A cylinder is made of steel plate is intended to be used as a container for compressed air. The dimensions of the cylinder are L=2m, D=60cm, and t = 0.005m. If the ultimate tensile stress of the steel is 400 N/mm², Young's modulus is 200000 MPa and Poisson's ratio is 0.25. 1- Determine the maximum air pressure that can be stored in the cylinder (use factor of safety = 2) 2- Determine the change in the volume of the cylinder due to storing maximum pressure.
A cylinder is made of steel plate is intended to be used as a container for compressed air. The dimensions of the cylinder are L=2m, D=60cm, and t = 0.005m. If the ultimate tensile stress of the steel is 400 N/mm², Young's modulus is 200000 MPa and Poisson's ratio is 0.25. 1- Determine the maximum air pressure that can be stored in the cylinder (use factor of safety = 2) 2- Determine the change in the volume of the cylinder due to storing maximum pressure.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![A cylinder is made of steel plate is intended to be used as a container for compressed
air. The dimensions of the cylinder are L=2m, D=60cm, and t = 0.005m. If the ultimate
tensile stress of the steel is 400 N/mm², Young's modulus is 200000 MPa and
Poisson's ratio is 0.25.
1- Determine the maximum air pressure that can be stored in the cylinder (use factor of
safety = 2)
2- Determine the change in the volume of the cylinder due to storing maximum pressure.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F51a5f673-4bea-4318-b6d6-cf6334fbd677%2Fe8948666-bfd4-4221-88ac-7bad9cf98dba%2Fh7ya6eo_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A cylinder is made of steel plate is intended to be used as a container for compressed
air. The dimensions of the cylinder are L=2m, D=60cm, and t = 0.005m. If the ultimate
tensile stress of the steel is 400 N/mm², Young's modulus is 200000 MPa and
Poisson's ratio is 0.25.
1- Determine the maximum air pressure that can be stored in the cylinder (use factor of
safety = 2)
2- Determine the change in the volume of the cylinder due to storing maximum pressure.
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