A copper strip (Ec= 105 GPa) and an aluminum strip (E = 75 GPa) are bonded together to form the composite beam shown. Knowing that the beam is bent about a horizontal axis by a couple of moment M = 34 N.m. !!Hint: you can transform either Aluminum to Copper or Copper to Aluminum as reference materials!! Determine the stress on the top of Aluminum. (in the Unit of MPa) Aluminum Copper 24 mm T 6 mm 6 mm

Structural Analysis
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Author:KASSIMALI, Aslam.
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Chapter2: Loads On Structures
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Determine the stress on the Bottom of Copper. (in the Unit of MPa), Determine the stress on the top of Copper.
A copper strip (Ec = 105 GPa) and an aluminum strip (E = 75 GPa) are bonded together to form the
composite beam shown. Knowing that the beam is bent about a horizontal axis by a couple of
moment M = 34 N.m.
!!Hint: you can transform either Aluminum to Copper or Copper to Aluminum as reference materials!!
Determine the stress on the top of Aluminum. (in the Unit of MPa)
Aluminum
Copper
24 mm
T
6 mm
6 mm
Transcribed Image Text:A copper strip (Ec = 105 GPa) and an aluminum strip (E = 75 GPa) are bonded together to form the composite beam shown. Knowing that the beam is bent about a horizontal axis by a couple of moment M = 34 N.m. !!Hint: you can transform either Aluminum to Copper or Copper to Aluminum as reference materials!! Determine the stress on the top of Aluminum. (in the Unit of MPa) Aluminum Copper 24 mm T 6 mm 6 mm
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