of the bronze bar and the rigid slab supported by two steel bars as shown. Neglecting the mass of the slab, determine the stress in each rod when the temperature assembly is increased to 100°C. Area (mm2) a ( µm/m°C) E (N/m2) 83 x10° 200 x 10° Bronze 600 18.9 Steel 400 11.7 *Show geometry of deformation
of the bronze bar and the rigid slab supported by two steel bars as shown. Neglecting the mass of the slab, determine the stress in each rod when the temperature assembly is increased to 100°C. Area (mm2) a ( µm/m°C) E (N/m2) 83 x10° 200 x 10° Bronze 600 18.9 Steel 400 11.7 *Show geometry of deformation
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Transcribed Image Text:At 20°C, there is a gap d = 0.2 mm between the lower end
of the bronze bar and the rigid slab supported by two
steel bars as shown. Neglecting the mass of the slab,
determine the stress in each rod when the temperature
assembly is increased to 100°C.
Area (mm2) a ( µm/m°C) E (N/m2)
83 x10°
Bronze
600
18.9
Steel
400
11.7
200 x 10°
*Show geometry of deformation
Steel
Bronze
Steel
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