Type S

Type S

Durable, easy-to-maintain split body ball valve for gas, oil, and water pipeline systems. It features a modular design for extensive maintenance and allows for wearing part replacement without demounting the valve.

The temperature ranges include:

Minimum: -60°C to 120°C

Standard: -29°C to 120°C

Maximum: -29°C to 200°C

Brand: Schuck
Category: Isolation
Trim Full Port
Type Two- or Three-Piece Split Body Trunnion-Mounted Ball Valve
Bonnet Standard, Fire-Safe Design with Double Stem Seals
Packing Double-Stem Seal, Fire-Safe Package, O-Rings (FKM, HNBR, FFKM)
Seating Metal-to-Metal, Primary Metal/Secondary Soft (PMSS), Soft Sealing (SO)
Valve Size 2“ to 36”
End Connections Flanged, Welded, or Welded-Flange Ends
Design Temperature Low temperature up to -60°C High temperature up to 200°C
Standard Materials Body: A350 LF2, ASTM A352 Gr. LCC (mod), GS-21 Mn5 Ball: G-X20Cr14V, ASTM A 217 Gr. CA-15, ASTM A 350 Gr. LF2/ENP Flange/Welded End: ASTM A 350 Gr. LF2, ASTM A352 Gr. LCC (mod)
Pressure Class Range CL 150, 300, 600, 900, 1500
Face to Face Standard API 6D
Pressure Class Standard ASME B16.34
Shut Off Classification API 6D

Split body, 2- or 3-piece design

Usable for gas and liquids

Extensive maintenance options

Anti-static design

Piggable

Trunnion-mounted with double stem seals

Available in three sealing systems (PMSS, SO & MM)

TA-Luft and Fire Safe approved

Secondary sealant injection available

Quality ISO 9001: Quality management system standard
Fire-Safe Design: Meets fire-safety standards
German Clean Air Act: Compliant with emission regulations
Certifications EN 12266-1: Testing of metal valves
ISO 14313: Standard for pipeline valves in gas and oil
ASME B16.34: Valve design and material standards
ISO 10497/API 607: Fire-safe certification
Design Standards ASME B16.10: Valve face-to-face dimension standard
ISO 5208: Valve pressure testing requirements
DIN 3230 T5 PG3: Valve sealing standard
API 6D: Pipeline valve design and performance
ASME Sec. VIII Div. 1: Boiler and pressure vessel code