A thin steel cylinder 1.3 m long is subjected to internal pressure; the change in volume owing to the pressure is 17.5 x 10 m³ of the original volume 65.5 x 103 m³. De termine the internal diameter, hoop, and longitudinal stresses. For the cylinder material E= 210 GIN/m², v = 0.3. de 253 What will be the bulk modulus K, if the internal pressure is 14 bar and the extra fluid is 6 x 10 m³ at the same diameter, thickness, and original volume of part (a).

Mechanics of Materials (MindTap Course List)
9th Edition
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Barry J. Goodno, James M. Gere
Chapter8: Applications Of Plane Stress (pressure Vessels, Beams, And Combined Loadings)
Section: Chapter Questions
Problem 8.3.1P: A fire extinguisher tank is designed for an internal pressure of 825 psi. The tank has an outer...
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A thin steel cylinder 1.3 m long is subjected to internal pressure, the change in volume owing
to the pressure is 17.5 x 10 m³ of the original volume 65.5 x 103 m³. De termine the internal
diameter, hoop, and longitudinal stresses. For the cylinder material E = 210 GIN/m², v = 0.3.
de 253
What will be the bulk modulus K, if the internal pressure is 14 bar and the extra fluid is 6 *
10 m³ at the same diameter, thickness, and original volume of part (a).
Transcribed Image Text:A thin steel cylinder 1.3 m long is subjected to internal pressure, the change in volume owing to the pressure is 17.5 x 10 m³ of the original volume 65.5 x 103 m³. De termine the internal diameter, hoop, and longitudinal stresses. For the cylinder material E = 210 GIN/m², v = 0.3. de 253 What will be the bulk modulus K, if the internal pressure is 14 bar and the extra fluid is 6 * 10 m³ at the same diameter, thickness, and original volume of part (a).
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