Catalog excerpts
1. Hayward guarantees its products against defective material and workmanship only. Hayward assumes no responsibility for damage or injuries resulting from improper installation, misapplication, or abuse of any product. 2. Hayward assumes no responsibility for damage or injury resulting from chemical incompatibility between its products and the process fluids to which they are subjected. Compatibility charts provided in Hayward literature are based on ambient temperatures of 70F and are for reference only. Customer should always test to determine application suitability. 3. Consult Hayward literature to determine operating pressure and temperature limitations before installing any Hayward product. Note that the maximum recommended fluid velocity through any Hayward product is eight feet per second. Higher flow rates can result in possible damage due to the water hammer effect. Also note that maximum operating pressure is dependent upon material selection as well as operating temperature. 4. Hayward products are designed primarily for use with non-compressible liquids. They should NEVER be used or tested with compressible fluids such as compressed air or nitrogen. 5. Systems should always be depressurized and drained prior to installing or maintaining Hayward products. 6. Temperature effect on piping systems should always be considered when the systems are initially designed. Piping systems must be designed and supported to prevent excess mechanical loading on Hayward equipment due to system misalignment, weight, shock, vibration, and the effects of thermal expansion and contraction. 7. Because PVC and CPVC plastic products become brittle below 40F, Hayward recommends caution in their installation and use below this temperature. 8. Published operating torque requirements are based upon testing of new valves using clean water at 70F. Valve torque is affected by many factors including fluid chemistry, viscosity, flow rate, and temperature. These should be considered when sizing electric or pneumatic actuators. > 9. Due to differential thermal expansion rates between metal and plastic, transmittal of pipe vibration, and pipe loading forces DIRECT INSTALLATION OF METAL PIPE INTO PLASTIC CONNECTIONS IS NOT RECOMMENDED. Wherever installation of plastic valves into metal piping systems is necessary, it is recommended that at least 10 pipe diameter in length of plastic pipe be installed upstream and downstream of the plastic valve to compensate for the factors mentioned above. > : The GAUGE GUARD is equipped with a #10-32 UNF threaded bleed port on the instrument side of the membrane. It is recommended that the instrument be installed in the 1/4 NPT before filling the GAUGE GUARD. Wrap threads of the instrument with Teflon tape of 3 to 3-1/2 mil thickness. The tape should be wrapped in a clockwise direction starting at the first or second full thread. Overlap each wrap by, 1/2 the width of the tape. The wrap should be applied with sufficient tension to allow the threads of a single wrapped area to show through without cutting the tape. The wrap should continue for the full effective length of the thread. To provide a leak proof joint, the instrument should be threaded into the gauge port ԓhand tight. Tighten the joint an additional 1/2 to 1-1/2 turns past hand tight. Tightening beyond this point may induce excessive stress that could cause failure. To fill the GAUGE GUARD remove the #10-32 UNF screw, pull a vacuum on the port and backfill with clean compatible liquid. Install the #10-32UNF screw with the seal O-Ring. Hayward Gauge Guard assemblies are factory filled with Mobil Aero HFE hydraulic fluid. >
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Duplex Bag Filter
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Y Strainers
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Y Check Valves
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Pressure Regulators
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Needle Valves
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Universal Stopcock
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True Union Ball Check Valves
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Foot Valve Screens
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Diaphragm Valves 3" to 6"
2 Pages
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Diaphragm Valves 1/2" to 2"
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Bulkhead Fittings
2 Pages
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Swing Check Valves
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Butterfly Valves 14" to 24"
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Relief Valves
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Angle Valves
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