Situation A. An aluminum rod is rigidly attached between a steel rod and a bronze rod as shown below. Axial loads are applied at the positions indicated. Aluminum A = 400 mm? Bronze A = 200 mm? Steel ho A = 500 mm? 2P 4P 2.0 m 1. Find the value of P in the steel area. 2.5 m 1.5 m 2. Find the value of P in the aluminum area. 3. Find the value of P in the bronze area. 4. Find the maximum value of P that will not exceed a stress in steel of 140 MPa, in aluminum of 90 MPa, or in bronze of 100 MPa.

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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(unit is in kN).

Situation A.
An aluminum rod is rigidly attached between a steel rod
and a bronze rod as shown below. Axial loads are applied
at the positions indicated.
Aluminum
A = 400 mm? Bronze
A = 200 mm?
Steel
ho A = 500 mm?
2P
4P
2.0 m
1. Find the value of P in the steel area.
2.5 m
1.5 m
2. Find the value of P in the aluminum area.
3. Find the value of P in the bronze area.
4. Find the maximum value of P that will not exceed a
stress in steel of 140 MPa, in aluminum of 90 MPa,
or in bronze of 100 MPa.
Transcribed Image Text:Situation A. An aluminum rod is rigidly attached between a steel rod and a bronze rod as shown below. Axial loads are applied at the positions indicated. Aluminum A = 400 mm? Bronze A = 200 mm? Steel ho A = 500 mm? 2P 4P 2.0 m 1. Find the value of P in the steel area. 2.5 m 1.5 m 2. Find the value of P in the aluminum area. 3. Find the value of P in the bronze area. 4. Find the maximum value of P that will not exceed a stress in steel of 140 MPa, in aluminum of 90 MPa, or in bronze of 100 MPa.
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