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Transient beam analysis Workbench 14.0 Aalborg Universitet Esbjerg Søren Heide Lambertsen
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Transient beam analysis Workbench 14.0 Aalborg Universitet Esbjerg Søren Heide Lambertsen.

Apr 01, 2015

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Braydon Gambee
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Page 1: Transient beam analysis Workbench 14.0 Aalborg Universitet Esbjerg Søren Heide Lambertsen.

Transient beam analysisWorkbench 14.0

Aalborg Universitet Esbjerg Søren Heide Lambertsen

Page 2: Transient beam analysis Workbench 14.0 Aalborg Universitet Esbjerg Søren Heide Lambertsen.

Make a beam model or for this example download the Transient Beam Geometry from the homepage.

Page 3: Transient beam analysis Workbench 14.0 Aalborg Universitet Esbjerg Søren Heide Lambertsen.

Use a fixed support in one of the ends.

Page 4: Transient beam analysis Workbench 14.0 Aalborg Universitet Esbjerg Søren Heide Lambertsen.

Now setup the Initial time step. A general rule istwenty points per cycle at the response frequency. Time step= 1/(20f)Time step= 1/(20f)= 1/(20*8,15)=0,00613

The result from a modal analysis

Page 5: Transient beam analysis Workbench 14.0 Aalborg Universitet Esbjerg Søren Heide Lambertsen.

Then setup the lower and upper time step.

Page 6: Transient beam analysis Workbench 14.0 Aalborg Universitet Esbjerg Søren Heide Lambertsen.

Set the “Step End Time” to 20,s

Page 7: Transient beam analysis Workbench 14.0 Aalborg Universitet Esbjerg Søren Heide Lambertsen.

Add a force and apply the force size as tabular data. Then enter in the tabular so the force will rise to 100 [N] in 5 sec and be static from 5 sec to 20 sec. Then solve

Page 8: Transient beam analysis Workbench 14.0 Aalborg Universitet Esbjerg Søren Heide Lambertsen.

Then plot the “Total deformation” now you can see the dynamic response when the bean is being loaded.