AutoCAD
Duration : Learn until you get placed
Foundational and 2D Drafting
- Introduction to AutoCAD: Interface, workspace, starting a drawing, setting units and limits.
- Basic drawing and editing: Commands like line, circle, arc, rectangle, move, copy, rotate, trim, and extend.
- Drawing precision: Using object snaps, polar, and ortho tracking, and entering coordinates.
- Advanced object types: Polylines, splines, polygons, and ellipses.
- Annotation: Creating and editing text, using text styles, and adding dimensions.
- Drawing organization: Using layers, layer properties, and templates.
- Intermediate and advanced topics
- Blocks: Creating, inserting, and managing blocks.
- Hatching: Applying patterns and gradients to areas.
- Layouts and plotting: Setting up paper space, creating viewports, and printing drawings.
- Parametric drawing: Using constraints to create dynamic drawings.
- Practical application and projects
- Project-based learning: Applying learned skills to create specific drawings, such as floor plans, mechanical parts, or structural elements.
- Customization: Modifying command files and creating custom templates.
- Specific disciplines: Specialized modules can cover areas like mechanical.
Solidworks
Duration : Learn until you get placed
Basic modules:
- Sketching & sketching with constrain.
- Part Modelling.
- Drafting.
- Top Down & Bottom-Up Assembly.
- Assembly Motion.
Advance modules:
- Casting.
- Sheetmetal
- Weldment
- Basic Piping
- Basic Simulation
- GD&T Basic
Creo Parametric
Duration : Learn until you get placed
Basic Modules:
- Parametric Sketching & sketching with constrain.
- Part Modelling.
- Detailing & Drafting.
- Top Down & Bottom-Up Assembly.
Assembly Motion.
Advance Modules:
- Casting
- Sheetmetal
- GD&T Basic
- Surfacing
Catia V5
Duration : Learn until you get placed
Basic modules:
- Sketching & sketching with constrain.
- Part Modelling.
- Detailing & Drafting.
- BIW
- Top Down & Bottom-Up Assembly.
- Assembly Motion.
- Advance Modules:
- Sheetmetal
- Surfacing
- GD&T Basic
UG-NX
Duration : Learn until you get placed
Basic modules:
- Sketching & sketching with constrain.
- Part Modelling.
- Detailing & Drafting.
Top Down & Bottom-Up Assembly.
Advance Modules:
- Sheetmetal
- Casting
- Surfacing
- GD&T Basic
Autodesk Inventor
Duration : Learn until you get placed
Basic modules:
- Sketching & sketching with constrain.
- Part Modelling.
- Detailing & Drafting.
Top Down & Bottom-Up Assembly.
Advance Modules:
- Sheetmetal
- Casting
- Surfacing
- GD&T Basic
Ansys Workbench
Schedule on Demand Duration : 20 Hrs.
- Introduction to CAE
- General procedure to conduct FEA
- FEA software
- Key Assumptions in FEA
- Types of Engineering Analysis
- Important terms and definitions
- Classification of materials
- Exercises included for practice
- Introduction to ANSYS Workbench
- Sketching and Part Modeling in Design Modeler
- Introduction to Modeling
- Introduction to Design Modeler Window
- Illustration 1: I-section
- Overview
- Introduction
- Extrusion
- Sketching
- Exercises included for practice
- Defining Material Properties
- Introduction to Engineering Workspace
- Creating and Adding Materials
- Assigning Material to the Beam
- Assigning Material to the Assembly
- Introduction
- Meshing of Plate with Holes
- Generating the mesh, optimize the model and generating the local mesh
- Assembly Meshing
- Static Structural Analysis
- Introduction to Static Structural Analysis
- Pre-processing
- Solution
- Post-processing
- Static Structural Analysis of: Cantilever Beam, Plate with a central circular holes, Plate with a square slot,
- Pressure vessel, Bracket
- Clevis assembly
- Overview
- Introduction
- Static loadings: Ductile materials, Brittle materials
- Fatigue loading: Ductile material
- Exercises included for practice
- Surface and Line Model
- Overview
- Introduction
- Sheet with circular hole-plane stress
- Bracket
- Line body model
- Exercises included for practice
- Overview
- Introduction
- Performing the Modal analysis
- Specifying analysis settings
- Cantilever beam
- Simply supported beam
- Motor cover Assembly
- Connecting rod
LIST PRICE=15000₹ OFFER PRICE=9999₹
Hypermesh Altair
Schedule on Demand Duration : 20 Hrs.
• Introduction to FEM
• Brief on Meshing
• Basic interaction with Hypermesh
• User interface
• Opening/saving files
• Working with panels
• Model organization
• Display control
• Preparing geometry for meshing
• Creating and Editing Line Data, Creating and Editing Solid Geometry
• Importing and Repairing CAD
• Exercises included for practice
SESSION 2:
• Mid surfaces
• Simplifying Geometry
• Refining topology
• Geometry and Mesh Editing using Quick Edit Panel
• Exercises included for practice
SESSION 3:
• Shell meshing
• Ato meshing: meshing on surface geometry
• Meshing without surfaces
• 2D Mesh in curved
• QI Mesh Creation
• Exercises included for practice
SESSION 4:
• Meshing a Model using Shrink Wrap
• Tetra meshing
• Method 1 – standard tetramesh
• Method 2 – volume tetramesh
• Exercises included for practice
SESSION 5:
• Checking tetra element quality
• Remeshing tetra elements
• Creating hexa and penta mesh
• Creating hex-penta mesh using surfaces
• Exercises included for practice
SESSION 6:
• Creating hexahedral mesh with the solid map function
• Quality
• Checking and Editing Mesh
• Exercises included for practice
SESSION 7:
• Assemblies: welding and swapping parts
• Spot connectors
• Area connectors
• Bolt connectors
• Part replacement
• Exercises included for practice
SESSION8:
• Analysis Setup
• Setting up loading conditions
• Formatting Model for analysis
• Obtaining and assigning beam cross section properties using Hyper Beam
• Exercises included for practice
SESSION 9:
• Defining composites
• Working with loads on geometry
• Exercises included for practice
SESSION 10:
• Hypermesh Solver Interfaces
• Review, Test and Project Discussion
LIST PRICE=15000₹ OFFER PRICE=9999₹
LS-Dyna
Schedule on Demand Duration : 20 Hrs.
