Required information
with the belt tensions shown. The power is transmitted through the shaft and delivered to the belt on pulley B. Assume the belt tension on the loose side at B is 15 percent of the tension on the tight side. Given: TA=300 ibf, TA2=45 Ibf. d=9 in, dg=11.25 in, and dshaft=1.083 in. NOTE:This is a multi-part question.Once an answer is submitted,you will be unable to return to this part
Determine the tensions in the belt on pulley 8.assuming the shaft is running at a constant speed.
The tension on the loose side of the belt at Bis
Ibf.
The tension on the tight side of the belt at B is
tbf.
Find the magnitudes of the bearing reaction forces,assuming the bearings act as simple supports
The magnitude of the bearing reaction force Rc is
Ibf.
The magnitude of the bearing reaction force Ro is
Ibf.
At the point of maximum bending moment,determine the bending stress and the torsional shear stress
The bending stress at the point of maximum bending moment is
kpsi.
The torsional shear stress at the point of maximum bending moment is
kpsi.
At the point of maximum bending moment, determine the principal stresses and the maximum shear stress.
The first principal stress at the point of maximum bending moment is
kpsi.
The second principal stress at the point of maximum bending moment is
kpsi.
The maximum shear stress at the point of maximum bending moment is
kpsi.