Stress & fatigue simulation
Load it. See where it breaks.
Push, pull or wind the spring and watch it deform in real time, with a stress heat-map and safe-operating-limit rings drawn right on the model. Set two operating points and the cyclic-fatigue panel estimates infinite or finite life on a Goodman line — so you catch failures before you ever cut wire.
- Live stress heat-map with deflection, wind and bend animation
- Safe, solid and cyclic operating-limit rings on the 3D model
- Cyclic fatigue life (modified Goodman) between two load points
- Tolerance-aware fatigue: the whole manufacturing tolerance box plotted on the Goodman chart

More in the Studio
Real-time 3D editor
Grab handles on the spring and reshape it directly — geometry rebuilds live, with zero lag.
→AI design copilot
Describe what you need in plain language, attach a drawing or CAD file, and the copilot proposes changes the calc engine verifies before they touch your spring.
→Inverse design
Enter the loads and travel you need, even two operating points at once, and the studio solves the geometry and material for you.
→Optimizer & design reuse
Set goals and limits and the optimizer sweeps thousands of candidates; the reuse search finds springs you already make that fit.
→Fifteen spring families
Compression to torsion, conical to wave, belleville, constant force, garter and free-form wire parts: fifteen families, each simulated in 3D.
→Standards-based engineering
Spring rate, index, Wahl factor, natural frequency and EN 15800 tolerance grades — shown, not hidden.
→Your language, currency & units
Work in Portuguese, English or Italian, price in R$, € or US$, and design in metric or imperial.
→Wire forms & CNC former
Design clips, hooks, rings and brake springs as a feed-bend-coil program — then watch a camless wire former run it.
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