- Standard length: 12 meters (custom lengths on request)
- Weight: 84.60 kg/meter
- Color: Black
- Material: High-density polyethylene (HDPE) PE80
Features & Benefits
- High resistance to heat, UV rays, bacteria, and insects
- Lightweight yet exceptionally strong
- No painting or external coating required
- Easy to form and adapt to project needs
- Secure electric welding connections for durable joints
Ideal for water supply networks, irrigation systems, and industrial piping, these HDPE pipes meet the rigorous standards of Omani construction and infrastructure development.