2010
Table Of Contents
- Contents
- Part 1 Overview
- 1 About AutoCAD Mechanical
- AutoCAD Mechanical Software Package
- Leveraging Legacy Data
- Starting AutoCAD Mechanical
- AutoCAD Mechanical Help
- Product Support and Training Resources
- Design Features in AutoCAD Mechanical
- Mechanical Structure
- Associative Design and Detailing
- External References for Mechanical Structure
- Associative 2D Hide
- Autodesk Inventor link
- 2D Design Productivity
- Engineering Calculations
- Machinery Systems Generators
- Intelligent Production Drawing and Detailing
- Detailing Productivity
- Annotations
- Standard Mechanical Content
- Standard Parts Tools
- Collaboration
- 2 Commands in AutoCAD Mechanical
- 1 About AutoCAD Mechanical
- Part 2 Design and Annotation Tools
- 3 Working with Templates
- 4 Using Mechanical Structure
- 5 Designing Levers
- 6 Working with Model Space and Layouts
- 7 Dimensioning
- 8 Working with 2D Hide and 2D Steel Shapes
- 9 Working with Standard Parts
- Key Terms
- Working with Standard Parts
- Inserting Screw Connections
- Copying Screw Connections with Power Copy
- Creating Screw Templates
- Editing Screw Connections with Power Edit
- Working with Power View
- Deleting with Power Erase
- Inserting Holes
- Inserting Pins
- Turning Off Centerlines in Configurations
- Hiding Construction Lines
- Simplifying Representations of Standard Parts
- 10 Working with BOMs and Parts Lists
- 11 Creating Shafts with Standard Parts
- Key Terms
- Creating Shafts
- Configuring Snap Options
- Configuring Shaft Generators
- Creating Cylindrical Shaft Sections and Gears
- Inserting Spline Profiles
- Inserting Chamfers and Fillets
- Inserting Shaft Breaks
- Creating Side Views of Shafts
- Inserting Threads on Shafts
- Editing Shafts and Inserting Sections
- Replacing Shaft Sections
- Inserting Bearings
- Part 3 Engineering Calculations
- Part 4 Autodesk Inventor Link
- Index
All boundary conditions necessary for a shaft calculation are specified.
Calculating and Inserting Results
Perform a calculation of the moments and deformations, and insert the results
in your drawing.
To perform a shaft calculation
1 In the Shaft Calculation dialog box, click the Moments and Deformations
button.
2 In the Select Graph dialog box, specify:
Bend: Bending Moment in Y - Axis, Deflection in Y - Axis
Torsion: Torsion Moment in X - Direction
Stresses: Result Bending Stress
Table Title: Shaft Calculation Exercise
3 Click OK, and then respond to the prompts as follows:
Specify insertion point:
Select an appropriate point to the right of the shaft
The result block and the deflection and torsion moment graphs are
inserted.
4 Close the Shaft Calculation dialog box.
Your drawing looks like this:
278 | Chapter 12 Calculating Shafts