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Victaulic Mechanical-T® Style 920N Hot-Dipped Galvanized Ductile Iron Cross With Grade E Gasket, 4 X 4 X 1-1/2 X 1-1/2 IN IPS, Grooved End, Import
Mechanical-T® Cross With Grade E Gasket, Series/Model: Style 920N, Nominal Size: 4 X 4 X 1-1/2 X 1-1/2 IN IPS, Connection Type: Grooved End, Material: Ductile Iron, Material Standard: ASTM A536 Grade 65-45-12, Finish/Color: Hot-Dipped Galvanized, Maximum Pressure: 500 PSI, Industry Standards: UL, CUL Listed, FM, LPCB, VDS, CTP Approved, Other Physical Dimension: 4 X 4 IN Take Out, 2 IN Hole Diameter, Domestic/Import: Import
Sub Brand | : | Mechanical-T® |
Item Name | : | Cross With Grade E Gasket |
Series/Model | : | Style 920N |
Nominal Size | : | 4 X 4 X 1-1/2 X 1-1/2 IN IPS |
Connection Type | : | Grooved End |
Material | : | Ductile Iron |
Material Standard | : | ASTM A536 Grade 65-45-12 |
Finish/Color | : | Hot-Dipped Galvanized |
Maximum Pressure | : | 500 PSI |
Industry Standards | : | UL, CUL Listed, FM, LPCB, VDS, CTP Approved |
Other Physical Dimension | : | 4 X 4 IN Take Out, 2 IN Hole Diameter |
Domestic/Import | : | Import |
Victaulic Mechanical-T® outlet provides a direct branch connection at any location a hole can be cut in pipe. The hole is cut oversize to receive a "hole finder" locating collar which secures the outlet in position permanently. A pressure responsive gasket seals on the pipe OD. Cross-type connections can be achieved by utilizing two upper housings of the same style and size, with the same or differing branch size connections. All sizes of style 920 and 920N are rated at 500 PSI/3450 KPA working pressure on SCH 10 and 40 carbon steel pipe. They may also be used on high density polyethylene or polybutylene (HDPE) pipe. Pressure ratings on HDPE are dependent on the pipe rating. Style 920 and 920N are not recommended for use on PVC plastic pipe. Standard piping practices dictate that the Mechanical-T® styles 920 and 920N must be installed so that the main and branch connections are a true 90 DEG angle when permanently attached to the pipeline surface.