Metalρ = 7850 kg/m³ Updated 2026-07-29 Material Reference

Carbon Steel (A36/A53/A106)

Carbon steel properties, density, yield strength, thermal conductivity, and typical industrial applications including A36 structural, A53 pipe, and A106 high-temperature grades.

Density

7850 kg/m³

Yield Strength

250 MPa

Tensile Strength

400 MPa

Thermal Cond.

50 W/m·K

Overview

Carbon steel is the most widely used engineering material — an iron-carbon alloy with less than 2% carbon and small amounts of manganese, silicon, and trace elements. It is inexpensive, readily available, easily fabricated, and weldable. Carbon steels are the default choice for structural steel, piping, pressure vessels, and general industrial equipment where corrosion is not a primary concern.

ρ = 7850 kg/m³ (all carbon and low-alloy steels)

Common Grades

GradeSpecificationPrimary Use
A36ASTM A36Structural shapes (I-beams, angles, plate)
A53 Grade BASTM A53Welded/seamless pipe, plumbing, general
A106 Grade BASTM A106Seamless pipe for high-temperature service
A516-70ASTM A516Pressure vessel plate
A572-50ASTM A572HSLA structural (higher strength)
1018 / 1020AISI/SAECold-finished bar, machined parts
1045AISI/SAEMedium carbon, shafts, axles
4140AISI/SAECr-Mo alloy, high-strength shafts, bolts

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Mechanical Properties

PropertyValue
Density7,850 kg/m³ (0.284 lb/in³)
Young's Modulus200 GPa (29 × 10⁶ psi)
Yield Strength (A36)250 MPa (36,000 psi)
Ultimate Tensile (A36)400-550 MPa (58,000-80,000 psi)
Shear Modulus77 GPa
Poisson's Ratio0.29
Hardness (A36)120-150 BHN
Elongation at break20-25%

All Steel Weighs the Same

Density is essentially identical across all carbon and low-alloy steels — 7850 kg/m³. High-strength steels (4140, A572-50) have the same weight as mild steel; they just carry more load before yielding. A36 and 4140 weigh the same per cubic meter.

Thermal Properties

PropertyValue
Melting Point1425-1540°C
Thermal Conductivity (20°C)50 W/m·K
Specific Heat470 J/kg·K
Coefficient of Thermal Expansion11.7 × 10⁻⁶ /°C

Applications

  • Structural steel: Buildings, bridges, platforms, pipe supports (A36, A572)
  • Process piping: A106-B for refineries, power plants; A53-B for general plumbing
  • Pressure vessels: A516-70 plate for boilers, tanks, separators
  • Sheet & plate: 0.5-100mm sheet for tanks, ductwork, equipment housings
  • Fasteners: Grade 2, 5, 8 bolts (low, medium, high carbon)
  • Shafting & machined parts: 1018, 1045, 4140 bars

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Welding and Fabrication

Carbon steels are readily weldable with common processes (SMAW, GMAW, FCAW, GTAW). Key considerations:

  • Low carbon (<0.25% C): Weldable without preheat for most thicknesses
  • Medium carbon (0.25-0.55%): May require preheat (100-200°C) to prevent cracking
  • High carbon (>0.55%): Difficult to weld; requires preheat and PWHT

Corrosion Protection

Carbon steel rusts rapidly in moist air, water, and outdoor environments. Always specify protection:

  • Paint/epoxy coating for atmospheric service
  • Galvanizing for outdoor/immersion
  • Wrapping/coating for buried piping (FBE, coal tar)
  • Cathodic protection for buried pipelines and tank bottoms
  • Allow 1-3mm corrosion allowance in design thickness

Carbon Steel vs Stainless Steel Cost

Carbon steel costs roughly $1-2/kg vs $4-8/kg for 304 stainless and $6-12/kg for 316 stainless. Use carbon steel with proper coatings/CP unless corrosion resistance, hygiene, or high-temperature oxidation resistance requires stainless.

Summary

Carbon steel (density 7850 kg/m³) is the default industrial material for structures, piping, and vessels when corrosion is manageable. A36 for structural use, A106-B for high-temperature piping, A516-70 for pressure vessels. Always specify corrosion protection and include corrosion allowance. See also [[steel-material-properties]] for detailed grade properties and [[pipe-material-selection]] for piping material comparison.

Related Calculators & Guides

Disclaimer: Material property data is for reference and educational purposes. Verify all properties against material test reports (MTRs) and applicable ASTM/ASME standards for engineering design.