QUESTION 5 A compound thin cylinder has a common diameter of 120 mm and the inner cylinder has a thickness of 3 mm. The radial pressure between the two cylinders is 220 kPa and the difference between the two common diameters before shrinkage is 5x103 mm. If the compound cylinder is subjected to an internal pressure of 180 kPa, and the elastic modulus of the material for both cylinders is 200 GPa, determine: 5.1. The thickness of the outer cylinder 5.2. The resultant hoop (circumferential) stresses in both cylinders

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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QUESTION 5
A compound thin cylinder has a common diameter of 120 mm and the inner cylinder
has a thickness of 3 mm. The radial pressure between the two cylinders is 220 kPa
and the difference between the two common diameters before shrinkage is 5x10-3
mm. If the compound cylinder is subjected to an internal pressure of 180 kPa, and
the elastic modulus of the material for both cylinders is 200 GPa, determine:
5.1. The thickness of the outer cylinder
5.2. The resultant hoop (circumferential) stresses in both cylinders
Transcribed Image Text:QUESTION 5 A compound thin cylinder has a common diameter of 120 mm and the inner cylinder has a thickness of 3 mm. The radial pressure between the two cylinders is 220 kPa and the difference between the two common diameters before shrinkage is 5x10-3 mm. If the compound cylinder is subjected to an internal pressure of 180 kPa, and the elastic modulus of the material for both cylinders is 200 GPa, determine: 5.1. The thickness of the outer cylinder 5.2. The resultant hoop (circumferential) stresses in both cylinders
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