The design of the crank for a shredder is shown below. The applied force P on the handle is 200 N producing a bending moment and torsional load on the shaft. The dimensions x is 200 mm. Assuming that the resulting bending stress is repeated and reversed and the torsional shear stress is constant, specify a material and size for the shaft. Use a stress concentration factor of 2.5 and a design factor of 3. SHAFT

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 3.7.8P: A tubular shaft being designed for use on a construction site must transmit 120 kW at 1,75 Hz, The...
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2. The design of the crank for a shredder is shown below. The applied force P on the handle is
200 N producing a bending moment and torsional load on the shaft. The dimensions x is 200
mm. Assuming that the resulting bending stress is repeated and reversed and the torsional
shear stress is constant, specify a material and size for the shaft. Use a stress concentration
factor of 2.5 and a design factor of 3.
SHAFT
R (1/10d}
R (1/10 d)
120.00
PSI
p9
Transcribed Image Text:2. The design of the crank for a shredder is shown below. The applied force P on the handle is 200 N producing a bending moment and torsional load on the shaft. The dimensions x is 200 mm. Assuming that the resulting bending stress is repeated and reversed and the torsional shear stress is constant, specify a material and size for the shaft. Use a stress concentration factor of 2.5 and a design factor of 3. SHAFT R (1/10d} R (1/10 d) 120.00 PSI p9
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