The composite shaft, consisting of aluminum, copper, and steel sections, is subjected to the loading shown. Determine the displacement of end A with respect to endD and the normal stress in each section. The cross-sectional area and modulus of elasticity for each section are shown in the figure. Neglect the size of the collars at B and C. Aluminum Соpper Steel Ey = 70 GPa AAB= 58 mm? Ecu = 126 GPa Anc = 77 mm? Eg = 200 GPa Acp= 39 mm? 16 kN 8 kN 9kN 7 kN 16 kN 8 kN 450 mm -300 mm- 400 mm

Steel Design (Activate Learning with these NEW titles from Engineering!)
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Author:Segui, William T.
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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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The composite shaft, consisting of aluminum, copper,
and steel sections, is subjected to the loading shown.
Determine the displacement of end A with respect to end D
and the normal stress in each section. The cross-sectional
area and modulus of elasticity for each section are shown in
the figure. Neglect the size of the collars at B and C.
Steel
Eg = 200 GPa
Acp= 39 mm?
Aluminum
Соpper
Eg = 70 GPa
AAB= 58 mm?
Ecu = 126 GPa
ABc = 77 mm?
16 kN
8 kN
9 kN
7 kN
16 kN
8 kN
– 450 mm-
-300 mm- 400 mm-
Transcribed Image Text:The composite shaft, consisting of aluminum, copper, and steel sections, is subjected to the loading shown. Determine the displacement of end A with respect to end D and the normal stress in each section. The cross-sectional area and modulus of elasticity for each section are shown in the figure. Neglect the size of the collars at B and C. Steel Eg = 200 GPa Acp= 39 mm? Aluminum Соpper Eg = 70 GPa AAB= 58 mm? Ecu = 126 GPa ABc = 77 mm? 16 kN 8 kN 9 kN 7 kN 16 kN 8 kN – 450 mm- -300 mm- 400 mm-
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