- Introduction to CAE
- General procedure to conduct FEA
- FEA software
- Key Assumptions in FEA
- Types of Engineering Analysis
- Important terms and definitions
- Classification of materials
- Exercises included for practice
- Introduction to ANSYS Workbench
- Sketching and Part Modeling in Design Modeler
- Introduction to Modeling
- Introduction to Design Modeler Window
- Illustration 1: I-section
- Overview
- Introduction
- Extrusion
- Sketching
- Exercises included for practice
- Defining Material Properties
- Introduction to Engineering Workspace
- Creating and Adding Materials
- Assigning Material to the Beam
- Assigning Material to the Assembly
- Introduction
- Meshing of Plate with Holes
- Generating the mesh, optimize the model and generating the local mesh
- Assembly Meshing
- Static Structural Analysis
- Introduction to Static Structural Analysis
- Pre-processing
- Solution
- Post-processing
- Static Structural Analysis of: Cantilever Beam, Plate with a central circular holes, Plate with a square slot,
- Pressure vessel, Bracket
- Clevis assembly
- Overview
- Introduction
- Static loadings: Ductile materials, Brittle materials
- Fatigue loading: Ductile material
- Exercises included for practice
- Surface and Line Model
- Overview
- Introduction
- Sheet with circular hole-plane stress
- Bracket
- Line body model
- Exercises included for practice
- Overview
- Introduction
- Performing the Modal analysis
- Specifying analysis settings
- Cantilever beam
- Simply supported beam
- Motor cover Assembly
- Connecting rod
LIST PRICE=15000₹ OFFER PRICE=9999₹
AutoCad
Schedule on Demand Duration : 20 Hrs.
Foundational and 2D Drafting
- Introduction to AutoCAD: Interface, workspace, starting a drawing, setting units and limits.
- Basic drawing and editing: Commands like line, circle, arc, rectangle, move, copy, rotate, trim, and extend.
- Drawing precision: Using object snaps, polar, and ortho tracking, and entering coordinates.
- Advanced object types: Polylines, splines, polygons, and ellipses.
- Annotation: Creating and editing text, using text styles, and adding dimensions.
- Drawing organization: Using layers, layer properties, and templates.
- Intermediate and advanced topics
- Blocks: Creating, inserting, and managing blocks.
- Hatching: Applying patterns and gradients to areas.
- Layouts and plotting: Setting up paper space, creating viewports, and printing drawings.
- Parametric drawing: Using constraints to create dynamic drawings.
- Practical application and projects
- Project-based learning: Applying learned skills to create specific drawings, such as floor plans, mechanical parts, or structural elements.
- Customization: Modifying command files and creating custom templates.
- Specific disciplines: Specialized modules can cover areas like mechanica
LIST PRICE=LOWEST PRICE COMPARE TO ALL CADD CENTRE CONTACT US
DIRECT FACE TO FACE MEET
Solidworks
Schedule on Demand Duration : 20 Hrs.
•Features of SolidWorks
•Various products available in SolidWorks for Product Design, Simulation, Communication
•SolidWorks Graphical User Interface: Feature manager design tree, Callouts, Handles, Confirmation corner,
•mouse buttons, keyboard shortcuts, Command Manager,
•Hardware and Software requirements, SolidWorks Task Scheduler, SolidWorks Rx
Session 2:
•Sketch Entities: Inference line, Centerline line, Line, Circle, Arc, Ellipse, Rectangle, Slots, Polygon, Parabola,
•Ellipse, Partial Ellipse, Spline, Spline tools, Spline on surface, Equation driven curve, Points, Text, Construction
•geometry, Snap, grid
Session 3:
•Sketch Tools: Fillet, Chamfer, Offset, Convert entities, Trim, Extend, Split, Jog, Mirror, Dynamic Mirror, Move,
•Copy, Rotate, Scale, Stretch, Sketch pattern
•Make path, Close Sketch To Model, Sketch picture, Check Sketch for Feature, Area hatch/Fill
•Blocks: Make block, Edit block, Insert block, Add/Remove Entities, Rebuild, Save, Explode
•Relations: Adding Sketch Relation, Automatic relations
•Dimensioning: Smart, Horizontal, Vertical, Ordinate, Horizontal ordinate, Vertical ordinate, Align ordinate, Fully
•define sketch
•ketch Diagnosis, SketchXpert, 3D Sketching, Rapid Sketch
Session 4:
•Part Modeling Tools
•Creating reference planes
•Creating Extrude features: Direction1, Direction2, From option, Thin feature, Applying draft, Selecting contours
•Creating Revolve features: Selecting Axis, Thin features, Selecting contours
•Creating Swept features: Selecting, Profile and Path, Orientation/twist type, Path Alignment, Guide Curves,
•Start/End tangency, Thin feature
Session 5:
•reating Loft features: Selecting Profiles, Guide curves, Start/End Constraints, Centerline parameters, Sketch
•tools, Close loft.
•Selecting geometries: Selection Manager, Multiple Body concepts
•Creating Reference: Points, axis, coordinates
Session 6:
•Creating curves
•Split curve, Project curve, Composite curve, Curve through points, Helix and Spiral
•Creating Fillet features
•Inserting Hole types
Session 7:
•Creating Chamfer
•Creating Shell, Creating Rib
•Creating Pattern: Linear pattern, Circular pattern, Sketch driven pattern, Curve driven pattern, Table driven
•pattern, Fill pattern, mirror
Session 8:
•Assembly Modeling Tools
•Introduction to Assembly Modeling & Approaches: Top down and Bottom up approach
•Applying Standard Mates: Coincident, Parallel, Perpendicular, Tangent, Concentric, Lock, Distance, Angle
Session 9:
•Generating Drawing Views
•Introduction To Angle Of Projection
•Generating Views: Generating Model View, Projected Views, Inserting Standard 3 View
•View creation relative to model, Inserting predefined views, empty views, Auxiliary Views, Detailed Views, Crop
•view, Broken –Out Section, Broken Views, Section View, Aligned Section View, Alternate Position View, Working
•Aassembly specific view, Drawing properties, Manipulating views
Session 10:
•Sheet Metal Design
•Concepts in Sheet metal design bend allowance bend deduction, K-factor
•Inserting Base Flange, Sheet Metal Tab, Edge Flange, Miter Flange, Hem, Jog
•Creating Break Corner/Corner Trim, Closed Corners, Rip
•Inserting Sketched Bend, Fold/Unfold, Forming Tools
• _ _ _ _ _ End
LIST PRICE=15000₹ OFFER PRICE=10999₹
Creo Parametric
Schedule on Demand Duration : 20 Hrs.
