Flanged Butterfly Valve Components Manufacturers

Flanged Päiperlek – Benotzerdefinéiert Ventil duerch féierend Schmelz

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1. Aféierung

A Flanged butterfly valve (FBV) is a quarter-turn valve widely recognized as the workhorse of high-pressure and permanent fluid control systems.

Characterized by their integral flanges that bolt directly to pipeline flanges, they provide a rigid, leak-proof, and structurally stable connection,

a critical advantage over wafer-style valves (space-saving but suited for low-pressure duties) and lug-style valves (moderate pressure, often for non-critical service).

Engineered for medium to large-diameter pipelines, flanged butterfly valves combine enk Shutoff, structural reliability, and ease of maintenance.

At the same time, their versatility makes them indispensable in Waasserbehandlung, HVAC networks, and general industrial processing, where their compact design, cost-efficiency, and adaptability across pressure and temperature ranges deliver long-term operational value.

2. What is a Flanged Butterfly Valve?

Core Definition and Working Principle

A K) flanged butterfly valve (FBV) as A quarter-turn rotary Valve designed for regulating or isolating flow in pipelines.

Its defining feature is the integral flanges, which bolt directly to pipe flanges (per ANSI B16.5 or ISO 7005), creating a rigid, leak-tight, and permanent connection suitable for high-pressure service.

Flanged Päiperlek
Flanged Päiperlek

The valve operates on a simple principle:

  • Fully Open (0°): The disc lies parallel to flow, minimizing pressure loss (typically 1–3 psi for a 6-inch valve at nominal flow).
  • Throttling (10–80°): Partial rotation restricts flow; eccentric disc designs provide more linear flow control than concentric types.
  • Fully Closed (90°): The disc presses firmly against the seat, achieving tight shutoff. FBVs are bidirectional, handling forward and reverse flows effectively.

Anatomy of a Flanged Butterfly Valve

A flanged butterfly valve is engineered for durability and precision control, typically comprising six core components:

Finanzen Design Features Primary Role
Kierper emmer (with Flanges) Cast/forged with integral flanges; bolt holes align to pipeline flanges. Provides pressure boundary and permanent mounting.
Scheif Circular plate (flat or eccentric profile). Rotates to open/close or throttle flow.
Stee (Shaft) Solid rod, sealed by packing/O-rings. Transmits torque from actuator to disc.
Sëtz Resilient (EPDM/PTFE) or metal (Stellit, Ss). Ensures leak-tight sealing against the disc.
Flange Gasket Compressible sealing material between flanges. Prevents external leakage.
Aktuator MEAL4uell, elektht BE, pneumatesch, or hydraulic. Provides quarter-turn control for isolation or modulation.

Flanged vs. Wafer vs. Lug Butterfly Valves

The integral flange design sets FBVs apart from wafer and lug types, offering unique advantages for high-demand applications:

D'Feature Flanged Päiperlek Wafer Butterfly Valve Lug Butterfly Valve
Mounting Bolted via integral flanges Clamped between flanges Bolted via threaded body lugs
Drock Bewäertung ANSI 150–900 (28–210 bar) ANSI 150–300 (28–70 bar) ANSI 150–600 (28–140 bar)
Gewun Du (6-inch, Ss) ~12 kg ~5.6 kg ~8 kg
Pipeline Disassembly Requires unbolting flanges Requires removing flange pair Valve-only removal possible
Relial Käschte Méi héicher (1.5×) Lächcher (0.7×) Mëttelméisseg (1.0×)
Gutt fir High-pressure, permanent service (UeleP, Gas, Damp, Chemariantie) Low-pressure, compact systems Medium-pressure, flexible maintenance needs

3. Design Variations: Concentric vs. Eccentric Flanged Butterfly Valves

Flanged butterfly valves are classified primarily by disc and stem alignment, a critical factor influencing pressure rating, sealing performance, torque requirements, an Uwendung.

