In the steel structure shown, a 6-mm-diameter pin is used at C and 12-mm-diameter pins are used at B and D. The ultimate shearing stress is 150 MPa at all connections, and the ultimate normal stress is 350 MPa in link BD. Knowing that a factor of safety of 3.0 is desired, determine the largest load P that can be applied at A. Note that link BD is not reinforced around the pin holes.        The largest load P that can be applied at A is  kN.

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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In the steel structure shown, a 6-mm-diameter pin is used at C and 12-mm-diameter pins are used at B and D. The ultimate shearing stress is 150 MPa at all connections, and the ultimate normal stress is 350 MPa in link BD. Knowing that a factor of safety of 3.0 is desired, determine the largest load P that can be applied at A. Note that link BD is not reinforced around the pin holes. 

 

 

 

The largest load P that can be applied at A is  kN.

In the steel structure shown, a 6-mm-diameter pin is used at C and 12-mm-diameter pins are used at Band
D. The ultimate shearing stress is 150 MPa at all connections, and the ultimate normal stress is 350 MPa in
link BD. Knowing that a factor of safety of 3.0 is desired, determine the largest load P that can be applied
at A. Note that link BD is not reinforced around the pin holes.
Front view
160 mm
B
B
Top view
18 mm
-120 mm
The largest load P that can be applied at A is
U
kN.
D
6 mm
B
Side view
Transcribed Image Text:In the steel structure shown, a 6-mm-diameter pin is used at C and 12-mm-diameter pins are used at Band D. The ultimate shearing stress is 150 MPa at all connections, and the ultimate normal stress is 350 MPa in link BD. Knowing that a factor of safety of 3.0 is desired, determine the largest load P that can be applied at A. Note that link BD is not reinforced around the pin holes. Front view 160 mm B B Top view 18 mm -120 mm The largest load P that can be applied at A is U kN. D 6 mm B Side view
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