Introduction: Creo Parametric Basic Modeling Process
Understanding Creo Parametric Concepts: Understanding Solid Modeling Concepts, Understanding Feature-
Based Concepts, Understanding Parametric Concepts, Understanding Associative Concepts, Understanding
Model-Centric Concepts, Recognizing File Extensions
Using the Creo Parametric Interface: Understanding the Main Interface, Understanding the Folder Browser,
Understanding the Ribbon Interface, Setting the Working Directory and Opening and Saving Files, Managing Files
in Creo Parametric
Creating Sketcher Geometry: Reviewing Sketcher Theory, Understanding Design Intent, Modifying the Sketcher
Display, Utilizing Constraints, Sketching Lines, Centerlines, Rectangles, Circles, Arcs, Circular Fillets and Chamfers
Using Sketcher Tools: Understanding Construction Geometry Theory, Sketching Points, Using Geometry Tools,
Manipulating Sketches, Dimensioning Entities, Modifying Dimensions, Sketcher Conflicts
Creating Sketches for Features: Creating Sketches (‘Sketch’ Feature), Specifying the Sketch Setup, Utilizing
Sketch References, Using Entity from Edge within Sketcher
Session 2:
Creating Extrudes, Revolves, and Ribs: Creating Solid Extrude Features, Adding Taper to Extrude Feature,Common Dashboard Options: Extrude Depth, Common Dashboard Options: Feature Direction, Common Dashboard Options: Thicken Sketch, Creating Solid Revolve Features, Common Dashboard Options: Revolve Angle, Automatically Adding and Removing Material, Creating Rib Features.
Using the Creo Parametric Interface – Part 2: Understanding Basic Display Options, Analyzing Basic 3-D Orientation, Understanding the View Manager, Creating and Managing View Orientations, Creating Style States using the View Manager, Understanding Basic Color and Appearance Options, Setting Up New Part Models.
Session 3:
Selecting and Editing: Understanding Creo Parametric Basic Controls, Using Drag Handles and Dimension Draggers, Using Keyboard Shortcuts, Model Tree, Selecting Items using Direct Selection and Query Selection, Using the Search Tool, Understanding Selection Filters, Renaming Objects, Activating and Editing Models, Deleting and Suppressing Items.
Creating Datum Features: Planes and Axes: Creating Datum Axes, Creating Datum Planes
Creating Sweeps and Blends: Creating Sweeps with Open Trajectories, Creating Sweeps with Closed Trajectories, Analyzing Sweep Feature Attributes, Creating a Parallel Blend Protrusion or Cut, Experimenting with Parallel
Blend Attributes, Analyzing Parallel Blend Section Tools Session 4:
Creating Holes and Shells: Common Dashboard Options: Hole Depth, Creating Coaxial Holes, Creating Linear
Holes, Creating Radial and Diameter Holes, Exploring Hole Profile Options, Creating Shell Features
Advanced hole Creation: Creating Standard Holes, Creating Sketched Holes, Creating On Point Holes, Lightweight Holes, Cosmetic Threads
Creating Rounds and Chamfers: Creating Rounds by Selecting Edges, by Selecting a Surface and Edge and by Selecting Two Surfaces, Creating Full Rounds, Creating Chamfers by Selecting Edges Drafts: Creating Draft Features, Creating Basic Split Drafts, Analyzing Draft Hinges and Pull Direction, Drafting
Intent Surfaces, Creating Drafts with Multiple Angles, Using the Extend Intersect Surfaces Draft Option, Creating Drafts Split at Sketch, Creating Drafts Split at Curve, Creating Drafts Split at Surface, Creating Drafts with Variable Pull Direction
Session 5:
Variable Section Sweeps: Creating Variable Section Sweeps using a Constant Section, Creating Variable Section Sweeps Normal to Trajectory, Creating Variable Section Sweeps using Constant Normal Direction, Creating Variable Section Sweeps Normal to Projection, Creating Variable Section Sweeps Utilizing Multiple Trajectories.
Helical Sweeps: Understanding Helical Sweep Theory, Creating Helical Sweeps for Springs, Creating Helical Sweeps for Threads, Analyzing Helical Sweep Profile and Pitch Variations, Utilizing Variable Sections in Helical Sweeps.
Swept Blends: Understanding Swept Blend Theory, Creating Swept Blends by Selecting Sections, Creating Swept Blends by Sketching Sections, Analyzing Swept Blend Section Options, Analyzing Swept Blend Section Plane Control, Analyzing Swept Blend Options.
Session 6:
Creating Patterns: Direction Patterning in the First Direction, Direction Patterning in the Second Direction, Axis Patterning in the First Direction, Axis Patterning in the Second Direction, Creating Reference Patterns of Features,Creating Reference Patterns of Components.
Group, Copy, and Mirror Tools: Creating Local Groups, Copying and Pasting Features, Moving and Rotating Copied Features, Mirroring Selected Features, Mirroring All Features, Creating Mirrored Parts.
Measuring and Inspecting Models: Analyzing Model Units and Mass Properties, Measuring Models, Creating Planar Part Cross-Sections, Measuring Global Interference.
Relations and Parameters: Understanding Relation Theory, Understanding Relation Types, Understanding Basic Relation Operators and Functions, Understanding Advanced Relation Operators and Functions, Creating Parameters, Understanding Advanced Parameter Options, Creating Relations, Creating Relations for Patterns.
Family Tables: Understanding Family Table Theory, Creating a Family Table, Patterning Family Table Instances,Creating a Multi-Level Family Table, Editing Family Table Members.
Session 7:
Assembling with Constraints: Understanding Assembly Theory, Creating New Assembly Models, Understanding Constraint Theory, Understanding Assembly Constraint Status, Assembling Components using: Default, Automatic, Distance, Angle Offset, Parallel, Coincident, Normal, Coplanar, Centered, Tangent, Fix Constraints.
