A brass tube with an outside diameter of 2.00 in. and a wall thickness of 0.375 in. is connected to a steel tube with an inside diameter of 2.00 in. and a wall thickness of 0.250 in. by using a 0.750-in.-diameter pin as shown in Fig. 4-14a. Determine (a) The shearing stress in the pin when the joint is carrying an axial load of 10 kip. (b) The length of joint required if the pin is replaced by a glued joint and the shearing stress in the glue must be limited to 250 psi.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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BEARING STRESS
A brass tube with an outside diameter of 2.00 in. and a wall thickness of
0.375 in. is connected to a steel tube with an inside diameter of 2.00 in. and a
wall thickness of 0.250 in. by using a 0.750-in.-diameter pin as shown in Fig.
4-14a. Determine
(a) The shearing stress in the pin when the joint is carrying an axial load of 10 kip.
(b) The length of joint required if the pin is replaced by a glued joint and the
shearing stress in the glue must be limited to 250 psi.
STITUTE
Steel
Brass
Transcribed Image Text:BEARING STRESS A brass tube with an outside diameter of 2.00 in. and a wall thickness of 0.375 in. is connected to a steel tube with an inside diameter of 2.00 in. and a wall thickness of 0.250 in. by using a 0.750-in.-diameter pin as shown in Fig. 4-14a. Determine (a) The shearing stress in the pin when the joint is carrying an axial load of 10 kip. (b) The length of joint required if the pin is replaced by a glued joint and the shearing stress in the glue must be limited to 250 psi. STITUTE Steel Brass
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