A bronze bar 3 m long with a cross sectional area of 320 mm2 is placed between two rigid walls as shown in Figure. At a temperature of -20°C, the gap A = 25 mm. Find the temperature at which the compressive stress in *. the bar will be 35 MPa. Use a = 18.0 x 10-6 m/(m- C) and E = 80 GPa %3D

Mechanics of Materials (MindTap Course List)
9th Edition
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Barry J. Goodno, James M. Gere
Chapter1: Tension, Compression, And Shear
Section: Chapter Questions
Problem 1.10.11P: A pressurized circular cylinder has a sealed cover plate fastened with steel bolts (see figure). The...
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A bronze bar 3 m long with a cross sectional area of 320 mm2 is placed
between two rigid walls as shown in Figure. At a temperature of -20°C, the
gap A = 25 mm. Find the temperature at which the compressive stress in
*. the bar will be 35 MPa. Use a = 18.0 x 10-6 m/(m. C) and E = 80 GPa
45.5 C
48.3 C
52.4 C
50.6 C ()
Transcribed Image Text:A bronze bar 3 m long with a cross sectional area of 320 mm2 is placed between two rigid walls as shown in Figure. At a temperature of -20°C, the gap A = 25 mm. Find the temperature at which the compressive stress in *. the bar will be 35 MPa. Use a = 18.0 x 10-6 m/(m. C) and E = 80 GPa 45.5 C 48.3 C 52.4 C 50.6 C ()
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