Prob. 2.3-16. A steel restraining ring in the form of a toroid with rectangular cross section is to be heated, slipped over the end of a solid steel shaft, and cooled to shrink-fit onto the shaft. At 20°C the shaft has an outside diameter of do 50.000 0.005 mm, and the ring has an inside diameter of d, 49.950 ± 0.005 mm. What is the maximum amount that the ring would have to be heated in order to slip it over the end of the shaft if the shaft temperature is held at 20°C? x 14 x 10-6/°C. -dos

Mechanics of Materials (MindTap Course List)
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Author:Barry J. Goodno, James M. Gere
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Chapter3: Torsion
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Prob. 2.3-16. A steel restraining ring in the form of a toroid
with rectangular cross section is to be heated, slipped over
the end of a solid steel shaft, and cooled to shrink-fit onto
the shaft. At 20°C the shaft has an outside diameter of
do = 50.000 ± 0.005 mm, and the ring has an inside diameter
of d= 49.950 ± 0.005 mm. What is the maximum amount
that the ring would have to be heated in order to slip it over
the end of the shaft if the shaft temperature is held at 20°C?
a = 14 x 10 °C.
das
P2.3-16
Transcribed Image Text:Prob. 2.3-16. A steel restraining ring in the form of a toroid with rectangular cross section is to be heated, slipped over the end of a solid steel shaft, and cooled to shrink-fit onto the shaft. At 20°C the shaft has an outside diameter of do = 50.000 ± 0.005 mm, and the ring has an inside diameter of d= 49.950 ± 0.005 mm. What is the maximum amount that the ring would have to be heated in order to slip it over the end of the shaft if the shaft temperature is held at 20°C? a = 14 x 10 °C. das P2.3-16
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