An aluminium rod is rigidly attached between a steel rod and a bronze rod as shown in Figure 3. Axial loads are applied at the positions indicated. (a) Find the maximum value of P that will not exceed a stress in steel of 140 MPa, in aluminium of 90 MPa, or in bronze of 100 MPa. (b) Using the answer from question (a), determine the total elongation of the rods. Steel Aluminium A = 500 mm? Bronze A = 400 mm? F= 70 GPa E= 200 GPa A = 200 mm? E = 83 GPa 4P 2P 2.5 m 2.0 m 1.5 m

Materials Science And Engineering Properties
1st Edition
ISBN:9781111988609
Author:Charles Gilmore
Publisher:Charles Gilmore
Chapter9: Time, Temperature, And Mechanical Properties
Section: Chapter Questions
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An aluminium rod is rigidly attached between a steel rod and a bronze rod as shown
in Figure 3. Axial loads are applied at the positions indicated.
(a) Find the maximum value of P that will not exceed a stress in steel of 140 MPa,
in aluminium of 90 MPa, or in bronze of 100 MPa.
(b) Using the answer from question (a), determine the total elongation of the rods.
Steel
Aluminium
A = 500 mm?
Bronze
A = 400 mm?
E = 200 GPa
A = 200 mm?
F = 70 GPa
E = 83 GPa
4P
2P
2.5 m
2.0 m
1.5 m
Figure 3
Transcribed Image Text:An aluminium rod is rigidly attached between a steel rod and a bronze rod as shown in Figure 3. Axial loads are applied at the positions indicated. (a) Find the maximum value of P that will not exceed a stress in steel of 140 MPa, in aluminium of 90 MPa, or in bronze of 100 MPa. (b) Using the answer from question (a), determine the total elongation of the rods. Steel Aluminium A = 500 mm? Bronze A = 400 mm? E = 200 GPa A = 200 mm? F = 70 GPa E = 83 GPa 4P 2P 2.5 m 2.0 m 1.5 m Figure 3
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