Torsion: Difference between revisions

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* <tex>\phi''</tex> ... second derivative of <tex>\phi</tex> with respect to the local X axis of the member
* <tex>\phi''</tex> ... second derivative of <tex>\phi</tex> with respect to the local X axis of the member
* <tex>\phi'''</tex> ... third derivative of <tex>\phi</tex> with respect to the local X axis of the member
* <tex>\phi'''</tex> ... third derivative of <tex>\phi</tex> with respect to the local X axis of the member
* <tex>I_{\omega}</tex> ... [[sectorial moment of inertia]]


== Torsion of Solid Sections ==
== Torsion of Solid Sections ==

Revision as of 05:20, 22 September 2009

The twist or deformation of a body set up by a torque.

Torsion Theories

Notation

The following notation is used throughout the torsion topic, unless noted otherwise:

  • <tex>\phi</tex> ... angle of rotation due to torsional moment
  • <tex>\phi'</tex> ... first derivative of <tex>\phi</tex> with respect to the local X axis of the member
  • <tex>\phi</tex> ... second derivative of <tex>\phi</tex> with respect to the local X axis of the member
  • <tex>\phi</tex> ... third derivative of <tex>\phi</tex> with respect to the local X axis of the member
  • <tex>I_{\omega}</tex> ... sectorial moment of inertia

Torsion of Solid Sections

Torsion of Closed Thin-Walled Sections

Shear stress due to torsion in a thin-walled noncircular shell can be calculated as follows (Lindeburg 2003):

<tex>\tau = \frac{T}{2At}</tex>

where

  • <tex>\tau</tex> ... shear stress
  • <tex>T</tex> ... applied torsion
  • <tex>A</tex> ... area enclosed by the centerline of the shell
  • <tex>t</tex> ... sheel thickness

Torsion of Open Thin-Walled Sections

See Also

References

  • AISC Design Guide 9: Torsional Analysis of Structural Steel Members (1996)
  • Michael R. Lindeburg: Civil Engineering Reference Manual for the PE Exam, 9th Edition, 2003, p. 45-14 (eq. 45.54)

 

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