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Completion In FUSION 360(S-CF3-8402)

  • Last updated Oct, 2026
  • Certified Course

Course Includes

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

What you'll learn

Fusion 360 is a comprehensive CAD, CAM, and product design course designed to develop practical skills in 3D modeling, parametric design, assemblies, sheet metal, engineering drawings, rendering, CNC manufacturing, and 3D printing.

The course begins with sketching and 3D part modeling and gradually progresses to advanced product design, assembly mechanisms, sheet metal, technical documentation, CAM toolpaths, CNC programming concepts, and manufacturing workflows.

Students will work on practical projects to understand how a product moves from concept → 3D design → assembly → documentation → manufacturing/prototyping.

What You Will Learn

  • Fusion 360 interface and design workflow
  • 2D sketching and geometric constraints
  • Parametric 3D modeling
  • Advanced solid and surface modeling
  • Assembly design and motion
  • Sheet metal design
  • Engineering drawings and documentation
  • Materials, appearances and rendering
  • Product design and development
  • Generative design concepts
  • CAM and CNC machining
  • Toolpath creation and simulation
  • CNC programming and post-processing concepts
  • 3D printing and prototype preparation
  • Complete industry-oriented CAD/CAM projects

Who Can Join?

  • Mechanical Engineering Students
  • Automobile Engineering Students
  • Production & Manufacturing Students
  • Industrial Engineering Students
  • Mechatronics Students
  • Diploma & ITI Students
  • CAD/CAM Learners
  • Product Design Students
  • Engineering Professionals
  • Beginners interested in 3D CAD and manufacturing

Prerequisite

  • Basic computer knowledge
  • Basic engineering drawing knowledge is helpful
  • Basic mechanical/manufacturing concepts are beneficial
  • No previous Fusion 360 experience is required

Course Outcome

After completing the course, learners will be able to:

  • Create accurate 2D sketches and 3D models
  • Develop parametric mechanical components
  • Create assemblies and simulate basic movement
  • Design sheet metal components
  • Prepare professional engineering drawings
  • Apply materials and create product visualizations
  • Understand product development workflows
  • Create basic CAM toolpaths
  • Understand CNC machining and post-processing
  • Prepare models for 3D printing
  • Develop complete CAD/CAM product design projects

Career & Learning Opportunities

  • Fusion 360 Designer
  • CAD Designer
  • 3D CAD Designer
  • Mechanical CAD Designer
  • Product Design Assistant
  • CAD/CAM Engineer Trainee
  • Mechanical Design Engineer Trainee
  • Manufacturing Design Trainee
  • CNC/CAM Programming Trainee
  • Product Development Assistant
  • 3D Modeling Designer
  • Engineering Draftsman
  • Design & Development Trainee
  • CAD Project Assistant
  • Prototype Development Assistant


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Course Syllabus

Module 1 – Introduction to Fusion 360

  • Introduction to Autodesk Fusion 360
  • Fusion 360 interface and workspace
  • Cloud-based CAD/CAM platform
  • Navigation and view controls
  • Basic design workflow
  • Design file and project management

Module 2 – Sketching Fundamentals

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

Module 3 – 2D Sketch Design

  • Advanced sketching tools
  • Construction geometry
  • Trim and extend
  • Offset and mirror
  • Patterning sketch elements
  • Practical 2D sketch exercises

Module 4 – 3D Part Modeling

  • Creating 3D solid models
  • Extrude and Revolve
  • Sweep and Loft
  • Hole and Thread features
  • Fillet and Chamfer
  • Basic parametric modeling

Module 5 – Advanced Parametric Modeling

  • Design history and timeline
  • Parameters and dimensions
  • Feature editing
  • Pattern features
  • Mirror features
  • Design intent and model flexibility

Module 6 – Surface Modeling

  • Introduction to surface modeling
  • Creating surface features
  • Patch and Offset
  • Lofted surfaces
  • Surface trimming
  • Surface-to-solid conversion

Module 7 – Assembly Design

  • Introduction to assemblies
  • Components and bodies
  • Component positioning
  • Joints and motion relationships
  • Assembly constraints
  • Basic assembly management

Module 8 – Advanced Assembly & Motion

  • Revolute joints
  • Slider joints
  • Rigid joints
  • Motion relationships
  • Assembly movement simulation
  • Interference and component checking

Module 9 – Sheet Metal Design

  • Sheet metal workspace
  • Sheet metal rules
  • Creating flanges
  • Bends and folds
  • Flat pattern generation
  • Sheet metal component design

Module 10 – Engineering Drawing & Documentation

  • Creating technical drawings
  • Drawing views
  • Section and detail views
  • Dimensions and annotations
  • Parts lists and balloons
  • Drawing templates and documentation

Module 11 – Materials & Appearance

  • Assigning physical materials
  • Material properties
  • Appearance settings
  • Colors and textures
  • Realistic visualization
  • Material-based design presentation

Module 12 – Rendering & Visualization

  • Introduction to Fusion 360 rendering
  • Camera positioning
  • Lighting concepts
  • Environment settings
  • Realistic product visualization
  • Rendering design concepts

Module 13 – Product Design & Development

  • Product design workflow
  • Concept development
  • Design modification
  • Ergonomic product modeling
  • Prototype-oriented design
  • Design review and improvement

Module 14 – Generative Design Concepts

  • Introduction to generative design
  • Design objectives
  • Manufacturing constraints
  • Material and load considerations
  • Generative design workflow
  • Design evaluation concepts

Module 15 – CAM & Manufacturing Fundamentals

  • Introduction to Fusion 360 CAM
  • Manufacturing workspace
  • CNC machining concepts
  • Tool selection
  • Stock setup
  • Manufacturing workflow

Module 16 – CNC Toolpath & Machining

  • 2D machining operations
  • Facing and pocketing
  • Contour machining
  • Drilling operations
  • 3D machining concepts
  • Toolpath simulation

Module 17 – CNC Programming & Post-Processing

  • CNC toolpath verification
  • Machine configuration
  • Post-processing concepts
  • G-code fundamentals
  • CNC program generation
  • Machining safety considerations

Module 18 – 3D Printing & Additive Manufacturing

  • Introduction to additive manufacturing
  • Preparing models for 3D printing
  • STL and mesh concepts
  • Print orientation
  • Manufacturing considerations
  • Prototype development

Module 19 – Practical Fusion 360 Projects

  • Mechanical component modeling
  • Product enclosure design
  • Sheet metal component
  • Multi-component assembly
  • CNC machining project
  • 3D printing prototype
  • Technical drawing preparation

Module 20 – Final Fusion 360 Project

  • Complete product design workflow
  • Concept development
  • 3D modeling
  • Assembly creation
  • Technical documentation
  • Manufacturing preparation
  • Final project presentation


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