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CATIA V5 Industry Oriented Practice Modules
Rating: 3.8 out of 5(6 ratings)
29 students

CATIA V5 Industry Oriented Practice Modules

Practice Modules On Sketching, Part Modelling, Assembly Design, Sheet Metal Design and Drafting
Last updated 7/2020
English
English [Auto],

What you'll learn

  • CATIA V5
  • Sketching
  • Part Modelling
  • Assembly Design
  • Sheet Metal Design
  • Manufacturing Technology
  • Industrial Design
  • Manufacturing Drawing Preparation
  • Drafting
  • Design Standards

Course content

3 sections43 lectures7h 52m total length
  • Sketching Practice Module Lecture-019:59

    Begin the first sketch in Catia v5 by setting inch units, picking a plane, drafting a profile, and applying dimensions and constraints to full constraints.

  • Sketching Practice Module Lecture-029:55

    Sketch a rough profile in CATIA V5, set dimensions and constraints on the x-ray plane, then remove unnecessary dimensions and finalize a constrained sketch.

  • Sketching Practice Module Lecture-0311:17

    Master sketching in CATIA V5 through fully constrained geometry, applying precise angles like 45 degrees and various dimensions, and adjusting positions on planes for accurate design.

  • Sketching Practice Module Lecture-044:59

    learn to create a fully constrained sketch in Catia v5, reference a profile, name the sketch elements, and set heights in inches.

  • Sketching Practice Module Lecture-058:15

    Students practice sketching diskettes in Catia v5, apply tangency between circles and lines, set radii and dimensions, and enforce a 90-degree constraint to develop a fully constrained sketch.

  • Sketching Practice Module Lecture-069:02

    Learn to build a fully constrained CATIA V5 sketch by cleaning unwanted entities, applying dimensions and angles, and saving after ensuring constraints.

  • Sketching Practice Module Lecture-0710:19

    Build a complex Catia v5 sketch by creating tangent circles with specified radii and diameters, applying dimensions, and enforcing coincident and angle constraints.

  • Sketching Practice Module Lecture-0810:25

    Construct circles with a radius of 2.5, enforce tangency constraints, set diameters, draw lines for distance checks, and align elements with tangent and parallel relationships in CATIA V5.

  • Sketching Practice Module Lecture-0911:32

    Place six circles with tangency to form a clean sketch, ensuring fully defined dimensions and avoiding unnecessary lines while defining radii with hold control.

  • Sketching Practice Module Lecture-1011:35

    Practice sketching to improve tangency commands with circles and construction lines, using trim, extend, and coincident constraints to define radii and center points.

  • Sketching Practice Module Lecture-1112:07

    Create a catia v5 sketch with concentric circles, set diameters, add a 40-degree construction line, and enforce tangency and coincident constraints for a precise two-tube profile.

  • Sketching Practice Module Lecture-1210:20

    In this sketching practice module, learn to create three circles with reference lines, set dimensions and decimal places, and develop a repeating circular pattern in Catia V5.

  • Sketching Practice Module Lecture-1314:45

    Master sketching elongated circular holes in CATIA V5 by applying radii, tangency, concentric constraints, and construction lines with 30° and 38° spacing for a complete composite sketch.

  • Sketching Practice Module Lecture-1410:49

    Develop sketching proficiency in Catia v5 by constructing concentric circles, applying construction lines and symmetry, and precisely dimensioning centers and diameters to form a sixfold, tangency-aware pattern.

  • Sketching Practice Module Lecture-1512:32

    Learn to create two tangent circles in CATIA V5, set radii such as 17 mm, apply and manage constraints and dimensions, and hide constraints for a clear, fully constrained sketch.

  • Sketching Practice Module Lecture-1612:16

    Learn to create diskettes on a base plane using construction lines, symmetry, patterns, and fully constrained dimensions with circles of 14 mm diameter.

  • Sketching Practice Module Lecture-177:18

    Master sketching practice by setting dimensions, enforcing symmetry and constraints, and creating four tangent circles with controlled radii and visible construction lines.

  • Sketching Practice Module Lecture-1811:08

    Sketch a complex CAD figure in CATIA V5 by creating planes, circles with defined diameters, and fully constraining lines with coincident and angular relationships.

  • Sketching Practice Module Lecture-199:46

    practice creating fully constrained sketches in CATIA V5, applying dimensions, radii, tangency, parallelism, and right-angle constraints to build precise, manufacturable geometries.

  • Sketching Practice Module Lecture-207:30

    Practice sketching by setting dimensions to two inches, applying constraints, and making the sketch fully constrained. Build concentric circles with specified diameters and distances to ensure containment.

  • Sketching Practice Module Lecture-2128:35

    Practice creating fully constrained sketches in CATIA V5 by applying minimum dimensions, center lines, concentric circles, and relations such as tangent and coincident to define precise geometries.

