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Additive Manufacturing · Simulation Study

Qualify parts right the first time instead of printing your way to the answer.

Simulation studies for residual stress prediction, distortion compensation, microstructure control, and build parameter optimisation.

Grab a scoping call
USD 1.5M+
Exposure mitigated per turbine blade audit (28 blades, LEAP-class DED repair case)
>$50M
GE LEAP nozzle original physical qualification campaign cost; simulation-led approach changes the calculation
3–5 wks
Study to residual stress map and qualified print parameters
Applications

What we can study for you

  • Residual stress prediction for critical part regions
  • Distortion compensation geometry for first-time-right builds
  • Melt pool simulation for process parameter development
  • Microstructure control and grain morphology prediction
  • Build parameter optimisation for density and mechanical properties
  • Qualification evidence generation from validated simulation
Our Approach

Predict residual stress, distortion, and microstructure before you print

We run simulation studies that model the thermal history, residual stress development, and microstructure evolution during the build process. The result is optimised build parameters and distortion-compensated geometries, so the first part you print is closer to the final qualified design.

  • Thermal simulation of the melt pool and surrounding material for laser powder bed fusion and directed energy deposition processes
  • Residual stress prediction at the part scale using calibrated inherent strain or thermomechanical methods
  • Distortion compensation: pre-deforming the input geometry so the as-built part matches the design intent
  • Microstructure prediction including grain morphology and phase distribution as a function of process parameters
Studies We Offer

Specific studies, fixed scope.

3–5 week study
Build Parameter & Distortion Optimisation

Thermal and residual stress simulation to optimise build parameters and pre-compensate geometry for your specific part, material, and machine.

4–6 week engagement
Microstructure & Qualification Support

Process-structure-property simulation to predict microstructure and mechanical properties, generating evidence for part qualification.

Describe your Additive Manufacturing challenge.

We'll scope a study within 48 hours and tell you whether our platform can help. No commitment required.

Grab a scoping call

or email [email protected]