A beam with the thin-walled cross section in the figure is subjected to a shear force V=20000 lb. (The wall thickness is not shown to scale.). Assume that the thickness of the section is constant. (a) Determine and sketch the distribution of the shear flows on the flanges and the web. (b) Determine the location of the shear center on the symmetrical line. Point B is the center of the web. 10in 0.5in-

Mechanics of Materials (MindTap Course List)
9th Edition
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Barry J. Goodno, James M. Gere
Chapter6: Stresses In Beams (advanced Topics)
Section: Chapter Questions
Problem 6.9.11P: Derive the following formula for the distance e from the centerline of the wall to the shear center...
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A beam with the thin-walled cross section in the figure is subjected to a shear force V-20000
Ib. (The wall thickness is not shown to scale.). Assume that the thickness of the section is
constant. (a) Determine and sketch the distribution of the shear flows on the flanges and the web.
(b) Determine the location of the shear center on the symmetrical line. Point B is the center of
the web.
3 in
10in
0.5in-
Transcribed Image Text:A beam with the thin-walled cross section in the figure is subjected to a shear force V-20000 Ib. (The wall thickness is not shown to scale.). Assume that the thickness of the section is constant. (a) Determine and sketch the distribution of the shear flows on the flanges and the web. (b) Determine the location of the shear center on the symmetrical line. Point B is the center of the web. 3 in 10in 0.5in-
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