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Completion In CREO PRO-E(S-CCP-2918)

  • Last updated Oct, 2026
  • Certified Course

Course Includes

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

What you'll learn

CREO PRO-E is a comprehensive CAD course designed to develop professional skills in parametric 3D modeling, mechanical design, assembly, surface modeling, sheet metal and engineering documentation. The course introduces learners to Creo Parametric and its feature-based design methodology.

Students will learn to create accurate parametric parts using sketches, dimensions, constraints and advanced modeling features. The course also covers assembly design, complex surface development, sheet metal components, engineering drawings, mechanism simulation and manufacturing-oriented design concepts.

Through practical projects, learners gain hands-on experience in developing complete mechanical products from individual components to assemblies and production-ready documentation.

What You Will Learn

  • Understand Creo Parametric and Pro/ENGINEER fundamentals
  • Navigate the Creo design environment
  • Create and constrain 2D sketches
  • Develop parametric 3D mechanical parts
  • Use advanced feature-based modeling
  • Manage parent-child relationships
  • Create datum planes, axes and coordinate systems
  • Build mechanical assemblies
  • Apply assembly constraints
  • Create exploded assembly views
  • Develop basic and advanced surfaces
  • Design sheet metal components
  • Create flat patterns
  • Prepare engineering drawings
  • Apply dimensions and tolerances
  • Understand GD&T concepts
  • Perform basic mechanism and motion simulation
  • Use parameters, relations and family tables
  • Apply manufacturing-oriented design principles
  • Complete professional Creo 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
  • CAD/CAM learners
  • Mechanical design professionals
  • Product design learners
  • Engineering designers
  • Beginners interested in 3D CAD

Prerequisite

Basic computer knowledge and understanding of engineering drawing are helpful. Basic mechanical engineering knowledge is beneficial but not mandatory. No previous Creo Pro-E experience is required.

Course Outcome

After completing the course, learners will be able to create parametric 3D mechanical parts, develop complex features and surfaces, design sheet metal components, create assemblies, prepare engineering drawings, understand mechanism simulation, use design parameters and develop complete mechanical CAD projects using Creo Parametric.

Career & Learning Opportunities

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


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Course Syllabus

Module 1: Introduction to Creo Parametric

  • Introduction to Creo Parametric
  • Overview of Pro/ENGINEER
  • CAD and parametric modeling concepts
  • Creo interface and navigation
  • Model tree and feature tree
  • File management
  • Creo design workflow
  • Applications in mechanical engineering

Module 2: Sketcher Fundamentals

  • Introduction to Sketcher
  • Creating 2D sketches
  • Lines, circles and arcs
  • Rectangles and geometric profiles
  • Construction geometry
  • Geometric constraints
  • Dimensional constraints
  • Sketch modification and validation

Module 3: Part Modeling Basics

  • Introduction to Part Design
  • Creating basic 3D models
  • Extrude features
  • Revolve features
  • Hole features
  • Round and chamfer
  • Shell feature
  • Basic parametric modeling workflow

Module 4: Advanced Part Modeling

  • Rib and slot features
  • Draft features
  • Patterns
  • Mirror features
  • Variable rounds
  • Advanced cuts
  • Feature suppression and editing
  • Multi-feature part development

Module 5: Parametric & Feature-Based Design

  • Parametric modeling principles
  • Parent-child relationships
  • Feature dependencies
  • Model tree management
  • Design intent
  • Reference geometry
  • Parameters and relations
  • Design modification and regeneration

Module 6: Advanced Sketching & Reference Geometry

  • Advanced sketch techniques
  • Datum planes
  • Datum axes
  • Coordinate systems
  • Curves and trajectories
  • Reference dimensions
  • External references
  • Complex feature creation

Module 7: Assembly Design

  • Introduction to Creo Assembly
  • Creating assemblies
  • Component placement
  • Assembly constraints
  • Component relationships
  • Sub-assemblies
  • Assembly structure
  • Product organization

Module 8: Advanced Assembly

  • Advanced assembly constraints
  • Mechanism connections
  • Component patterns
  • Flexible components
  • Exploded views
  • Assembly representation
  • Interference concepts
  • Assembly validation

Module 9: Surface Modeling

  • Introduction to surface modeling
  • Basic surface creation
  • Extruded surfaces
  • Revolved surfaces
  • Swept surfaces
  • Boundary surfaces
  • Surface trimming
  • Surface merging

Module 10: Advanced Surface Design

  • Advanced boundary surfaces
  • Blends
  • Style features
  • Freeform surface concepts
  • Surface offset
  • Surface extension
  • Surface editing
  • Complex product shapes

Module 11: Sheet Metal Design

  • Introduction to Creo Sheet Metal
  • Creating sheet metal walls
  • Wall features
  • Flanges
  • Bends
  • Bend allowance concepts
  • Unbend and bend back
  • Sheet metal cuts

Module 12: Advanced Sheet Metal

  • Corner relief
  • Bend relief
  • Form features
  • Punch and die concepts
  • Flat patterns
  • Sheet metal parameters
  • Manufacturing considerations
  • Sheet metal documentation

Module 13: Drafting & Engineering Drawings

  • Introduction to Creo Drafting
  • Creating drawing sheets
  • General views
  • Projection views
  • Section views
  • Detail views
  • Auxiliary views
  • Drawing annotations

Module 14: Dimensioning & GD&T Concepts

  • Linear and angular dimensions
  • Diameter and radius dimensions
  • Tolerances
  • Surface finish symbols
  • Datum concepts
  • Geometric dimensioning and tolerancing
  • Drawing standards
  • Manufacturing documentation

Module 15: Mechanism Design & Motion

  • Introduction to Creo Mechanism
  • Mechanism components
  • Connections and joints
  • Degrees of freedom
  • Servo motors
  • Motion simulation
  • Mechanism analysis
  • Basic kinematic applications

Module 16: Manufacturing & Tool Design Concepts

  • Design for manufacturing
  • Manufacturing-oriented modeling
  • Machining considerations
  • Tooling concepts
  • Mold and die design overview
  • CNC manufacturing workflow
  • Part manufacturability
  • Design optimization

Module 17: Parameters, Relations & Design Automation

  • Creating parameters
  • Relations
  • Formula-based design
  • Family tables
  • Design variations
  • Model-driven design
  • Design automation concepts
  • Reusable engineering models

Module 18: Data Management & Model Validation

  • Creo file structure
  • Part and assembly file management
  • Design revisions
  • Model regeneration
  • Reference management
  • Model checking
  • Design validation
  • Data exchange concepts

Module 19: Practical Creo Pro-E Projects

  • Mechanical bracket design
  • Shaft and housing model
  • Flange component
  • Sheet metal enclosure
  • Complex surface component
  • Multi-part mechanical assembly
  • Production drawing
  • Parametric design project
  • Mechanism simulation project

Module 20: Final Creo Pro-E Project

  • Project planning
  • Design concept development
  • Sketch creation
  • Parametric part modeling
  • Advanced feature development
  • Surface or sheet metal design
  • Assembly creation
  • Engineering drawing preparation
  • Design validation
  • Manufacturing considerations
  • Final project documentation and presentation


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