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Completion In CATIA(S-CC-6302)

  • Last updated Oct, 2026
  • Certified Course

Course Includes

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

What you'll learn

CATIA is a comprehensive 3D CAD and product design course designed for learners who want to develop professional skills in mechanical design, product development and engineering modeling. The course covers the complete design workflow from 2D sketching and parametric part modeling to advanced surface design, assembly creation, drafting and sheet metal design.

Learners will work with CATIA's major design environments including Sketcher, Part Design, Generative Shape Design, Assembly Design, Drafting and Sheet Metal Design. The course also introduces parameters, formulas, Knowledgeware, digital mock-up and manufacturing-oriented design concepts.

Practical projects help students develop industry-oriented skills for creating accurate 3D parts, complex surfaces, assemblies and production drawings.

What You Will Learn

  • Understand CATIA and 3D CAD fundamentals
  • Work with CATIA workbenches
  • Create and constrain 2D sketches
  • Develop parametric 3D parts
  • Use advanced Part Design features
  • Create complex surfaces
  • Perform surface trimming and joining
  • Build mechanical assemblies
  • Apply assembly constraints
  • Create professional engineering drawings
  • Develop sheet metal components
  • Create unfolded sheet metal views
  • Apply dimensions and technical annotations
  • Work with parameters and formulas
  • Understand design automation concepts
  • Perform basic assembly inspection
  • Understand digital mock-up concepts
  • Apply manufacturing-oriented design principles
  • Manage CATIA design files and product structures
  • Complete practical mechanical design projects

Who Can Join?

  • Mechanical Engineering students
  • Automobile Engineering students
  • Aerospace Engineering students
  • Production Engineering students
  • Industrial Engineering students
  • Mechatronics students
  • Diploma students
  • ITI students
  • Mechanical design learners
  • CAD/CAM students
  • Product design professionals
  • Engineering designers
  • Beginners interested in 3D CAD

Prerequisite

Basic computer knowledge and understanding of engineering drawing are helpful. Basic knowledge of mechanical engineering concepts is beneficial, but the course can be started by beginners who want to learn CATIA step by step.

Course Outcome

After completing the course, learners will be able to create parametric 3D mechanical parts, develop complex surfaces, create assemblies, prepare engineering drawings, design basic sheet metal components, use parameters and formulas, inspect product assemblies and develop complete CAD projects using CATIA.

Career & Learning Opportunities

  • CATIA Designer – Trainee
  • Mechanical CAD Designer
  • 3D CAD Designer
  • Product Design Engineer – Trainee
  • Mechanical Design Engineer – Trainee
  • CAD/CAM Engineer – Trainee
  • Automotive Design Engineer – Trainee
  • Aerospace Design Trainee
  • Mechanical CAD Draftsman
  • Product Design Assistant
  • Tool Design Trainee
  • 3D Modeling Engineer – Trainee
  • CAD Project Assistant
  • Design & Development Trainee


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Course Syllabus

Module 1: Introduction to CATIA

  • Introduction to CATIA and CAD
  • Applications of CATIA in engineering
  • CATIA interface and workbenches
  • File management
  • 3D modeling workflow
  • Design methodology
  • Engineering design applications

Module 2: Sketcher Workbench

  • Introduction to Sketcher
  • Creating sketches
  • Profile creation
  • Geometric constraints
  • Dimensional constraints
  • Construction geometry
  • Fully constrained sketches
  • Sketch modification and validation

Module 3: Part Design Fundamentals

  • Introduction to Part Design
  • Creating solid models
  • Pad feature
  • Pocket feature
  • Shaft and Groove
  • Hole feature
  • Draft and thickness
  • Basic part modeling workflow

Module 4: Advanced Part Design

  • Fillet and chamfer
  • Shell and thickness
  • Rib and slot
  • Patterns
  • Mirroring
  • Boolean operations
  • Multi-body design concepts
  • Feature-based modeling

