Carbon Steel ASTM A106 Grade C

ASTM A106 Grade C Carbon Steel is a seamless carbon steel pipe grade primarily used for high-temperature and high-pressure service.

ASTM A106/A106M covers seamless carbon steel pipe intended for elevated-temperature service. Grade C has the highest minimum tensile and yield strength among ASTM A106 Grades A, B, and C.

With its combination of high mechanical strength, ductility, weldability, fabrication capability, and elevated-temperature performance, ASTM A106 Grade C can be considered for demanding industrial piping applications.

It is used in oil & gas, refineries, petrochemical plants, power generation, steam systems, process plants, and industrial piping where the specified design conditions require its mechanical properties.

Key Features 

  • Carbon steel for elevated-temperature service
  • Seamless steel pipe
  • High tensile strength
  • High yield strength
  • Good ductility
  • Good weldability
  • Good bendability
  • Good machinability
  • Suitable for pressure piping
  • Suitable for process piping
  • Available in various pipe sizes and wall thicknesses
  • Suitable for demanding industrial applications

Specifications

SpecificationDetails
GradeASTM A106 Grade C
MaterialCarbon Steel
StandardASTM A106/A106M
ProductSeamless Carbon Steel Pipe
ManufacturingSeamless
GradesA, B, C
ServiceHigh Temperature & Pressure
EndsPlain or Beveled
WeldabilityGood
Mechanical StrengthHigh
Main ApplicationsOil & Gas, Refinery, Power, Petrochemical, Process
 

Types of ASTM A106 Grade C Pipe

ASTM A106 Grade C is supplied as seamless carbon steel pipe.

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ASTM A106 Grade C Seamless Pipe

The pipe is manufactured without a longitudinal welded seam, making it suitable for applications where pressure, temperature, and mechanical integrity are important considerations.

Common End Configurations
  • Plain End
  • Beveled End
  • Threaded End for selected applications

Beveled ends are commonly used for butt-welding during piping installation.

Equivalent Grades 

StandardGrade / Comparable Material
ASTMA106 Grade C
ENTo be determined according to application
DINTo be determined according to product
JISTo be determined according to project requirements

There is not necessarily a direct equivalent in every international standard. Any material substitution should be evaluated based on chemical composition, mechanical properties, pressure, temperature, design code, and project requirements.

Available Sizes

ASTM A106 Grade C seamless pipe is available in a wide range of nominal diameters and wall thicknesses.

Common Pipe Schedules
  • SCH 10
  • SCH 20
  • SCH 30
  • SCH 40
  • SCH 60
  • SCH 80
  • SCH 100
  • SCH 120
  • SCH 140
  • SCH 160
  • XXS
Product Forms
  • Seamless Pipe
  • Plain-End Pipe
  • Beveled-End Pipe
  • Threaded Pipe for suitable applications

Exact dimensions depend on the nominal pipe diameter, wall thickness, length, manufacturing requirements, and project specifications.

ASTM A106 Grade C Chemical Composition 

ElementContent (%)
Carbon (C)≤ 0.35
Manganese (Mn)0.29–1.06*
Phosphorus (P)≤ 0.035
Sulfur (S)≤ 0.035
Silicon (Si)≥ 0.10
Chromium (Cr)≤ 0.40
Nickel (Ni)≤ 0.40
Molybdenum (Mo)≤ 0.15
Copper (Cu)≤ 0.40
Vanadium (V)≤ 0.08
Iron (Fe)Balance

*Chemical requirements should be verified against the applicable edition of ASTM A106/A106M and the product’s material test certificate.

ASTM A106 Grade C Mechanical Properties 

PropertyMinimum Value
Tensile Strength485 MPa
Yield Strength275 MPa
ElongationAccording to pipe diameter and wall thickness
HardnessAccording to applicable requirements

ASTM A106 Grade C provides the highest minimum mechanical strength among Grades A, B, and C of the ASTM A106 specification.

ASTM A106 Grade C Physical Properties 

PropertyApproximate Value
Density7.85 g/cm³
Modulus of Elasticity≈ 200 GPa
Thermal Conductivity≈ 45–55 W/m·K
Thermal Expansion Coefficient≈ 11–12 × 10⁻⁶ /°C
Specific Heat Capacity≈ 480 J/kg·K
Magnetic PropertiesMagnetic

Corrosion Resistance

ASTM A106 Grade C is a carbon steel and therefore has limited inherent corrosion resistance compared with stainless steel.

It can be susceptible to:

  • Atmospheric corrosion
  • Moisture
  • Water
  • Chlorides
  • Marine environments
  • Certain chemicals
  • Internal corrosion depending on the transported fluid
Corrosion Protection

Depending on the operating environment, protection may include:

  • Industrial painting
  • Epoxy coating
  • Internal pipe coating
  • Cathodic protection
  • Corrosion inhibitors where applicable

For highly corrosive services, stainless steel, alloy steel, or specially protected carbon steel may be more appropriate.

