A steel ring was shrunk into the outside of a hollow steel disc. The interference radius of the assembly is 40 mm whilst its outer and inner radii are 250 mm and 20 mm, respectively. If the angular speed at which the ring-disc assembly becomes loose is 401.8 rad/sec, determine the shrink-fit pressure at the mating surface of the assembly? Assume that Poisson's ratio for steel is 0.3 and its density is 7860 kg/m³.

International Edition---engineering Mechanics: Statics, 4th Edition
4th Edition
ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
Publisher:Andrew Pytel And Jaan Kiusalaas
Chapter5: Three-dimensional Equilibrium
Section: Chapter Questions
Problem 5.2P: Draw the FBD for the bar described in Prob. 5.1 if the bar is homogeneous of mass 50 kg. Count the...
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A steel ring was shrunk into the outside of a hollow steel disc. The interference radius of the assembly
is 40 mm whilst its outer and inner radii are 250 mm and 20 mm, respectively. If the angular speed
at which the ring-disc assembly becomes loose is 401.8 rad/sec, determine the shrink-fit pressure at
the mating surface of the assembly? Assume that Poisson's ratio for steel is 0.3 and its density is
7860 kg/m³.
Transcribed Image Text:A steel ring was shrunk into the outside of a hollow steel disc. The interference radius of the assembly is 40 mm whilst its outer and inner radii are 250 mm and 20 mm, respectively. If the angular speed at which the ring-disc assembly becomes loose is 401.8 rad/sec, determine the shrink-fit pressure at the mating surface of the assembly? Assume that Poisson's ratio for steel is 0.3 and its density is 7860 kg/m³.
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