Given the figure below. Diameter of bolt is 20 mm. 130 kN 200mm 50 50 7 8 50 50 5 50 50 3 1 + 100mm 1. Determine the direct load on each rivet. 2. Determine the direct shear stress. 3. Determine the polar moment of inertia in mm². 4. Determine the load due to moment on each rivet. 5. Determine the shear stress due to moment. 6. Determine the maximum load on each rivet. 7. Determine the maximum shear stress. 8. Determine the maximum eccentric load that can be applied if the allowable shear stress of the bolt is 105 MPa.
Given the figure below. Diameter of bolt is 20 mm. 130 kN 200mm 50 50 7 8 50 50 5 50 50 3 1 + 100mm 1. Determine the direct load on each rivet. 2. Determine the direct shear stress. 3. Determine the polar moment of inertia in mm². 4. Determine the load due to moment on each rivet. 5. Determine the shear stress due to moment. 6. Determine the maximum load on each rivet. 7. Determine the maximum shear stress. 8. Determine the maximum eccentric load that can be applied if the allowable shear stress of the bolt is 105 MPa.
Materials Science And Engineering Properties
1st Edition
ISBN:9781111988609
Author:Charles Gilmore
Publisher:Charles Gilmore
Chapter8: Engineering Materials
Section: Chapter Questions
Problem 85CQ
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