A torque T = 3 kN • m is applied to the solid bronze cylinder shown. Determine (a) the maximum shearing stress, (b) the shear- ing stress at point D, which lies on a 15-mm-radius circle drawn on the end of the cylinder, (e) the percent of the torque carried by the portion of the cylinder within the 15-mm radius. 60 mm 30 mm- T=3 kN - m- 200 min

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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3.5 A torque T = 3 kN • m is applied to the solid bronze cylinder
shown. Determine (a) the maximum shearing stress, (b) the shear-
ing stress at point D, which lies on a 15-mm-radius circle drawn
on the end of the cylinder, (e) the percent of the torque carried
by the portion of the cylinder within the l15-mm radius.
60 mm
30 mm
T=3 kN- m
-
200 min
Fig. P3.5
Transcribed Image Text:3.5 A torque T = 3 kN • m is applied to the solid bronze cylinder shown. Determine (a) the maximum shearing stress, (b) the shear- ing stress at point D, which lies on a 15-mm-radius circle drawn on the end of the cylinder, (e) the percent of the torque carried by the portion of the cylinder within the l15-mm radius. 60 mm 30 mm T=3 kN- m - 200 min Fig. P3.5
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