A B 55² 240 N.mm 420 N.mm 300 N.mm 480 N.mm Figure 1 - Torques applied to the driveshaft 1) DERIVE the twist angle expression (mathematical) of the shaft under torque in terms of the geometric properties of the shaft and the applied torque 2) CALCULATE the diameter of the shaft if the twist angle should not exceed 1.5⁰ 3) CALCULATE the maximum shear stress due to torsion. Consider G = 70 GPa. Assume that the length between each segment is 500 mm.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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B
D
Do
F
240 N.mm
420 N.mm
300 N.mm
480 N.mm
Figure 1 - Torques applied to the driveshaft
1) DERIVE the twist angle expression (mathematical) of the shaft under torque in terms
of the geometric properties of the shaft and the applied torque
2) CALCULATE the diameter of the shaft if the twist angle should not exceed 1.5⁰
3) CALCULATE the maximum shear stress due to torsion. Consider G = 70 GPa.
Assume that the length between each segment is 500 mm.
Transcribed Image Text:A B D Do F 240 N.mm 420 N.mm 300 N.mm 480 N.mm Figure 1 - Torques applied to the driveshaft 1) DERIVE the twist angle expression (mathematical) of the shaft under torque in terms of the geometric properties of the shaft and the applied torque 2) CALCULATE the diameter of the shaft if the twist angle should not exceed 1.5⁰ 3) CALCULATE the maximum shear stress due to torsion. Consider G = 70 GPa. Assume that the length between each segment is 500 mm.
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