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  • Understanding Creo Parametric concepts.
  • Create and modify 2D sketches on datum planes.
  • Sketching geometry and using tools.
  • Create part features using: extrude, revolve, blend, hole, shell and sweep functions.
  • Creating datum planes and datum axes.
  • Create parametric relationships between features and modify features Laying out drawings and creating views.
  • Comprehensive two part Design Project.
  • Selecting and editing geometry, features, and models.
  • Learn advance modelling process.
  • Learning how to use the Creo Parametric interface.
  • Generate and dimension a multi view orthographic drawing.
  • Annotate notes and text on drawings.
  • Build a 3D assembly.
  • Mechanism (Gear, Cam follower, Piston cylinder, Slider crank etc.)
  • Animation ( Snapshot).
  • Manufacturing (Use application vericut).
  • Basic simulation.
  • Drawing view and BOM (Bill of material).
  • Control and modify the operating environmental settings.
  • Complete work accurately, with attention to detail. Assembling with connections.
  • Create Engineering, Industrial Graphics & Design in 3D or 2D.

Creo is a family or suite of design software supporting product design for discrete manufacturers and is developed by PTC.

Creo Parametric: The flagship application in the Creo Suite, Creo Parametric is the only software you need for 3D CAD and CAM.  With Creo Parametric, you can seamlessly combine parametric and direct modeling; open non-native CAD data and collaborate with almost anyone thanks to Unite technology; and relax knowing all downstream deliverables will update automatically. Combine this range of capabilities with ease-of use, and you have a product design accelerator.

2D CAD | 3D CAD | CAM | Simulation | Visualization | Analysis

 

Why Creo?

Our software doesn’t produce innovation: you do. But Creo can help by giving you powerful tools all within one environment as well as choice and flexibility in how you use them.

What can you design? One customer designed an artificial heart. Another created a 1.5 ton light sculpture. Maybe your next great product is that one on your desk.

 

Creo is best designed for Mechanical Engineer, Automobile Engineer. Mechatronics Engineer

 

SS eAcademy offer Complete training for Creo tutorials.

  • Basic Computer Knowledge
  • A PC or Computer
  • Creo Software for your Practice
  • Basic mathematics and Engineering Knowledge
  • Basic Drawing Knowledge
  • Mechanical Engineer
  • Automobile Engineer
  • Aerospace Engineer
  • Producation Engineer
  • Design Engineer
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  • Section 1 : Introduction 1 Lectures

    • Lecture 1 :
  • Section 2 : Sketching 18 Lectures 00:10:13

    • Lecture 1 :
    • Rectangle
    • Lecture 2 :
    • Circle
    • Lecture 3 :
    • Line Chain
    • Lecture 4 :
    • Arc
    • Lecture 5 :
    • Ellipse
    • Lecture 6 :
    • Spline
    • Lecture 7 :
    • Fillet
    • Lecture 8 :
    • Chamfer
    • Lecture 9 :
    • Text
    • Lecture 10 :
    • Line Tangent
    • Lecture 11 :
    • Offset
    • Lecture 12 :
    • Palatte
    • Lecture 13 :
    • Centreline, point & Co-ordinate System
    • Lecture 14 :
    • Grid & Line Style
    • Lecture 15 :
    • Editing Options
    • Lecture 16 :
    • Constraints Option
    • Lecture 17 :
    • Dimension Option
    • Lecture 18 :
    • Inspect Option
  • Section 3 : Part 22 Lectures 01:39:32

    • Lecture 1 :
    • Extrude Command –Sketch to 3D Object
    • Lecture 2 :
    • Extrude Command - Sketch to 3D Object (In Plane)
    • Lecture 3 :
    • Extrude Command – Make thicken Object of Sketch
    • Lecture 4 :
    • Extrude Command – Make a Surface object from Sketch
    • Lecture 5 :
    • Extrude command - Cut Out From 3D Object
    • Lecture 6 :
    • Extrude Command – Depth Option
    • Lecture 7 :
    • Extrude Command – Make Taper object Form 2D Sketch
    • Lecture 8 :
    • Extrude Command - Basic Example
    • Lecture 9 :
    • Sweep Command - Sketch to 3D Object
    • Lecture 10 :
    • Sweep Command - Cut Out From 3D Object
    • Lecture 11 :
    • Sweep Command – Advanced Features
    • Lecture 12 :
    • Swept Blend Command
    • Lecture 13 :
    • Swept Blend Command- Advanced Command
    • Lecture 14 :
    • Revolve Command - Sketch to 3D Object
    • Lecture 15 :
    • Introduction of Part
    • Lecture 16 :
    • Helical Sweep
    • Lecture 17 :
    • Revolve Command- Cut Out From 3D Object
    • Lecture 18 :
    • Toroidal Bend
    • Lecture 19 :
    • Revolve Command - Basic Example
    • Lecture 20 :
    • Rotational Blend Command
    • Lecture 21 :
    • Blend Command- Sketch to 3D Object
    • Lecture 22 :
    • Helical Sweep Command- Treading on 3D Object
  • Section 4 : Modified Tools 19 Lectures 00:54:39