Heat Resistance

ASTM A106 Grade C is intended for applications requiring good mechanical performance at elevated temperatures.

It may be considered for systems transporting:

  • Steam
  • Hot water
  • Hot hydrocarbons
  • Process fluids
  • High-temperature gases

However, mechanical properties decrease as temperature increases. Therefore, allowable pressure and temperature must be established according to the applicable design code and actual operating conditions.

Heat Treatment

Heat treatment requirements depend on the manufacturing process and the requirements of ASTM A106/A106M.

Normalizing

Normalizing may be used to obtain a more uniform microstructure and balanced mechanical properties.

Stress Relieving

Stress relieving may be applied after certain fabrication or welding operations to reduce residual stresses.

Post-Weld Heat Treatment

Where PWHT is required, it should be performed according to the applicable design code and qualified welding procedure.

Welding

ASTM A106 Grade C can be welded using conventional welding processes. Due to its higher carbon content compared with Grades A and B, welding procedures should be appropriately qualified.

Common Welding Processes
  • SMAW
  • GTAW / TIG
  • GMAW / MIG
  • FCAW
  • SAW
Welding Applications
  • Butt welding
  • Fitting connections
  • Flange welding
  • Branch connections
  • Pipe spool fabrication
  • Process piping assemblies

For certain wall thicknesses and service conditions, preheating, interpass temperature control, and PWHT may be required.

Fabrication

ASTM A106 Grade C can be processed using conventional pipe fabrication techniques.

Cutting
  • Mechanical sawing
  • Plasma cutting
  • Oxy-fuel cutting
  • Abrasive cutting
Bending

Pipe bending can be performed according to the required radius and applicable fabrication requirements.

Machining
  • Drilling
  • Turning
  • Milling
  • Threading
  • Tapping
End Preparation
  • Plain ends
  • Beveled ends
  • Welding-end preparation

Applications 

Oil & Gas Industry
  • Process piping
  • Pressure lines
  • Steam lines
  • Hot hydrocarbon lines
  • Auxiliary piping
Refineries
  • Process piping
  • Steam systems
  • Hydrocarbon lines
  • Hot-fluid lines
  • Heating systems
Petrochemical Industry
  • Process piping
  • High-pressure piping
  • Steam networks
  • Hot process-fluid systems
Power Generation
  • Steam piping
  • Thermal systems
  • Hot-water systems
  • Auxiliary piping
  • Process piping
General Industry
  • Industrial piping
  • Pressure systems
  • Thermal installations
  • Hot-fluid transportation
  • Industrial process systems

ASTM A106 Grade C in Tunisia, Algeria, Morocco & Libya

Carbon Steel ASTM A106 Grade C can be considered for industrial projects across Tunisia, Algeria, Morocco, and Libya, particularly in oil & gas, refineries, petrochemical plants, power generation, steam systems, and process industries.

Its higher minimum mechanical strength compared with Grades A and B makes it suitable for selected applications where increased mechanical performance is required.

Material selection should always consider operating pressure, temperature, fluid characteristics, pipe wall thickness, applicable design code, and project specifications.

For North African projects, ASTM A106 Grade C may be evaluated alongside ASTM A106 Grade A, ASTM A106 Grade B, ASTM A53 Grade B, and API 5L, depending on the application.

ASTM A106 Grade A vs Grade B vs Grade C

PropertyGrade AGrade BGrade C
MaterialCarbon SteelCarbon SteelCarbon Steel
ManufacturingSeamlessSeamlessSeamless
Tensile Strength≥ 330 MPa≥ 415 MPa≥ 485 MPa
Yield Strength≥ 205 MPa≥ 240 MPa≥ 275 MPa
High-Temperature ServiceYesYesYes
Mechanical StrengthGoodHighVery High
Typical ApplicationGeneral process serviceIndustrial process pipingMore mechanically demanding applications

Conclusion

Carbon Steel ASTM A106 Grade C is a high-strength seamless carbon steel pipe grade for high-temperature and pressure service.

With a minimum tensile strength of 485 MPa and yield strength of 275 MPa, it provides the highest minimum mechanical strength among ASTM A106 Grades A, B, and C.

It can be used in refineries, petrochemical plants, power generation facilities, oil & gas projects, steam systems, thermal processes, and industrial process piping where its properties are appropriate for the design conditions.

For projects in Tunisia, Algeria, Morocco, and Libya, ASTM A106 Grade C can provide a suitable solution for demanding seamless piping applications when the pressure, temperature, fluid, dimensions, and applicable design code comply with ASTM A106/A106M.

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