13. A steel pipe of length L=150cm outside diameter d2 = 15 cm, and inside diameter d₁ =11cm is compressed by an axial force P=600kN (see figure). The material has modulus of elasticity E=210 GPa and Poisson's ratio v=0.30. Determine the following quantities for the pipe: (1) the shortening ; (2) the lateral strain &'; (3) the increase Ad2 in the outer diameter and the increase Ad₁ in the inner diameter; (4) the increase At in the wall thickness; (5) the increase AV in the volume of material, and (6) the dilatation e. d L

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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13.
A steel pipe of length L=150cm outside diameter
d2 = 15 cm, and inside diameter d₁ =11cm is compressed
by an axial force P=600kN (see figure). The material has
modulus of elasticity E=210 GPa and Poisson's ratio
v=0.30.
Determine the following quantities for the pipe: (1)
the shortening ; (2) the lateral strain &'; (3) the increase
Ad2 in the outer diameter and the increase Ad₁ in the inner
diameter; (4) the increase At in the wall thickness; (5) the
increase AV in the volume of material, and (6) the
dilatation e.
d
L
Transcribed Image Text:13. A steel pipe of length L=150cm outside diameter d2 = 15 cm, and inside diameter d₁ =11cm is compressed by an axial force P=600kN (see figure). The material has modulus of elasticity E=210 GPa and Poisson's ratio v=0.30. Determine the following quantities for the pipe: (1) the shortening ; (2) the lateral strain &'; (3) the increase Ad2 in the outer diameter and the increase Ad₁ in the inner diameter; (4) the increase At in the wall thickness; (5) the increase AV in the volume of material, and (6) the dilatation e. d L
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