All demos

Materials & Mechanics

14 demos

Materials and structural mechanics — phase transformations, fatigue, diffusion, and resonance.

Screenshot from the “Paris-law fatigue” DjiniousLab demo

Paris-law fatigue

Crack growth from a 0.1 mm inspection flaw to 5 mm failure under the Paris fatigue law — pressure-vessel life prediction.

Screenshot from the “Pearlite transformation” DjiniousLab demo

Pearlite transformation

Isothermal pearlite-transformation kinetics at 800 K via JMAK — the phase-fraction S-curve of a steel.

Screenshot from the “SDOF building resonance” DjiniousLab demo

SDOF building resonance

A single-degree-of-freedom model of a 5-story RC building hitting resonance at its 2 Hz natural frequency.

Screenshot from the “Arrhenius diffusion” DjiniousLab demo

Arrhenius diffusion

The diffusion coefficient swept from 700 K to 1500 K — the Arrhenius temperature dependence of solid-state diffusion.

Screenshot from the “Forced mass-spring resonance” DjiniousLab demo

Forced mass-spring resonance

A sinusoidally-driven second-order oscillator showing resonant amplification at ω_n and off-resonance suppression.

Screenshot from the “Mass-spring-damper ringdown” DjiniousLab demo

Mass-spring-damper ringdown

The acausal hello-world — mass, spring, and damper wired through the 1-D mechanical pin domain; the solver derives the ringdown from connectivity.

More in this category

  • Stress-relaxation of a bolt
  • Bouncing ball (event detection)
  • Pendulum energy conservation
  • Seismic response spectrum
  • PGA attenuation (M=7)
  • Soft-soil amplification
  • Seismic event: Richter + SDOF

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