Concentric Flanged Butterfly Valves (Standard Design)

Geometry: The disc and stem axes align with the valve’s bore center, making the design concentric. During operation, the seat maintains contact across the entire disc surface.

Concentric Flanged Butterfly Valves
Concentric Flanged Butterfly Valves

Leeschtung Metriken:

  • Drock Bewäertung: ANSI Class 150–300 (28–70 bar at 20°C)
  • Leakage Class: Api 609 Class IV (≤0.01% of nominal flow for liquids)
  • Torque Requirement: 60–100 N·m (6-inch valve, EPDM seat)
  • Cycle Life: 10,000–20,000 cycles (resilient seat limits lifespan)

Virdeeler:

  • Einfach, cost-effective design
  • Easy maintenance and seat replacement
  • Suitable for moderate temperature and pressure fluids

Ufrongnisseuren:

  • High disc-seat friction reduces efficiency
  • Not suitable for gas service or high-pressure applications
  • Limited durability under abrasive or high-temperature fluids

Typesch Uwendungen:

  • HVAC chilled water systems
  • Municipal water distribution
  • Low-pressure, non-critical industrial services

Eccentric Flanged Butterfly Valves (High-Performance Design)

Overview: Eccentric designs offset the disc or stem, reducing disc-to-seat friction and enhancing sealing performance.

These designs are ideal for héich Drock, Héich -peratureuren, and gas applications.

Single Eccentric (Offset Disc) Flanged Päiperlek

Design: The disc center is offset from the stem axis, which minimizes contact with the seat during rotation, reducing friction.

Single Eccentric Flanged Butterfly Valve
Single Eccentric Flanged Butterfly Valve

Leeschtung Metriken:

  • Drock Bewäertung: ANSI Class 300–600 (70–140 bar)
  • Leakage Class: Api 609 Class V (≤0.001% of nominal flow)
  • Torque Requirement: 40–70 N·m (6-inch valve, PTFE seat)—~30% lower than concentric valves

Uwendungen:

  • Industrial water treatment
  • Low-pressure oil lines
  • Applications requiring moderate flow control with improved efficiency

Double Eccentric (Offset Disc + Stee) Flanged Päiperlek

Design: Both the disc center and stem axis are offset from the bore center. This eliminates disc-seat contact until 80–85% of closure, significantly reducing friction and wear.

Double Eccentric Flanged Butterfly Valve
Double Eccentric Flanged Butterfly Valve

Leeschtung Metriken:

  • Drock Bewäertung: Ansi Klass 600 (140 bar at 20°C); up to Class 900 with metal seats
  • Leakage Class: Api 609 Klass VI (≤0.00001% of nominal flow) — suitable for gas service, including natural gas pipelines
  • Temperaturbereich: -29°C to 482°C (metallen Sëtzer)

Uwendungen:

  • Chemeschenverbriechen
  • UeleP & gas pipelines
  • Steam systems
  • High-pressure industrial fluids requiring tight shutoff

Triple Eccentric (Offset + Tapered Disc) Flanged Päiperlek

Design: Adds a third offset by introducing a conical/tapered disc geometry, achieving a metal-to-metal seal without the need for an elastic seat.

This design enables operation under extreme temperatures and pressures.

Triple Eccentric Flanged Butterfly Valve
Triple Eccentric Flanged Butterfly Valve

Leeschtung Metriken:

  • Drock Bewäertung: Ansi Klass 900 (210 bar at 20°C)
  • Temperaturbereich: -29°C to 650°C (Stellite® or hard metal seats)
  • Cycle Life: 50,000–100,000 cycles (metal seat durability)

Uwendungen:

  • Hypersonic vehicle cooling systems
  • Power plant superheated steam lines
  • Refinery catalytic crackers and petrochemical processing
  • Extreme industrial environments requiring zero-leakage and long life

Resumé:

