5. A bronze bar is fastened between a steel bar and an aluminum bar as shown in Figure 5. Axial loads are applied at the positions indicated. Find the largest value of P that will not exceed an overall deformation of 3.0 mm, or the following stresses: 140 MPa in the steel, 120 MPa in the bronze, and 80 MPa in the aluminum. Assume that the assembly is suitably braced to prevent buckling. Use Est = 200 GPa, Eal = 70 GPa, and Ebr = 83 GPa. Steel A = 480 mm² 1.0 m Bronze A = 650 mm² 3P 4P 2.0 m FIGURE 5 Aluminum A = 320 mm² 1.5 m 2P

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5. A bronze bar is fastened between a steel bar and an aluminum bar as
shown in Figure 5. Axial loads are applied at the positions indicated. Find
the largest value of P that will not exceed an overall deformation of 3.0
mm, or the following stresses: 140 MPa in the steel, 120 MPa in the bronze,
and 80 MPa in the aluminum. Assume that the assembly is suitably
braced to prevent buckling. Use Est = 200 GPa, Eal = 70 GPa, and Ebr = 83
GPa.
Steel
A = 480 mm²
1.0 m
Bronze
A = 650 mm²
3P
4P
2.0 m
FIGURE 5
Aluminum
A = 320 mm²
1.5 m
2P
Transcribed Image Text:5. A bronze bar is fastened between a steel bar and an aluminum bar as shown in Figure 5. Axial loads are applied at the positions indicated. Find the largest value of P that will not exceed an overall deformation of 3.0 mm, or the following stresses: 140 MPa in the steel, 120 MPa in the bronze, and 80 MPa in the aluminum. Assume that the assembly is suitably braced to prevent buckling. Use Est = 200 GPa, Eal = 70 GPa, and Ebr = 83 GPa. Steel A = 480 mm² 1.0 m Bronze A = 650 mm² 3P 4P 2.0 m FIGURE 5 Aluminum A = 320 mm² 1.5 m 2P
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