he bolt and its head are circular in cross-section with diameters as shown. hey are made of a material having a failure shear stress (Thi) of 170 MPa. a) Applying a factor of safety (FS) of 3.5 against shear failure, determine the maximum allowable force P that can be applied to the bolt-rod so that the bolt-rod does not pull through the bolt-he p) For the force P, calculate the average shear stress in the 80-mm thick brac (as the 125-mm diameter bolt-head tries to punch -125 mm 116 mm 80 mm

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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The bolt and its head are circular in cross-section with diameters as shown.
They are made of a material having a failure shear stress (Tri) of 170 MPa.
(a) Applying a factor of safety (FS) of 3.5 against shear failure, determine the
maximum allowable force P that can be applied to the bolt-rod so that
the bolt-rod does not pull through the bolt-head.
(b) For the force P, calculate the average shear stress in the 80-mm thick bracket.
(as the 125-mm diameter bolt-head tries to punch it).
-125 mm
116 mm
80 mm
60 mm
Transcribed Image Text:The bolt and its head are circular in cross-section with diameters as shown. They are made of a material having a failure shear stress (Tri) of 170 MPa. (a) Applying a factor of safety (FS) of 3.5 against shear failure, determine the maximum allowable force P that can be applied to the bolt-rod so that the bolt-rod does not pull through the bolt-head. (b) For the force P, calculate the average shear stress in the 80-mm thick bracket. (as the 125-mm diameter bolt-head tries to punch it). -125 mm 116 mm 80 mm 60 mm
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