Exploding Assemblies: Creating and Managing Explode States, Creating Offset Lines between Exploded Components
Session 8:
Surface Features: Creating Surface features, Editing Surface Features in Creo Parametric, Copying the Surfaces, Mirroring the Surfaces, Trimming the Surface, Merging the Surfaces, Creating the Fill Surface, Creating the Intersecting Curves, Creating an Offset Surface, Giving Thickness to a Surface, Converting a Surface into a Solid
Creating Drawing Views: Analyzing Drawing Concepts and Theory, Analyzing Basic 2-D Orientation, Creating New
Drawings and Applying Formats, Creating and Orienting General Views, Adding Drawing Models and Sheets, Creating Projection Views Creating Drawing Views: Creating Cross-Section Views, Creating Detailed Views, Creating Auxiliary Views,
Creating 2D Cross Section Views, Creating New Drawings using Drawing Templates, Modifying Drawing Views,Creating Assembly and Exploded Views .
Creating Drawing Details: Analyzing Detail Concepts and Types, Showing and Erasing Detail Items, Cleaning Up Dimensions, Manipulating Dimensions, Creating Driven Dimensions.
Creating Drawing Details: Creating Notes, Showing a Bill of Materials, Analyzing Drawing Associativity
Session 9:
Creating and Using Component Interfaces: Understanding Component Interfaces, Using a Placing Component Interface, Using a Receiving Component Interface, Creating a Component Interface using Save as Interface, Auto Placing Components
Replacing Components in an Assembly: Understanding Component Replace, Replacing Components using Family Table.
Understanding the Basics of Simplified Reps: Understanding Simplified Rep Concepts, Customizing Simplified Reps, Excluding Components using Simplified Reps, Creating Geometry and Graphics Simplified Reps, Opening Simplified Reps, Creating Part Simplified Reps.
Session 10:
Introduction to sheet metal design: The sheet metal design environment, Sheet metal parts, Design approach.
Primary walls: Wall Types, Creating the first wall
Secondary and unattached walls: Types of secondary walls, Creating unattached walls, Secondary walls with relief.
Bend features: Bend features, Bend lines
Unbend, bend back and cuts: The unbend regular feature, The bend back feature, Creating sheet metal cuts.
Notches and punches: Creating a punch or notch UDF, Placing a punch or notch feature
Sheet metal forms: Creating form features, Creating form parts, Placing form features, Returning the model to the flat state.
LIST PRICE=15000₹ OFFER PRICE=10999₹
Catia V5
Schedule on Demand Duration : 20 Hrs.
●Introduction: What is CATIA V5, Design Intent, System Requirements, Getting Started, Understand the CATIA Interface, Workbenches, Menus and Toolbars, Finding Tools, Specification Tree, Compass, Graphic Properties, Message Bar, Document Management.
●Understanding View Manipulation: Fly mode, Fit All In, Pan, Rotate, Zoom In, Zoom Out, Normal View, Multi View, Quick View, View mode, Hide/Show, Swap Visible Space.
●Understanding Standard Toolbar: New, Open, Save, Save Management, Print, Cut, Copy, Paste, Undo, Redo.
Session 2:
●Introduction to Sketcher
●Entering Sketcher Workbench: Basic Sketching, Positioned Sketching
●Profile Creation Using: Profile, Predefined Profile, Circle, Spline, Conic, Line, Point, Axis
●Understanding Sketch Tools
●Creating Construction/ Standard Element
●Applying Geometrical/ Dimensional Constraints
●Understanding User Selection Filter toolbar
●Understanding Visualization Toolbar
●Cut part by Sketch Plane
●3D Element visualization
●2D Element visualization
●Diagnostics
●Dimensional Constraints
●Geometrical Constraints
●Sketch Workflow
Session 3:
●Editing Profile using: Corner, Chamfer, Relimitations, Transformation, 3D Geometry
●Understanding Constraints: Constraints, Constraint Creation, Contact Constraint, Fix together, Auto Constraint,
Animate Constraint, Edit Multi – Constraint
●Introduction to Part Design
●Creating Sketch-Based Features: Pad Definition, Drafted Filleted Pad Definition, Pocket Definition, Drafted
Filleted Pocket, Shaft Definition, Groove Definition, Hole Definition
●Creating Reference Element: Plane Definition
Session 4:
●Creating Sketch-based Feature: Rib Definition, Slot Definition, Stiffener Definition, Solid Combine Definition.
●Applying Dress-Up Features: Edge Fillet Definition, Variable Fillet Definition, Chordal Fillet Definition, Face-Face Fillet Definition, Tritangent Fillet Definition, Chamfer Definition.
Session 5:
●Creating Sketch-Based Features: Multi-Sections Solid Definition, Removed Multi-Section Solid
●Applying Dress-up Features: Draft Definition, Draft Reflect Line Definition, Variable Angle Draft Definition, Shell Definition, Thickness Definition, Thread/Tap Definition, Remove/Replace Face Definition
●Creating Surface-Based Features: Split Definition, Thick Surface Definition, Close Surface Definition, Sew Surface Definition
Session 6:
●Creating Reference Element: Point Definition, Line Definition.
●Creating Transformation Features: Transformation Definition, Rotation Definition, Symmetry Definition, Axis to Axis Definition, Mirror Definition, Pattern – Rectangular/ Circular Pattern Definition, Scale Definition
Session 7:
●Introduction to Assembly Design: Understanding Top Down &Bottom Up Approach
●Understanding Product Structure Tools: New Component, New Product, New Part, Existing Component, Existing Component with Positioning
●Understanding Constraints Toolbar: Coincidence Constraints, Contact Constraints, Offset Constraints, Angle Constraints, Fix Component, Fix Together, Quick Constraint, Flexible/Rigid Sub-Assembly, Change Constraint,Reuse Pattern.
Session 8:
●Introduction to Sheet metal Design: Understanding Sheet metal Parameters
●Understanding Views Toolbar: Fold/Unfold, Multi viewer, Views Management
●Creating Walls: Wall, Wall on Edge, Extrusion, Swept Walls- Flange, Hem, Tear Drop, User Flange
●Creating Rolled Walls: Hopper, Free from Surface, Rolled Wall.
