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Completion In INVENTOR(S-CI-8074)

  • Last updated Oct, 2026
  • Certified Course

Course Includes

  • Duration1 Month
  • Enrolled0
  • Lectures25
  • Videos0
  • Notes0
  • CertificateYes

What you'll learn

Autodesk Inventor is a professional mechanical CAD course designed to develop practical skills in 2D sketching, parametric 3D modeling, assemblies, sheet metal, weldments, engineering drawings, BOM documentation, design automation and manufacturing-oriented product development.

The course begins with fundamental sketching and part modeling and progressively covers advanced parametric design, assembly mechanisms, standard components, sheet metal, surface modeling, weldments, engineering documentation and design automation concepts.

Students will work on practical mechanical design projects and learn the complete workflow from concept and sketch → 3D part → assembly → engineering drawing → BOM → manufacturing documentation.

What You Will Learn

  • Autodesk Inventor interface and workflow
  • 2D sketching and geometric constraints
  • Parametric 3D part modeling
  • Advanced feature-based modeling
  • Assemblies and component relationships
  • Mechanical mechanisms and interference checking
  • Standard components and Content Center
  • Sheet metal design
  • Surface and complex modeling
  • Weldment design
  • Engineering drawings
  • Section and detail views
  • Parts lists and Bill of Materials
  • Materials and product visualization
  • Design parameters and automation
  • iLogic concepts
  • Design validation and analysis concepts
  • Manufacturing and CAD/CAM concepts
  • Complete mechanical CAD projects

Who Can Join?

  • Mechanical Engineering Students
  • Automobile Engineering Students
  • Production Engineering Students
  • Industrial Engineering Students
  • Mechatronics Students
  • Manufacturing Engineering Students
  • Diploma & ITI Students
  • CAD/CAM Learners
  • Mechanical Designers
  • Product Design Aspirants
  • Engineering Professionals

Prerequisite

  • Basic computer knowledge
  • Basic engineering drawing knowledge
  • Basic mechanical engineering concepts are helpful
  • CAD fundamentals are beneficial but not mandatory
  • No previous Autodesk Inventor experience is required

Course Outcome

After completing the course, learners will be able to:

  • Create accurate 2D sketches
  • Develop parametric 3D mechanical components
  • Create and manage mechanical assemblies
  • Design sheet metal components
  • Develop weldment models
  • Use standard mechanical components
  • Prepare professional engineering drawings
  • Generate parts lists and BOMs
  • Perform basic design validation and interference checks
  • Understand design automation and iLogic concepts
  • Prepare models for manufacturing
  • Develop complete mechanical product design projects

Career & Learning Opportunities

  • Autodesk Inventor Designer
  • Mechanical CAD Designer
  • 3D CAD Designer
  • Mechanical Design Engineer Trainee
  • Product Design Engineer Trainee
  • CAD/CAM Engineer Trainee
  • Mechanical CAD Draftsman
  • Manufacturing Design Trainee
  • Sheet Metal Design Engineer Trainee
  • Mechanical Assembly Designer
  • Product Development Assistant
  • Engineering Design Assistant
  • Tool Design Trainee
  • CAD Project Assistant
  • Design & Development Trainee


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Course Syllabus

Module 1 – Introduction to Autodesk Inventor

  • Introduction to Autodesk Inventor
  • Inventor interface and workspace
  • Project and file management
  • Navigation and viewing tools
  • Design workflow
  • Part, assembly and drawing environments

Module 2 – Sketching Fundamentals

  • Creating 2D sketches
  • Sketch environment
  • Lines, circles, arcs and rectangles
  • Geometric constraints
  • Dimensional constraints
  • Fully constrained sketches

Module 3 – Advanced Sketching

  • Construction geometry
  • Trim, extend and offset
  • Mirror and pattern
  • Tangent and other geometric relationships
  • Sketch editing techniques
  • Practical sketch exercises

Module 4 – Part Modeling

  • Introduction to 3D part modeling
  • Extrude and Revolve
  • Hole and Thread features
  • Fillet and Chamfer
  • Shell and Draft
  • Basic parametric part design

Module 5 – Advanced Part Design

  • Sweep and Loft
  • Rib and Web features
  • Advanced holes
  • Pattern features
  • Mirror features
  • Feature editing and design history

Module 6 – Parametric & Feature-Based Design

  • Parameters and dimensions
  • Model browser and feature tree
  • Design intent
  • Adaptive design concepts
  • Feature dependencies
  • Parametric model modification

Module 7 – Assembly Design

  • Introduction to assemblies
  • Placing components
  • Assembly constraints
  • Component positioning
  • Standard and adaptive components
  • Assembly browser management

Module 8 – Advanced Assembly & Mechanisms

  • Advanced assembly relationships
  • Joints and motion
  • Mechanical mechanisms
  • Interference checking
  • Assembly analysis
  • Exploded assembly concepts

Module 9 – Content Center & Standard Components

  • Introduction to Content Center
  • Standard fasteners
  • Bolts, nuts and washers
  • Bearings and other standard components
  • Component selection and placement
  • Standardized assembly design

Module 10 – Sheet Metal Design

  • Sheet metal environment
  • Sheet metal rules
  • Face and flange creation
  • Bends and corners
  • Cut features
  • Flat pattern generation

Module 11 – Surface & Complex Modeling

  • Surface modeling fundamentals
  • Creating and editing surfaces
  • Surface trimming
  • Boundary and lofted surfaces
  • Surface-to-solid workflows
  • Complex component modeling

Module 12 – Weldments & Fabrication Design

  • Introduction to weldments
  • Weldment assemblies
  • Weld preparation
  • Weld symbols
  • Fabrication components
  • Weldment documentation

Module 13 – Engineering Drawings

  • Creating technical drawings
  • Base and projected views
  • Section and detail views
  • Dimensions and annotations
  • Center marks and centerlines
  • Drawing standards and templates

Module 14 – Parts Lists & Bill of Materials

  • Introduction to BOM
  • Parts lists
  • Balloons and item numbers
  • Assembly documentation
  • BOM customization
  • Manufacturing documentation

Module 15 – Materials, Appearance & Visualization

  • Assigning materials
  • Material properties
  • Appearance settings
  • Colors and textures
  • Visual styles
  • Product presentation and visualization

Module 16 – Design Automation & iLogic Concepts

  • Introduction to design automation
  • Parameters and rules
  • iLogic fundamentals
  • Rule-based design
  • Automated component variations
  • Design productivity techniques

Module 17 – Design Analysis & Validation

  • Design review concepts
  • Interference detection
  • Measurement tools
  • Mass and physical properties
  • Basic stress analysis concepts
  • Model validation

Module 18 – Manufacturing & CAM Concepts

  • Introduction to manufacturing workflow
  • CNC machining concepts
  • Manufacturing-oriented model preparation
  • Tooling and machining considerations
  • Design for manufacturing concepts
  • CAD/CAM workflow

Module 19 – Practical Autodesk Inventor Projects

  • Mechanical component modeling
  • Machine part design
  • Sheet metal enclosure
  • Multi-component assembly
  • Weldment project
  • Detailed engineering drawing
  • BOM and manufacturing documentation

Module 20 – Final Inventor Project & Assessment

  • Complete mechanical product design
  • 2D sketch development
  • Parametric 3D modeling
  • Assembly creation
  • Sheet metal or fabrication component
  • Engineering drawing preparation
  • BOM generation
  • Final project documentation and presentation



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