This application requires Javascript to be enabled.
Feedback
English
Deutsch
English
Français
Italiano
日本語
Sign in
Help
Frequently asked questions
Uploading videos
Contributing
Content moderation
Wiki guidelines
Autodesk WikiHelp
Product help with community knowledge
2013
2012
2013
2014
Simulation Mechanical
360 Publisher
Alias
AutoCAD
AutoCAD Civil 3D
AutoCAD Electrical
AutoCAD for Mac
AutoCAD LT for Mac
AutoCAD Map 3D
BIM 360 Glue
Building Design Suite
Constructware
Creative Finishing
Design Review
Factory Design Suite
Flame Premium
Green Building Studio
Infr. Map Server
Infrastructure Modeler
Installation Help
Inventor
Inventor ETO
Inventor Fusion
Inventor Fusion Technology for Mac
Inventor LT
Inventor Publisher
Navisworks
Navisworks Freedom
PLM 360
Product Design Suite
Project Galileo
Project Photofly
Project Simulus
Revit
Revit LT
Robot Structural Analysis Professional
Sim 360 Pro and Sim 360 Moldflow
Simulation 360
Simulation CFD
Simulation DFM
Simulation Job Manager
Simulation Mechanical
Simulation Moldflow
Simulation Moldflow Adviser
Simulation Moldflow Communicator
Simulation Moldflow Insight
Simulation Moldflow Insight 360
Smoke
Vasari
Vault
360 Publisher
Alias
AutoCAD
AutoCAD Civil 3D
AutoCAD Electrical
AutoCAD for Mac
AutoCAD LT for Mac
AutoCAD Map 3D
BIM 360 Glue
Building Design Suite
Constructware
Creative Finishing
Design Review
Factory Design Suite
Flame Premium
Green Building Studio
Infr. Map Server
Infrastructure Modeler
Installation Help
Inventor
Inventor ETO
Inventor Fusion
Inventor Fusion Technology for Mac
Inventor LT
Inventor Publisher
Navisworks
Navisworks Freedom
PLM 360
Product Design Suite
Project Galileo
Project Photofly
Project Simulus
Revit
Revit LT
Robot Structural Analysis Professional
Sim 360 Pro and Sim 360 Moldflow
Simulation 360
Simulation CFD
Simulation DFM
Simulation Job Manager
Simulation Mechanical
Simulation Moldflow
Simulation Moldflow Adviser
Simulation Moldflow Communicator
Simulation Moldflow Insight
Simulation Moldflow Insight 360
Smoke
Vasari
Vault
Product
360 Publisher
Alias
AutoCAD
AutoCAD Civil 3D
AutoCAD Electrical
AutoCAD for Mac
AutoCAD LT for Mac
AutoCAD Map 3D
BIM 360 Glue
Building Design Suite
Constructware
Creative Finishing
Design Review
Factory Design Suite
Flame Premium
Green Building Studio
Infr. Map Server
Infrastructure Modeler
Installation Help
Inventor
Inventor ETO
Inventor Fusion
Inventor Fusion Technology for Mac
Inventor LT
Inventor Publisher
Navisworks
Navisworks Freedom
PLM 360
Product Design Suite
Project Galileo
Project Photofly
Project Simulus
Revit
Revit LT
Robot Structural Analysis Professional
Sim 360 Pro and Sim 360 Moldflow
Simulation 360
Simulation CFD
Simulation DFM
Simulation Job Manager
Simulation Mechanical
Simulation Moldflow
Simulation Moldflow Adviser
Simulation Moldflow Communicator
Simulation Moldflow Insight
Simulation Moldflow Insight 360
Smoke
Vasari
Vault
Language
 
Release
 
submit
Share
Facebook
Digg
Twitter
StumbleUpon
Delicious
Email link
Lists
Recent changes
RSS feeds
Popular pages
Print
Save as PDF
Home
Simulation Mechanical
English
2013
Help
Simulation Mechanical
Tutorials
Autodesk Simulation
Analyzing and Evaluating Results Tutorials
Beam Tower Static Stress Analysis
Apply the Forces
Simulation Mechanical
2012
2013
Help
Essential Skills Videos
Simulation Mechanical
Getting Started
General Options
Open Model Files
Mesh Models
Analysis Types
Setting Up and Performing the Analysis
Results
Tutorials
Autodesk Simulation
Meshing and Modeling Tutorials
Analyzing and Evaluating Results Tutorials
Vice Grips Static Stress Analysis
Bolted Flange Static Stress Analysis
Crank Static Stress Analysis
Computer Case Static Stress Analysis
2-D Weldment Static Stress Analysis
Beam Tower Static Stress Analysis
Problem Description
Open the Model
Define the Cross-Sectional Properties
Define the Material Properties
Check the Model and Visualize the Beams in 3D
Invert the I and J Nodes of Selected Beam Elements
Apply the Constraints
Apply the Forces
Apply the Distributed Loads
Apply Gravity
Analyze the Model
Review the Results
Beam Tower Critical Buckling Analysis
Support Beam Static Stress Analysis and Modification using Inventor Fusion
Piston Mechanical Event Simulation
Truss Tower Natural Frequency - Modal Analysis
Truss Tower Response Spectrum Analysis
Truss Tower Random Vibration Analysis
Truss Tower Frequency Response Analysis
Truss Tower Transient Stress Analysis
Circuit Board Steady - State Heat Transfer Analysis
Circuit Board Transient Heat Transfer Analysis
Ball Valve Fluid Flow Analysis
Radial Comb Motor Electrostatic Analysis
Radial Comb Motor Static Stress Analysis
Examples
Release Notes
Simulation Mechanical 360
Autodesk Fatigue Wizard
Autodesk Vault Basic
Installation Help
Simulation TV
Videos
2014
Community
Community Scoring
Was this page helpful?
Yes
No
Tag
Tags
0
This page has no tags
Page statistics
1454
views
,
1
edit(s)
,
3543
characters(s)
Page last modified
10:02, 21 Mar 2012
by
contentconnector
How to add your knowledge
Create new page
Edit page
Upload video
Upload video
Video overview
Apply the Forces
Table of contents
No headers
Next, we will apply the nodal forces to the top corner nodes.
With the
Selection
Shape
Point or Rectangle
and
Selection
Select
Vertices
commands active, click the upper-left node of the model.
Hold down the
Ctrl
key and click the upper-right node. Two vertices should now be selected, as shown below.
Click
Setup
Loads
Force
.
Type
-5000
in the Magnitude field.
Select the
Z
radio button. Each node receives the specified force magnitude, so we have applied a total force of 10,000 lbf in the -Z direction.
Click
OK
.
Next
Comments
0
dismiss message
view details
Message will close by itself in
seconds
Message timer has been stopped
Viewing Details: