An agitator propeller shaft of 50mm diameter is utilized to drive a rotor blade in a mixer. As a consequences, the shaft is suffered a compressive load of P =125KN and a torque of T=2.4KN.m. Determine the principle stresses and maximum shear stress. Check if it is safe to use basing on Tresca failure criterion. The yield stress of the shaft is 480MPA.

Mechanics of Materials (MindTap Course List)
9th Edition
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Barry J. Goodno, James M. Gere
Chapter8: Applications Of Plane Stress (pressure Vessels, Beams, And Combined Loadings)
Section: Chapter Questions
Problem 8.3.3P: A scuba t a n k (see fig ure) i s bci ng d e signed fo r an internal pressure of 2640 psi with a...
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An agitator propeller shaft of 50mm diameter is utilized to drive a
rotor blade in a mixer. As a consequences, the shaft is suffered a compressive
load of P =125KN and a torque of T=2.4KN.m. Determine the principle
stresses and maximum shear stress. Check if it is safe to use basing on
Tresca failure criterion. The yield stress of the shaft is 480MPA.
Transcribed Image Text:An agitator propeller shaft of 50mm diameter is utilized to drive a rotor blade in a mixer. As a consequences, the shaft is suffered a compressive load of P =125KN and a torque of T=2.4KN.m. Determine the principle stresses and maximum shear stress. Check if it is safe to use basing on Tresca failure criterion. The yield stress of the shaft is 480MPA.
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