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321 Stainless Steel WNRF Weld Neck Flange Class300, High Temperature Steam Resistant Flange with Anti-Intergranular Corrosion
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321 Stainless Steel WNRF Weld Neck Flange Class300, High Temperature Steam Resistant Flange with Anti-Intergranular Corrosion

Production Standard:CE. ISO9001. ISO45001. ISO14001. ASME.  B16.9 .GOST. TS2733E31-2022. EN 10253.  JIS B2311
Material:Stainless steel:304 .304L, 306.306L,309S,310S,316.316L, 321.F321.347.F347
Precision Dimensions: Our advanced CNC systems handle diameters from DN 15 to DN 4000 with micron-level accuracy.
Availability:
Quantity:
  • WN Flange

  • SDFL


321 Stainless Steel WNRF Weld Neck Flange Class300, High Temperature Steam Resistant Flange with Anti-Intergranular Corrosion321 Stainless Steel WNRF Weld Neck Flange Class300, High Temperature Steam Resistant Flange with Anti-Intergranular Corrosion321 Stainless Steel WNRF Weld Neck Flange Class300, High Temperature Steam Resistant Flange with Anti-Intergranular Corrosion

321 high-temperature resistant stainless steel weld neck flange is a special flange dedicated to thermal power, steam and high-temperature process pipelines, manufactured strictly per ASME B16.5 Class300 medium and high-pressure standards. Adopting titanium-stabilized alloy formula, it completely solves the problems of stainless steel carbide precipitation, intergranular corrosion and weld cracking under high-temperature conditions, serving as an irreplaceable core accessory for high-temperature pipelines compared with 304 and 316 materials. Made of genuine ASTM A182 F321 titanium-stabilized stainless steel billet and integrally closed-die forged, the product features excellent high-temperature metallographic stability without material degradation, creep deformation or stress cracking under 450℃–850℃ alternating high-temperature conditions. The thickened tapered hub buffers thermal expansion and contraction stress and thermal cycle vibration of high-temperature pipelines, avoiding sealing failure and root cracking caused by long-term high-temperature operation. After solution heat treatment, CNC precision turning and high-temperature passivation, the flat sealing surface delivers superior high-temperature oxidation resistance, suitable for long-term operation with high-temperature steam, heat conduction oil and high-temperature process gas media. The full penetration weld supports NDT inspection and maintains stable intergranular corrosion resistance without post-weld solution treatment, perfectly adapting to continuous high-temperature operation of thermal power plants, thermal pipe networks and high-temperature chemical production lines.

Core Selling Points

  1. Titanium-stabilized alloy formula with exclusive high-temperature and anti-carbide performance;

  2.  Eliminates high-temperature intergranular corrosion and ordinary flange high-temperature failure;

  3.  Class300 medium-high pressure grade with excellent high-temperature and pressure resistance;

  4. High-temperature solution treatment ensures extreme metallographic thermal stability;

  5. Thickened tapered structure buffers thermal expansion and contraction stress;

  6. No post-weld heat treatment required for efficient high-temperature construction;

  7. High-precision sealing surface resists high-temperature oxidation for long-term sealing;

  8.   Adapts to high-temperature thermal cycle working conditions with greatly extended service life.


Application Scenarios

Thermal power plant steam transmission pipe networks, industrial park thermal pipelines, high-temperature heat conduction oil process pipelines, chemical high-temperature reaction equipment connections, high-temperature flue gas auxiliary pipelines, pressure vessel high-temperature interfaces, printing and dyeing high-temperature steam pipelines, new energy high-temperature process pipelines.



Why Choose Us

Specialized in 321 titanium-stabilized high-temperature special flange production, we strictly control titanium element content and solution heat treatment process to avoid high-temperature material instability. All products adopt genuine F321 billets with batch-by-batch high-temperature performance test and PMI verification to ensure qualified high-temperature and intergranular corrosion resistance. With mature high-temperature flange production technology, we provide complete heat treatment reports, MTR certificates and NDT data, stably serving thermal power, electric power and high-temperature chemical engineering projects with field-verified quality.


Customization Capability

Custom enhanced heat treatment for ultra-high temperature working conditions; custom thickened flanges for high temperature and pressure; non-standard high-temperature large-diameter flange processing; high-temperature oxidation resistance surface enhancement; exclusive traceability marking for thermal engineering; third-party high-temperature performance testing; custom non-standard high-temperature pressure grades.


FAQ

1:How long is the custom lead time for stainless steel flanges in Wenzhou?

— 8 to 10 working days

2:What is the fastest delivery time?

— 3 working days

3:Do you support non-standard custom flanges?

— Yes, we do.

4:Can you process special sizes?

— Yes. Max processing size: 4000 mm, Min processing size: 30 mm.

5:Do you have stainless steel flanges of standard sizes in stock?

— Yes.

6:Can we customize flanges based on customer drawings or samples?

— Yes.

7:Will material test certificates and inspection reports be provided for the purchased flanges?

— Yes, they will.

8:Is there a quality warranty for the flange products?

— Yes.

9:How to handle quality defects if they occur?

— Product return and exchange available.

10: Why must 321 flanges be used for high-temperature steam pipelines?
321 contains titanium stabilizing elements to inhibit high-temperature carbonization and intergranular corrosion. Ordinary 304/316 flanges are prone to cracking and leakage under long-term high-temperature operation and cannot meet high-temperature safety requirements.


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