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  • Nominal Size (NPS) 4 inch (DN100)
    Pressure Class 600LB (Class 600)
    Type Trunnion Mounted
    Seating Type Metal to Metal (Hardfaced)
    End Connection Flanged, Raised Face (RF)
    Applicable Media High temperature steam, hydrocarbon, corrosive media, abrasive slurries, high pressure gas/liquid
    Temperature Range -29°C ~ 450°C (depending on trim material and hardfacing)
  • Size 6″ (DN150)
    Pressure Class Class 150 (PN20)
    Design Type 2 Piece Floating Ball Valve
    End Connections Flanged RF (Raised Face)
    Flange Standard ASME B16.5
    Temperature Range -29°C ~ +200°C (depending on seat material)
    Media Water, oil, gas, steam, mild corrosive fluids
  • Nominal Size (NPS) 6 inch (DN150)
    Pressure Class 150LB (Class 150)
    Type Trunnion Mounted
    End Connection Flanged, Raised Face (RF)
    Applicable Media Water, oil, gas, natural gas, steam, mildly corrosive media
    Temperature Range -29°C ~ 150°C (depending on seat material)
  • Nominal Size 1/2 Inch (DN 15)
    Pressure Rating Class 600
    Temperature Range Standard: -20°F to +450°F (-29°C to +232°C) with PTFE seats. Extended range available.
    Flow Characteristic Full Port (FP) for minimal pressure drop. Reduced Port (RP) optional.
    End Connections Socket Weld (SW) x Socket Weld (SW)
  • Size Range [e.g., DN50 – DN600 / 2″ – 24″]
    Pressure Rating [e.g., PN16 / PN25 / PN40 / Class 150 / Class 300 / Class 600]
    Design Type Three-piece body, trunnion mounted ball
    End Connections [e.g., Raised Face (RF) / Ring Type Joint (RTJ) to ASME B16.5 or EN 1092-1]
    Applicable Media Seawater, brine, corrosive industrial fluids, oil, water, steam
    Temperature Range -29°C to +150°C (depending on seat material)
  • Nominal Size DN 15 (½” NPS)
    Pressure Rating PN 63 (Typically correlates to Class 400)
    Design Pressure Up to 63 bar @ specified temperature
    Temperature Range Standard Service: -29°C to +550°C
    Super High-Temp Service: Up to +800°C (with specified trim)
    Flow Characteristic Full Bore (FB) for minimal pressure drop
  • Size DN15 (1/2”)
    Pressure Rating PN100 (Class 600)
    Design Type Floating Ball
    End Connections Socket Weld / Butt Weld / Raised Face Flange (confirm as required)
    Temperature Range -29°C up to +450°C (depending on seat materials)
    Media High temperature steam, thermal oil, high pressure gas, corrosive fluids, abrasive slurries
  • Nominal Size DN 25 (1″ NPS)
    Pressure Rating PN 25 (Class 150)
    Design Pressure Up to 25 bar at specified temperature
    Temperature Range Standard: -29°C to +200°C with PTFE seats. Extended range available with special trim.
    Flow Characteristic Full Port (FP) for minimum pressure drop.
    End Connections Socket Weld x Socket Weld
    Operation Manual Lever (Standard). Gear, Pneumatic, or Electric Actuation optional.
    Seat Leakage Class ANSI/FCI 70-2 Class VI (Standard Soft Seat). Class IV (Metal Seat) optiona
  • Size DN25 (1 inch)
    Pressure Class PN25 (25 bar / 360 PSI)
    Body Material Forged Stainless Steel (ASTM A182 F304/F316) / Forged Carbon Steel (A105) User specified
    Manufacturing Process Forged Steel / Cast Steel (depending on manufacturer)
    Design Standard API 608 / API 6D / ISO 17292 / ASME B16.34
    End Connection Standard EN 1092-1 (Flanged) / ASME B16.25 (BW) / ASME B1.20.1 (NPT)
    Face to Face Standard EN 558-1 / ISO 5752 / API 6D / ASME B16.10
    Test & Inspection Std. API 598 / EN 12266-1 / ISO 5208
    Fire-Safe Design API 607 / ISO 10497 (Optional)
    Fugitive Emission ISO 15848-1 (Optional)
  • Nominal Size DN25 (1″)
    Pressure Rating PN100 (Class 600)
    Valve Type 2-Piece Floating Ball Valve
    Body Construction 2-Piece (Body + End Cap)
    End Connections Flanged – EN 1092 1 PN100 or ASME B16.5 Class 600 (RF / RTJ)
    Temperature Range –29°C ~ +500°C (depending on hardfacing)
    Suitable Media High temperature steam, thermal oil, corrosive fluids, high pressure gas/liquid, abrasive slurries
    Fire Safe Design API 607 / ISO 10497 (inherently fire safe due to metal seats)
  • Nominal Size DN50 (2″)
    Pressure Rating PN100 (Class 600)
    Valve Type 2-Piece Floating Ball Valve
    Body Construction 2-Piece (Body + End Cap)
    End Connections Flanged – EN 1092 1 PN100 or ASME B16.5 Class 600 (RF / RTJ)
    Temperature Range –29°C ~ +500°C (depending on hardfacing)
    Suitable Media High temperature steam, thermal oil, corrosive fluids, high pressure gas/liquid, abrasive slurries
    Fire Safe Design API 607 / ISO 10497 (inherently fire safe due to metal seats)
  • Product Name DN25 PN100 Raised Face Stainless Steel Jacketed Floating Ball Valve
    Model DN25-PN100-RF-SS-JACKET
    Nominal Size DN25 (1 inch)
    Pressure Class PN100 (100 bar / 10.0 MPa / approx. 1450 psi)
    Construction Floating ball, 2 piece or 3 piece (depending on manufacturer)
    End Connection Raised Face (RF) flange per EN 1092-1 or ISO 7005 (PN100)
    Jacket Design Integral jacket (welded), for steam or thermal oil heating
    Body Material Stainless steel (typically CF8M / F316 or CF8 / F304)
    Jacket Material Stainless steel (same as body or compatible)