D'Feature Concentric Single Eccentric Double Eccentric Triple Eccentric
Disc-Stem Alignment Centerline Disc offset Scheif + stem offset Scheif + Stee + conical offset
Drock Bewäertung 28–70 bar 70–140 bar 140–210 bar 210 Barnoteg
Leakage Class Iv VR VI VI (Metallsaach)
Torque Requirement Mëttelméisseg Lower than concentric Méi héicher Héichheet (requires actuator)
Temperaturbereich - Mëttelméisseg -29°C to 482°C -29°C to 650°C
Typical Use Low-pressure water/HVAC Moderate industrial fluids High-pressure fluids/gases Extreme industrial/petrochemical

4. Material & Seals of Flanged Butterfly Valve

D'Performance, Zouverlässegkeet, and longevity of double flanged butterfly valves (FBVs) are strongly influenced by material Auswiel for the body, dier Déieren, Stee, and sealing elements.

Proper materials ensure compatibility with the fluid, resistance to corrosion, high-pressure handling, and suitability for temperature extremes.

Double Flanged Butterfly Valve Component
Double Flanged Butterfly Valve Component

Body Materials

The valve body is the primary pressure boundary and must withstand mechanical stress, internal pressure, and environmental corrosion. Common body materials include:

Material FONTassementer Typesch Uwendungen
De Kolbel Stol (A216 WCB) Héich Stäerkt, moderéiert Korrosioun Resistenz, kascht effektiv D'Waassermonn, Damp, low-corrosive chemicals
Edelstol (316/316L, A351 CF8M) Exzellent Korrosion Resistenz, hygienesch, moderate high-temperature resistance Chemeschenverbriechen, Iessen & Gedrénks, Marine Ëmfeld
Ductile Eisen (EN-GJS-400-15, Astm A536) Gudd Strik, kascht effektiv, corrosion-resistant when coated Waasser Verdeelung, Ofwaasser, Hvac
Alloy-Stol (Haseloloy c276, Duplexex 2205) Superior chemical and temperature resistance Petrochemesch, Aafsaachen, aggressive industrial fluids

Disc Materials

The disc is directly exposed to flow and often handles abrasiv, orosiv, or corrosive fluids. Selection is based on mechanesch Stäerkt, Korrosioun Resistenz, and sealing compatibility:

  • 316 Edelstol: Widely used for general-purpose chemical, d'Waassermonn, and steam applications.
  • Haseloloy c276: Resistant to oxidizing and reducing chemicals; suitable for aggressive acids.
  • Ductile Iron with PTFE Coating: Low-friction, corrosion-resistant option for water and mild chemicals.
  • Stellit®-Clad Discs: High-temperature and high-wear applications, including superheated steam and petrochemicals.

Design Note: The disc may be concentric, eccentric, or triple-offset, with metal or resilient coating to improve sealing and reduce wear.

Stem Materials

The stem transmits torque from the actuator or handwheel to the disc and is exposed to mechanical stress, Dréckt, and fluid contact. Common materials:

Material FONTassementer Uwendungen
416 Edelstol Héich Stäerkt, good corrosion resistance, kascht effektiv D'Waassermonn, Hvac, general industry
316/316L Edelstol Exzellent Korrosion Resistenz, moderate high-temperature resistance Chemeschen, Marine, Iessen & Gedrénks
Haseloloy c276 / Duplex Steel Extreme corrosion and temperature resistance Aggressive chemicals, high-pressure petrochemical

Seat Materials and Seal Types

The seat forms the critical sealing interface with the disc, determining leakage class, torque requirement, an Service Liewen. Selection depends on fluid type, Dréckt, an Temperatur.