●Understanding Bending Operations: Bend / Conical Bend, Bend from Flat, Unfolding/ Folding, Point or Curve Mapping, Recognize Definition
Session 9:
●Wireframe and Surface Design, Introduction to Surface Design
●Understanding Wireframe Toolbar: Point, Point and Planes Repetition, Line, Axis, Polyline, Plane, Planes
Between, Projection, Intersection, Circle, Corner, Connect, Spline, Helix
●Creating Surfaces: Extruded Surface Definition, Revolution Surface Definition, Sphere Surface Definition
●Trim & Split Definition
●Creating Surfaces: Cylinder Surface Definition, Offset Surface Definition, Fill Surface Definition, Multi-Sections Surface Definition, Blend Definition
●Creating Sweep Surface: Swept Surface Definition using profile type - Explicit, Line, Circle, Conic
Session 10:
●Introduction to Drafting
●Creating New Drawing File
●Creating Projection Views: Front view, Un folded view, View from 3D, Projection, Auxiliary, Isometric, Advanced Front view.
●Creating Sectional Views: Offset Section view, Aligned Section view, Offset Section Cut, Aligned Section Cut.
●Creating Details Views: Detail, Sketched Detail Profile, Quick Detail, Sketched Quick Detail Profile
●Creating Dimensions Using: Dimensions, Chained Dimensions, Cumulated Dimensions, Stacked Dimensions, Length Dimension, Angle Dimension, Radius Dimension, Diameter Dimension.
LIST PRICE=15000₹ OFFER PRICE=10999₹
UG-NX
Schedule on Demand Duration : 20 Hrs.
●Introduction to Unigraphics NX , About NX Gateway, Getting Started.
●NX Graphical User Interface: Title bar, Menu bar, Toolbar, Radial toolbar, Selection bar, Cue and status line, Dialog rail, Resource bar, Navigators, HD3D tools, Integrated browser, Palettes, Roles, Full screen, View orientation- trimetric, isometric, View commands, Rotate ,Pan, Zoom in/out, Quick pick, Quick pick, categories, Coordinate system- absolute coordinate system, WCS, Absolute coordinate, Work coordinate system. View triad, Multiple graphics window, Information window, Keyboard accelerators, Dialog box.
●File management: Creating new files and about templates, Opening files, Saving files
Session 2:
●Creating Sketches: Profile, Line, Arc, Circle, Fillet, Chamfer, Rectangle, Polygon, Studio Spline, Fit spline, Ellipse,Conic.
●Editing sketches: Quick trim, Quick extend, Make corner, Offset curve, Pattern curve, Mirror curve, Intersection point, Derived lines
●Constraints: Geometric constraints, Auto constraint, Inferred constraint, Dimensional constraints, Auto
dimension, Animate dimension, Continuous auto dimension
Session 3:
●Basic terminologies: Feature, Body, Solid body, Sheet, Face, Section curves, Guide curves
●Feature modeling concepts
●About Datum CSYS and Datum Planes
●Changing units in NX
●Creating Extrude features
●Creating Revolve features
●Revolve sketch about an axis
●Creating Datum Features: Datum Plane, Datum axis, Datum CSYS, Datum Point
Session 4:
●Creating Sweep Features
●Blend Features
●Applying Chamfer
Session 5:
●Hole: General hole, Drill size holes, Screw clearance holes, Threaded holes
●Boss
●Pocket: Cylindrical, Rectangular, General
●Pad: Rectangular, General
●Emboss: Offset emboss
●Slot: Rectangular, Ball end, U-Slot, T-Slot, Dove tail
●Groove: Rectangular, Ball end, U-groove, Dart, Thread, Shell
●Draft: From plane, From edges, Tangent to faces, To parting edges, Draw direction, Variable draft points
Session 6:
●Instance feature: Rectangular array, Circular array, Pattern face
●Mirror feature, Mirror body
●Instance geometry creation: From bodies, From faces, From faces, From edges, From curves, From points
●Exercises included for practice
Session 7:
●Assembly Constraints
●Angle, Bond, Centre, Concentric, Distance, Fit, Parallel, Perpendicular, Touch align
●Creating component arrays
●Linear array, Circular array, Feature instance array
●Assembly Modeling
●Moving a component, Creating exploded views,
●Exercises included for practice
Session 8:
●Introduction to drawing
●Inserting new sheets, Editing sheets
●Setting up standards, Knowing Graphical User Interface of drafting, NX drafting methods
●Creating drafting views
●Base view, Drawing view, Projected view, Orthographic view, Auxiliary view, Detail view
●Section view: Simple section, Stepped section
●Adding dimensions: Inferred Dimension, Horizontal Dimension, Vertical Dimension, Parallel Dimension,
Perpendicular dimension, Angular dimension, Cylindrical Dimension, Hole dimension, Diameter Dimension,Chamfer Dimension, Radius or Radius of Curvature Dimension, Radius to Centre.
Session 9 &10:
●Surface Modeling commands
●Creating extrude surface
●Creating revolved surface
●Creating ruled surface
●Surface by Through curves, Surface by Through curve mesh
●Creating Studio surface
●Surface from Section Surface
●Surface creation by N-Sided surface
●Sheet metal Design
●About NX Sheet Metal Preferences
●Creating base feature, Tab
●Creating Bend feature
●Attaching flange, Attaching Contour flange, Creating Lofted flange, Inserting Hem flange, Apply Bend, unbend, re bend,
Apply Jog, Creating Sheet metal from solid Corner definition.
LIST PRICE=15000₹ OFFER PRICE=10999₹
Autodesk Inventor
Schedule on Demand Duration : 20 Hrs.
