Creo 2.0 (Pro - E)
Transcript of Creo 2.0 (Pro - E)
PART (BASIC) & ASSEMBLY MODELLING (BASIC)
INTRODUCTION & UNDERSTANDING TO CREO PARAMETRIC CONCEPTS
� Creo Parametric Basic Modelling Process � Understanding Solid Modelling 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 � Setting The Working Directory And Opening And Saving Files � Understanding The Ribbon Interface � Managing Files In Creo Parametric � Understanding Datum Display Options � Analyzing Basic 3-D Orientation � Understanding The View Manager � Setting Up Next Part Models
SELECTING & EDITING OF GEOMETRY, FEATURE, MODELS
� Understanding Creo Parametric Basic Controls � Using Drag Handles And Dimension Draggers � Understanding The Model Tree � Selecting Items Using Direct Selection � Selecting Items Using Query Selection � Using The Smart Selection Filter � Utilizing Undo And Redo Operations � Understanding Regeneration And Auto Regeneration � Editing Features � Editing Features Using Edit Definition � Deleting And Suppressing Items
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CREATING SKETCHER GEOMETRY & USING SKETCHER TOOLS
� Reviewing Sketcher Theory � Understanding Design Intent � Utilizing Constraints � Sketching Lines � Sketching Rectangles And Parallelograms � Sketching Circles � Sketching Arcs � Understanding Construction Geometry Theory � Using Geometry Tools Within Sketcher � Dimensioning Entities Within Sketcher � Modifying Dimension Within Sketcher
USING SKETCHERS & DATUM FEATURES
� Creating Sketchers (Sketch Features) � Specifying And Manipulating The Sketch Setup � Utilizing Sketch References � Using Entity From Edge Within Sketcher � Creating Datum Features Theory � Creating Datum Axes � Creating Datum Planes
CREATING EXTRUDES, REVOLVES AND RIBS
� Creating Solid Extrudes Features � Adding Taper To Extrudes Features � Common Dashboard Option: Extrude Depth � Creating Solid Revolve Features � Common Dashboard Option : Revolve Angle
CREATING HOLES, SHELLS, DRAFT & PATTERNS
� Creating Coaxial , Linear, Radial & Diameter Holes � Creating Shell Features � Creating Draft Basic Splits Draft Features � Direction Patterns , Axis Pattern And Reference Pattern Of Features
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(Sketch Features)d Manipulating The Sketch Setup
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CREATING HOLES, SHELLS, DRAFT & PA
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CREATING ROUNDS, CHAMFERS AND USING LAYERS
� Creating Rounds By Edges, Surface & Edges And Two Surfaces � Creating Full Rounds , Chamfers, And Chamfer Dimensioning Schemes � Understanding Layers
ASSEMBLING WITH CONSTRAINTS
� Understanding Assembly Theory � Creating New Assembly Models � Understanding Constraint Theory � Assembling Components Using The Default Constraint � Creating Coincident Constraint Using Geometry � Creating Coincident Constraint Using Datum Features � Creating Distance Constraints � Creating Parallel, Normal And Angle Constraints � Assembling Using Automatic
EXPLODING, REPLACING COMPONENTS, CROSS SECTION IN ASSEMBLIES
� Understanding Assembly Theory � Creating New Assembly Models � Understanding Constraint Theory � Assembling Components Using The Default Constraint � Creating Coincident Constraint Using Geometry � Creating Coincident Constraints Using Datum Features � Creating Distance Constraints � Creating Parallel, Normal And Angle Constraints � Assembling Using Automatic
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PART (ADVANCE) & FLEXIBLE MODELING (BASIC)
ADVANCED SELECTION, CREATING SWEEPS AND BLENDS
� Advanced Chain Selection � Advanced Surface Selection � Creating Sweep With Open, Closed Trajectories � Creating Blends By Sketching Sections � Creating Rotational Blends By Selecting Section
SWEEPS WITH VARIABLE SECTIONS
� Understanding Sweeps With Variable Section Theory � Creating Sweep Normal To Trajectory � Creating Sweeps Using Constant Normal Direction � Creating Sweeps With Variable Section Normal To Projection � Creating Sweeps With Variable Sections Utilizing Multiple Trajectories
HELICAL SWEEPS & SWEPT BLENDS
� Understanding Helical Sweep Theory � Creating Helical Sweeps For Springs � Understanding Swept Blend Theory � Creating Swept Blends By Selecting Sections � Creating Swept Blends By Sketching Sections
RELATIONS, PARAMETERS & FAMILY TABLES
� Understanding Relation Theory � Understanding Relation Types � Creating Parameters � Creating Relations � Understanding Family Table Theory � Creating A Family Table
