The bell crank shown in Figure , is in equilibrium, a) Determine the required diameter of the connecting rod (AB) if its axial stress is limited to (100 MPa)? b) Determine the shearing stress in the pin at point (D) if its radius the (20 mm).

Mechanics of Materials (MindTap Course List)
9th Edition
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Barry J. Goodno, James M. Gere
Chapter3: Torsion
Section: Chapter Questions
Problem 3.2.6P: A circular aluminum tube subjected to pure torsion by torques T(sec figure) has an outer radius...
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The bell crank shown in Figure , is in equilibrium, a) Determine the required diameter of the connecting rod (AB) if its axial stress is limited to (100 MPa)? b) Determine the shearing stress in the pin at point (D) if its radius the (20 mm).
ll Fastlink LTE
12:56 AM
H.W: The bell crank shown in Figure , is in equilibrium,
a) Determine the required diameter of the connecting rod (AB) if its axial stress
is limited to (100 MPa).
b) Determine the shearing stress in the pin at point (D) if its radius the (20 mm).
A
В
200 mm
240 mm
D
60
30 KN
Transcribed Image Text:ll Fastlink LTE 12:56 AM H.W: The bell crank shown in Figure , is in equilibrium, a) Determine the required diameter of the connecting rod (AB) if its axial stress is limited to (100 MPa). b) Determine the shearing stress in the pin at point (D) if its radius the (20 mm). A В 200 mm 240 mm D 60 30 KN
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