  • Sketching Practice Module Lecture-225:44

    Learn hands-on sketching in CATIA V5 with practice modules, focusing on creating base materials, holes, and fully constrained sketches, and verifying openings in complex sketches.

Requirements

  • CATIA V5 Basics
  • Engineering Basics

Description

Course Has been created to provide the CAD knowledge in the Industrial Level, This course has been created  exactly how the industry projects will be executed to produce Quality products to the Clients.

I am sure after taking this course with proper practice with the material provided in the course the students can execute the Operations as per the industry needs.

While Explaining the Part Modelling and Drafting Manufacturing methods has been explained clearly and how a designer should adopt his design methods according to the manufacturer needs.

Apart from the Design for manufacturing and design for assembly this method of Designing  can be followed to produce even automation works also.


Curriculum

Sketching

  1. About Catia

  2. Catia Interface

  3. Entering into Mechanical Design

  4. Introduction to Sketcher Module

  5. Entering into Sketcher Interface

  6. Sketching Interface

  7. Specification Tree

  8. Mouse Controls

  9. Profile Command

  10. Rectangle and its types

  11. Parallelogram

  12. Elongated Hole

  13. Cylindrical Elongated Hole

  14. Key Hole Profile

  15. Hexagon

  16. Centered Rectangle

  17. Centered Parallelogram

  18. Circle and Types

  19. Arcs and Types

  20. Spline and Types

  21. Conic Curves and Types

  22. Line and Types

  23. Point and Types

  24. Corner

  25. Chamfer

  26. Trim

  27. Break

  28. Quick Trim

  29. Close arc and Compliment

  30. Mirror and Symmetry

  31. Translate and Rotate

  32. Scale and Offset

  33. Dimensions and Types

  34. Geometric Constrains

  35. Animate Dimensions

  36. Multi Dimension Edit

  37. Sketching Practice

Part Modelling

  1. Entering into Part Design module from Sketcher

  2. Pad

  3. Multi Pad

  4. Pocket

  5. Multi Pocket

  6. Shaft

  7. Groove

  8. Hole and Its Types

  9. Rib

  10. Slot

  11. Stiffener

  12. Multi Section Solid

  13. Removed Multi Section Solid

  14. Fillets and Types

  15. Chamfer and Types

  16. Draft Angle

  17. Shell and Thickness

  18. Face Remove

  19. Threads

  20. Translate

  21. Rotate

  22. Symmetry

  23. Mirror

  24. Pattern and Types

  25. Scaling and Affinity

  26. Different Shades

  27. Materials

  28. Part Design Practice

  29. Section Views

  30. Measure Tools

Assembly

  1. Introduction to Assembly

  2. Base Component Import

  3. Fixing the Base Component

  4. Child component Assembly method

  5. Using Different constrains

  6. Different Patterns in Assembly

  7. Linear Pattern in Assembly

  8. Circular Pattern in Assembly

  9. Copy of Child Components

  10. Bill of Materials

  11. Hiding a component

  12. Exploded View in Assembly

  13. Exploded Line Sketch in Assembly

  14. Assembly Features

  15. Assembly Practice

Sheet Metal Design

  1. Introduction to Sheet Metal Design

  2. Sheet Metal Parameters

  3. Wall

  4. Wall on Edge

  5. Extrude

  6. Flange

  7. Hem

  8. Tear Drop

  9. User Flange

  10. Cut Out

  11. Hole

  12. Round Slot

  13. Bend

  14. Flat

  15. Bend from Flat

  16. Emboss

  17. Embossing types

  18. Mirror

  19. Pattern

  20. Pattern Types

  21. Canonical Hopper

  22. Surface Hopper

  23. Fillet

  24. Chamfer

  25. Flat

Drafting/Detailing

  1. Introduction To Drafting

  2. Selecting Sheet Its Size and Sheet Standards

  3. Choosing the Model to Details

  4. Standard Views Creation Methods

  5. Model Views/ Custom Views

  6. Section Views

  7. Detail Views

  8. Broken View

  9. Broken Out View

  10. Crop View

  11. Auxiliary View

  12. Smart Dimensions

  13. Dimension Types

  14. Base Line Dimension

  15. Chain Dimension

  16. Ordinate Dimension

  17. Model Dimension

  18. Notes and Spell Check

  19. Surface Finish

  20. Hole Call Out

  21. GD&T and Datum Features

  22. Center Mark  & Center Line

  23. Blocks and Hatching

  24. Revision Symbols and Tables

  25. Assembly Drafting

  26. Ballooning

  27. Weld Symbols

  28. Drafting Practice

  29. Quality Checking

  30. Drawings Comparison at Different Revisions 


Who this course is for:

  • Mechanical Engineers
  • Aerospace Engineers
  • Automotive Engineers