Seat Type Material Leakage Class Temperaturbereich Weise gutt
Resilient Seat Ephm, Nbr, FkM, PTFE Api 609 Class IV–V -50°C to 200°C Excellent sealing for liquids; niddereg Dréimoment; not for high-temp steam
Metal Seat Edelstol, Stellite® Api 609 Klass VI -29°C to 650°C High durability; suitable for gases, héich Drock, and high-temperature applications
PTFE-Lined Pure PTFE or filled PTFE Api 609 Class V -50°C to 200°C Chemesch resistent; wéineg Reibsung; may creep under high pressure
Elastomer + Metal Hybrid EPDM/Metal or PTFE/Metal Api 609 Class V–VI -29°C to 482°C Combines leak-tightness with wear resistance; common in double-eccentric designs

Gaskets and Actuator Interfaces

  • Flange Gaskets: Graphite, PTFE, or nitrile gaskets ensure leak-proof flange connections between the valve and pipeline.
  • Actuator Seals: O-rings or PTFE bushings prevent fluid leakage along the stem while enabling smooth torque transfer.

5. Kaflag vun der Fabréck & Foundry Methods of Flanged Butterfly Valves

D'Produktioun vun flanged butterfly valves (FBVs) requires high precision, robust materials, and strict adherence to international standards such as API 609, Iso 5752, an ANSI B16.5.

Valves designed for high-pressure and high-performance applications—like oil & gas pipelines, Chemeschen, and power generation—must exhibit dimensional Genauegkeet, strukturell Integritéit, and leak-tight performance.

Casting Butterfly Valve Components

Casting is the primary method for shaping valve bodies and discs, allowing complex geometries and cost-effective production. For large valves (typically over 12 Zeiteren), Sand Casting is widely used.

An dësem Prozess, molten metal (1450–1550°C) is poured into resin-bonded sand molds.

Sand casting offers tolerances around ±0.5 mm, making it suitable for carbon steel or ductile iron valves used in municipal water or low-pressure industrial pipelines.

For small-to-medium valves (2–12 inches) requiring high dimensional precision and corrosion resistance, Investitiouns Casting (lost wax method) is employed. Wax patterns are coated with ceramic shells, melted out, and replaced with molten metal.

This method achieves tight tolerances (±0.1 mm) a glat Flächen, enabling precise features such as double eccentric disc hubs.
Investment casting is ideal for 316L stainless steel, Haseloching, or other corrosion-resistant alloys.

Verpassen: High-Strength Components

Forging is the preferred method for critical, high-pressure components such as bodies, flangen, and stems, because it produces superior grain structure and higher tensile strength.

Heated metal (1100-1200 ° C) is shaped under hydraulic presses or dies, resulting in 20–30% stronger parts than equivalent castings.

Forged components are typically used in ANSI Class 600 or higher valves for oil & gas pipelines, Kraaftwierk, and other demanding industrial applications.

Forging methods include open-die forging for large custom parts, closed-die forging for medium-sized components with precise dimensions, and upset forging to reinforce critical junctions like disc hubs.

Maach: Precision Finishing

After casting or forging, Cnc machining ensures high dimensional accuracy, Uewerfläch fäerdeg, and proper alignment:

  • Flange faces are milled to achieve flatness within 0.1 mm and bolt hole alignment per ANSI B16.5 standards, ensuring leak-free connections.
  • Seat bores are honed or machined to Ra 1.6–3.2 μm to allow proper seat bonding and effective sealing.
  • Discs and hubs, especially eccentric designs, are finished with 5-axis CNC milling to maintain flatness within 0.05 mm for tight shutoff.
  • Stems and bearings are turned and milled with precision to guarantee smooth rotation and correct torque transfer.

Hëtztbehandlung: Mechanical and Corrosion Properties

Heat treatment improves strength, Hannscht, and corrosion resistance depending on the material used:

  • Kuelestoff Stahl (Wechn vu wcb): Quenched at 850°C and tempered at 650°C to achieve tensile strength ≥485 MPa.
  • 316L Edelstol: Solution-annealed at 1050–1100°C followed by water quenching to restore corrosion resistance and homogenize microstructure.
  • Duplexex 2205: Solution-annealed at 1020–1080°C to achieve a balanced austenite/ferrite ratio (50:50), optimizing both strength and corrosion resistance.

