FEA Simulation

Linear and non-linear analysis in Ansys. Complex structural behavior predicted and verified before manufacturing, reducing risk and optimizing designs.

Linear Static Analysis
Structural Analysis

Linear Static Analysis

Foundation-level FEA for stress, strain, and displacement under static loading. Accurate material properties and boundary conditions ensure results that match real-world behavior and support design decisions.

  • Stress and strain analysis
  • Deflection calculations
  • Contact and assembly modeling
  • Safety factor verification
Non-Linear Analysis
Advanced Simulation

Non-Linear Analysis

Large deformation, plastic behavior, and material non-linearity handled accurately. Captures complex phenomena like buckling, yield behavior, and progressive failure that linear analysis cannot predict.

  • Large deformation analysis
  • Material plasticity modeling
  • Buckling and instability
  • Impact and dynamic response
Thermal and Multi-Physics Analysis
Coupled Analysis

Thermal & Multi-Physics

Coupled thermal-structural analysis capturing how temperature affects material properties and component performance. Includes thermal stress analysis and transient thermal effects on mechanical behavior.

  • Heat transfer analysis
  • Thermal stress calculations
  • Transient thermal response
  • Convection and radiation modeling
Modal and Vibration Analysis
Dynamic Behavior

Modal & Vibration Analysis

Natural frequency and mode shape determination for vibration troubleshooting and resonance avoidance. Harmonic response analysis predicts steady-state vibration under cyclic loading conditions.

  • Natural frequency calculation
  • Mode shape visualization
  • Harmonic response analysis
  • Resonance and damping effects
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