
press clamping fitting , Iran
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A 90 degree male threaded compression tee is an angled branch fitting used for water distribution piping systems. The body is manufactured from forged CW617N brass with tensile strength between 350 and 500 megapascals. Nominal working pressure ranges from 10 to 16 bar, with test pressure up to 24 bar. Compression connections are typically designed for 16 to 32 millimeter pipes, while the male threaded branch ranges from 1 2 to 1 inch. Operating temperature varies from 0 to 95 degrees Celsius. The mounting plate allows secure installation using anchor screws.
The component structure includes a 90 degree angled body, compression nuts, cutting rings, and a precision machined male thread with tolerance below ±0.05 millimeter. Body wall thickness ranges from 3 to 6 millimeters to withstand internal pressure stress. Sealing is achieved through EPDM O rings and mechanical compression of brass rings. Pressure drop in the main path remains below 0.2 bar at nominal flow rate. Nickel plating thickness from 8 to 20 microns improves corrosion resistance. Quality control includes hydrostatic testing, leakage testing, and accurate inspection of threads and angle geometry.You can order and buy press clamping fitting from Iran by contacting us through whatsaap and email.
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How to Install a 90 Degree Female Threaded Compression Tee with Mounting Plate in iran
To install a 90 degree female threaded compression tee with mounting plate, first shut off the water supply and release line pressure. Match the nominal pipe diameter such as DN16 or DN20 with the fitting size. Cut the multilayer pipe squarely using a proper pipe cutter and remove internal and external burrs. Slide the nut and brass compression ring onto the pipe and fully insert the pipe into the fitting body. Tighten the nut using a wrench to approximately 30 to 40 Nm to ensure proper sealing. Seal the female threaded section with at least six turns of PTFE tape before connecting to the male threaded outlet. Secure the mounting plate to the wall using appropriate anchors to prevent mechanical stress on the joint. Finally, perform a pressure test at 1.5 times the working pressure and check for leaks.









