1.5-8 A steel pipe of length L = 2 m, outside diameter d=110 mm, and wall thickness t = 8 mm is subjected to an axial compressive load P = 160 kN (see figure). Assuming that E 200 GPa and v= 0.3, find (a) the shortening & of the pipe, (b) the increase Ad in outside diameter, and (c) the increase At in wall thickness. =

Elements Of Electromagnetics
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1.5-8 A steel pipe of length L = 2 m, outside diameter
d=110 mm, and wall thickness t = 8 mm is subjected to an
axial compressive load P = 160 kN (see figure). Assuming
that E = 200 GPa and v= 0.3, find (a) the shortening & of
the pipe, (b) the increase Ad in outside diameter, and (c) the
increase At in wall thickness.
2 m
Prob. 1.5-8
Transcribed Image Text:1.5-8 A steel pipe of length L = 2 m, outside diameter d=110 mm, and wall thickness t = 8 mm is subjected to an axial compressive load P = 160 kN (see figure). Assuming that E = 200 GPa and v= 0.3, find (a) the shortening & of the pipe, (b) the increase Ad in outside diameter, and (c) the increase At in wall thickness. 2 m Prob. 1.5-8
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