A ball valve is a type of quarter-turn valve that controls flow using a hollow, perforated, and pivoting ball inside the valve body. When the ball’s hole is aligned with the pipeline, fluid flows freely; when rotated 90 degrees, the flow is completely blocked. This simple mechanism makes ball valves highly reliable for shutoff and control applications. Ball valves are known for their tight sealing performance, durability, and ease of operation. They can handle high pressure and temperature conditions, and are suitable for gas, liquid, or even corrosive media, depending on the materials used. With minimal pressure drop and fast on-off control, ball valves are widely used in industries like oil and gas, water treatment, chemical processing, and general plumbing. They come in various types such as two-way, three-way, floating, and trunnion-mounted, and can be operated manually, pneumatically, or electrically.

Why Are Ball Valves Preferred In Industrial Applications?

Ball valves are favored in industrial systems due to their quick shutoff capability, tight sealing, and low maintenance design. Their quarter-turn mechanism allows for fast operation, reducing downtime in emergency situations. They offer a secure shutoff even after long periods of disuse, thanks to the ball's self-cleaning action as it rotates. The full-bore design of many ball valves allows for unobstructed flow, which minimizes pressure loss and makes them ideal for high-flow applications. Additionally, ball valves are available in a wide range of materials including stainless steel, brass, and PVC, allowing them to be used in different pressure, temperature, and corrosive environments. They are also easy to automate, making them ideal for systems that require remote control. With minimal moving parts, ball valves are more durable and less likely to leak or wear out, leading to reduced maintenance and lower operating costs over time.

Ball Valves FAQ

  • 1.What’s the main use of a ball valve?

    Quick shutoff and flow control.

  • 2.Is a ball valve full port or reduced port?

    It can be either, depending on the design.

  • 3.Can ball valves be used for gas?

    Yes, if the material and rating are appropriate.

  • 4.Do ball valves leak easily?

    No, they offer tight sealing when properly maintained.

  • 5.Are ball valves easy to automate?

    Yes, they support pneumatic and electric actuators.

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