The solid axle has a diameter of 40 mm. It is subjected to a shear force of 1 1. kN along Z-axis and a shear force of 2 kN along Y-axis. The other end of the axle js fixed to a rigid wall. 1) Calculate all internal loadings on the cross section through the point A. 2) Calculate the stress at point A due to each internal loading.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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1.
kN along Z-axis and a shear force of 2 kN along Y-axis. The other end of the axle is
fixed to a rigid wall.
1) Calculate all internal loadings on the cross section through the point A.
2) Calculate the stress at point A due to each internal loading.
The solid axle has a diameter of 40 mm. It is subjected to a shear force of 1
centroid of a semicircular area,
radius =r
4r
Rigid
Wall
1 kN
0.4 m
2 kN
Transcribed Image Text:1. kN along Z-axis and a shear force of 2 kN along Y-axis. The other end of the axle is fixed to a rigid wall. 1) Calculate all internal loadings on the cross section through the point A. 2) Calculate the stress at point A due to each internal loading. The solid axle has a diameter of 40 mm. It is subjected to a shear force of 1 centroid of a semicircular area, radius =r 4r Rigid Wall 1 kN 0.4 m 2 kN
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