
https://www.udemy.com/catia-v5-r20-industry-oriented-program/?couponCode=CATIAV5650
Explore CATIA V5 R20 modules, from infrastructure and mechanical design to assembly, sheet metal, drafting, and plm, with surface design, meshing, and structural analysis.
Begin with the sketch, explore hybrid design environment, switch between workbenches, and use standard tools to create, save, and manage CATIA V5 R20 models.
Enter the sketching module in CATIA V5 by selecting a command and a plane, then master mouse controls to pan, rotate, and zoom while managing the background and sketch boards.
Master profile creation in CATIA V5 R20 using profile tools to sketch lines, centers, conic sections, center lines, and alignment, then edit sketches by measuring, copying, and moving features.
Explore operation tools in CATIA V5 R20 by modifying sketches, trimming and quick trimming lines, extending and breaking lines, creating arcs, symmetry features, and duplicating sketches.
Edit dimensions and constraints in CATIA V5 R20, adjusting initial and current values and tolerances to explore constraint animation and motion of sketches.
Design components by selecting suitable manufacturing methods, defining a base material, and planning layer-by-layer material removal through milling, boring, and surface finishing to ensure efficient manufacturability.
Explore base creation with pad extrusion in CATIA V5 by sketching on a plane, selecting dimensioned profiles, and applying up-to-plane or up-to-next extrusion options, then editing features.
learn to use the pocket feature in catia v5 r20 to remove material from base material by sketching on a plane, setting depth limits, and previewing the result.
Create multiple sketches and apply multi pad or multi pocket in one feature across all sketches, enabling varied cross-sections of beams and holes (rectangular or circular) for civil engineering models.
Explore how to create rib and slot features in CATIA V5 R20 by using planes, guides, profiles, and the slot command to build complex automotive, gas turbine, and aviation components.
Design a stiffener to strengthen a member and prevent buckling under loads beyond the design limit, by adding a supporting member and extending lines in CATIA V5 R20.
Create and manipulate multi section solids in catia v5 r20 by defining cross sections on multiple planes, copying sketches, and applying removal to form hollow and complex geometries.
Explore how to apply fillets and chamfers in CATIA V5 R20, using edge, face, and variable-radius options to reduce stress concentration and improve part life.
Learn to create holes in CATIA V5 R20 with the hole wizard, choosing input type, bottom type (flat), angles and diameters to define blind, simple, and threaded holes.
Learn how to scale CATIA V5 models from tiny prototypes to final designs, using a center reference and directional scaling to reduce complexity and shape the outer body.
Explore essential CATIA V5 R20 part design commands through hands-on practice. Build cylindrical and rectangular features, define base planes and radii, then execute milling operations with guided sketches.
Explore CATIA V5 R20 part design through two methods to create a horn-like feature and holes, using sketches, reference geometry, and dimensions.
Please Find the Practice manual here
Enter the assembly module from mechanical design, import part models, create constrained product structure to prevent interference, and prefer bottom-up assembly using existing components with show preview and read-only access.
Import child components into the parent assembly in CATIA V5 R20, align with existing positions, apply coincident and concentric constraints, set offsets, and reuse components to complete the assembly.
Practice universal coupling assembly in CATIA v5 r20 by importing components, constraining pins and faces, aligning center axes and planes, updating the assembly, and hiding parts for clarity.
Assemble a radial engine piston in Catia v5 r20 by importing master rod and cylinder, fixing components, and applying coincident and centerline constraints to align the piston, pin, and planes.
Assemble the radial engine piston by patterning piston rings, duplicating components with the undo pattern, and building sub-assemblies before importing the entire assembly into the chamber.
Learn to assemble a radial engine piston in CATIA V5 R20 by importing parts, aligning center points, applying coincident and contact constraints, and creating a clean sub-assembly.
Explore exploded views in CATIA V5 R20 by examining automatic and manual explosion methods for radial engine piston assemblies, including 3D and 2D levels and fixed components.
Demonstrates applying a circular pattern in a CATIA V5 R20 assembly to replicate holes and patches by selecting the component and applying the pattern, yielding consistent features.
Explore angle of projection, including first angle and third angle projection. Learn how top and bottom, left and right views are placed relative to the observer and the object.
Explore the drafting environment in CATIA V5 R20, import views, set the third angle of projection (anglo projection), and create isometric and auxiliary base views using the view toolbar.
Learn to create section views and detailed views in CATIA V5 R20 to clearly detail cylindrical components, place annotations, and adjust center lines and scaling.
Use clipping view to display only a portion of a component, and apply broken view to adjust length. In assemblies, broken-out views reveal hidden fasteners and internal features.
Create new dimension values in CATIA V5 R20, using gender, team, and stag dimensions to adjust models, and set base and text positions for accurate dimensioning.
Learn to create modern dimensions from the model by using generate dimensions after selecting the view; capture model dimensions, then add notes, leaders, and description tables for manufacturing drawings.
Create multiple drawing sheets as needed, applying the same background properties. Assess model complexity to decide how many sheets, ensure efficient use of space, and manage sheets by right-clicking.
