Working from first principles find the interference fit per metre of diameter if the radial pressure owing to this at the common surface of a compound tube is 90 MN/m2, the inner and outer diameters of the tube being 100 mm and 250 mm respectively and the common diameter being 200 mm. The two tubes are made of the same material, for which E = 200 GN/m2. If the outside diameter of the inner tube is originally 200 mm, what will be the original inside diameter of the outer tube for the above conditions to apply when compound? %3!

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Working from first principles find the interference fit per metre of diameter if the radial pressure owing
to this at the common surface of a compound tube is 90 MN/m2, the inner and outer diameters of the tube being
100 mm and 250 mm respectively and the common diameter being 200 mm. The two tubes are made of the same
material, for which E = 200 GN/m². If the outside diameter of the inner tube is originally 200 mm, what will be the
original inside diameter of the outer tube for the above conditions to apply when compound?
Transcribed Image Text:Working from first principles find the interference fit per metre of diameter if the radial pressure owing to this at the common surface of a compound tube is 90 MN/m2, the inner and outer diameters of the tube being 100 mm and 250 mm respectively and the common diameter being 200 mm. The two tubes are made of the same material, for which E = 200 GN/m². If the outside diameter of the inner tube is originally 200 mm, what will be the original inside diameter of the outer tube for the above conditions to apply when compound?
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