Uewerfläch Behandlung: Longevity & Korrosioun Resistenz

Surface finishing ensures durability in harsh environments:

  • Passivatioun for 316L stainless steel enhances the natural chromium oxide layer, improving corrosion resistance by up to 20%.
  • Epoxxy Codings of 100–150 μm protect carbon steel bodies in oil & gas pipelines from soil and atmospheric corrosion.
  • Elektropolesch is used in sanitary applications (Iessen, Gedrénks, pharmazeutesch) to achieve Ra ≤0.8 μm, eliminating microscopic crevices and bacterial dead zones.

Montage & Qualitéitssécherung

After machining and surface treatment, valves undergo assembly and rigorous quality control:

  • Seat and disc integration: Seats are bonded or pressed, and eccentric discs are carefully aligned for precise shutoff.
  • Stem installation: Beafingen, packing, and O-rings are fitted, and torque is verified.
  • Hydrostatic or pneumatic testing: Confirms leak-tight performance under design pressure.
  • Net-zerstéierend Testen (Ndt): Methods such as X-ray, ultrasonic, or dye penetrant inspections detect internal defects.
  • Actuator calibration: MEAL4uell, elektht BE, pneumatesch, or hydraulic actuators are tested for torque and stroke accuracy.

6. Drock Bewäertungen, Sizes & Standard

Flanged butterfly valves (FBVs) are designed for reliability across a wide range of pressures, Gréissten, and industrial standards.

Proper selection ensures safety, long-term performance, and compatibility with pipeline systems.

Drock Bewäertungen

Drockklass Max Working Pressure (20° C) Typical Seat Material Weise gutt / Uwendungen
Ansi Klass 150 19 Barnoteg Ephm, PTFE Low-pressure water and HVAC systems
Ansi Klass 300 51 Barnoteg Ephm, PTFE Municipal water, low-pressure industrial pipelines
Ansi Klass 600 102 Barnoteg Metallsaach, Composite UeleP & Gas, Chemeschenverbriechen
Ansi Klass 900 155 Barnoteg Metallsaach High-pressure steam, refinery, extreme temperature service

Standard Sizes

Nominal Diameter (Dann DN) Inch Size Typesch Uwendungen Weise gutt
DN 50–150 2–6 Laboratory systems, Hvac, small water pipelines Kompakt, easy to install
DN 200–600 8–24 Municipal water, Chemeschenverbriechen, industrial pipelines Standard industrial range
DN 700–1200 28–48 Large-scale oil & Gas, Offallwaasserbehandlung, Kraaftwierk High-flow, high-pressure service
DN 1400–2000+ 56–80+ Heavy industrial, refineries, hydroelectric Custom manufacturing often required

Face-to-Face Dimensions: Usually conform to ISO 5752 Serie 10 or API 609 for easy interchangeability.

Key Standards & Zertifizéierungen

Ufank / Certification Rezierk D'Applikatioun / Relevance
Api 609 Design & testing of industrial butterfly valves General industrial service
Iso 5752 Face-to-face & flange Dimensiounen Ensures interchangeability
Asme b16.34 Pressure-temperature ratings for metallic valves Structural integrity & Sécherheeten
MSS SP-67 Sizing & flow coefficient standardization Accurate flow control
ASTM A216 / A351 Kuelestoff Stahl & stainless steel castings Material quality for pressure service
Asme b16.5 Flittimensiounen & bolt patterns Compatibility with pipelines
Api 598 / Iso 5208 Shell & seat leakage testing Ensures leak-tight performance
Nace mr0175 / Iso 15156 Corrosion resistance for sour oil & gas service Long-term reliability in aggressive environments
PED 2014/68/EU Pressure equipment compliance (Europa) Legal & safety compliance for EU installations

7. ACDWUMM & Kontroll Systemer

Flanged butterfly valves are quarter-turn devices requiring actuators capable of 90° rotation.

