Axial loads are applied with rigid bearing plates to the solid cylindrical rods shown. The normal stress in aluminum rod (1) must be limited to 18 ksi, the normal stress in brass rod (2) must be limited to 24 ksi, and the normal stress in steel rod (3) must be limited to 12 ksi. Determine the minimum diameter required for each of the three rods. Assume P = 6 kips, Q = 4 kips, R = 15 kips and S = 27 kips. A er ove B (2) (3) D First: Calculate the internal force (positive if tensile, negative if compresive) in rod (1). Use a FBD cutting through the rod in the section that includes the free end A. Answer: F₁ = i kips. C

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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Axial loads are applied with rigid bearing plates to the solid cylindrical rods shown. The normal stress in aluminum rod (1)
must be limited to 18 ksi, the normal stress in brass rod (2) must be limited to 24 ksi, and the normal stress in steel rod (3)
must be limited to 12 ksi. Determine the minimum diameter required for each of the three rods. Assume P = 6 kips, Q = 4
kips, R = 15 kips and $ = 27 kips.
A
of (1) VQ
B
(2)
(3)
D
First: Calculate the internal force (positive if tensile, negative if compresive) in rod (1). Use a FBD cutting through the rod
in the section that includes the free end A.
Answer: F₁ = i
kips.
R
C
Transcribed Image Text:Axial loads are applied with rigid bearing plates to the solid cylindrical rods shown. The normal stress in aluminum rod (1) must be limited to 18 ksi, the normal stress in brass rod (2) must be limited to 24 ksi, and the normal stress in steel rod (3) must be limited to 12 ksi. Determine the minimum diameter required for each of the three rods. Assume P = 6 kips, Q = 4 kips, R = 15 kips and $ = 27 kips. A of (1) VQ B (2) (3) D First: Calculate the internal force (positive if tensile, negative if compresive) in rod (1). Use a FBD cutting through the rod in the section that includes the free end A. Answer: F₁ = i kips. R C
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