    • Lecture 1 :
    • Copy and past Command
    • Lecture 2 :
    • Hole Command- Create Simple Hole
    • Lecture 3 :
    • Hole Command- Create Standard Custom Hole
    • Lecture 4 :
    • Round Command- Part 1
    • Lecture 5 :
    • Round Command- Part 2
    • Lecture 6 :
    • Round Command- Part 3
    • Lecture 7 :
    • Round Command- Part 4
    • Lecture 8 :
    • Auto Round Command
    • Lecture 9 :
    • Chamfer Command-Apply at Edge of 3D Object
    • Lecture 10 :
    • Draft Command
    • Lecture 11 :
    • Variable Pull Direction Draft Command
    • Lecture 12 :
    • Shell Command
    • Lecture 13 :
    • Rib Command
    • Lecture 14 :
    • Trajectory Rib Command
    • Lecture 15 :
    • Cosmetic Sketch
    • Lecture 16 :
    • Cosmetic Thread
    • Lecture 17 :
    • Cosmetic Groove
    • Lecture 18 :
    • Warp Command –Part 1
    • Lecture 19 :
    • Sketch Region
  • Section 5 : Editing Tools Module 7 Lectures 00:39:24

    • Lecture 1 :
    • Pattern - Axis
    • Lecture 2 :
    • Pattern – Direction & Dimension
    • Lecture 3 :
    • Pattern – Fill
    • Lecture 4 :
    • Pattern – Point& Curve
    • Lecture 5 :
    • Mirror Command
    • Lecture 6 :
    • Project Command
    • Lecture 7 :
    • Editing Tools
  • Section 6 : Assembly Creation 4 Lectures 00:48:45

    • Lecture 1 :
    • Knuckle Joint Assembly
    • Lecture 2 :
    • Nut and Bolt creation
    • Lecture 3 :
    • Drawing View (Nut and Bolt - Creation)
    • Lecture 4 :
    • Dimesion Assembly (Nut and Bolt - Creation)
  • Section 7 : Drawing View 7 Lectures

    • Lecture 1 :
    • Introduction of Drawing View
    • Lecture 2 :
    • Add Model and set view type
    • Lecture 3 :
    • How to add assembly and details
    • Lecture 4 :
    • How to Show Assembly details
    • Lecture 5 :
    • Edit note and surface symbol
    • Lecture 6 :
    • Create BOM Table in detailing
    • Lecture 7 :
    • Drawing Exporting to PDF
  • Section 8 : Mechanism 5 Lectures

    • Lecture 1 :
    • Nut bolt Mechanism
    • Lecture 2 :
    • Gear Mechanism
    • Lecture 3 :
    • Cam Follower Mechanism
    • Lecture 4 :
    • Piston Cylinder Mechanism
    • Lecture 5 :
    • Slide Mechanism
  • Section 9 : Sheetmetal 7 Lectures

    • Lecture 1 :
    • Revolve Command
    • Lecture 2 :
    • Flat and Flange
    • Lecture 3 :
    • Twist Command
    • Lecture 4 :
    • Sketch Form & Punch Form
    • Lecture 5 :
    • Bend Command
    • Lecture 6 :
    • Unbend & Bend Back
    • Lecture 7 :
    • Offset, Extend and Split command
  • Section 10 : Format, Mark Up and Weld Mate 11 Lectures 00:13:58

    • Lecture 1 :
    • Creating Drawing Template format with title block
    • Lecture 2 :
    • Weld Mate
    • Lecture 3 :
    • Manufacturing Process and NC Code Generate
    • Lecture 4 :
    • Mold Designing and Casting
    • Lecture 5 :
    • Mold Designing and Casting
    • Lecture 6 :
    • Photo-realistic Rendering
    • Lecture 7 :
    • Setting Welding Standard
    • Lecture 8 :
    • Static Analysis
    • Lecture 9 :
    • Work-book
    • Lecture 10 :
    • Top down assembly Approach
    • Lecture 11 :
    • How to Draw Pully
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