Engineering Stress-Strain Curve

Mechanical Engineering

How It Works

The engineering stress-strain curve illustrates the mechanical behavior of a ductile metallic material under uniaxial tensile loading. Initial loading exhibits linear elastic Hookean behavior where strain is fully recoverable with slope equal to Young's modulus (E). Beyond the yield strength, plastic deformation occurs via dislocation slip, progressing through strain hardening to the ultimate tensile strength (UTS) before localized necking triggers ductile fracture.

Governing Equation
σ = E · ε (Elastic) , σ_true = σ_eng · (1 + ε_eng) , ε_true = ln(1 + ε_eng)