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Stainless Steel ASME SA213 TP310S Seamless Tubes for Fired Heater

Stainless Steel ASME SA213 TP310S Seamless Tubes for Fired Heater

Brand Name: Yuhong
Model Number: ASME SA213 TP310S
MOQ: 1TON
Price: Negotiable
Packaging Details: Ply-wooden Case
Payment Terms: TT, LC
Detail Information
Place of Origin:
China
Certification:
ABS, BV, DNV, CCS, LR
Product:
Heat Exchanger Tubes
Heat Exchanger Tubes Standard:
Stainless Steel ASME SA213
Heat Exchanger Tubes Material:
TP310S
Heat Exchanger Tubes Size And Length:
According To Clients' Need
Heat Exchanger Tubes Use:
For Power Plant, Oil&Gas Projects,etc.
Heat Exchanger Tubes Packing:
Ply-wooden Case
Supply Ability:
1000 tons/month
Highlight:

ASME SA213 TP310S seamless tubes

,

stainless steel fired heater tubes

,

heat exchanger tubes with warranty

Product Description

Stainless Steel ASME SA213s TP310S Seamless Tubes for Fired Heater

 

ASME SA213/ASTM A213 This specification covers seamless ferritic and austenitic steel boiler, superheater, and heat-exchanger tubes.

 

SS ASME SA213 TP310S is a premium austenitic alloy specifically selected for the most severe high-temperature sections of fired heaters. Its primary role is to resist oxidation (scaling) and carburization while maintaining strength at temperatures where standard stainless steels like 304H or 321H would fail.

 

Chemical Composition (%) max
Grade UNS C Mn P S Si Cr Ni
TP310S S34700 0.08 2.00 0.045 0.030 1.00 24.0-26.0 19.0-22.0

 

Mechanical Properties
Tensile Strength, min Yield Strength, min. Elongation in 2 in. or 50mm, min. Brinell/Vickers;Rockwell
75ksi [ 515MPa ] 30ksi [205MPa ] 35% 192HBW/200HV ;90HRB

 

Below are advantages of material TP310S:

 

1.Exceptional Oxidation Resistance: this is its standout feature, the high Chromium content (24-26%) forms a stable, self-healing chromium oxide (Cr₂O₃) layer on the surface. This layer protects the base metal from scaling at temperatures up to 1150°C (2100°F) in continuous service.
2.Excellent Resistance to Carburization: in heaters processing hydrocarbons, carbon from the process stream can diffuse into the tube metal at high temperatures. TP310's high nickel and chromium content creates a stable microstructure that is highly resistant to this carbon absorption, which can cause embrittlement and failure.

3.High-Temperature Strength: TP310 retains its mechanical strength and resists creep (slow deformation under stress and temperature) better than 304/304H or 316/316H. This prevents tube sagging, bulging, and premature rupture under design pressure and temperature.

 

4.Good Sulfidation Resistance: while not as resistant as some specialized alloys, it performs better than lower-chromium steels in environments with sulfur compounds from fuel or process streams.

 

Common Applications in Fired Heater

 

Radiant Section Tubes: The hottest section with direct flame radiation.

Bridgewall Piping: The area separating the radiant and convection sections.
Inlet & Outlet Header Piping: For sections exposed to the highest fluid temperatures.
Shock Coils: The first few rows of the convection section where flue gas temperatures are still very high.

 

Stainless Steel ASME SA213 TP310S Seamless Tubes for Fired Heater 0

Ratings & Review

Overall Rating

3.7
Based on 50 reviews for this supplier

Rating Snapshot

The following is the distribution of all ratings
5 stars
0%
4 stars
67%
3 stars
33%
2 stars
0%
1 stars
0%

All Reviews

K
K*w
Malaysia Feb 21.2026
It's hot and humid here, and our old wrap-on tubes used to rust like crazy. Switched to your extruded ones—the aluminum fin covers the steel pipe perfectly, so corrosion shouldn't be an issue.
M
Mansour
Egypt Jan 10.2026
The 13Cr pins add some cost, but for sour service in furnaces, it's worth it. Already seeing longer run times between turnarounds compared to before.
I
Ivan Volkov
Russian Federation Nov 11.2025
As an engineer in Siberia, I tested these fin tubes in extreme cold (-30°C). The ASTM A213 T11 steel performed well with no thermal cracks, and cooling efficiency met expectations (88%). That said, the Russian-language documentation had translation errors in technical terms, causing minor confusion during installation.