A composite beam is made by attaching the timber and steel portions as shown in the figure with bolt of 15 mm diameter spaced longitudinally every 200 mm. Determine the average shear stress in the bolt caused by vertical shear force of 5 kN. Bolt Steel 10 mm 150 mm Timber 250 mm 10 mm Bolt [Take Etimber = 104 MPa, Esteel = 2 x 105 MPa]
A composite beam is made by attaching the timber and steel portions as shown in the figure with bolt of 15 mm diameter spaced longitudinally every 200 mm. Determine the average shear stress in the bolt caused by vertical shear force of 5 kN. Bolt Steel 10 mm 150 mm Timber 250 mm 10 mm Bolt [Take Etimber = 104 MPa, Esteel = 2 x 105 MPa]
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![A composite beam is made by attaching the timber and steel portions as shown in the figure with bolt of 15 mm diameter
spaced longitudinally every 200 mm. Determine the average shear stress in the bolt caused by vertical shear force of 5 kN.
Bolt
Steel
10 mm
150 mm
Timber
250 mm
10 mm
Bolt
[Take Etimber = 104 MPa, Esteel = 2 x 105 MPa]](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F4be349b8-86d9-4f01-b955-2c3c910a2f41%2Fe50f4519-1a6d-42f9-a2bf-9292b60c4609%2Fvhr1fn_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A composite beam is made by attaching the timber and steel portions as shown in the figure with bolt of 15 mm diameter
spaced longitudinally every 200 mm. Determine the average shear stress in the bolt caused by vertical shear force of 5 kN.
Bolt
Steel
10 mm
150 mm
Timber
250 mm
10 mm
Bolt
[Take Etimber = 104 MPa, Esteel = 2 x 105 MPa]
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