- Introduction to CAE
- General procedure to conduct FEA
- FEA software
- Key Assumptions in FEA
- Types of Engineering Analysis
- Important terms and definitions
- Classification of materials
- Exercises included for practice
- Introduction to ANSYS Workbench
- Sketching and Part Modeling in Design Modeler
- Introduction to Modeling
- Introduction to Design Modeler Window
- Illustration 1: I-section
- Overview
- Introduction
- Extrusion
- Sketching
- Exercises included for practice
- Defining Material Properties
- Introduction to Engineering Workspace
- Creating and Adding Materials
- Assigning Material to the Beam
- Assigning Material to the Assembly
- Introduction
- Meshing of Plate with Holes
- Generating the mesh, optimize the model and generating the local mesh
- Assembly Meshing
- Static Structural Analysis
- Introduction to Static Structural Analysis
- Pre-processing
- Solution
- Post-processing
- Static Structural Analysis of: Cantilever Beam, Plate with a central circular holes, Plate with a square slot,
- Pressure vessel, Bracket
- Clevis assembly
- Overview
- Introduction
- Static loadings: Ductile materials, Brittle materials
- Fatigue loading: Ductile material
- Exercises included for practice
- Surface and Line Model
- Overview
- Introduction
- Sheet with circular hole-plane stress
- Bracket
- Line body model
- Exercises included for practice
- Overview
- Introduction
- Performing the Modal analysis
- Specifying analysis settings
- Cantilever beam
- Simply supported beam
- Motor cover Assembly
- Connecting rod
LIST PRICE=15000₹ OFFER PRICE=10999₹
Catia Wiring Harness
Schedule on Demand Duration : 20 Hrs.
- Introduction to CAE
- General procedure to conduct FEA
- FEA software
- Key Assumptions in FEA
- Types of Engineering Analysis
- Important terms and definitions
- Classification of materials
- Exercises included for practice
- Introduction to ANSYS Workbench
- Sketching and Part Modeling in Design Modeler
- Introduction to Modeling
- Introduction to Design Modeler Window
- Illustration 1: I-section
- Overview
- Introduction
- Extrusion
- Sketching
- Exercises included for practice
- Defining Material Properties
- Introduction to Engineering Workspace
- Creating and Adding Materials
- Assigning Material to the Beam
- Assigning Material to the Assembly
- Introduction
- Meshing of Plate with Holes
- Generating the mesh, optimize the model and generating the local mesh
- Assembly Meshing
- Static Structural Analysis
- Introduction to Static Structural Analysis
- Pre-processing
- Solution
- Post-processing
- Static Structural Analysis of: Cantilever Beam, Plate with a central circular holes, Plate with a square slot,
- Pressure vessel, Bracket
- Clevis assembly
- Overview
- Introduction
- Static loadings: Ductile materials, Brittle materials
- Fatigue loading: Ductile material
- Exercises included for practice
- Surface and Line Model
- Overview
- Introduction
- Sheet with circular hole-plane stress
- Bracket
- Line body model
- Exercises included for practice
- Overview
- Introduction
- Performing the Modal analysis
- Specifying analysis settings
- Cantilever beam
- Simply supported beam
- Motor cover Assembly
- Connecting rod
LIST PRICE=15000₹ OFFER PRICE=10999₹
Microstation
Schedule on Demand Duration : 20 Hrs.
- Introduction to CAE
- General procedure to conduct FEA
- FEA software
- Key Assumptions in FEA
- Types of Engineering Analysis
- Important terms and definitions
- Classification of materials
- Exercises included for practice
- Introduction to ANSYS Workbench
- Sketching and Part Modeling in Design Modeler
- Introduction to Modeling
- Introduction to Design Modeler Window
- Illustration 1: I-section
- Overview
- Introduction
- Extrusion
- Sketching
- Exercises included for practice
- Defining Material Properties
- Introduction to Engineering Workspace
- Creating and Adding Materials
- Assigning Material to the Beam
- Assigning Material to the Assembly
- Introduction
- Meshing of Plate with Holes
- Generating the mesh, optimize the model and generating the local mesh
- Assembly Meshing
- Static Structural Analysis
- Introduction to Static Structural Analysis
- Pre-processing
- Solution
- Post-processing
- Static Structural Analysis of: Cantilever Beam, Plate with a central circular holes, Plate with a square slot,
- Pressure vessel, Bracket
- Clevis assembly
- Overview
- Introduction
- Static loadings: Ductile materials, Brittle materials
- Fatigue loading: Ductile material
- Exercises included for practice
- Surface and Line Model
- Overview
- Introduction
- Sheet with circular hole-plane stress
- Bracket
- Line body model
- Exercises included for practice
- Overview
- Introduction
- Performing the Modal analysis
- Specifying analysis settings
- Cantilever beam
- Simply supported beam
- Motor cover Assembly
- Connecting rod
LIST PRICE=15000₹ OFFER PRICE=10999₹
AutoCad
Schedule on Demand Duration : 40 Hrs.
Foundational and 2D Drafting
- Introduction to AutoCAD: Interface, workspace, starting a drawing, setting units and limits.
- Basic drawing and editing: Commands like line, circle, arc, rectangle, move, copy, rotate, trim, and extend.
- Drawing precision: Using object snaps, polar, and ortho tracking, and entering coordinates.
- Advanced object types: Polylines, splines, polygons, and ellipses.
- Annotation: Creating and editing text, using text styles, and adding dimensions.
- Drawing organization: Using layers, layer properties, and templates.
- Intermediate and advanced topics
- Blocks: Creating, inserting, and managing blocks.
- Hatching: Applying patterns and gradients to areas.
- Layouts and plotting: Setting up paper space, creating viewports, and printing drawings.
- Parametric drawing: Using constraints to create dynamic drawings.
- Practical application and projects
- Project-based learning: Applying learned skills to create specific drawings, such as floor plans, mechanical parts, or structural elements.
- Customization: Modifying command files and creating custom templates.
- Specific disciplines: Specialized modules can cover areas like mechanica
LIST PRICE=15000₹ OFFER PRICE=11999₹
Solidworks
Schedule on Demand Duration : 40 Hrs.
