The EF Female thread 3-way tee is a highly integrated composite fitting designed to create a 90-degree branch on a PE pipeline and immediately transition that branch into a standard internal metal thread interface. The tee features two electrofusion ports for connection to the PE pipeline, while the central port embeds a high-quality, corrosion-resistant metal insert, typically brass or stainless steel, which forms the female thread connection. This design significantly simplifies the process of connecting the PE network to external sensors, pressure gauges, or metal fittings that possess a male thread. The high strength and corrosion resistance of the metal insert ensure the long-term stability and sealing performance of the threaded connection. By integrating the threading function directly into the electrofusion tee, it reduces the need for additional transition fittings and minimises potential leak points, ultimately shortening on-site installation time. This female-threaded tee is particularly practical for utility service line meter interfaces, small equipment connections, and applications requiring the installation of monitoring components on PE pipelines.
Technical Characteristics
Specifications
| EF Female thread 3-way tee | T50*32 |
| T50*40 | |
| T63*25 | |
| T63*32 | |
| T63*40 | |
| T75*25 | |
| T75*32 | |
| T75*40 | |
| T90*25 | |
| T90*32 | |
| T90*40 | |
| T110*25 | |
| T110*32 | |
| T110*40 |
HDPE siphon drainage fittings are widely used in modern building rainwater, wastewater, and industrial drainage systems due to their corrosion resistance, lightweight nature, high strength, and ease o...
READ MOREHDPE siphon drainage fittings are widely used in modern building drainage systems. Their corrosion resistance, lightweight nature, high strength, and long service life make them ideal for rainwater, w...
READ MOREHDPE (High-Density Polyethylene) threaded fittings are widely used in water supply, drainage, gas, and chemical industries due to their excellent corrosion resistance, wear resistance, and toughness. ...
READ MOREKEEP IN TOUCH