Three bars AB, AC, and AD are pinned together as shown in the figure. Initially, the assembly is stress free. Horizontal movement of the joint at A is prevented by a short horizontal strut AE. Calculate the stress in aluminum bar AC and steel bar AD. Also, find the force in the strut AE when the assembly is used to support the load W = 12.50 kips For each steel bar, A = 0.4 in² and E = 29 × 106 psi. For the aluminum bar, A = 0.8 in² and E= 10 x 10° psi. B D Steel E Aluminum 35 W 20% A Steel L

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 2.12.5P: The symmetric truss ABCDE shown in the figure is constructed of four bars and supports a load P at...
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Three bars AB, AC, and AD are pinned together as shown in the figure. Initially, the assembly is
stress free. Horizontal movement of the joint at A is prevented by a short horizontal strut AE. Calculate the stress
in aluminum bar AC and steel bar AD. Also, find the force in the strut AE when the assembly is used to support
the load W = 12.50 kips For each steel bar, A = 0.4 in² and E = 29 × 106 psi. For the aluminum bar, A = 0.8 in²
and E= 10× 106 psi.
B
с
D
20%
Steel
E
35
Aluminum
MITTA
W
A
Steel
L
Transcribed Image Text:Three bars AB, AC, and AD are pinned together as shown in the figure. Initially, the assembly is stress free. Horizontal movement of the joint at A is prevented by a short horizontal strut AE. Calculate the stress in aluminum bar AC and steel bar AD. Also, find the force in the strut AE when the assembly is used to support the load W = 12.50 kips For each steel bar, A = 0.4 in² and E = 29 × 106 psi. For the aluminum bar, A = 0.8 in² and E= 10× 106 psi. B с D 20% Steel E 35 Aluminum MITTA W A Steel L
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