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International Polymer Solutions
  • Ball Valve

    Our iPolymer Ball Valve features an all PTFE wetted surface design. The design is ideally suited for harsh chemical and corrosive media and environments. Polytetrafluoroethylene (PTFE), commonly known by its popular E.I. DuPont trade name TEFLON®, is also well suited to clean room and deionized water applications. The body, stem, ball and ports are constructed from PTFE. For standard applications, external non wetted components are constructed from Natural PVDF and Polypropylene.

  • Check Valve Family

    Our iPolymer Check Valve features all PTFE wetted surfaces for excellent performance in all high purity applications. The PTFE design resists chemical corrosion and other elements within harsh process environments. iPolymer Check Valves are commonly found as backflow preventers in clean processes. Please contact us with your special application requirements. Special PEEK, PVDF and Polypro configurations are available upon request.

  • Precision Plug Valve

    The iPolymer Precision Plug Valve (PPV) is a precision machined manual control valve manufac- tured from 100% virgin PTFE (all wetted surfaces) and PVDF Stem Nut. The PTFE body and stem perform equally well with harsh chemicals and ultra clean DI water. The basic construction is a single through orifice with a tapered body that matches the tapered plug for positive shut-off. Various orifice and port sizes are available as standard items. Other sizes and configurations are available on request. Our Precision Plug Valve are supplied in two configurations: Straight Flow Pattern (“A”) and Angled Flow Pattern (“B”).

  • Metering Valve

    iPolymer Metering Valve (MV) use a tapered plug-stem to give a fine adjustment to the flow in addition to a fully open or fully closed shutoff position. The PTFE all-wetted surface design works equally well with ultra clean DI water and harsh chemical media. As with all Metering Valves, we recommend filtering the media prior to entering the valve. Our Metering Valves come in two configurations: Straight Flow Pattern ("A") and Angled Flow Pattern ("B").

  • PTFE Stopcocks

    iPolymer Stopcock Valves are based on an all wetted PTFE design.  Ideal for chemical fluid and gas flow shutoff application.  Stopcocks are a simpler version of our popular Ball Valves. The handle points in the direction of flow.  By partially rotating the quarter turn handle/stem the Stopcock will partially meter the flow. Polytetrafluoroethylene (PTFE), commonly known by its popular E.I. DuPont trade name TEFLON®, is well suited for clean room and deionized water applications.

  • Image

    Our iPolymer Manual Diaphragm Valves are design for Quarter-Turn manual actuation of our popular Pneumatic and Solenoid configured Miniature Diaphragm Valves. Offered as a 2-Way PTFE Valves, these valves are similar to our Precision Plug Valve. Rather than a stem plug, the valves utilize a flexible diaphragm hard seat seal. As manual valves, they are operated by hand.  Used where pneumatic and electrical connections are not practical or not necessary. These Diaphragm Valves provide unsurpassed chemical compatibility with a wide range of media. The all wetted PTFE body, valve stem and one piece diaphragm maintain a material inert boundary for ultra clean applications.

  • Sampling Metered Valve

    The iPolymer PTFE Sampling Metered Valve (SMV) is designed for use in high purity water and aggressive chemical applications.  This unique manual actuated metering valve is design for low flow sampling. The PTFE wetted flow path is ideal for DI Water Systems and corrosive media found in solar, semiconductor, pharmaceutical and chemical process applications. This Panel Mount unit functions with a manual push level to actuate a metered flow. The metered flow ensures a controlled dispensing of fluid for manual sampling. Uses include dispensing controlled amounts of media for element verification tests, manual dispensing of DI Water into carboy and other transport containers, and dispensing metered amounts of chemicals to blend and balance process chemistries.