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ASTM A210 Grade A1 Boiler Tube

SA210A1 is a Seamless medium carbon steel Boiler Tube used in super heater, heat exchangers, condensers, marine application, refineries, paper pulping, petrochemical applications, pressure vessels, and general engineering applications.

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Description

SA210A1 is a Seamless medium carbon steel Boiler Tube used in super heater, heat exchangers, condensers, marine application, refineries, paper pulping, petrochemical applications, pressure vessels, and general engineering applications.

ASTM A210/ASME SA210 standard specification for seamless medium-carbon steel boiler and superheater tubes. Seamless medium carbon steel pipe for boiler tube and boiler flue pipe, including a minimum wall thickness of the security side, the dome and the support tube and superheater tubes. This specification covers seamless medium-carbon steel boiler and superheater tubes. The specification also covers minimum-wall-thickness, tubing sizes, boiler flues including safe ends, arch and stay tubes. The specification provides tensile and hardness properties but only applicable to certain size limitations. Material manufacturing shall be killed. Tubes shall be made by seamless process, marked as either hot-finished or cold-finished. Surface condition shall be specifically stated in the order. Chemical composition shall conform to the requirements. Elemental composition other than listed here shall not be permitted. Tension test, flattening test, flaring test, hardness test, hydrostatic or nondestructive electric test shall be made on specimens. Superheater tubes shall be formed without defects and shall withstand expansion, beading, forging, welding, and bending.

Chemical composition(%) of ASTM A210

GradeC(Max)MnSi(Min)P(Max)S(Max)
A10.27Max.0.930.10.0350.035
C0.350.29~1.060.10.0350.035

Mechanical properties of ASTM A210

GradeTensile Strength(Mpa)Yield Strength(Mpa)Elongation (%)
A1≥ 415≥ 255≥ 30
C≥ 485≥ 275≥ 30
The properties of ASTM A210 steel include two common variations. This page shows summary ranges across both of them. For more specific values, follow the links immediately below. The graph bars on the material properties cards further below compare ASTM A210 steel to: wrought carbon or non-alloy steels (top), all iron alloys (middle), and the entire database (bottom). A full bar means this is the highest value in the relevant set. A half-full bar means it's 50% of the highest, and so on.

ASTM A210 Grade A-1 Medium-Carbon Steel

ASTM A210 grade A-1 is a type of ASTM A210 steel. The graph bars on the material properties cards below compare ASTM A210 grade A-1 to: wrought carbon or non-alloy steels (top), all iron alloys (middle), and the entire database (bottom). A full bar means this is the highest value in the relevant set. A half-full bar means it’s 50% of the highest, and so on.

ASTM A210 Grade C Medium-Carbon Steel

ASTM A210 grade C is a type of ASTM A210 steel. The graph bars on the material properties cards below compare ASTM A210 grade C to: wrought carbon or non-alloy steels (top), all iron alloys (middle), and the entire database (bottom). A full bar means this is the highest value in the relevant set. A half-full bar means it’s 50% of the highest, and so on.

Material Comparison Tables (ASTM ℃KS, JIS, DIN, BS, NBN, NF, UNI)

A 210 - Seamless Medium-Carbon Steel Boiler and Superheater Tubea
ASTMSTANDARDUNS NO.KOREA/JAPANESGERMANBRITISHBELGIANFRENCHITALIAN
KS/JIS SymbolKS/JIS NumbeRemarksDIN TypeDIN NumberMateriral NumberRemarksB.S NumberB.S GradeRemarksNBN TypeNBN GradeRemarksAFNOR TypeNF NumberRamarksUNI TypeUNI NumberRamarks
Grade A-1K02707STHA 410 / STB 410D3563 / G3461(30)(24)St 45.8171751.04053059320-30D45837-13TU A42-CA49-213(6)(13)C 185462-38

The permanent identifier A 210/A 210M is used to identify this tubing; the numeral that follows the identification denotes the technology adoption year or, in the event of modification, the date of the most recent revision. Steel ASME SA 210, carbon Boiler tubes, and ventilation systems, comprising safety extremities, arch & stay pipes, and superheater pipes, are all covered by seamless piping. It also includes minimal wall width, seamless medium-carbon steel, and boiler pipes.

The standards of ASTM A 520 shall augment and override those of this standard if ASME SA 210 Seamless Carbon Steel Boiler Tubes need to be utilized in installations compliant with ISO Guidelines for Boiler Installation.astm a210 tubing property

What are the grades of ASME sa210 carbon steel seamless tubing?

There are two grades of ASME SA 210 carbon steel seamless boiler tubes: SA 210 gr A1 pipes and SA 210 gr C pipes. Both grades have varied tensile strength, yield strength, hardness, and other mechanical characteristics. Even the two ASTM A210 heat exchanger tube grades differ in the ingredients they contain and their proportions.

Because of these variations in elemental composition, both grades have unique skills. As a result, they are employed in numerous applications in various industries and situations, depending on their area of expertise. The two types of ASTM A210 tubing differ in their ability to withstand corrosion. Both SA210 tube grades offer advantages and disadvantages with relation to application.

What is the hardness of ASTM a210 heat exchanger pipes?

The hardness of the SA210 tubes varies between the two grades. The SA 210 pipework has an estimated hardness of 79 HRB Max. This P1 material is used to create the Finned Pipe SA 210 Grade A1, which possesses a better hardness of 85 HRB max. In contrast, the SA 210 Grade C heat exchanger pipe has a maximum hardness of 89 HRB.

Due to their elemental composition (higher proportion of chromium), Superheat Tubes ASTM A210 have a relatively high hardness. Additionally, the ASTM A210 Boiler Pipes have good hardenability and may be welded utilizing a variety of accepted techniques. These ASTM a210 tubes are easily extended by 30%.

What are the manufacturing methods of sa210 boiler tubing?

The first manufacturing process, including both moderate-pressure and elevated-pressure boiler tubes, involves fine drawing, surface brightening, hot rolling, cold drawing, and heat expansion. However, the following measures are conducted to strengthen and increase the resistance of elevated pressure tubes.
  • Increased-pressure boiler tubes are undergoing heat treatment, which involves both heating and cooling the sa210 boiler tubes to improve their toughness, hardness, and wear resistance.
  • The increased pressure of sa210 boiler tubing is quenched to strengthen its hardness.
  • The brittleness of the tube is eliminated through tempering.
  • The internal pressure in the tube can be reduced by annealing. The continuous pipe is heated to a critical temperature in this procedure, then allowed to slowly cool in ash or lime.