13-5. Air pressure in the cylinder is increased by exerting forces P= 2 kN on the two pistons, each having a radius of 45 mm. If the cylinder has a wall thickness of 2 mm, determine the state of stress in the wall of the cylinder.

Structural Analysis
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Author:KASSIMALI, Aslam.
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Chapter2: Loads On Structures
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13-5. Air pressure in the cylinder is increased by exerting
forces P = 2 kN on the two pistons, each having a radius
of 45 mm. If the cylinder has a wall thickness of 2 mm,
determine the state of stress in the wall of the cylinder.
13-6. Determine the maximum force P that can be exerted
on each of the two pistons so that the circumferential stress in
the cylinder does not exceed 3 MPa. Each piston has a radius
of 45 mm and the cylinder has a wall thickness of 2 mm.
P.
47 mm
Probs. 13-5/6
Transcribed Image Text:13-5. Air pressure in the cylinder is increased by exerting forces P = 2 kN on the two pistons, each having a radius of 45 mm. If the cylinder has a wall thickness of 2 mm, determine the state of stress in the wall of the cylinder. 13-6. Determine the maximum force P that can be exerted on each of the two pistons so that the circumferential stress in the cylinder does not exceed 3 MPa. Each piston has a radius of 45 mm and the cylinder has a wall thickness of 2 mm. P. 47 mm Probs. 13-5/6
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