Features

The Full Engineering Pipeline.
Start to Finish, in Minutes.

Six integrated milestones covering every step from CAD import to fabrication-ready drawings. No expert required.

01Import

CAD

STEP · IGES · STL · BREP · SolidWorks (.sldprt)

Drag and drop any CAD file up to 500MB. Dynaryx auto-heals geometry, closes gaps, and resolves multi-body conflicts without any manual cleanup. Complex assemblies with hundreds of parts are handled natively.

  • 500MB file support
  • Auto geometry repair
  • Multi-body assemblies
< 30sParse & heal time
CAD Parser
$ dynaryx upload chassis_assy_v3.STEP
> Detected format: STEP AP242
> Bodies found: 14 · Faces: 289
> Healing open edges... 3 fixed
> Resolving multi-body conflicts
> Geometry ready for meshing
02Pre-Processing

Meshing

Adaptive meshing with automatic refinement

Element sizing is driven by curvature and feature detection, with automatic refinement at fillets, holes and contact regions and boundary-layer inflation where the solver needs it. Mesh quality metrics are reported before the solve starts, so there are no sizing controls to tune by hand.

  • Curvature-based sizing
  • Boundary-layer inflation
  • Quality metrics upfront
< 45sMesh generation
Mesh Report
Nodes
48,243
Elements
91,108
Min Jacobian
0.62
Max Skew
0.31
> Curvature-based sizing
> Refining 12 fillets · 8 holes
> Boundary layer: 5 prisms
03Structural

FEA

Von Mises, deformation, safety factor in < 2 min

Define your analysis in plain English: 'Run a stress analysis under 5,000N axial load with fixed base.' The AI translates intent into boundary conditions, material properties, and solver configuration, and produces ASME code-referenced hand calculations alongside the solve. Replaces Ansys for 95% of structural tasks.

  • Natural language setup
  • ASME hand-calc docs
  • Replaces Ansys
< 2 minFull FEA analysis
FEA Results
Max Stress
847 MPa
Min Stress
12 MPa
Deformation
2.4 mm
Safety Factor
2.1×
12 MPa430 MPa847 MPa
04Fluid Dynamics

CFD

Internal flow, aero and thermal with no solver setup

Run fluid dynamics simulations without configuring OpenFOAM, setting boundary layers, or understanding turbulence models. Covers internal duct flow, external aerodynamics, conjugate heat transfer, and HVAC applications.

  • No OpenFOAM config
  • Internal & external flow
  • Thermal + aero
< 5 minCFD convergence
CFD Solver
> prompt: "Internal duct flow, inlet 12 m/s"
> Turbulence model: k-ω SST (auto)
> Mesh: 1.2M cells · y+ = 0.98
> Convergence: 1,200 iterations
> Pressure drop: 38.4 Pa
> Max velocity: 18.7 m/s (Re 84,000)
05Optimization

Optimization

Topology optimization + material suggestions + load variants

After every simulation, Dynaryx's AI identifies over-stressed regions, suggests geometry changes, recommends alternative materials, and generates topology-optimized mesh previews automatically, without any prompting.

  • Topology optimization
  • Material alternatives
  • Auto load variants
3–5Suggestions per run
AI Suggestions
01Increase fillet radius at joint A from 3mm to 8mm to reduce stress concentration by ~34%
02Switch to Al 7075-T6 for 28% weight reduction at equivalent safety factor
03Add gusset plate at frame midpoint to eliminate buckling risk under dynamic load
06Output

Reporting

ASME-compatible report + fabrication-ready drawings

Every simulation generates a professional engineering report with Von Mises stress maps, displacement fields, safety factor analysis and ASME code references, plus the fabrication-ready 2D drawings with GD&T, tolerances and a bill of materials. Export raw data as CSV or JSON, and drawings as DXF or DWG.

  • ASME-compatible
  • Fabrication drawings + BOM
  • PDF · DXF · CSV · JSON
< 10sReport generation
Report Preview
Executive Summary & Pass/Fail
Von Mises Stress Maps (color)
Displacement Field Analysis
Safety Factor per Section
ASME Code References
Fabrication Drawings (GD&T + tolerances)
Bill of Materials