The spherical gas tank is made of steel (E 200 GPa and v = 6000 mm and its wall thickness is 25 mm. (a) If the working stress of the steel is 62 MPa, determine the maximum safe pressure for the tank. (b) Compute the corresponding change in the volume of the tank. (c) Determine the maximum induced circumferential stress on the wall of the tank if it is subjected to an internal pressure of 90 MPa. 0.3). The inner radius of the tank is

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 8.2.13P: : A hollow, pressurized sphere having a radius r = 4.8 in, and wall thickness t = 0.4 in. is lowered...
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The spherical gas tank is made of steel (E = 200 GPa and v = 0.3). The inner radius of the tank is
6000 mm and its wall thickness is 25 mm. (a) If the working stress of the steel is 62 MPa, determine the
maximum safe pressure for the tank. (b) Compute the corresponding change in the volume of the tank.
(c) Determine the maximum induced circumferential stress on the wall of the tank if it is subjected to an
internal pressure of 90 MPa.
Transcribed Image Text:The spherical gas tank is made of steel (E = 200 GPa and v = 0.3). The inner radius of the tank is 6000 mm and its wall thickness is 25 mm. (a) If the working stress of the steel is 62 MPa, determine the maximum safe pressure for the tank. (b) Compute the corresponding change in the volume of the tank. (c) Determine the maximum induced circumferential stress on the wall of the tank if it is subjected to an internal pressure of 90 MPa.
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