Master Catia v5 r20 drafting techniques by creating a manufacturing drawing for a component, setting up views, tidy blocks, and efficient space utilization to avoid excess pages.
Learn drafting practice in CATIA V5 R20 by creating views, switching to section views, and choosing projection methods—third angle vs angle of projection—and applying sheet properties for accurate engineering drawings.
Master Catia v5 r20 drafting by detailing a cylindrical rod, defining its length and diameter, and applying bore features for manufacturing workflows, with nc standards.
Explore drafting practice in CATIA V5 R20 by detailing dimensions, tolerances, and extension lines. Adjust dimension properties, create chamfers and 3D features, and translate manufacturer specifications into precise model geometry.
Drafting practice in CATIA V5 R20 emphasizes careful selection of features, working with points and 45-degree angles, and detailing to control surface finish.
the lecture explains applying surface finish symbols and adjusting roughness for aerospace and automotive components, including grooves, hydraulic pistons, and actuators, using group data workflows.
Perform drafting practice in Catia v5 r20, focusing on vertical alignment, text placement, feature declaration, and surface finish across faces to complete the drafting workflow.
Practice drafting in catia v5 r20 by extracting and adjusting dimension values from drawings, preserving data integrity, and comparing standard versus nonstandard methods for calling out a column.
This draft practice for CATIA V5 R20 teaches importing symbols, aligning values, and presenting parts in isometric view with reduced scaling to aid manufacturer understanding of finished components.
Refine drafting practice in Catia v5 r20 by standardizing angles, keeping 60 degrees between features, removing extraneous degrees, and using references and diamonds to convey dimensions to the manufacturer.
Master drafting practice in CATIA V5 R20 by editing sheet backgrounds, adding dimensions, and managing SAP numbers. Review component weight, distance, and mass to understand the product development cycle.
Explore drafting practice for Catia v5 r20 by examining revision control in manufacturing, including part modifications, revision labeling (a, b, c, d), and documenting changes for traceability.
Learn how to create assembly drawings and manufacturing drawings for auto manufacturers, including isolating individual parts, using isometric views, and applying balloon numbers—manual versus automatic balloon generation.
Create balloons for annotations in CATIA V5 R20, adjust sizes to seven, and set quantities with patterns to save time while building an exploded view using properties and veiling symbols.
Explore assembly drafting in Catia v5 r20 by creating an exploded view, relating the assembled view to the exploded view, and detailing each component on its own sheet.
Select suitable export formats for manufacturing handoff, including grain format and block exports, to share box models, assembly models, and related data with customers, saving in formats that ensure accessibility.
Engage in drafting practice for the complete industry oriented program on CATIA V5 R20, and learn how to reach the instructor for doubts and technical help.
This Lecture Explains the Various Importanant considerations and methods to be followed while developing a New Product in any kind of Industry.
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
About Catia
Catia Interface
Entering into Mechanical Design
Introduction to Sketcher Module
Entering into Sketcher Interface
Sketching Interface
Specification Tree
Mouse Controls
Profile Command
Rectangle and its types
Parallelogram
Elongated Hole
Cylindrical Elongated Hole
Key Hole Profile
Hexagon
Centered Rectangle
Centered Parallelogram
Circle and Types
Arcs and Types
Spline and Types
Conic Curves and Types
Line and Types
Point and Types
Corner
Chamfer
Trim
Break
Quick Trim
Close arc and Compliment
Mirror and Symmetry
Translate and Rotate
Scale and Offset
Dimensions and Types
Geometric Constrains
Animate Dimensions
Multi Dimension Edit
Sketching Practice
Part Modelling
Entering into Part Design module from Sketcher
Pad
Multi Pad
Multi Pocket
Shaft
Groove
Hole and Its Types
Rib
Slot
Stiffener
Multi Section Solid
Removed Multi Section Solid
Fillets and Types
Chamfer and Types
Draft Angle
Shell and Thickness
Face Remove
Threads
Translate
Rotate
Symmetry
Mirror
Pattern and Types
Scaling and Affinity
Different Shades
Materials
Part Design Practice
Section Views
Measure Tools
Assembly
Introduction to Assembly
Base Component Import
Fixing the Base Component
Child component Assembly method
Using Different constrains
Different Patterns in Assembly
Linear Pattern in Assembly
Circular Pattern in Assembly
Copy of Child Components
Bill of Materials
Hiding a component
Exploded View in Assembly
Exploded Line Sketch in Assembly
Assembly Features
Assembly Practice
Drafting/Detailing
Introduction To Drafting
Selecting Sheet Its Size and Sheet Standards
Choosing the Model to Details
Standard Views Creation Methods
Model Views/ Custom Views
Section Views
Detail Views
Broken View
Broken Out View
Crop View
Auxiliary View
Smart Dimensions
Dimension Types
Base Line Dimension
Chain Dimension
Ordinate Dimension
Model Dimension
Notes and Spell Check
Surface Finish
Hole Call Out
GD&T and Datum Features
Center Mark & Center Line
Blocks and Hatching
Revision Symbols and Tables
Assembly Drafting
Ballooning
Weld Symbols
Drafting Practice
Quality Checking
Drawings Comparison at Different Revisions