Introduction to CAD, CAE, PDM
Introduction to Solidworks
Features of SolidWorks
Various products available in SolidWorks for Product Design, Simulation, Communication
SolidWorks Graphical User Interface: Feature manager design tree, Callouts, Handles, Confirmation corner,
mouse buttons, keyboard shortcuts, Command Manager,
Hardware and Software requirements, SolidWorks Task Scheduler, SolidWorks Rx
Session 2:
Sketch Entities: Inference line, Centerline line, Line, Circle, Arc, Ellipse, Rectangle, Slots, Polygon, Parabola,
Ellipse, Partial Ellipse, Spline, Spline tools, Spline on surface, Equation driven curve, Points, Text, Construction
geometry, Snap, grid
Session 3:
Sketch Tools: Fillet, Chamfer, Offset, Convert entities, Trim, Extend, Split, Jog, Mirror, Dynamic Mirror, Move,
Copy, Rotate, Scale, Stretch, Sketch pattern
Make path, Close Sketch To Model, Sketch picture, Check Sketch for Feature, Area hatch/Fill
Blocks: Make block, Edit block, Insert block, Add/Remove Entities, Rebuild, Save, Explode
Relations: Adding Sketch Relation, Automatic relations
Dimensioning: Smart, Horizontal, Vertical, Ordinate, Horizontal ordinate, Vertical ordinate, Align ordinate, Fully
define sketch
Sketch Diagnosis, SketchXpert, 3D Sketching, Rapid Sketch
Session 4:
Part Modeling Tools
Creating reference planes
Creating Extrude features: Direction1, Direction2, From option, Thin feature, Applying draft, Selecting contours
Creating Revolve features: Selecting Axis, Thin features, Selecting contours
Creating Swept features: Selecting, Profile and Path, Orientation/twist type, Path Alignment, Guide Curves,
Start/End tangency, Thin feature
Session 5:
Creating Loft features: Selecting Profiles, Guide curves, Start/End Constraints, Centerline parameters, Sketch
tools, Close loft.
Selecting geometries: Selection Manager, Multiple Body concepts
Creating Reference: Points, axis, coordinates
Session 6:
Creating curves
Split curve, Project curve, Composite curve, Curve through points, Helix and Spiral
Creating Fillet features
Inserting Hole types
Session 7:
Creating Chamfer
Creating Shell, Creating Rib
Creating Pattern: Linear pattern, Circular pattern, Sketch driven pattern, Curve driven pattern, Table driven
pattern, Fill pattern, mirror
Session 8:
Assembly Modeling Tools
Introduction to Assembly Modeling & Approaches: Top down and Bottom up approach
Applying Standard Mates: Coincident, Parallel, Perpendicular, Tangent, Concentric, Lock, Distance, Angle
Session 9:
Generating Drawing Views
Introduction To Angle Of Projection
Generating Views: Generating Model View, Projected Views, Inserting Standard 3 View
View creation relative to model, Inserting predefined views, empty views, Auxiliary Views, Detailed Views, Crop
view, Broken –Out Section, Broken Views, Section View, Aligned Section View, Alternate Position View, Working
assembly specific view, Drawing properties, Manipulating views
Session 10:
Sheet Metal Design
Concepts in Sheet metal design bend allowance bend deduction, K-factor
Inserting Base Flange, Sheet Metal Tab, Edge Flange, Miter Flange, Hem, Jog
Creating Break Corner/Corner Trim, Closed Corners, Rip
Inserting Sketched Bend, Fold/Unfold, Forming Tools
_ _ _ _ _ End _ _ _ _
LIST PRICE=20000₹ OFFER PRICE=13999₹
Creo Parametric
Schedule on Demand Duration : 40 Hrs.
LIST PRICE=20000₹ OFFER PRICE=13999₹
UG-NX
Schedule on Demand Duration : 40 Hrs.
- Introduction to CAE
- General procedure to conduct FEA
- FEA software
- Key Assumptions in FEA
- Types of Engineering Analysis
- Important terms and definitions
- Classification of materials
- Exercises included for practice
- Introduction to ANSYS Workbench
- Sketching and Part Modeling in Design Modeler
- Introduction to Modeling
- Introduction to Design Modeler Window
- Illustration 1: I-section
- Overview
- Introduction
- Extrusion
- Sketching
- Exercises included for practice
- Defining Material Properties
- Introduction to Engineering Workspace
- Creating and Adding Materials
- Assigning Material to the Beam
- Assigning Material to the Assembly
- Introduction
- Meshing of Plate with Holes
- Generating the mesh, optimize the model and generating the local mesh
- Assembly Meshing
- Static Structural Analysis
- Introduction to Static Structural Analysis
- Pre-processing
- Solution
- Post-processing
- Static Structural Analysis of: Cantilever Beam, Plate with a central circular holes, Plate with a square slot,
- Pressure vessel, Bracket
- Clevis assembly
- Overview
- Introduction
- Static loadings: Ductile materials, Brittle materials
- Fatigue loading: Ductile material
- Exercises included for practice
- Surface and Line Model
- Overview
- Introduction
- Sheet with circular hole-plane stress
- Bracket
- Line body model
- Exercises included for practice
- Overview
- Introduction
- Performing the Modal analysis
- Specifying analysis settings
- Cantilever beam
- Simply supported beam
- Motor cover Assembly
- Connecting rod
LIST PRICE=20000₹ OFFER PRICE=13999₹
Catia V5
Schedule on Demand Duration : 40 Hrs.
- Introduction to CAE
- General procedure to conduct FEA
- FEA software
- Key Assumptions in FEA
- Types of Engineering Analysis
- Important terms and definitions
- Classification of materials
- Exercises included for practice
- Introduction to ANSYS Workbench
- Sketching and Part Modeling in Design Modeler
- Introduction to Modeling
- Introduction to Design Modeler Window
- Illustration 1: I-section
- Overview
- Introduction
- Extrusion
- Sketching
- Exercises included for practice
- Defining Material Properties
- Introduction to Engineering Workspace
- Creating and Adding Materials
- Assigning Material to the Beam
- Assigning Material to the Assembly
- Introduction
- Meshing of Plate with Holes
- Generating the mesh, optimize the model and generating the local mesh
- Assembly Meshing
- Static Structural Analysis
- Introduction to Static Structural Analysis
- Pre-processing
- Solution
- Post-processing
- Static Structural Analysis of: Cantilever Beam, Plate with a central circular holes, Plate with a square slot,
- Pressure vessel, Bracket
- Clevis assembly
- Overview
- Introduction
- Static loadings: Ductile materials, Brittle materials
- Fatigue loading: Ductile material
- Exercises included for practice
- Surface and Line Model
- Overview
- Introduction
- Sheet with circular hole-plane stress
- Bracket
- Line body model
- Exercises included for practice
- Overview
- Introduction
- Performing the Modal analysis
- Specifying analysis settings
- Cantilever beam
- Simply supported beam
- Motor cover Assembly
- Connecting rod
LIST PRICE=20000₹ OFFER PRICE=13999₹
Autodesk Inventor
Schedule on Demand Duration : 40 Hrs.