Actuator selection depends on valve size, torque requirement, fluid type, and control sophistication.

Electric Double Flange Butterfly Valve
Electric Double Flange Butterfly Valve

Common Actuator Types and Specifications

Actuator Type Typical Valve Size (Inches) Torque Range (N·m) Muecht / Energy Source Äntwert Zäit Control Capability Fail-Safe Option
Manual Handwheel 2–6 10-50 Human operation <5 s On/Off N / a
Gear Operator 8–24 80-300 Manual with mechanical advantage 30–60 s On/Off N / a
Electric Actuator 2–36 50-1000 AC 110/220V, DC 24V 5–30 s Modulating /On/Off Battery backup
Pneumatic Actuator 2–36 50-500 6–8 bar compressed air 0.5–5 s Modulating /On/Off Spring return
Hydraulic Actuator 12–48 500–2000 10–30 MPa hydraulic fluid 1–10 s On/Off Pressure reserve

Key Accessories for Enhanced Control

  • Positioners: Provide precise modulating control (±0.5% accuracy), crucial for applications like HVAC chilled water, Chemeschen Dosing, or industrial process lines.
  • Torque Switches: Protect the disc and seat from over-torquing, preventing premature wear or damage.
  • Limit Switches: Deliver open/closed position feedback to SCADA or DCS systems for remote monitoring and automated safety protocols.
  • Solenoid Valves & Air Filters (for pneumatic actuators): Ensure rapid, reliable actuation while protecting internal actuator components from contaminants.

8. Flanged End Geometry & Interface

The flanged end design is the defining characteristic of butterfly flange valves, ensuring a rigid, secure, and leak-tight connection to pipeline systems.

The geometry is standardized globally to allow full interchangeability across manufacturers.

Flange Standards & Compatibility

Flanged butterfly valves are machined to match pipeline flanges in Dialens, bolt-hole patterns, and pressure ratings. The most common standards include:

Ufank Region / D'Applikatioun Drockklassen Weise gutt
Asme b16.5 North America / Glode Kont Class 150–900 Widely used in oil, Gas, Chemeschen, and power sectors
Iso 7005 International PN 6–PN 160 Metric system equivalent to ASME
An 1092-1 Europa PN 10–PN 160 Used across EU pipelines and process industries
JIS B2220 Japan / Asia 5K–40K Common in Asian industrial networks

Dimensional Geometry

The flanged end geometry typically includes:

  • Raised Face (RF): Standard sealing surface, 2–6 mm raised area around the bore, ensures even gasket compression.
  • Flat Face (FF): Used with cast iron pipelines to avoid overstressing flanges.
  • Ring-Type Joint (RTJ): Machined grooves for metal gaskets, suited for high-pressure/high-temperature services (wéi op 210 Barnoteg, 650° C).
Geometry Type Pressure Range Typesch Uwendungen
Flat Face (FF) Wéineg bannen (PN 6–PN 16) Waasser Verdeelung, Hvac
Raised Face (RF) Mëttelméisseg (PN 10–PN 100) UeleP & Gas, Chemeschen
RTJ Héichheet (PN 100–PN 160, Class 600–900) Offshore, etzunghaltgewise ginn, Damplinnen

9. Industrial Applications of Flanged Butterfly Valves

Flanged butterfly valves are villsäiteg, high-performance quarter-turn valves widely used across industrial sectors due to their reliability, compact design, and adaptability to a broad range of pressures, Temperaturen, and fluids.

Waasser a Ofwaasser Behandlung

  • D'Applikatioun: Flow isolation, Chemeschen Dosing, and backwashing systems.
  • Virdeeler: Tight shutoff, low-pressure drop, corrosion-resistant seats for treated water or chemical additives.
  • Haaptun ze: Municipal water distribution networks employ butterfly flange valves for diameters exceeding 12 Zeiteren, ensuring maintenance-friendly operation.

