The bell-crank mechanism is in equilibrium for an applied load of F1 = 17 kN applied at A. Assume a = 290mm, b = 120mm, c = 80mm, and e = 35°. Pin B is in a double-shear connection and has a diameter of 33 mm. The bell crank has a thickness of 36 mm. Determine (a) the shear stress in pin B. (b) the bearing stress in the bell crank at B.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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The bell-crank mechanism is in equilibrium for an applied load of F1 = 17 kN applied at A. Assume a = 290mm, b = 120mm, c = 80mm,
and e = 35°. Pin B is in a double-shear connection and has a diameter of 33 mm. The bell crank has a thickness of 36 mm. Determine
(a) the shear stress in pin B.
(b) the bearing stress in the bell crank at B.
Bell crank
F2
Support bracket
A
a
Answers:
Tpin B =
MPa
Ob =
i
MPa
Transcribed Image Text:The bell-crank mechanism is in equilibrium for an applied load of F1 = 17 kN applied at A. Assume a = 290mm, b = 120mm, c = 80mm, and e = 35°. Pin B is in a double-shear connection and has a diameter of 33 mm. The bell crank has a thickness of 36 mm. Determine (a) the shear stress in pin B. (b) the bearing stress in the bell crank at B. Bell crank F2 Support bracket A a Answers: Tpin B = MPa Ob = i MPa
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