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RELATIONS, PARAMETERS & FAMILY T
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GROUPS, COPY, MIRROR & UDF’S
� Creating Local Groups � Copying And Pasting Features � Moving And Rotating Copied Features � Mirroring Selected Features. � Creating UDF’s � Placing UDF’s
MEASURING, INSPECTING MODELS & SEEKING HELP
� Viewing Editing Model Properties � Investigating Model Units � Analyzing Mass Properties � Creating Planer Part Cross-Sections � Using Creo Parametric Help
CAPTURING, MANAGING DESIGN INTENT & RESOLVING FAILURES
� Handling Children Of Deleted And Suppressed Items � Reordering Features � Inserting Features � Redefining Features And Sketches � Understanding And Identifying Failures � Analyzing Geometry Failures � Analyzing Open Section Failures � Analyzing Missing Part Reference Failures
INTRODUCTION TO FLEXIBLE MODELLING
� Understanding Flexible Modelling � Flexible Modelling Process � Using The Selection Filter � Applying Shape Selection � Applying Boss Selections
EDITING, TRANSFORMATION & RECOGNITION IN FLEXIBLE MODELING
� Applying Flexible Move Using Dragger � Using Flexible Mirror & Flexible Attach Feature � Using The Edit Round Feature & Working with Pattern Recognition
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� Understanding Flexible Modelling� Flexible Modelling Process� Using The Selection Filter� Applying Shape Selection� Applying Boss Sele
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ASSEMBLY (ADVANCED) SHEETMETAL MODELING & DETAILING (CREO 2.0)
COMPONENTS INTERFACE, FLEXIBLE COMPONENTS, RESTRUCTURING, SIMPLIFIED REPS
� Understanding Component Interface � Using A Placing Component Interface � Using A Receiving Component Interface � Adding Flexibility To A Component � Placing Flexible Components In As Assembly � Restructuring And Recording Assembly Components � Understanding Standard Simplified Reps � Excluding Components Using Simplified Reps
CREATING AND USING ASSEMBLY STRUCTURE AND SKELETONS
� Understanding Skeletons � Creating An Assembly Structure � Creating Skeletons For Space Claims � Creating Skeletons For Placement References � Copying A Model To A Skeletons � Sharing Skeleton Geometry � Creating A New Sheet metal Model In Part Model
SHEETMETAL DESIGN PROCESS & FUNDAMENTALS
� Creo Parametric Sheet metal Design Process � Sheet metal Model Fundamentals � Understanding Development Length � Creating A New Sheet metal Model In A Part Mode
CREATING PRIMARY & SECONDARY SHEETMETAL WALL FEATURES
� Understanding Sheet metal Wall Features � Creating Planer Walls � Extruded Sheet metal Wall Features � Revolved Sheet metal Wall Features � Understanding Secondary Walls
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TING PRIMARY
� Creating Secondary Flat Wall � Using Flange Walls � Using Extruded Walls � Understanding Relief
BENDING, UNBENDING & MODIFYING SHEETMETAL MODELS
� Creating Bend Features � Adding Transition To Bends � Creating Unbend Features � Creating Bend Back Features � Creating Flat States � Sheet metal Cuts � Die Form Features � Punch Form Features � Creating Rip Features
INTRODUCTION, CREATING NEW DRAWINGS & DRAWING VIEWS
� Understanding Drawing Concepts � Exploring Drawing Ribbon Commands � Creating Drawings Using Format And Sheets � Configuring Drawing Models � Adding General Models � Adding Projection Views � Editing Drawing Views � Editing Visible View Area � Adding Detailed Views � Adding 2-D Cross Section Views � Adding Assembly Exploded Views
ADDING MODEL DETAIL & TOLERANCE INFORMATION TO DRAWING
� Understanding Annotations In Drawing � Showing, Erasing And Deleting Annotations � Adjusting Dimensions And Detail Items � Changing Dimension Display � Understanding Dimensional Tolerances � Configuring Dimensional Tolerances � Understanding Geometric Tolerances � Setting Up Geometric Tolerances References & Applying Geometric Tolerance
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ADDING MODEL DETAIL & TOLERANCE
� Understanding Annot� Showing, Erasi
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ADDING NOTES, SYMBOLES, TABLES, BALLOONS & LAYERS IN DRAWING
� Adding And Editing Notes � Using Surface Finish Symbols � Inserting Tables � Creating Report Tables � Creating Boom Balloons � Understanding Layers In Drawings � Using Layers In Drawings � Configuring The Drawing Environment
SURFACE DESIGN & DIRECT MODELING
SURFACE MODELING OVERVIEW
� Introduction To Surfacing � Surface Modelling Uses � Surface Modelling Paradigms � Blending Surface Modelling Paradigms � Surface Terms
ADVANCED DATUM FEATURES
� Creating Datum Co-Ordinates Systems � Creating Points On Or Offset From Entities � Creating Points Using As Offset Co Ordinate System � Creating Curves Through A Point Or Vertex � Creating Curves Through A Point Array � Creating Composite Curves � Projecting And Wrapping Curves � Trimming Curves
BASIC & BOUNDARY BLEND SURFACES
� Creating Surface Extrude Features � Creating Surface Revolve Features � Creating Fill Surfaces � Understanding Boundary Curves Concepts � Creating Boundary Blends In One Direction � Creating Boundary Blends In Two Direction
SURFACE ANALYSIS TOOLS
� Analyzing Surfaces Theory � Defining Curvature � Defining Curvature Continuity � Analyzing Curvatures Of Curves � Analyzing Curvature Of Surface � Using Shaded Curvature Analysis Is For Surfaces � Using The Dihedral Angle Analysis Option � Using The Draft Analysis Option � Using The Reflection Analysis Option
EXTENDING, TRIMMING & MANIPULATING SURFACES
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� Thickening Surface Quilts � Solidifying Quilts To Add Material � Solidifying Quilts To Remove Material
INTRODUCTION & UNDERSTANDING FREEFORM SURFACE MODELING CONCEPT
� Introduction To Freeform Surface Modelling � Typical Style Modelling Process � Understanding The Style Tool � Understanding Style Features
� Understanding The Style Modelling Environment � Using Style Tool Shortcuts Menus � Using Style Tool Key Combinations � Understanding Active Planes
CREATING CURVES & DEVELOPING SURFACES
� Understanding Style Curves � Creating Basic Style Curves � Defining Endpoints Tangency � Editing Curves � Analyzing Curves � Understanding Style Surfaces � Creating Boundary Surface � Creating Loft Surface
INTRODUCTION TO CREO DIRECT & CREATING SKETCHES IN 2D MODE
� Understanding Direct Modelling � Understanding The User Interface � Orienting And Positioning The Model � Understanding 2d Mode � Sketching A Line/Arc Chain � Sketching Rectangles, Circle, And Arcs � Trimming Sketched Entities
CREATING FEATURES & ASSEMBLIES IN CREO DIRECT
� Understanding Sketches And Sketch Regions � Creating Extrusions � Revolving Sketches � Creating Holes � Creating Rounds And Chamfers � Assembling Components
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� Understanding Selection � Using Shape Selection � Understanding The Co-pilot � Using The Move/Rotate Tool � Editing Rounds � Removing Surfaces from A Solid
MECHANISM DESIGN & STRUCTURE ANAYSIS
INTRODUCTION MECHANISM DESIGN
� Introduction To Mechanism Design � Understanding The Mechanism Design Process � Creating The Model � Verifying The Mechanism � Adding Servo Motors � Preparing The Analysis Of Mechanism � Analyzing The Mechanism � Evaluating Analysis Results
INTRODUCTION TO MECHANISM SIMULATION
� Introduction To Mechanism Simulation � Understanding The Mechanism Simulation Process � Creating The Model � Verifying The Mechanism � Adding Dynamic Entities � Preparing For Analysis Of A Mechanism � Analyzing The Mechanism � Evaluating Analysis Results � Graphing Measure Results
INTRODUCTION TO BEHAVIORAL MODELING
� Behavioural Modelling Process � Indentifying BMX Analysis Types � Identifying The Differences Between Creo Parametric Analyses � Performing Sensitivity Analysis
INTRODUCTION TO CREO SIMULATE & THEORETICAL FOUNDATIONS
� Simulate Analysis Functionality � Simulate Model Functionality � The Finite Element Method � The Typical Simulation Process � The H-And P- Versions Of Finite Elements � The P-Method � Structure Mechanics –Stress Definition And Hooke’s Law
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MODEL PREPARATION & ANALYSIS DEFINITION IN CREO SIMULATE
� Managing Units � Defining Linear Elastic Materials � Convergence Methods � Fundamentals Of A Linear Static Analysis � Defining A Linear Static Analysis � Selecting A Convergence Method
LOADS, CONSTRAINTS AND MESHING IN CREO SIMULATE
� Defining Forces, Moments And Pressure � Defining Constraints � Using Auto gem Settings
MORE ANALYSIS TYPES IN CREO SIMULATE
� Using Model Analysis � Understanding Symmetry � Using Shell Pairs For Mid surface Models � Understanding Dynamic Analysis � Understanding Linear Buckling Analysis
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