Rigid bar ABC is supported by bronze rod (1) and stainless steel rod (2) as shown in the figure. A concentrated load of P = 17 kips is applied to the free end of bronze rod (3). Determine the magnitude of the deflection of rod end D after the temperature of all rods has increased by 70°F. Use the following dimensions and properties: a = 4.2 ft, b = 6.9 ft. Rod (1): d₁ = 1.05 in., L₁= 11 ft, E₁ = 15,200 ksi, a₁ = 12.20 x 10-6/°F. Rod (2): d₂ = 0.80 in., L₂ = 9 ft, E₂ = 28,000 ksi, a₂ = 9.60 x 10-6/°F. Rod (3): d3= 1.35 in., L3 = 7 ft, E3 = 15,200 ksi, a3 = 12.20 x 10-6/°F. 4₁ (1) a L3 B (3) D b Rigid bar (2) L2

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
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Chapter2: Loads On Structures
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Rigid bar ABC is supported by bronze rod (1) and stainless steel rod (2) as shown in the figure. A concentrated load of P = 17 kips is
applied to the free end of bronze rod (3). Determine the magnitude of the deflection of rod end D after the temperature of all rods has
increased by 70°F. Use the following dimensions and properties:
a = 4.2 ft, b = 6.9 ft.
Rod (1): d₁ = 1.05 in., L₁= 11 ft, E₁
=
15,200 ksi, a = 12.20 x 10-6/°F.
Rod (2): d₂ = 0.80 in., L₂ = 9 ft, E2 = 28,000 ksi, α₂ = 9.60 x 10-6/°F.
Rod (3): d3 = 1.35 in., L3 = 7 ft, E3 = 15,200 ksi, a3 = 12.20 × 10-6/°F.
VD = i
L
in.
(1)
L3
B
(3)
D
P
b
Rigid bar
2
12
Transcribed Image Text:Rigid bar ABC is supported by bronze rod (1) and stainless steel rod (2) as shown in the figure. A concentrated load of P = 17 kips is applied to the free end of bronze rod (3). Determine the magnitude of the deflection of rod end D after the temperature of all rods has increased by 70°F. Use the following dimensions and properties: a = 4.2 ft, b = 6.9 ft. Rod (1): d₁ = 1.05 in., L₁= 11 ft, E₁ = 15,200 ksi, a = 12.20 x 10-6/°F. Rod (2): d₂ = 0.80 in., L₂ = 9 ft, E2 = 28,000 ksi, α₂ = 9.60 x 10-6/°F. Rod (3): d3 = 1.35 in., L3 = 7 ft, E3 = 15,200 ksi, a3 = 12.20 × 10-6/°F. VD = i L in. (1) L3 B (3) D P b Rigid bar 2 12
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