Predict the future by creating it

Structural Integrity

Cyclic Fatigue & Life Prediction

Quantify multi-axis stress accumulation, predict crack initiation thresholds, and prevent structural failure in high-stress hardware components under random vibration profiles.

Analysis Domains

Predictive Fatigue Methodologies

We model complex stress histories and transient thermal cycles to calculate physical component lifespan before physical prototyping.

High-Cycle Fatigue

Low-Cycle Fatigue

Frequency Domain Based Fatigue Damage

S-N curve formulation and multi-axis stress state integration under complex spectrum vibration loading to identify elastic limit failure points.

E-N strain-life calculations incorporating non-linear material plasticity and severe transient thermal loading conditions for accurate low-cycle failure predictions.

Rainflow cycle counting algorithms coupled with PSD acceleration inputs to quantify cumulative fatigue damage accumulation under operating stress spectrums.

Linear Elastic Fracture

Forensic Crack Growth Analysis

When microscopic flaws emerge under cyclic loading, our linear elastic fracture mechanics models calculate stress intensity factors and critical crack lengths to prevent sudden structural failure.

Validate Component Durability

Send CAD models or physical shaker table test data to receive a preliminary fatigue assessment scope within twenty-four hours.