Ueleg a Gasindustrie

  • D'Applikatioun: Crude oil pipelines, refined products, Gasverdeelung, and offshore platforms.
  • Virdeeler: High-pressure tolerance (Ansi Klass 600 and above), bidirectional flow capability, compatibility with hydrocarbons and corrosive fluids.
  • Haaptun ze: Double or triple eccentric flanged butterfly valves control oil and gas pipelines where minimal leakage and high reliability are mandatory.

Kraaft Generation

  • D'Applikatioun: Damp, cooling water, and feedwater systems in thermal and nuclear plants.
  • Virdeeler: High-temperature tolerance, tight sealing for steam lines, rapid quarter-turn actuation for safety.
  • Haaptun ze: Triple eccentric butterfly flange valves handle superheated steam at 482°C in power plant feedwater lines.

Chemical and Petrochemical Processing

  • D'Applikatioun: Aggressive chemicals, Aafsaachen, and high-temperature processes.
  • Virdeeler: Material Villsäitegkeet (316L, Haseloching, Duplexex 2205), precise throttling, minimal friction for controlled flow.
  • Haaptun ze: Eccentric flanged butterfly valves with metal seats prevent leakage in sulfuric acid or caustic soda lines.

Heen, Beleidegung, an Klimaanlag (Hvac) and Industrial Chilled/Hot Water Systems

  • D'Applikatioun: Flow regulation in chilled water loops, cooling towers, and heating systems.
  • Virdeeler: Kascht effektiv, Liichtgewiicht, low-pressure rating suitable for non-critical applications, easy maintenance.
  • Haaptun ze: Concentric butterfly flange valves regulate building-wide chilled water distribution efficiently.

Iessen, Gedrénks, and Pharmaceutical Industries

  • D'Applikatioun: Sanitary processing lines, Geif (Botzen-an-Plaz) System.
  • Virdeeler: Electropolished stainless steel, FDA-approved seats, smooth surfaces eliminate bacterial growth zones.
  • Haaptun ze: Flanged butterfly valves with EPDM or PTFE seals ensure hygienic flow control in beverage bottling plants.

Mining and Slurry Handling

  • D'Applikatioun: Tailings pipelines, slurry transport, and water control.
  • Virdeeler: Robust construction, abrasion-resistant discs and seats, compatibility with viscous or particle-laden fluids.
  • Haaptun ze: Carbon steel double flanged butterfly valve with hardened seats handle mineral slurries without rapid wear.

10. Comparison with Other Valves

D'Feature / Valve Typ Flanged Päiperlek Gate Ventil Globus Ventil Kugelventil Plug Ventil
Operatioun Quarter-turn (90°) Linear (rising/non-rising stem) Linear (throttle/open/close) Quarter-turn (90°) Quarter-turn (90°)
Ausschaltfäegkeet Moderate to tight (Class IV–VI) Explaz vun engem exzellenten (metal-to-metal) Explaz vun engem exzellenten (metal-to-metal) Explaz vun engem exzellenten (bubbelfest) Good to excellent
Drock Bewäertung ANSI Class 150–900 (28–210 bar) ANSI Class 150–2500 ANSI Class 150–600 ANSI Class 150–900 ANSI Class 150–600
Flow Kontroll / Throttling Moderate precision; eccentric design improves Aarm; mainly on/off Explaz vun engem exzellenten; designed for throttling Limitéiert; mostly on/off Mëttelméisseg
Size Range 2–48 inches (DN50–1200) 0.5–120 inches 0.5–48 inches 0.5–48 inches 0.5–24 inches
Gewun Du Light to moderate Heavy Mëttelméisseg Light Mëttelméisseg
Ëm deenhalt Easy (flanged connection; seat replacement) Schwierscht (disassembly, heavy components) Mëttelméisseg (stem packing, seat wear) Easy (ball removal, minimal parts) Mëttelméisseg
Käschte Mëttelméisseg Héichheet Héichheet Héichheet Mëttelméisseg
Installation Space Kompakt Grouss Mëttelméisseg Kompakt Mëttelméisseg
Bescht Uwendungen D'Waassermonn, Ofwaasser, Hvac, Chemeschen, UeleP & gas pipelines High-pressure isolation Flow regulation and throttling On/off control, corrosive fluids, héich Drock Schlauen, UeleP, Gas, corrosive liquids
Bidirectional Flow Jo Jo Usually Jo Usually
Äntwert Zäit Faach ewech (Véierel-Tour) Liichte (linear travel) Liichte Faach ewech (Véierel-Tour) Faach ewech (Véierel-Tour)

