A Tee is a pipe fitting shaped like the letter "T", used to connect three sections of pipes, allowing fluid flow to branch or merge. It consists of a main run and a branch, typically made from materials like carbon steel, stainless steel, or ductile iron, with sizes ranging from 1/2" to 48" (DN15-DN1200).
Description:
A Tee is a pipe fitting shaped like the letter "T", used to connect three sections of pipes, allowing fluid flow to branch or merge. It consists of a main run and a branch, typically made from materials like carbon steel, stainless steel, or ductile iron, with sizes ranging from 1/2" to 48" (DN15-DN1200). Tees are manufactured via forging or casting, adhering to standards like ASME B16.9 or DIN 2615, and feature smooth internal surfaces to minimize turbulence. Their design ensures pressure resistance and leak-proof connections, suitable for high-temperature/pressure systems in various industries.
Specifications:
Material | Stainless Steel,Carbon Steel,Alloy Steel |
Technology | Forged casting |
Standard | ANSI, bs, DIN, GB, ISO, JIS, Jpi, ASME |
Package | Wooden box or Pallet or carton |
Standard | ANSI, bs, DIN, GB, ISO, JIS, Jpi, ASME |
Connectivity | Welding |
Applications:
Tees are widely used in plumbing, oil & gas, chemical, and water treatment industries. In residential plumbing, they split water lines for faucets or fixtures. In industrial settings, they direct process fluids in refineries, connect steam lines in power plants, or create sampling points in chemical pipelines. Their versatility allows for easy system modifications, making them essential for both new installations and maintenance.
Advantages:
Tees offer robust structural integrity, with seamless designs reducing leakage risks. They enable flexible pipe routing, simplifying system expansion or reconfiguration. Made from durable materials, they withstand harsh conditions, while standardized dimensions ensure compatibility with existing systems. Their cost-effective manufacturing and easy installation make them a preferred choice for efficient fluid distribution.