The solid shaft ABCDE has a diameter of 30 mm and is simply supported at its...
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The solid shaft ABCDE has a diameter of 30 mm and is simply supported at its ends. The pulleys at B and D are of diameter 200mm and pulley at C is 100mm in diameter. The pulleys are subjected to forces as shown in figure. The forces on pulley B are at an angle of 45° from the negative z-axis. The shaft sections have following lengths: AB = 100mm, BC = 250mm, CD = 250mm, and DE 100mm. 25 N 100 N 500 N 125 N a. Determine the maximum bending and torsional stresses at the cross-section midway between points B and C. Locate the point(s) on the cross-section where the stresses are maximum. b. Determine the maximum bending and torsional stresses anywhere along the beam. Locate the points(s) on the cross-section where the stresses are maximum. c. Determine the maximum principal stresses anywhere along the beam and locate the point(s) on cross section. 125 N AB= 100 BC= 250 CD = 250 DE = 100 25 N The solid shaft ABCDE has a diameter of 30 mm and is simply supported at its ends. The pulleys at B and D are of diameter 200mm and pulley at C is 100mm in diameter. The pulleys are subjected to forces as shown in figure. The forces on pulley B are at an angle of 45° from the negative z-axis. The shaft sections have following lengths: AB = 100mm, BC = 250mm, CD = 250mm, and DE 100mm. 25 N 100 N 500 N 125 N a. Determine the maximum bending and torsional stresses at the cross-section midway between points B and C. Locate the point(s) on the cross-section where the stresses are maximum. b. Determine the maximum bending and torsional stresses anywhere along the beam. Locate the points(s) on the cross-section where the stresses are maximum. c. Determine the maximum principal stresses anywhere along the beam and locate the point(s) on cross section. 125 N AB= 100 BC= 250 CD = 250 DE = 100 25 N
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