AWT305 x 41 standard steel shape is used to support the loads shown on the beam. The dimensions from the top and bottom of the shape to the centroidal axis are shown in the sketch of the cross section. Assume LAB3M, LBc 5 m, LcD 4m, PA 13 kN, WBC 11 kN/m. Consider the entire 12-m length of the beam and determine: (a) the maximum tension bending stress or at any location along the beam, and (b) the maximum compression bending stress oc at any location along the beam. B. D. LAB Lục LeD 88.9 mm 211.1 mm WT 305 x 41 Answers: (a) or = MPa. (b) oc = MPa.

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 6.5.6P: The Z-section of Example D-7 is subjected to M = 5 kN · m, as shown. Determine the orientation of...
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AWT305 x 41 standard steel shape is used to support the loads shown on the beam. The dimensions from the top and bottom of the
shape to the centroidal axis are shown in the sketch of the cross section. Assume LAB = 3 m, LBc = 5 m, LcD= 4 m, PA= 13 kN, WBc = 11
kN/m. Consider the entire 12-m length of the beam and determine:
(a) the maximum tension bending stress or at any location along the beam, and
(b) the maximum compression bending stress oc at any location along the beam.
PA
WBC
B.
D.
LAB
Lục
LCD
88.9 mm
211.1 mm
WT305 x 41
Answers:
(a) or =
MPa.
(b) ac =
MPa.
Transcribed Image Text:AWT305 x 41 standard steel shape is used to support the loads shown on the beam. The dimensions from the top and bottom of the shape to the centroidal axis are shown in the sketch of the cross section. Assume LAB = 3 m, LBc = 5 m, LcD= 4 m, PA= 13 kN, WBc = 11 kN/m. Consider the entire 12-m length of the beam and determine: (a) the maximum tension bending stress or at any location along the beam, and (b) the maximum compression bending stress oc at any location along the beam. PA WBC B. D. LAB Lục LCD 88.9 mm 211.1 mm WT305 x 41 Answers: (a) or = MPa. (b) ac = MPa.
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