Engineering

Part Generation & FEM Optimization

Close the loop between automated geometry generation, structural validation, and manufacturing handoff.

Optimized mechanical bracket with FEM overlay and analysis cards
AI part variants
FEM validated
STEP & drawing export
FEM

Generated parts with validation in the same loop

Part generation only becomes useful when the result can be checked, compared, and released. confBuild connects parameterized geometry with FEM signals and manufacturing-ready outputs.

Generate controlled variants Create part families from dimensions, interfaces, loads, and manufacturing rules.
Validate early Use FEM feedback to catch weak geometry before it becomes a release problem.
Prepare release data Send the approved geometry, drawings, BOM context, and simulation notes forward.

From generated geometry to validated part

Keep generation, simulation feedback, comparison, and export in one traceable workflow.

  1. 01
    Define constraints

    Set interfaces, load assumptions, dimensions, materials, and manufacturing limits.

  2. 02
    Generate variants

    Create parameter-driven part options from the same rule set.

  3. 03
    Run validation

    Compare stress, displacement, weight, and manufacturability signals.

  4. 04
    Export release data

    Generate CAD files, drawing inputs, and simulation context for handoff.

Handoff

Keep validation evidence with the chosen part

Generated geometry is easier to release when simulation assumptions, comparison data, and manufacturing signals stay tied to the selected part.

Simulation inputs Store load cases, material assumptions, constraints, and validation state next to the model.
Comparison view Compare stress, displacement, weight, and variant tradeoffs before selecting a design.
Release package Export CAD geometry, drawing inputs, simulation notes, and metadata from the approved part.
Keep validation evidence with the chosen part
FEM

Geometry Generation Connected to Simulation

Replace disconnected CAD and analysis loops with one system that creates variants, checks structural behavior, and prepares outputs for manufacturing.

01

Rule-Driven Part Families

Define dimensional rules, interfaces, mounting patterns, and manufacturing constraints once, then generate complete part variants from parameter sets or AI-assisted inputs.

  • Parameterized geometry
  • Controlled interfaces
  • Fast family expansion
02

FEM in the Validation Loop

Run structural validation on generated variants so weak designs can be identified early. Compare load cases, displacements, and stress behavior before parts are handed off.

  • Structural checks
  • Variant comparison
  • Earlier issue detection
03

Optimization for Manufacturing

Use simulation feedback to refine thicknesses, supports, and material usage while preserving fit and function. Move directly from validated geometry to technical outputs.

  • Material reduction
  • Performance-driven refinement
  • Technical drawing export
Outputs

Validated part outputs

Generated parts carry enough context for engineering review and downstream production.

CAD geometry STEP, STL, and viewer models for the selected variant.
Simulation context Load cases, material assumptions, and validation notes.
Comparison data Weight, stress, displacement, and variant-level tradeoffs.
Release package Drawing inputs, export files, and part metadata for handoff.
Best fit

Best fit

  • Teams creating repeated brackets, housings, mounts, and adapters
  • Engineering groups that need simulation before release
  • Manufacturers optimizing families of similar mechanical parts

Automate your part engineering workflow

Generate part families from rules and validate them before they reach detailed release and production.