wla V sI Untitled A rod is composed of an aluminum section rigidly attached between steel and bronze sections, as shown in the figure below. Axial loads are applied at the positions indicated. If P= 3000 N and the cross sectional area of the rod is 325 mm2, determine the stress in each section, and total deformation of the road. E for steel is 200000 MPa, E for aluminum is 70000 MPa, E for bronze is 100000 MPa 1 3 Steel Bronze 4P Aluminum 1 2 3 500 mm 750 mm 625 mm THalino.com

Steel Design (Activate Learning with these NEW titles from Engineering!)
6th Edition
ISBN:9781337094740
Author:Segui, William T.
Publisher:Segui, William T.
Chapter5: Beams
Section: Chapter Questions
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۳:۵۲ ص الأحد ۷ مارس
Untitled
A rod is composed of an aluminum section rigidly attached between steel
and bronze sections, as shown in the figure below. Axial loads are applied
at the positions indicated. If P = 3000 N and the cross sectional area of the
rod is 325 mm2, determine the stress in each section, and total deformation
of the road. E for steel is
200000 MPa, E for aluminum is 70000 MPa, E
for bronze is 100000 MPa
1
2
3
Steel
Bronze
4P
Aluminum
1
2
500 mm
750 mm
625 m
Transcribed Image Text:۳:۵۲ ص الأحد ۷ مارس Untitled A rod is composed of an aluminum section rigidly attached between steel and bronze sections, as shown in the figure below. Axial loads are applied at the positions indicated. If P = 3000 N and the cross sectional area of the rod is 325 mm2, determine the stress in each section, and total deformation of the road. E for steel is 200000 MPa, E for aluminum is 70000 MPa, E for bronze is 100000 MPa 1 2 3 Steel Bronze 4P Aluminum 1 2 500 mm 750 mm 625 m
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