High-temperature, high-pressure steam service flanges. ASTM A182 F91/F92 for ultra-supercritical plants. ASME B16.5/B16.47, EN 1092-1, PED 2014/68/EU certified. Thermal, nuclear, and renewable energy sectors.
Power generation facilities — from coal-fired ultra-supercritical (USC) boilers to nuclear reactors and geothermal plants — operate at the extreme limits of engineering materials. Flanges must maintain leak-tight integrity over decades of continuous thermal cycling, vibration, and high-stress operation.
JIAJI FORGING supplies forged flanges to EPC contractors and plant operators for thermal power stations, combined-cycle gas turbine (CCGT) plants, nuclear power auxiliary systems, and renewable energy infrastructure. Our materials portfolio covers the full spectrum of power generation applications from sub-critical to ultra-supercritical steam conditions.
The shift to ultra-supercritical (USC) and advanced ultra-supercritical (A-USC) steam cycles — operating at 300+ bar and 600–700°C — demands Grade 91 (9Cr-1Mo-V) and Grade 92 (9Cr-1.8W-Mo-VNb) creep-resistant steels that JIAJI has mastered since 2010.
Each power generation technology imposes unique material and performance requirements on flange components
Subcritical (<220 bar / 540°C) and Supercritical (220–280 bar / 565°C)
Conventional coal, gas, and oil-fired boilers operating below the critical point of water (374°C / 221 bar). The majority of existing global installed capacity falls in this range, driving demand for replacement flanges and maintenance materials.
280–320 bar / 600–620°C main steam; 580–600°C reheat
USC and A-USC plants achieve thermal efficiencies above 45% (vs. ~38% for subcritical) by operating at extreme steam conditions. Grade 91 and Grade 92 Cr-Mo steels were specifically developed for this application and require strict control of post-weld heat treatment (PWHT).
Secondary Circuit, Auxiliary Cooling, Waste Treatment
While JIAJI does not supply primary circuit nuclear-class flanges, we supply the secondary steam circuit and auxiliary systems of nuclear plants to ASME Section III Class 2/3 or RCC-M standards. These include feedwater, extraction steam, and turbine-side piping.
HRSG, Steam Turbine Island, Duct Firing
CCGT plants use a heat recovery steam generator (HRSG) to recover heat from gas turbine exhaust (typically 550–600°C). The HRSG operates at lower temperatures than conventional boilers, but cycling duty (start/stop) creates fatigue requirements not common in baseload plants.
Flash Steam, Binary Cycle, Dry Steam Plants
Geothermal brines are highly corrosive — typically containing high concentrations of chlorides, H₂S, CO₂, and silica at temperatures of 150–350°C. Material selection is more demanding than conventional steam service.
Penstock, Turbine Inlet, Spiral Case, Draft Tube
Large hydroelectric and pumped storage plants handle massive water volumes at high head pressures. Water hammer events (sudden valve closure) create pressure surges far exceeding normal operating pressure — flange fatigue rating is critical.
Power generation imposes unique creep and fatigue requirements — material selection must consider long-term microstructural stability, not just room-temperature properties
ASTM A182 F91 | EN X10CrMoVNb9-1 | 1.4903
Strict chemistry control required: C, N, V, Nb — deviations cause premature creep failure
ASTM A182 F92 | EN X10CrWMoVNb9-2 | 1.4901
Primarily used in superheater headers and main steam in the most advanced new-build plants
ASTM A182 F22 | EN 10CrMo9-10 | 1.7380
F22 Class 3 (vanadium modified) for higher creep requirement
ASTM A182 F316H / F347H | EN 1.4436H / 1.4550
Used in boiler outlet headers, steam generator nozzles
ASTM A182 F11 | EN 13CrMo4-5 | 1.7335
Class 2 (lower carbon, single normalized) for most flanges; Class 3 for high-temp creep
ASTM A350 LF2 / LF3 | EN P275NL1 / P215NL
Hydroelectric penstock flanges and pumped storage inlet valves
| Plant Type | Main Steam Pressure | Main Steam Temp | Recommended Flange Material |
|---|---|---|---|
| Subcritical | < 221 bar | 540°C | F11 (1¼Cr-½Mo) / F22 (2¼Cr-1Mo) |
| Supercritical | 221–280 bar | 565°C / 565°C (RH) | F22 main steam; F316H for hot RH |
| Ultra-Supercritical (USC) | 280–300 bar | 600°C / 600°C (RH) | F91 (Grade 91) main steam & hot RH |
| Adv. Ultra-Supercritical (A-USC) | 300–350 bar | 620–700°C | F92 (Grade 92) / Inconel 617 alloy |
| CCGT (HRSG) | 60–170 bar (HP) | 560–600°C | F91 HP headers; F22 / F11 IP/LP |
| Geothermal (Flash Steam) | 3–40 bar (brine) | 150–300°C | F316L / F51 duplex (H₂S + Cl⁻ brine) |
Power plant flanges must comply with boiler and pressure vessel codes, piping design codes, and material standards that govern the entire plant lifecycle
Power Boilers. Applicable to steam generators, superheaters, reheaters, and economizers. Flanged nozzles must comply with Section I PG-39.
