A square steel tube of length L = 6 m with an outer width of 250mm and the inner dimension is 210 mm. The tube hangs from a pin of diameter "d" that is held by the cables at points A and B. Weight density of steel = 77 kN/m3. Allowable stresses: Shear stress in the pin = 60 MPa Bearing stress between the pin and the tube = 90 MPa A. Determine the tensile force in the cable. B. Determine the diameter of pin based upon shear. C. Determine the diameter of pin based upon bearing.
A square steel tube of length L = 6 m with an outer width of 250mm and the inner dimension is 210 mm. The tube hangs from a pin of diameter "d" that is held by the cables at points A and B. Weight density of steel = 77 kN/m3. Allowable stresses: Shear stress in the pin = 60 MPa Bearing stress between the pin and the tube = 90 MPa A. Determine the tensile force in the cable. B. Determine the diameter of pin based upon shear. C. Determine the diameter of pin based upon bearing.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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A square steel tube of length L = 6 m with an outer width of 250mm and the inner dimension is 210 mm. The tube hangs from a pin of diameter "d" that is held by the cables at points A and B.
Weight density of steel = 77 kN/m3.
Allowable stresses:
Shear stress in the pin = 60 MPa
Bearing stress between the pin and the tube = 90 MPa
A. Determine the tensile force in the cable.
B. Determine the diameter of pin based upon shear.
C. Determine the diameter of pin based upon bearing.

Transcribed Image Text:Square
iube
L=6 m

Transcribed Image Text:82
B
E 250
B
Pin
210
Square
tube
250
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