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Apollo 76F-100-A Series Stainless Steel Ball Valve, Two Piece, Inline, Latch-Lock Lever with Nut, 1" NPT Female

Product ID : 38793087


Galleon Product ID 38793087
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About Apollo 76F-100-A Series Stainless Steel Ball

The Apollo 76F-100-A series two-piece full port inline ball valve is made of stainless steel and has a latch-lock lever handle and female National Pipe Taper (NPT) threaded connections on both ends. This valve is made of stainless steel for resistance to corrosion and has a stainless steel latch-lock lever handle with a stainless steel nut and vinyl sleeve for manual on/off control. The lever handle can be locked in either the open or closed position. The ball valve is full port for reduced friction; its inner diameter is the same as the inner diameter of the pipe it connects to enable maximum operating efficiency. The maximum pressure is 1,000 pounds per square inch (gauge) (psig) for cold working pressure (CWP) and 150 psig for saturated steam, and the temperature range is -20 to 450 degrees Fahrenheit. The valve is inline for connecting two pipes going in the same direction and has NPT threads on both ends for creating tighter seals than straight threads. Reinforced polytetrafluoroethylene (RPTFE) seats and seals reduce the risk of valve leakage. This valve is for use with water lines, processing plants, and agricultural applications and meets standard MSS SP-110 for quality assurance. Ball valves use a spherical disc to control the flow between pipes, tubes, or hoses. Flow is allowed when the hole that pierces the ball-shaped disc is in line with the inlet and outlet of the valve. Flow is blocked when the ball is horizontally swiveled 90 degrees, so that the hole of the ball is perpendicular to the opening of the valve. Ball valves can be referred to as full port or reduced port (also known as regular or standard port) depending on the inner diameter of the valve. A ball valve is full port if the hole of the ball is the same size as the inner diameter of the connecting pipeline (resulting in lower friction) and is reduced port if the hole of the valve is one pipe size smaller than the pipe, resulting in less flow through the valve t