Keystone EPDM Butterfly Valve Seat for Superior Sealing

Short Description:

PTFE+EPDM compounded rubber valve seat with high temperature resistance

Product Detail

Product Tags

In the realm of industrial valve seating, the Keystone EPDM Butterfly Valve Seat by Sansheng Fluorine Plastics stands out as a beacon of reliability and performance. Designed to meet the demanding needs of a wide range of applications, from water treatment to petrochemical operations, this valve seat combines the resilience of EPDM with the unparalleled chemical resistance of PTFE to create a sealing solution that is both robust and versatile.

Whatsapp/WeChat:+8615067244404
Detailed Product Description
Material: PTFE+EPDM Media: Water,Oil,Gas,Base,oil And Acid
Port Size: DN50-DN600 Application: High Temperature Conditions
Product Name: Wafer Type Centerline Soft Sealing Butterfly Valve,pneumatic Wafer Butterfly Valve Connection: Wafer,Flange Ends
Valve Type: Butterfly Valve,Lug Type Double Half Shaft Butterfly Valve Without Pin
High Light:

seat butterfly valve, ptfe seat ball valve

 

Black/ Green PTFE/ FPM +EPDM Rubber Valve Seat for Butterfly Valve Seat

 

PTFE + EPDM compounded rubber valve seats produced by SML are widely used in textile, power station, petrochemical, heating and refrigeration, pharmaceutical, shipbuilding, metallurgy, light industry, environmental protection and other fields.
Product performance: high temperature resistance, good acid and alkali resistance and oil resistance; with good rebound resilience, sturdy and durable without leaking.

 

PTFE+EPDM

The Teflon (PTFE) liner overlays EPDM which is bonded to a rigid phenolic ring on the outside seat perimeter. The PTFE extends over the seat faces and outsides flange seal diameter, completely covering the EPDM elastomer layer of the seat, which provides the resilience for sealing valve stems and the closed disc.

Temperature range: -10°C to 150°C.

 

Virgin PTFE (Polytetrafluoroethylene)

PTFE (Teflon) is a fluorocarbon based polymer and typically is the most chemically resistant of all plastics, while retaining excellent thermal and electrical insulation properties. PTFE also has a low coefficient of friction so it is ideal for many low torque applications.

This material is non-contaminating and accepted by the FDA for food applications. Although the mechanical properties of PTFE is low, comparing to other engineered plastics, its properties remain useful over a wide temperature range.

Temperature range: -38°C to +230°C.

Color: white

Torque adder: 0%

 

Heat / Cold Resistance of different rubbers

Rubber Name Short Name Heat Resistance ℃ Cold Resistance ℃
Natural Rubber NR 100 -50
Nitrle Rubber NBR 120 -20
Polychloroprene CR 120 -55
Styrene Butadiene copolyme SBR 100 -60
Silicone Rubber SI 250 -120
Fluororubber FKM/FPM 250 -20
Polysulfide Rubber PS / T 80 -40
Vamac(Ethylene/Acrylic) EPDM 150 -60
Butyl Rubber IIR 150 -55
Polypropylene Rubber ACM 160 -30
Hypalon. Polyethylene CSM 150 -60


Crafted using a cutting-edge compounding process, the Keystone EPDM Butterfly Valve Seat is engineered to offer exceptional sealing capabilities even under the most challenging high temperature and corrosive conditions. The unique blend of PTFE and EPDM ensures that the valve seats are not only resistant to a broad spectrum of media, including water, oil, gas, base, and acid but also maintain their integrity and flexibility over time, providing a reliable seal that minimizes leaks and downtime. The versatility of the Keystone EPDM Butterfly Valve Seat is further enhanced by its compatibility with a wide range of butterfly valve types. Whether it's a wafer type centerline soft sealing butterfly valve or a lug type double half shaft butterfly valve without a pin, this valve seat can be seamlessly integrated, offering an optimal fit for valves ranging from DN50 to DN600. This adaptability, combined with its superior sealing performance, makes the Keystone EPDM Butterfly Valve Seat an ideal choice for industries seeking a high-quality valve seating solution that can withstand high temperatures and aggressive chemicals while ensuring efficient and safe operation across various high-demand environments.

  • Previous:
  • Next: