Double Flange Dismantling Joints (B2F type)

DEVEL B2F double flange dismantling joint absorbs axial movement and locks pressure thrust for safe valve/pump maintenance. GB/T 12465-2017, DN65–DN3600.

  • Axial travel ±25–90 mm — absorbs thermal expansion and pipe settlement
  • Limit rods restrain pressure thrust — protects pump nozzles and valve bodies
  • Dismantling gap up to 90 mm — remove valves and meters without pipe cutting
  • Multi-material — carbon steel, WCB, ductile iron, 304/316L stainless
  • 1.5× strength test, 4× burst test — certified zero leakage

DEVEL Double Flange Dismantling Joints (B2F type) are steel sleeve expansion joints with limit rods, designed to absorb axial displacement and contain pressure thrust in flanged piping systems. Unlike flexible rubber joints that absorb vibration, the B2F is a structural mechanical device: a telescoping sleeve sealed by a gland-packed ring, locked against over-travel by external limit rods. Manufactured to GB/T 12465-2017, available DN65–DN3600 with PN6/PN10 rating, in carbon steel, WCB, ductile iron, 304 and 316L.

What Is a B2F Dismantling Joint and Why Engineers Specify It

DEVEL Double Flange Dismantling Joints — also referred to as B2F sleeve expansion joints, limit rod expansion joints, or simply dismantling joints — are rigid steel pipe connectors engineered to provide a limited amount of axial movement while simultaneously restraining pressure thrust loads generated by internal pipeline pressure.

Unlike flexible rubber joints that absorb vibration and multi-plane movement, a B2F dismantling joint is a structural mechanical device: it uses a telescoping sleeve (limit expansion pipe) running inside a main body, sealed by a gland-packed compression ring, and locked against over-travel by external limit rods. This architecture allows the joint to extend or retract within a designed range (±δ) for installation, thermal expansion, and dismantling — while the limit rods mechanically transfer pressure thrust to the pipeline anchors instead of loading the adjacent equipment flanges.

As a factory-direct manufacturer of pipe expansion joints and fluid control solutions, DEVEL supplies B2F dismantling joints in full compliance with GB/T 12465-2017, covering DN65 to DN3600 (PN6) and DN65 to DN3000 (PN10). Common applications include municipal water and wastewater treatment, power plant cooling water, desalination, oil terminals, and any flanged piping system where a valve, pump, or removable spool piece must be isolated for maintenance without cutting the pipe.

Key Features of the Double Flange Dismantling Joint (B2F)

  1. Axial Displacement Compensation with Positive Limit Stops
    The telescoping sleeve design provides a defined axial travel of ±δ (typically 25 mm at DN65–DN150, scaling up to 90 mm at DN3000), absorbing thermal expansion, pipe settlement, and installation tolerances. The external limit rods mechanically prevent over-travel — protecting the sealing element from extrusion, the gland from deformation, and the adjacent flanges from overload.
  2. Pressure Thrust Restraint Without Loading the Equipment Flange
    In any pressurized piping system, a free-moving expansion joint transmits the full hydraulic end-load (pressure × cross-sectional area) to the nearest anchor. At PN10 and DN600, that load exceeds 280 kN — enough to damage pump nozzles, valve bodies, or thin-wall equipment. The B2F’s limit rods carry this thrust internally, allowing the joint to be installed directly against a valve or pump without requiring independent anchor blocks on both sides.
  3. Dismantling Function for Valve and Equipment Maintenance
    By retracting the sleeve to its full compression limit (−δ), the B2F creates a clearance gap of 25–90 mm between the two flanged ends. This allows a technician to remove a valve, flow meter, strainer, or pump without cutting or re-welding the pipeline — a critical maintenance advantage in water treatment plants, district heating networks, and refinery process lines.
  4. Multi-Material Construction for Aggressive and Potable Service
    The body, gland, and telescoping sleeve are available in carbon steel (Q235 / 20) for general service, cast steel (WCB) for higher pressure, ductile iron (QT400-15 / QT450-10) for buried water, and stainless steel (304 / 316L) for seawater, chemical, and food-grade applications. Sealing elements are matched to the medium: NBR for oil, EPDM for hot water and steam, PTFE-encapsulated for chemical service.
  5. Certified Pressure Integrity — 1.5× Strength Test and 4× Burst Test
    Every B2F joint undergoes a hydrostatic strength test at 1.5 times rated working pressure for 5 minutes (zero leakage, zero plastic deformation). A batch sample is further subjected to a burst test at 4 times rated pressure for 5 minutes. Length tolerances ±5 mm, flange perpendicularity 1% DN (≤4 mm), coaxiality 1% DN (≤5 mm) — in full compliance with GB/T 12465-2017 §5.4–5.6.

Technical Parameters & Material Specifications

Technical PropertySpecification
Product NameDouble Flange Sleeve Limited Expansion Joint (B2F)
Standard ComplianceGB/T 12465-2017 (Pipe Compensation Joints)
Nominal Diameter (DN)DN65 – DN3600 (PN6) / DN65 – DN3000 (PN10)
Working PressurePN6 / PN10
Operating Temperature≤ 170 °C (continuous)
Axial Movement (±δ)25 mm (DN65–150) up to 90 mm (DN≥2800)
Body / Gland / Sleeve MaterialQ235, 20 steel, WCB, QT400-15, QT450-10, 06Cr19Ni10 (304), 022Cr17Ni12Mo2 (316L)
Seal Ring MaterialNBR, EPDM, Silicone, PTFE-encapsulated (media dependent)
Limit Rod / Stud MaterialQ235A, 35 steel, 45 steel, 304 / 316L stainless
Surface CoatingHot-dip galvanized (standard), epoxy, plastic coated, nickel plated
Flange DrillingGB, ASME B16.5, DIN, BS EN 1092, JIS — custom available
Strength Test1.5 × rated pressure, 5 min hold, zero leakage
Burst Test4 × rated pressure, 5 min hold, zero visible cracking
Safety Factor≥ 4:1 (burst vs. working pressure)

Material & Coating Selection Guide

The B2F is a configurable product. Select body material, seal material, and surface coating based on the service medium and installation environment:

Body Material Selection

CodeMaterialBest ForLimitations
GCarbon steel (Q235)General industrial water, HVAC, compressed airNot for buried service without coating
ZGCast steel WCBHigher pressure, steam, hot oilHigher cost; heavier
QDuctile iron QT400-15Buried municipal water, sewage, potable waterNot for high-temperature steam
N06Cr19Ni10 (304 SS)Seawater, food, pharmaceutical, mild chemicalsPitting risk in stagnant chloride service
N1022Cr17Ni12Mo2 (316L SS)Chemical, marine, desalination, high-chloridePremium cost

Seal Ring Material Selection

Seal MaterialTemperature RangeBest ForAvoid For
NBR−15 °C to +100 °COils, fuels, compressed air, waterOzone, strong oxidizers, UV
EPDM−20 °C to +150 °CHot water, steam, cooling water, potable waterPetroleum-based fluids
Silicone−40 °C to +200 °CHigh-temperature air, food and pharmaceuticalHigh pressure, petroleum
PTFE-encapsulated−30 °C to +180 °CStrong acids, alkalis, solvents, aggressive chemicalsLow-pressure-only; costly

Surface Coating Selection

CodeCoatingTypical Application
ZHot-dip galvanizedStandard for above-ground and sheltered outdoor service
SPlastic coated (PE/epoxy)Buried pipelines, aggressive soil, water and sewage
NNickel platedFood, pharmaceutical, decorative / clean-in-place service
HEpoxy coatedPotable water, chemical plants, marine environments

Not sure which material fits your application? Our engineers can recommend the right body, seal, and coating combination based on your media, temperature, and pressure. Contact us for technical support →

B2F Dimensional Data (PN6)

DN (mm)InchL (mm)±δ (mm)D (mm)K (mm)d (mm)n–d₀Mass (kg)
652.5300251601301104–M1213.3
803310251901501254–M1617.5
1004320252101701454–M1622.5
1255330252402001758–M1629.0
1506340252652252008–M1636.5
2008380303202802558–M1656.0
250104203037533531012–M1678.0
300124503544039536212–M20105
350144803549044541212–M20135
400165104054049546216–M20168
450185404059555051816–M20205
500205704064560056820–M20245
600246204575570567020–M24350
700286704586081077524–M24460
800327205097592088024–M24590
90036770501075102098524–M27740
1000408205511751120108528–M27910
1200489206013751320128532–M271320
14005610206515751520148536–M271820

L = face-to-face length at neutral position; ±δ = allowable axial extension/compression; D = flange OD; K = bolt circle; d = sealing face; n–d₀ = bolt count × size. DN1600–DN3600 and PN10 dimensional data available on request. Contact us →

B2F vs. BF vs. BY — Choosing the Right Type

TypeEnd ConnectionTypical Application
B2FFlanged both endsPipeline connection to valves, pumps, flanged equipment — most versatile
BFOne flange + one weld/bell endConnection between flanged equipment and steel/PE/ductile iron pipe
BYBell-and-spigot both endsConnection between two lengths of ductile iron or PE pipe in buried water networks

If your project needs a rigid, compact connection that transmits thrust without axial movement, see our C2F Force-Transmitting Dismantling Joint — 30–40% shorter than the B2F, ideal for tight spaces.

Industries and Applications

  • Municipal Water & Wastewater: Treatment plant pump stations, raw water intake, clearwell connections, and distribution main isolation points where valves must be removable for service.
  • Power Generation: Condenser cooling water, auxiliary cooling loops, and FGD slurry lines — limit rod design restrains the large pressure thrusts generated by high-flow cooling systems.
  • Desalination & Marine: Seawater intake and outfall, ballast systems, and ship-to-shore piping — 316L stainless steel construction with EPDM or PTFE seals handles chloride service reliably.
  • Oil & Gas Terminals: Tank farm manifolds, pipeline scraper trap connections, and metering skid isolation — WCB or carbon steel with hot-dip galvanized coating for long-term outdoor service.
  • District Heating & HVAC: Hot water distribution, boiler feed lines, and heat exchanger connections — EPDM seals handle continuous operation up to 150 °C.
  • Industrial Process Piping: Chemical plants, pulp and paper, food and beverage — material combinations available for nearly any neutral or aggressive medium up to 170 °C.

How to Specify a B2F Dismantling Joint — Marking System

GB/T 12465-2017 defines a structured marking system. A complete B2F order code contains all critical parameters:

Example: B2F-6900-G-Z — B2F type, PN6, DN900, carbon steel body (G), hot-dip galvanized (Z).

When requesting a quotation, please provide:

  1. Nominal diameter (DN) and pressure rating (PN6 or PN10)
  2. Body material code (G, 20, ZG, Q, Q1, N, N1)
  3. Seal material (NBR, EPDM, Silicone, PTFE)
  4. Surface coating (Z, S, N, H)
  5. Flange drilling standard (GB, ASME, DIN, JIS, BS EN 1092)
  6. Face-to-face length if non-standard (default per table above)

Installation and Commissioning Notes

  1. Pipe Preparation: Clean both mating flange faces. Verify flange alignment within the joint’s rated angular tolerance (≤1° offset). The B2F is not designed to correct gross misalignment.
  2. Neutral Position Installation: Install the joint at its neutral (mid-stroke) position. Do not pre-compress or pre-extend the sleeve during installation.
  3. Limit Rod Adjustment: After flange bolting, adjust the limit rod nuts to leave a small gap (typically 2–3 mm) between the rod nut and the gland bracket.
  4. Pressure Test: Hydrostatic test the system at 1.5 × working pressure before commissioning. Inspect gland bolts and limit rod nuts for tightness after the test.
  5. Dismantling for Maintenance: To remove downstream equipment, loosen the limit rod nuts on one side and compress the sleeve to its −δ limit to create clearance.

Frequently Asked Questions

What is the difference between a dismantling joint and a rubber expansion joint?

A rubber expansion joint uses an elastomeric arch to absorb vibration, noise, and multi-plane movement. A dismantling joint (B2F) is a rigid steel mechanical device with a telescoping sleeve that provides only axial movement within a limited range, while restraining pressure thrust through external limit rods.

Can a B2F dismantling joint replace an anchor block?

Partially. The B2F’s limit rods transfer pressure thrust across the joint itself, eliminating the need for anchor blocks immediately adjacent to the joint. However, the thrust is still transmitted to the pipeline — adequate upstream and downstream anchoring is still required per the project’s piping stress analysis.

What is the maximum temperature for a B2F joint?

The standard B2F is rated for continuous service up to 170 °C with appropriate seal selection (EPDM or PTFE-encapsulated). For higher temperatures, a metallic bellows expansion joint is recommended.

Do you offer B2F joints with ASME or DIN flanges?

Yes. While the body is manufactured to GB/T 12465-2017, the flange drilling can be supplied to ASME B16.5 (Class 150 / 300), DIN, BS EN 1092, or JIS standards to match your existing piping.

How long is the delivery time?

Standard sizes (DN65–DN600, PN6/PN10, carbon steel, hot-dip galvanized) typically ship within 7–10 working days. Larger sizes, stainless steel construction, or custom flange drilling require 3–6 weeks.

Looking for a reliable dismantling joint manufacturer?

Contact DEVEL for factory-direct pricing on B2F double flange dismantling joints, DN65–DN3600, PN6/PN10. Carbon steel, WCB, ductile iron, and stainless steel constructions available. Request Factory Quote →

Tags: Double Flange Dismantling Joint, B2F Expansion Joint, Sleeve Expansion Joint, Limit Rod Joint, GB/T 12465-2017, Dismantling Joint, Pipe Compensation Joint, PN6 / PN10, DN65 – DN3600, Carbon Steel Expansion Joint, Stainless Steel Dismantling Joint, Municipal Water, Power Plant Cooling, Desalination, Valve Isolation Joint