orgal.net

Inventor Parametric & iLogic Automation

Inventor iLogic & Parametric Design

Parametric Design & iLogic Automation for Industrial and Production Systems

Overview

Development of parametric design systems and automated workflows using Autodesk Inventor and iLogic, enabling rapid generation of 3D models and fabrication-ready drawings.

iLogic Capabilities

  • Automated model and drawing generation
  • Parameter-driven design control
  • Rule-based geometry updates
  • Drawing view automation and annotation control
  • Reduction of repetitive design tasks

Technologies & Tools

  • Autodesk Inventor (2022)
  • iLogic (rule-based automation)
  • AutoCAD Mechanical (2D layouts and detailing 2026)

 

Engineering Scope & Solution

Developed parametric design systems and automated workflows using Autodesk Inventor and iLogic, enabling rapid generation of 3D models and fabrication-ready drawings.

Entrance Canopies – Automated Design

Developed a parametric 3D model of entrance canopies using Autodesk Inventor 2020, enabling automatic generation of models and drawings through iLogic.

Key Features:

  • Fully configurable canopy design
  • Automated 3D model and drawing creation using iLogic
  • Controlled by three primary parameters (e.g., width, projection, height)
  • Instant update of geometry and drawing views

Result:

  • Rapid design generation
  • Reduced manual drafting
  • Consistent, production-ready documentation

Conveyor Systems – Wood Products Industry 

Designed detailed conveyor systems for wood product manufacturing using Autodesk Inventor 2022 and AutoCAD.

Scope:

  • Mechanical layout and system design
  • Component detailing and fabrication drawings
  • Integration with existing production lines

Parametric Design Integration:

  • Applied parametric modeling techniques to standardize conveyor components
  • Enabled faster configuration of conveyor layouts and assemblies
  • Improved design consistency across multiple projects

Parametric Structural System (Offshore Application)

  • Designed a robust steel support structure capable of safely carrying riser loads

  • Ensured compatibility with existing platform beams and connection points

  • Designed a folding system allowing the structure to retract after riser deployment

  • Integrated mechanical locking and safety accessories to secure the system in folded position