Cylinder of height 2H. radius R. centroid at (0,0.H), axis e3 undergoes deformation x = o(z) = z + 23e3. Assuming stress-strain relation: S = aE, where a is a constant, total force on the base of the cylinder with normal -e3 is f=-1.5anR2 He3 total force on the base of the cylinder with normal - ez is f = 1.5aπR²e3 total force on the base of the cylinder with normal - ez is ƒ = 1.5aπR² He3 total force on the base of the cylinder with normal - ez is f = -1.5an R²e3

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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Cylinder of height 2H. radius R. centroid at (0,0.H), axis e3 undergoes deformation
x = o(z) = z + 23e3. Assuming stress-strain relation: S = aE, where a
is a constant,
total force on the base of the cylinder with normal -e3 is
f = -1.5anR2 He3
total force on the base of the cylinder with normal - ez is
f = 1.5aπR²e3
total force on the base of the cylinder with normal - ez is
f = 1.5an R²Hez
total force on the base of the cylinder with normal - ez is
f = -1.5anR²e3
Transcribed Image Text:Cylinder of height 2H. radius R. centroid at (0,0.H), axis e3 undergoes deformation x = o(z) = z + 23e3. Assuming stress-strain relation: S = aE, where a is a constant, total force on the base of the cylinder with normal -e3 is f = -1.5anR2 He3 total force on the base of the cylinder with normal - ez is f = 1.5aπR²e3 total force on the base of the cylinder with normal - ez is f = 1.5an R²Hez total force on the base of the cylinder with normal - ez is f = -1.5anR²e3
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