The solid bar shown in the figure has a radius of 0.75 in. Determine the state of stress at point A when subjected to the load shown. a. ) Draw the free-body diagram for the cut at point A, with its respective equations of forces and moments. b. ) Calculate the normal and shear stresses at point A. :) Calculate the maximum tensile stress ot, С. ( maximum compressive stress oc and the maximum shear stress tmax at point A. 8 in 10 in A 800 Ib 14 in B 500 Ib

Mechanics of Materials (MindTap Course List)
9th Edition
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Barry J. Goodno, James M. Gere
Chapter2: Axially Loaded Members
Section: Chapter Questions
Problem 2.6.17P: Acting on the sides of a stress element cut from a bar in uniaxial stress are tensile stresses of...
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The solid bar shown in the figure has a radius of
0.75 in. Determine the state of stress at point A
when subjected to the load shown.
a. ) Draw the free-body diagram for the cut
at point A, with its
respective equations of forces and moments.
b.
:) Calculate the normal and shear stresses
at point A.
c. ) Calculate the maximum tensile stress ot,
maximum compressive stress oc
and the maximum shear stress tmax at point A.
8 in
10 in
A
800 Ib
14 in
500 Ib
00
Transcribed Image Text:The solid bar shown in the figure has a radius of 0.75 in. Determine the state of stress at point A when subjected to the load shown. a. ) Draw the free-body diagram for the cut at point A, with its respective equations of forces and moments. b. :) Calculate the normal and shear stresses at point A. c. ) Calculate the maximum tensile stress ot, maximum compressive stress oc and the maximum shear stress tmax at point A. 8 in 10 in A 800 Ib 14 in 500 Ib 00
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