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Sheet S-104
PPDPDD CE

Concreteconcept

Concrete properties: water-cement ratio, curing, strength, creep

One-line orientation

Concrete’s behavior — how it cures, why a lower water-cement ratio is stronger, and why it needs steel — drives most of the qualitative concrete questions on the exam.

Key points

  • Curing is hydration, not drying. Strength comes from a chemical reaction between cement and water that releases heat and causes shrinkage. Keep the concrete moist (e.g., cover with plastic sheeting); rapid drying weakens it.
  • Design strength at ~28 days. Concrete keeps gaining strength after placement; the standard benchmark is about 28 days.
  • Water-cement ratio controls strength and workability. Less water generally raises strength but makes the mix harder to place.
  • Strength:
    • Compressive: typically 3,000–4,000 psi, ranging roughly 2,000–20,000 psi for ordinary work (ultra-high-strength mixes go higher).
    • Tensile: weak — concrete cracks in tension, so steel reinforcement carries tensile loads.
  • Why steel and concrete work together: they expand and contract at similar rates, and concrete’s alkalinity helps protect embedded reinforcing steel from corrosion.
  • Creep: long-term deformation under sustained load — distinct from immediate elastic deflection.
  • Environmental note: concrete carries a large carbon footprint from cement manufacturing heat and transport.

Confusions / comparison

PropertyWhat it meansExam takeaway
Cures by hydrationChemical reaction with water (releases heat)Keep moist — do not let it dry out to cure
Lower w/c ratioLess water per cementStronger but less workable
CompressionResists crushingConcrete’s strength — ~3,000–4,000 psi typical
TensionResists pulling apartConcrete’s weakness → add steel
CreepDeformation under sustained loadLong-term, slow; not the initial deflection
ShrinkageVolume loss as it cures/driesDrives cracking → control joints, temp bars

→ Cement types & admixtures (this topic): how superplasticizers hold workability at low w/c · Reinforcing & prestress (this topic): how steel carries the tension concrete can’t · Mixes & joints (this topic): shrinkage control via joints.