Metalρ = 2700 kg/m³ Updated 2026-07-29 Material Reference

Aluminum Alloy 6061-T6

Aluminum 6061-T6 properties including density, yield strength, thermal conductivity, corrosion resistance, and applications in structural and industrial engineering.

Density

2700 kg/m³

Yield Strength

276 MPa

Tensile Strength

310 MPa

Thermal Cond.

167 W/m·K

Overview

6061 is the most versatile and widely used heat-treatable aluminum alloy, with magnesium and silicon as principal alloying elements. The T6 temper (solution heat-treated and artificially aged) provides medium-to-high strength, excellent corrosion resistance, good machinability, and ready weldability. Aluminum 6061 is about one-third the weight of steel with roughly half the strength of mild steel.

ρ = 2700 kg/m³ (approximately 1/3 density of steel at 7850 kg/m³)

Mechanical Properties (6061-T6)

PropertyValue
Density2,700 kg/m³ (0.0975 lb/in³)
Yield Strength276 MPa (40,000 psi)
Ultimate Tensile310 MPa (45,000 psi)
Elongation12%
Hardness95 BHN
Young's Modulus69 GPa (10 × 10⁶ psi — 1/3 of steel)
Shear Strength207 MPa
Fatigue Limit96 MPa (5×10⁸ cycles)

Calculate Aluminum Weight

Open aluminum-weight-calculator

Strength-to-Weight Ratio

6061-T6 has a specific strength (strength/density) comparable to or better than mild steel: 276 MPa / 2.7 = 102 kN·m/kg vs A36 steel: 250 MPa / 7.85 = 32 kN·m/kg. This is why aluminum is preferred for aerospace, transport, and lightweight structures. However, its lower modulus means aluminum deflects 3× more than steel for the same section.

Comparison to Steel

Property6061-T6 AluminumA36 SteelRatio (Al/Steel)
Density2,700 kg/m³7,850 kg/m³0.34
Yield Strength276 MPa250 MPa1.1
Young's Modulus69 GPa200 GPa0.35
Thermal Conductivity167 W/m·K50 W/m·K3.3
Thermal Expansion23.6 × 10⁻⁶/°C11.7 × 10⁻⁶/°C2.0
Relative Cost/VolumeHigherLower~2×

Thermal Properties

PropertyValue
Melting Range582-652°C
Thermal Conductivity (20°C)167 W/m·K (3× steel!)
Specific Heat896 J/kg·K
Coefficient of Thermal Expansion23.6 × 10⁻⁶/°C
Electrical Conductivity~43% IACS

Corrosion Resistance

Aluminum forms a thin, self-healing oxide layer (Al₂O₃) that provides excellent atmospheric corrosion resistance. It resists:

  • Rural, urban, and mild industrial atmospheres
  • Fresh water (pH 4.5-8.5)
  • Many chemicals (nitric acid, organic acids)
  • Marine environments (better than carbon steel; can pit in stagnant seawater)

Not resistant to:

  • Strong acids (HCl, sulfuric above dilute concentrations)
  • Strong alkalis (caustic soda dissolves aluminum)
  • Mercury and mercury salts (catastrophic embrittlement)
  • Prolonged contact with wet concrete/mortar (alkaline attack)

Galvanic Corrosion Risk

Aluminum is highly anodic in the galvanic series. Direct contact with copper, brass, steel, or stainless steel in the presence of an electrolyte causes rapid aluminum corrosion. Always isolate aluminum from other metals with non-conductive gaskets/washers or use zinc-rich coatings.

Common Tempers

TemperProcessStrengthDuctility
OAnnealedLowestHighest
T4Solution heat-treated, naturally agedMediumGood
T6Solution + artificially agedHighestModerate
T651T6 + stress relieved (stretched)HighModerate (flat plate)

Applications

  • Aircraft and aerospace structures (historically 2024/7075; 6061 for secondary structure)
  • Truck and trailer bodies, rail cars
  • Marine structures (boats, docks, gangways)
  • Architectural — window frames, curtain walls, roofing
  • Bicycle frames, ladders, scaffolding
  • Heat exchangers (excellent thermal conductivity)
  • Pressure vessels and piping for cryogenic service (down to -270°C)
  • Machined parts, fixtures, tooling plates

Fabrication Notes

  • Weldable with TIG or MIG using 4043 or 5356 filler (weld zone loses T6 strength — returns partially with age)
  • Excellent machinability; chip-breaking alloys available
  • Can be anodized for superior corrosion resistance and coloring
  • Cold working increases strength (temper H116, H32 for sheet)
  • T6 temper can be restored by re-heat-treatment after welding

Summary

6061-T6 aluminum (density 2700 kg/m³, yield 276 MPa) offers excellent strength-to-weight, corrosion resistance, and thermal conductivity. About 1/3 the weight of steel with comparable yield strength but 1/3 the stiffness (deflects more under load). Standard for lightweight structures, marine applications, heat exchangers, and architectural use. Watch for galvanic corrosion when dissimilar metals contact aluminum.

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.