A solid bar has a diameter of 40 mm and subjected to the loadings shown in Figure 2. The supports at the end of the bar are bearings which can only support vertical loads. Here, F = 2 kN, P = 2 kN and L = 4 m. Determine the principal stresses and the maximum in-plane shear stress that develop at point A which is on the bar surface. F L 2 P A L 2 F

Mechanics of Materials (MindTap Course List)
9th Edition
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Barry J. Goodno, James M. Gere
Chapter7: Analysis Of Stress And Strain
Section: Chapter Questions
Problem 7.4.7P: • - 7.4-7 An element on the surface of a drive shaft is in pure shear and is subjected to stresses...
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A solid bar has a diameter of 40 mm and subjected to the loadings shown
in Figure 2. The supports at the end of the bar are bearings which can
only support vertical loads. Here, F = 2 kN, P = 2 kN and L = 4 m.
Determine the principal stresses and the maximum in-plane shear
stress that develop at point A which is on the bar surface.
F
L
2
P
A
L
2
F
Transcribed Image Text:A solid bar has a diameter of 40 mm and subjected to the loadings shown in Figure 2. The supports at the end of the bar are bearings which can only support vertical loads. Here, F = 2 kN, P = 2 kN and L = 4 m. Determine the principal stresses and the maximum in-plane shear stress that develop at point A which is on the bar surface. F L 2 P A L 2 F
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