The bell crank shown is in equilibrium for the forces acting in rods (1) and (2). The bell crank is supported by a 12mm diameter pin at B that acts in single shear. The thickness of the bell crank is 5mm. Assume a = 68mm, b = 155mm, F, = 1150N and 8 = 48°. Determine the following: a. the shear stress in pin B. b. the bearing stress in the bell crank. (1) B Bell crank- (2) F2

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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The bell crank shown is in equilibrium for the forces acting in rods (1) and (2). The bell crank is supported by a 12mm diameter pin at B that acts in single shear. The thickness of the bell crank is 5mm. Assume ?=68??, ?=155??, ?1=1150???? ?=480. Determine the following:

a.the shear stress inpin B.

b.the bearing stress in the bell crank.

The bell crank shown is in equilibrium for the forces acting in rods (1) and (2). The bell crank is supported
by a 12mm diameter pin at B that acts in single shear. The thickness of the bell crank is 5mm. Assume a =
68mm, b = 155mm, F, = 1150N and 8 = 48°. Determine the following:
a. the shear stress in pin B.
b. the bearing stress in the bell crank.
F
(1)
B
Bell crank -
(2)
F2
C
Transcribed Image Text:The bell crank shown is in equilibrium for the forces acting in rods (1) and (2). The bell crank is supported by a 12mm diameter pin at B that acts in single shear. The thickness of the bell crank is 5mm. Assume a = 68mm, b = 155mm, F, = 1150N and 8 = 48°. Determine the following: a. the shear stress in pin B. b. the bearing stress in the bell crank. F (1) B Bell crank - (2) F2 C
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