Description
Reducer Socket 63x40mm 4B PPR
Reducer Socket 63x40mm 4B PPR Suppliers Distributor Dealer Manufacturer Karachi Islamabad Pakistan. Contact Number 0322-3540656
What is Reducer Socket 63x40mm 4B PPR ?
The Reducer 63x40mm 4B PPR serves as a crucial component in PPR (Polypropylene Random Copolymer) piping systems, as it connects pipes of different diameters.
Below is the detailed information and description:
Product Description:
- Name: Reducer Socket
Product Description:
- Name: Socket 63x40mm 4B PPR
- Material: PPR (Polypropylene Random Copolymer)
- Size:
- Large end diameter: 63mm
- Reduced end diameter: 40mm
- Connection Type: Fusion or socket welding
- Pressure Rating: Typically PN20 (varies by system)
Key Features:
- Size Reduction: This fitting reduces the pipe diameter from 63mm to 40mm,
enabling smooth transitions between different pipe sizes in the system without compromising flow. - Durability: PPR material is highly durable and can last over 50 years under normal operating conditions,
making it ideal for long-term applications. - Corrosion Resistance: PPR is resistant to most chemicals, preventing internal corrosion and scaling, ensuring the pipe remains clear over time.
- Temperature Resistance: PPR fittings are designed to handle high-temperature applications, suitable for both hot and cold water supply systems. It can typically withstand temperatures up to 95°C.
- Safe for Drinking Water: PPR material is non-toxic, making it suitable for potable water systems as it does not leach harmful chemicals into the water.
- Environmentally Friendly: PPR is recyclable and does not emit harmful gases or chemicals during manufacturing, installation, or disposal.
- Efficient Thermal Insulation: PPR has low thermal conductivity, which reduces energy loss in hot water systems.
- Reliable Connection: The “4B” designation suggests a heat fusion or socket welding connection, which provides a secure, leak-proof joint. This method fuses the pipes and fittings at the molecular level, eliminating weak points and potential leak paths.
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