AN ALUMINUM TUBE IS FASTENED BETWEEN A STEEL ROD AND BRONZE ROD AS SHOWN IN THE FIGURE. AXIAL LOADS ARE APPLIED AT THE POSITIONS INDICATED. FIND THE VALUE OF P THAT WILL NOT EXCEED A MAXIMUM OVERALL DEFORMATION OF 5mm OR A STRESS IN THE STEEL OF 120MPa, IN BRONZE OF 130 MPa AND IN ALUMINUM OF 90 MPa. Modulus of Elasticty of Bronze = 80 GPa, Aluminum = 65 GPa and Steel = 210 GPa. 2P P 3P B. 4P A L = 500mm A = 400mm² 800 900 C 600 700

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Chapter1: Introduction
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Problem 1.5.6P: The data in Table 1.5.3 were obtained from a tensile test of a metal specimen with a rectangular...
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AN ALUMINUM TUBE IS FASTENED BETWEEN A STEEL ROD AND BRONZE
ROD AS SHOWN IN THE FIGURE. AXIAL LOADS ARE APPLIED AT THE
POSITIONS INDICATED. FIND THE VALUE OF P THAT WILL NOT EXCEED
A MAXIMUM OVERALL DEFORMATION OF 5mm OR A STRESS IN THE
STEEL OF 120MPa, IN BRONZE OF 130 MPa AND IN ALUMINUM OF
90 MPa. Modulus of Elasticty of Bronze = 80 GPa, Aluminum = 65 GPa
and Steel = 210 GPa.
2P
P
3P
4P
L = 500mm
800
A = 400mm²
900
600
700
C
Transcribed Image Text:AN ALUMINUM TUBE IS FASTENED BETWEEN A STEEL ROD AND BRONZE ROD AS SHOWN IN THE FIGURE. AXIAL LOADS ARE APPLIED AT THE POSITIONS INDICATED. FIND THE VALUE OF P THAT WILL NOT EXCEED A MAXIMUM OVERALL DEFORMATION OF 5mm OR A STRESS IN THE STEEL OF 120MPa, IN BRONZE OF 130 MPa AND IN ALUMINUM OF 90 MPa. Modulus of Elasticty of Bronze = 80 GPa, Aluminum = 65 GPa and Steel = 210 GPa. 2P P 3P 4P L = 500mm 800 A = 400mm² 900 600 700 C
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