Module 5: Advanced Sketching & Design Features

  • Advanced sketch techniques
  • Reference elements
  • Multi-profile sketches
  • Design intent
  • Feature dependencies
  • Parameters and formulas
  • Design modifications
  • Model accuracy and validation

Module 6: Wireframe & Surface Design

  • Introduction to wireframe modeling
  • Points and lines
  • Splines
  • Curves
  • Planes
  • Surface creation
  • Extrude and revolve surfaces
  • Sweep and multi-section surfaces

Module 7: Generative Shape Design

  • Introduction to Generative Shape Design
  • Advanced surface creation
  • Join and split
  • Trim and boundary
  • Extrapolation
  • Blend and fillet surfaces
  • Surface healing
  • Complex shape development

Module 8: Assembly Design

  • Introduction to Assembly Design
  • Creating assemblies
  • Product structure
  • Inserting components
  • Assembly constraints
  • Coincidence and contact constraints
  • Positioning components
  • Assembly management

Module 9: Advanced Assembly & Product Structure

  • Sub-assemblies
  • Component replacement
  • Exploded views
  • Assembly analysis
  • Product structure management
  • Interference concepts
  • Assembly modifications
  • Large assembly workflow

Module 10: Drafting Workbench

  • Introduction to CATIA Drafting
  • Creating drawing sheets
  • Projection views
  • Section views
  • Detail views
  • Auxiliary views
  • Dimensioning
  • Annotations
  • Technical drawing standards

Module 11: Sheet Metal Design

  • Introduction to sheet metal design
  • Sheet metal parameters
  • Wall creation
  • Flanges
  • Bends
  • Bend allowance concepts
  • Cutouts and holes
  • Unfold and fold operations
  • Sheet metal documentation

Module 12: Generative Sheet Metal Design

  • Advanced sheet metal features
  • Wall and flange operations
  • Corner relief
  • Bend modifications
  • Pattern features
  • Unfolded views
  • Manufacturing considerations
  • Sheet metal part development

Module 13: Generative Drafting & Documentation

  • Advanced drawing generation
  • Automatic views
  • Drawing standards
  • Dimension styles
  • Tolerances
  • Surface finish symbols
  • Geometric dimensioning concepts
  • Drawing templates
  • Production documentation

Module 14: Mechanical Design & Engineering Features

  • Mechanical component modeling
  • Standard engineering features
  • Fasteners and holes
  • Shafts and housings
  • Brackets and supports
  • Mechanical part development
  • Design modifications
  • Engineering design practices

Module 15: Parameters, Formulas & Knowledgeware

  • Introduction to CATIA parameters
  • Creating parameters
  • Formulas
  • Design tables
  • Relations
  • Rules and checks
  • Design automation concepts
  • Parametric design methodology

Module 16: Digital Mock-Up & Assembly Analysis

  • Digital mock-up concepts
  • Product visualization
  • Assembly inspection
  • Clash and interference concepts
  • Component movement
  • Sectioning
  • Measure tools
  • Product validation

Module 17: Manufacturing & CNC Concepts

  • Introduction to manufacturing workflow
  • Manufacturing-oriented design
  • Machining considerations
  • Part manufacturability
  • Tooling concepts
  • CNC manufacturing overview
  • Design-to-manufacturing workflow
  • Manufacturing documentation

Module 18: CATIA Data Management & Collaboration

  • CATPart and CATProduct files
  • CATDrawing files
  • File organization
  • Data exchange
  • Import and export concepts
  • Design revisions
  • Model linking
  • Collaborative design workflow

Module 19: Practical CATIA Projects

  • Mechanical component modeling
  • Bracket design
  • Shaft and housing design
  • Sheet metal component
  • Complex surface model
  • Multi-part assembly
  • Production drawing
  • Parametric design project
  • Complete product modeling

Module 20: Final CATIA Project

  • Project planning
  • Concept and design development
  • Sketch creation
  • Part modeling
  • Surface development
  • Assembly creation
  • Engineering drawings
  • Design validation
  • Parametric modifications
  • Final product documentation
  • Project presentation


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