A scuba tank is being designed for an internal pressure of 2,650 psi with a factor of safety of 2.0 with respect to yielding. The yield stress of the steel is 69,000 psi in tension and 20,000 psi in shear. (Assume that the given radius or diameter is an inside dimension and that all internal pressures are gage pressures.) (a) If the diameter of the tank is 7.0 in., what is the minimum required wall thickness (in inches)? inches (b) If the wall thickness is 0.25 in., what is the maximum acceptable internal pressure (in psi)? psi

Materials Science And Engineering Properties
1st Edition
ISBN:9781111988609
Author:Charles Gilmore
Publisher:Charles Gilmore
Chapter12: Composite Materials
Section: Chapter Questions
Problem 12.7P: Estimate the transverse tensile strength of the concrete in Problem 12.6.
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A scuba tank is being designed for an internal pressure of 2,650 psi with a factor of safety of 2.0 with respect to yielding. The yield stress of the steel is 69,000 psi in tension and 20,000 psi in shear. (Assume that
the given radius or diameter is an inside dimension and that all internal pressures are gage pressures.)
(a) If the diameter of the tank is 7.0 in., what is the minimum required wall thickness (in inches)?
inches
(b) If the wall thickness is 0.25 in., what is the maximum acceptable internal pressure (in psi)?
psi
Transcribed Image Text:A scuba tank is being designed for an internal pressure of 2,650 psi with a factor of safety of 2.0 with respect to yielding. The yield stress of the steel is 69,000 psi in tension and 20,000 psi in shear. (Assume that the given radius or diameter is an inside dimension and that all internal pressures are gage pressures.) (a) If the diameter of the tank is 7.0 in., what is the minimum required wall thickness (in inches)? inches (b) If the wall thickness is 0.25 in., what is the maximum acceptable internal pressure (in psi)? psi
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ISBN:
9781111988609
Author:
Charles Gilmore
Publisher:
Cengage Learning