Power Piping Code. Governs main steam, feedwater, extraction steam, and auxiliary piping in power plants. Material allowable stresses defined per Appendix A.
Pipe Flanges. B16.5 for NPS ½"–24", B16.47 for NPS 26"–60". Pressure-temperature ratings for Classes 150–2500 in all ASTM material groups.
European flange standard (EN 1092-1) and industrial piping code (EN 13480) applicable to European power plant projects and PED compliance.
Quality Management System. Documented and auditable process control from raw material receipt through final inspection and packing.
EU Pressure Equipment Directive. CE marking for European power plant projects. Module D1/H/H1. Third-party notified body inspection available.
Material Test Certificates. Independent (3.2) certification by notified body for critical power plant components. Chemical composition and mechanical test reports.
Forged or Rolled Alloy and Stainless Steel Pipe Flanges. The primary ASTM specification covering all forged flange grades for power generation service.
Grade 91 (ASTM A182 F91) is a 9%Cr-1%Mo steel modified with vanadium (V), niobium (Nb), and nitrogen (N) to achieve exceptional creep strength. It was developed specifically for steam service above 540°C where conventional 2¼Cr-1Mo steel exhausts its allowable stress.
Critical properties:
JIAJI supplies F91 flanges with full chemistry traceability, hardness test reports, and PWHT simulation certificates on request.
Both are ASME piping codes but cover different systems in a power plant:
Key difference: B31.1 requires stress-relieving (PWHT) for high-alloy steels that B31.3 may allow to omit. B31.1 also mandates full radiography for most Class I joints, while B31.3 uses a normal/category D fluid service classification system. Our flanges are supplied to either code on request.
Creep is time-dependent plastic deformation that occurs when materials are subjected to sustained stress at elevated temperatures (typically above 0.4× the melting temperature in Kelvin). For power plant flanges:
JIAJI's F91 and F92 flanges are supplied with chemistry reports showing compliance to the "enhanced" specification per EPRI P91 Guidelines, minimizing long-term creep risk.
Main steam (MS) and hot reheat (HRH) are the highest-energy piping systems in a power plant. Standard flange specifications:
Yes. Geothermal brine is one of the most corrosive natural fluids encountered in power generation. Our approach to geothermal flange supply:
Lead time for Grade 91 and Grade 92 flanges depends on size, pressure class, and quantity:
For planned outages or turnaround shutdowns with fixed schedules, we recommend placing orders 6+ months in advance for critical F91 flanges. Emergency stock of common sizes (NPS 2"–10") may be available — contact our export team with your requirement list.
The most commonly specified flange types for thermal, nuclear, and renewable energy power plants
Main steam, hot reheat, and feedwater — the workhorse of power plant piping
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Boiler drum nozzles, header branch connections, high-temperature furnace outlets
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Manway closures, bypass blanks, maintenance isolation on boilers and turbine piping
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Positive isolation for planned outage work, unit isolation during partial-load operation
View DetailsInclude steam conditions (pressure / temperature), material specification (F91, F22, etc.), design code (B31.1 / B16.5 class), and quantity. We respond within 24 hours.
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