11. Conclusioun

The flanged butterfly valve is a versatile and cost-efficient solution for fluid control, offering a balance of compact design, high flow capacity, and reliable sealing.

Its adaptability to different materials, Drockklassen, and actuation methods makes it indispensable across industries ranging from municipal water to petrochemicals.

For engineers and procurement teams, selecting the right FBV involves evaluating media compatibility, Betriedung Konditioune, performance metrics, and lifecycle costs.

With ongoing advances in materials and automation, flanged butterfly valves will remain a cornerstone of industrial flow control.

Custom Valves from DEZE Foundry

From water treatment plants and HVAC systems to oil & gas pipelines, chemesch Reaktoren, and power generation networks, flanged butterfly valves deliver precise flow regulation and tight shutoff under demanding conditions.

Their quarter-turn operation, compact structure, and wide material options enable customization for specific fluids, pressures, and temperatures.

Flanged Butterfly Valve Components Manufacturers
Flanged Butterfly Valve Components Manufacturers

As a professional valve foundry and supplier, we provide custom-engineered flanged butterfly valves and precision-cast components, meeting international standards (Api, Iso, ANSI) while ensuring cost-effective performance.

Whether your project requires large-diameter high-pressure service, korrosionsbeständeg Legierungen, or optimized designs for maintenance efficiency, our manufacturing expertise ensures reliable solutions tailored to your industry.

Kontaktéiert eis now!

Faqs

Can flanged butterfly valves handle high-pressure gas service?

Yes—double/triple eccentric flanged valves with metal seats (Api 609 Class VI leakage) and ANSI Class 300–900 ratings are suitable for high-pressure gas (Z.B., natural gas, umtytsgen).

Suergt d'Konformitéit mam ISO 15848-1 Class AH for low fugitive emissions.

What is the maximum size of a flanged butterfly valve?

Most manufacturers offer flanged butterfly valves up to 48 Zeiteren (1200 mm) in diameter, suitable for large water treatment plants and oil & gas pipelines.

Custom designs can reach 60 Zeiteren (1500 mm) for specialized applications.

How do I prevent flange gasket leakage?

Use gaskets compatible with fluid/temperature (Z.B., graphite for steam, PTFE for chemicals); tighten bolts in a crisscross pattern (per ASME PCC-1) to uniform torque (Z.B., 70 N·m for 6-inch ANSI 300 flangen); replace gaskets annually.

Are flanged butterfly valves suitable for sanitary service?

Yes—select 316L bodies with electropolished surfaces (Ra ≤0.8 μm), PTFE Sëtzer, and tri-clamp flanges (3-A/EHEDG compliant).

These valves are used in dairy, Gedrénks, and pharmaceutical manufacturing.

What is the difference between ANSI Class 300 an an 600 flanged valves?

Ansi Klass 300 valves handle up to 70 Barnoteg (20° C), iwwerdeems Klass 600 handles up to 140 Barnoteg (20° C).

Klasse 600 valves have thicker bodies (20–30 mm vs. 15–20 mm for Class 300) and stronger flanges, making them suitable for high-pressure applications like refineries and offshore pipelines.

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