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DIN EN10216-5 1.4404 D2T1 Seamless Tube for Heat Exchangers in Fossil Fuel Plant

DIN EN10216-5 1.4404 D2T1 Seamless Tube for Heat Exchangers in Fossil Fuel Plant

Brand Name: Yuhong
Model Number: DIN EN10216-5 1.4404 D2T1 Seamless Tube
MOQ: 200~500 KGS
Price: Negotiable
Payment Terms: TT, LC
Supply Ability: According to Clients' requirements
Detail Information
Place of Origin:
China
Certification:
ABS, BV, DNV, CCS, LR
Product Name:
Stainless Steel Seamless Tube
Tube Specification:
DIN EN10216-5
Tube Material:
1.4404/TP316l
Tube's OD:
Customsized
Tube's Wall Thickness Type:
Minimum WT
Tube's End:
Plain End
Tube's Length:
Depend On Customer
Tube Surface:
Annealed&Pickled, Polished, Bright Annealed...
Inspection:
Eddy Current Test, Hydro Test, Size Inspection, PMI...
Application Industries:
Superheaters And Heat Exchangers; Pipelines And Equipment; Components In Refineries And Offshore Platforms; Exhaust Systems, Intercoolers, And Turbocharger Housings
Packaging Details:
Ply-wooden Cases with Plastic Caps on Tube's Both Ends
Supply Ability:
According to Clients' requirements
Highlight:

1.4404 stainless steel heat exchanger tube

,

DIN EN10216-5 seamless tube

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fossil fuel plant heat exchanger tube

Product Description

DIN EN10216-5 1.4404 D2T1 Seamless Tube for Heat Exchangers in Fossil Fuel Plant

 

DIN EN10216-5 D2T1 1.4404 seamless tube is a high-quality, corrosion-resistant steel tube designed to handle pressure and high temperatures. It is a high-integrity, low-carbon austenitic stainless steel tube. It is seamless for strength, solution annealed for optimal corrosion resistance and formability, and eddy current tested to ensure it is free from defects.

 

Here are some detailed breakdowns:

Material: DIN EN10216-5 1.4404

1. Chemical Composition (in weight %)

The composition is specified by the EN 10216-5 standard for grade 1.4404. The values are typically maximum percentages unless indicated as a range.

Element Minimum (%) Maximum (%) Notes
Carbon (C) - 0.030 The "L" (low-carbon) grade is crucial for weldability.
Silicon (Si) - 1.00  
Manganese (Mn) - 2.00  
Phosphorus (P) - 0.045  
Sulfur (S) - 0.015  
Chromium (Cr) 16.00 18.00 Provides the primary corrosion resistance.
Molybdenum (Mo) 2.00 2.50 Key for resistance to pitting and crevice corrosion.
Nickel (Ni) 10.00 13.00 Stabilizes the austenitic structure.
Nitrogen (N) - 0.11  

Iron (Fe) makes up the balance.

 

2. Mechanical Properties (for tubes in the D2 condition - Solution Annealed)

The mechanical properties are specified for the finished product at room temperature.

Property Value Unit Notes / Test Condition
Proof Strength (Rp0.2) ≥ 180 MPa (N/mm²) This is the stress at which a small amount of permanent deformation (0.2%) occurs. Also known as Yield Strength.
Tensile Strength (Rm) 450 - 650 MPa (N/mm²) The maximum stress the material can withstand while being stretched.
Elongation (A) ≥ 40 % Measured on a gauge length of 5.65√S₀ (proportional specimen). This indicates ductility.
Hardness ≤ 215 HBW (Brinell) Maximum hardness value.

Important Notes:

  • Delivery Condition (D2T1): These mechanical properties are guaranteed for tubes delivered in the D2 (Solution Annealed) condition, which is the softest and most corrosion-resistant state.
  • Testing: The properties are verified by the manufacturer through destructive testing on samples from finished tubes, as required by the EN 10216-5 standard.
  • High-Temperature Properties: For design purposes involving elevated temperatures (e.g., for power plant boilers), the standard provides additional properties like creep strength and elevated temperature yield strength, which are different from the room-temperature values listed above.

3. Key Properties of DIN EN10216-5 1.4404:

  • Excellent Corrosion Resistance: Good general resistance, with enhanced resistance to chlorides and acids due to the addition of Molybdenum (Mo).
  • High-Temperature Strength: Maintains good mechanical strength and oxidation resistance at elevated temperatures (typically up to around 400-450°C continuously, and higher for short periods).
  • Good Formability and Weldability.

 

Summary of Applications and Why This Tube is Chosen

Application Sector Specific Examples Why DIN EN10216-5 D2T1 1.4404 is Used
Power Generation Superheater tubes, reheater tubes, boiler tubes, heat exchanger tubes. Withstands high pressure and temperatures of steam; resistant to oxidation and scaling; the seamless nature ensures integrity under extreme cyclic stresses.
Petrochemical & Chemical Process piping, reactor tubes, heat exchanger tubes, transfer lines for corrosive chemicals. Excellent resistance to a wide range of acids, alkalis, and chlorides; the "L" grade (1.4404) is essential for welded structures to prevent corrosion in the heat-affected zone.
Oil & Gas Downhole tubing, instrumentation lines, umbilicals, components in sour gas environments (with limitations). Resists corrosion from saline environments and certain acidic conditions (H2S, CO2). The stringent NDT (T1) ensures reliability in critical and remote applications.
Automotive (High-Performance) Turbocharger housings, intercooler pipes, high-performance exhaust systems. Resists high-temperature exhaust gases and corrosion from condensation; offers a good strength-to-weight ratio.
Food & Pharmaceutical Process lines for sensitive products, sanitary tubing. Excellent corrosion resistance ensures product purity; smooth seamless interior is easy to clean and sterilize (often with an additional polished finish).
Marine & Offshore Heat exchangers for seawater cooling, piping systems on ships and platforms. The Molybdenum content provides superior resistance to pitting and crevice corrosion in chloride-rich seawater environments.

 

DIN EN10216-5 1.4404 D2T1 Seamless Tube for Heat Exchangers in Fossil Fuel Plant 0