Constructionρ = 2400 kg/m³ Updated 2026-07-29 Material Reference

Concrete (Normal Weight)

Normal weight reinforced concrete properties, density (2400 kg/m³), compressive strength, thermal properties, mix design basics, and structural applications in buildings, bridges, and foundations.

Density

2400 kg/m³

Thermal Cond.

1.5 W/m·K

Overview

Concrete is a composite material made from cement, water, fine aggregate (sand), and coarse aggregate (rock/gravel), plus optional admixtures. It is the most widely used engineered material on Earth, valued for its high compressive strength, durability, versatility, and low cost. Normal weight concrete (NWC) uses natural aggregates (crushed stone, gravel) at ~2400 kg/m³ density.

ρ = 2400 kg/m³ for normal weight reinforced concrete (plain: ~2300 kg/m³; reinforced adds ~100 kg/m³ for steel)

Mechanical Properties

PropertyValue (typical, 28 days, 30 MPa / 4000 psi mix)
Density (reinforced)2,400 kg/m³ (150 lb/ft³)
Density (plain)2,300 kg/m³ (144 lb/ft³)
Compressive Strength (f'c)20-50 MPa typical; up to 130 MPa for UHPC
Tensile Strength2-5 MPa (about 10% of compressive)
Flexural Strength3-6 MPa
Young's Modulus25-35 GPa (E ≈ 4700√f'c)
Poisson's Ratio0.15-0.22
Coefficient of Thermal Expansion10-13 × 10⁻⁶ /°C
Drying Shrinkage400-800 microstrain

Concrete is Strong in Compression, Weak in Tension

Concrete's tensile strength is only ~10% of its compressive strength, so all structural concrete is reinforced with steel rebar (which has high tensile strength and similar thermal expansion coefficient). Unreinforced concrete cracks under tension from bending, shrinkage, or temperature — rebar holds cracks together and carries tensile loads.

Thermal Properties

PropertyValue
Thermal Conductivity1.5-2.0 W/m·K (dry)
Specific Heat800-1000 J/kg·K
Thermal Diffusivity~0.7 mm²/s

Concrete provides excellent thermal mass, absorbing heat during the day and releasing it at night — widely used in passive solar building design.

Standard Strength Grades

Grade (SI)f'c (MPa)Grade (Imperial)f'c (psi)Typical Use
C202030003000Sidewalks, footings (residential)
C252535003500Slabs on grade, residential foundations
C303040004000General structural (beams, slabs)
C404050005000Commercial columns, bridges
C505060006000High-rise columns, heavy loads

Mix Proportions (typical 1 m³ C30)

MaterialQuantity
Cement (Type I)350 kg
Water175 kg (w/c = 0.5)
Fine aggregate (sand)750 kg
Coarse aggregate (20mm)1100 kg
Total~2375 kg

Calculate Concrete Volume

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Applications

  • Foundations: Footings, pile caps, raft foundations, piles (cast-in-place or precast)
  • Structural frames: Columns, beams, slabs, shear walls in buildings
  • Bridges: Girders, decks, piers, abutments
  • Infrastructure: Dams, tunnels, retaining walls, culverts, pavements
  • Precast elements: Pipes, panels, prestressed beams, hollow core slabs
  • Mass concrete: Dam cores, large foundations (requires low-heat cement design)

Reinforcement

  • Rebar (reinforcing bar): Deformed steel bars, grades 300/400/500 MPa
  • Steel fibers: Add toughness and reduce crack width in industrial floors
  • Prestressing strands: High-strength steel (1860 MPa) for pretensioned/post-tensioned members
  • Typical reinforcement ratio: 1-4% of cross-sectional area for beams/columns

Durability Considerations

  • Water-cement ratio: Critical for durability; max 0.45 for exposed concrete, 0.40 for marine/bridge
  • Air entrainment: 4-8% air for freeze-thaw resistance (cold climates)
  • Cover: Minimum 25-75 mm concrete cover over rebar depending on exposure
  • Corrosion protection: Epoxy-coated rebar, galvanized rebar, or stainless steel in marine/de-icing salt environments
  • Curing: Keep moist for minimum 7 days for full strength development

Summary

Normal weight concrete (density 2400 kg/m³ reinforced) is the most widely used construction material worldwide due to its high compressive strength, durability, and low cost. It must always be designed with steel reinforcement for tensile loads. Mix design, water-cement ratio, and proper curing determine both strength and durability. For lightweight applications (weight-saving, insulation), use lightweight concrete (1800 kg/m³) with expanded shale/clay aggregates.

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.