Metalρ = 7930 kg/m³ Updated 2026-07-29 Material Reference

Stainless Steel 304 / 304L

Type 304 austenitic stainless steel properties, density, corrosion resistance, weldability, and industrial applications for the most common stainless alloy.

Density

7930 kg/m³

Yield Strength

215 MPa

Tensile Strength

505 MPa

Thermal Cond.

16 W/m·K

Overview

Type 304 is the most common austenitic stainless steel — often called "18/8" for its 18% chromium / 8% nickel composition. It offers excellent general corrosion resistance, good formability, and ease of fabrication. 304 is the baseline stainless grade for food processing, architectural, chemical, and general industrial applications where moderate corrosion resistance is needed.

ρ = 7930 kg/m³, Composition: Fe-18Cr-8Ni, max 0.08% C

Mechanical Properties

Property304 (Annealed)304L (Low Carbon)
Density7,930 kg/m³7,930 kg/m³
Yield Strength (0.2%)205 MPa170 MPa
Ultimate Tensile515 MPa485 MPa
Elongation40%40%
Hardness180 BHN max180 BHN max
Young's Modulus193 GPa193 GPa

Calculate 304 Stainless Weight

Open stainless-steel-weight-calculator

Corrosion Resistance

304 provides excellent resistance to:

  • Atmospheric environments (rural, urban, mild marine)
  • Fresh water, steam
  • Most organic chemicals, food products
  • Oxidizing acids (nitric acid)
  • Neutral and alkaline solutions

It is NOT suitable for:

  • Chloride environments (seawater, brine, bleach) — causes pitting and crevice corrosion
  • Chloride stress corrosion cracking (SCC) above ~60°C
  • Reducing acids (hydrochloric, sulfuric at high concentrations)
  • Long-term exposure above 425°C without low-carbon grade

Use 304L for Welded Construction

Standard 304 (max 0.08% C) becomes sensitized when held in the 425-870°C range (weld heat-affected zone). Chromium carbides precipitate at grain boundaries, causing intergranular corrosion. 304L (max 0.03% C) prevents this — always specify 304L for welded assemblies.

Thermal Properties

PropertyValue
Melting Range1400-1455°C
Thermal Conductivity (100°C)16 W/m·K (much lower than carbon steel)
Specific Heat500 J/kg·K
Coefficient of Thermal Expansion17.2 × 10⁻⁶ /°C (~50% higher than carbon steel!)

Applications

  • Food processing equipment, brewing, dairy
  • Architectural trim, building facades, handrails
  • Kitchen equipment, appliances, sinks
  • Chemical tanks (non-chloride), pharmaceutical equipment
  • Process piping for clean water, steam, non-chloride chemicals
  • Heat exchangers, fasteners, springs

304 vs 316 — When to Upgrade

Upgrade to 316/316L when: (1) coastal/marine installations, (2) process fluids contain chlorides, (3) chemical processing with reducing acids, (4) pharmaceutical clean service requiring higher purity. 316 costs ~30-50% more than 304.

Fabrication Notes

  • 304 work-hardens rapidly; deep drawing may require intermediate annealing
  • Weld with 308L filler (over-alloyed by ~2% Cr/Ni)
  • Post-weld cleanup (pickling paste or mechanical) restores corrosion resistance
  • Non-magnetic in annealed condition (can become slightly magnetic after cold work)

Summary

Type 304 (18/8, density 7930 kg/m³) is the general-purpose stainless steel for non-chloride environments. Use 304L for welded construction to avoid sensitization. Excellent formability, weldability, and general corrosion resistance. For marine, chloride, or reducing acid service, upgrade to 316L.

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.