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The Third Homework

The document outlines a step-by-step guide for a homework assignment in ANSYS Theory and Application, focusing on creating a static structure project titled 'Bridge'. It details the selection of materials, geometry setup, sketching, and applying forces, culminating in solving for total deformation. The assignment is authored by Abir Kalloussi from the Department of Mechanical Engineering, due on January 29, 2024.

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Abir KL
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0% found this document useful (0 votes)
31 views10 pages

The Third Homework

The document outlines a step-by-step guide for a homework assignment in ANSYS Theory and Application, focusing on creating a static structure project titled 'Bridge'. It details the selection of materials, geometry setup, sketching, and applying forces, culminating in solving for total deformation. The assignment is authored by Abir Kalloussi from the Department of Mechanical Engineering, due on January 29, 2024.

Uploaded by

Abir KL
Copyright
© © All Rights Reserved
We take content rights seriously. If you suspect this is your content, claim it here.
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Download as DOCX, PDF, TXT or read online on Scribd
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The third homework

Name: Abir Kalloussi


Student number :2021LXSB0078
Department of Mechanical Engineering
Course: ANSYS THEROY AND APPLICATION
Time: Friday 29, 2024

 Step 1
 . Select and double click static structure click or drag a
static structure into a project schematic. Then write a title
of your project. In this case I wrote “Bridge”
 Step 2
 Then double click engineering data to choose material type
to use. For this case choose Bridge.
 Then Change:
 Young's Modulus: 200GPa
 Poisson's ration: 0.27

Step 3
 Double click Geometry to start the design modeler. And
click units to change units to meters.
 Step 4
 Choosing a plane to sketch. Select “xyplane” then click
new sketch and click the face plane so that to get a normal
view of the sketch.

 Step 5
 Then click sketching followed by clicking settings and
click Grind, then select both 2D and snap.
 Change Major Grind Space to 1.8m and Minor-Space per
Major to 1m.
Step 6
 Sketching

Step 7
 Click concept, select cross section then choose rectangular
with changing dimensions B and H to 0.59m
Step 8
 click concept and select by clicking line from sketch and
then click apply.

Step 9
Select line body then change cross section to rect 1.
Step 10
 Open model

 Step 11
 Right click mesh, select generate mesh then change
defeature sizing to 4m then generate mesh.
Step 12
 Click fixed support the select the vertex click apply.

 Step 13
 Click displacement select vertex then apply, change
Y component to 0m.
Step 14
 Click force select vertex then apply , type define by
component , change Y component to -280000

 Step 15
 Force 2 : same steps of force 1 with change Y
component to -210000
Step 16
 Force 3 : same steps with change Y component to -
280000

 Step 17
 Force 4 : same steps with change Y component to -
360000
 Step 18
 Click solution then solve , with select beam tool
then solve it
 Select total deformation then solve

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