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Course Description (AutoCAD)
1.
About 2D Software.
2.
Explaining Graphical User
Interface.
3.
Drawing simple sketches (Line, Arc,
Circle, Ellipse, Polygon etc.).
4.
Drawing settings.
5.
Modifying entities.
6.
Object selection methods.
7.
Settings and modifying entity
properties.
8.
Creating and managing layers.
9.
Adding Annotations and Dimension to
your drawing.
10.
Creating Text styles and Dimension
styles.
11.
Creating Construction lines and
Semi-infinite lines.
12.
Creating blocks and attributes.
13.
Working with Tables.
14.
Creating and viewing slides.
15.
Slide library.
16.
Running scripts.
17.
Creating compound documents with
OLE.
18.
Electronic transmit.
19.
Plotting your drawings.
20.
Layout management.
21.
Exporting object.
22.
Project.
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Course Description (PRO/E)
1.
Graphic User Interface of Pro/E.
2.
Parametric design.
3.
File management.
4.
Sketching entities.
5.
Intent manager.
6.
Basic features.
7.
Creating Tweak features.
8.
Creating Rounds and Chamfers.
9.
Patterning features.
10.
Simplified representation.
11.
Family table.
12.
User defined features.
13.
Creating surfaces.
14.
Assembly features.
15.
Assembly Constraints.
16.
Exploded views.
17.
Stress analysis using
Pro-Mechanica.
18.
Mechanism simulation.
19.
Creating Drawing views.
20.
Creating Dimensions.
21.
Bill of Materials, Balloons.
22.
Format.
23.
Sheet Metal Design.
24.
Photo Rendering.
25.
Exporting /Importing files.
26.
Project.
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Course Description
(CATIA)
1.
CATIA User Interface.
2.
Parametric modeling.
3.
Manipulating objects.
4.
Creating Sketches.
5.
Sketched features.
6.
Transformation features.
7.
Dress up features.
8.
Modifying parts.
9.
Design table and external file
management.
10.
Assembling components.
11.
Positioning components using
Constraints.
12.
Editing parts in assembly.
13.
Exploding the assembly.
14.
Wireframe and surface design.
15.
Stress analysis using CATIA.
16.
Digital Mockup.
17.
Detail drafting.
18.
Data exchange
19.
Project.
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Course Description
(ANSYS)
1.
Theory of FEA.
2.
Exploring the GUI.
3.
Graphics picking.
4.
General analysis procedure.
5.
Solid modeling.
6.
Defining Work planes.
7.
Coordinate Systems.
8.
Importing geometry.
9.
Defining element attributes.
10.
Element types.
11.
Generating mesh.
12.
Free meshing.
13.
Mapped meshing.
14.
Defining material.
15.
Defining loads and boundary
conditions.
16.
APDL basics.
17.
Select logic.
18.
Solvers.
19.
Post processing.
20.
Structural Static analysis.
21.
Modal analysis.
22.
Transient Dynamic analysis.
23.
Nonlinear analysis-Material
Nonlinearity.
24.
Beam analysis.
25.
Thermal analysis.
26.
Coupled Field analysis.
27.
Project.
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