- Introduction to CAE
- General procedure to conduct FEA
- FEA software
- Key Assumptions in FEA
- Types of Engineering Analysis
- Important terms and definitions
- Classification of materials
- Exercises included for practice
- Introduction to ANSYS Workbench
- Sketching and Part Modeling in Design Modeler
- Introduction to Modeling
- Introduction to Design Modeler Window
- Illustration 1: I-section
- Overview
- Introduction
- Extrusion
- Sketching
- Exercises included for practice
- Defining Material Properties
- Introduction to Engineering Workspace
- Creating and Adding Materials
- Assigning Material to the Beam
- Assigning Material to the Assembly
- Introduction
- Meshing of Plate with Holes
- Generating the mesh, optimize the model and generating the local mesh
- Assembly Meshing
- Static Structural Analysis
- Introduction to Static Structural Analysis
- Pre-processing
- Solution
- Post-processing
- Static Structural Analysis of: Cantilever Beam, Plate with a central circular holes, Plate with a square slot,
- Pressure vessel, Bracket
- Clevis assembly
- Overview
- Introduction
- Static loadings: Ductile materials, Brittle materials
- Fatigue loading: Ductile material
- Exercises included for practice
- Surface and Line Model
- Overview
- Introduction
- Sheet with circular hole-plane stress
- Bracket
- Line body model
- Exercises included for practice
- Overview
- Introduction
- Performing the Modal analysis
- Specifying analysis settings
- Cantilever beam
- Simply supported beam
- Motor cover Assembly
- Connecting rod
LIST PRICE=20000₹ OFFER PRICE=13999₹
Catia Wire Harness
Schedule on Demand Duration : 40 Hrs.
- Introduction to CAE
- General procedure to conduct FEA
- FEA software
- Key Assumptions in FEA
- Types of Engineering Analysis
- Important terms and definitions
- Classification of materials
- Exercises included for practice
- Introduction to ANSYS Workbench
- Sketching and Part Modeling in Design Modeler
- Introduction to Modeling
- Introduction to Design Modeler Window
- Illustration 1: I-section
- Overview
- Introduction
- Extrusion
- Sketching
- Exercises included for practice
- Defining Material Properties
- Introduction to Engineering Workspace
- Creating and Adding Materials
- Assigning Material to the Beam
- Assigning Material to the Assembly
- Introduction
- Meshing of Plate with Holes
- Generating the mesh, optimize the model and generating the local mesh
- Assembly Meshing
- Static Structural Analysis
- Introduction to Static Structural Analysis
- Pre-processing
- Solution
- Post-processing
- Static Structural Analysis of: Cantilever Beam, Plate with a central circular holes, Plate with a square slot,
- Pressure vessel, Bracket
- Clevis assembly
- Overview
- Introduction
- Static loadings: Ductile materials, Brittle materials
- Fatigue loading: Ductile material
- Exercises included for practice
- Surface and Line Model
- Overview
- Introduction
- Sheet with circular hole-plane stress
- Bracket
- Line body model
- Exercises included for practice
- Overview
- Introduction
- Performing the Modal analysis
- Specifying analysis settings
- Cantilever beam
- Simply supported beam
- Motor cover Assembly
- Connecting rod
LIST PRICE=20000₹ OFFER PRICE=13999₹
Microstation
Schedule on Demand Duration : 40 Hrs.
- Introduction to CAE
- General procedure to conduct FEA
- FEA software
- Key Assumptions in FEA
- Types of Engineering Analysis
- Important terms and definitions
- Classification of materials
- Exercises included for practice
- Introduction to ANSYS Workbench
- Sketching and Part Modeling in Design Modeler
- Introduction to Modeling
- Introduction to Design Modeler Window
- Illustration 1: I-section
- Overview
- Introduction
- Extrusion
- Sketching
- Exercises included for practice
- Defining Material Properties
- Introduction to Engineering Workspace
- Creating and Adding Materials
- Assigning Material to the Beam
- Assigning Material to the Assembly
- Introduction
- Meshing of Plate with Holes
- Generating the mesh, optimize the model and generating the local mesh
- Assembly Meshing
- Static Structural Analysis
- Introduction to Static Structural Analysis
- Pre-processing
- Solution
- Post-processing
- Static Structural Analysis of: Cantilever Beam, Plate with a central circular holes, Plate with a square slot,
- Pressure vessel, Bracket
- Clevis assembly
- Overview
- Introduction
- Static loadings: Ductile materials, Brittle materials
- Fatigue loading: Ductile material
- Exercises included for practice
- Surface and Line Model
- Overview
- Introduction
- Sheet with circular hole-plane stress
- Bracket
- Line body model
- Exercises included for practice
- Overview
- Introduction
- Performing the Modal analysis
- Specifying analysis settings
- Cantilever beam
- Simply supported beam
- Motor cover Assembly
- Connecting rod
LIST PRICE=20000₹ OFFER PRICE=13999₹
Schedule on Demand Duration : 20 Hrs.
Lesson 19: Shop Documentation
LIST PRICE=15000₹ OFFER PRICE=9999₹
Transforming Skill-Based Design Engineer
Empowering Innovation Through Design
AGS CADD CENTRE is a premier CAD/CAM/CAE training and design services company dedicated to shaping the future of engineering and design professionals. With a legacy of excellence and innovation, we offer comprehensive training programs and project-based learning tailored for students, working professionals, and corporate teams. Founded with the mission to bridge the gap between academic learning and industry requirements. Our commitment lies in equipping individuals with the right skills and tools to thrive in the competitive design and manufacturing landscape.
WE TRAINED INDUSTRY ORIENTED DOMAIN
✅ Part Modeling ✅Sheet Metal Design ✅Surface Design ✅Structural Design ✅Casting Design ✅Advanced Assembly ✅Detailing & Drafting ✅ GD & T (Practical) ✅ Material & Fit Selection
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