A composite bar is made by connecting a steel bar with a length of Lst = 200 mm and an brass bar with a length of Lpr= 300 mm as shown. If the composite bar just fits between the supports when the temperature is 15 °C, determine the magnitude of the axial force in the composite bar when the temperature is 44 °C. Express your answer in kN to the nearest 100 N. %D Brass Steel Es = 200 GPa a = 12(10-6)/°C At = 200 mm² Epr = 100 GPa apr = 21(10-6)/°C Abr = 450 mm² %3D %3D Lor

Structural Analysis
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ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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A composite bar is made by connecting a steel bar with a length of Lst = 200 mm and an brass bar
with a length of Lpr= 300 mm as shown. If the composite bar just fits between the supports when
the temperature is 15 °C, determine the magnitude of the axial force in the composite bar when the
temperature is 44 °C. Express your answer in kN to the nearest 100 N.
%D
Brass
Steel
Es = 200 GPa
a = 12(10-6)/°C
At = 200 mm²
Epr = 100 GPa
apr = 21(10-6)/°C
Abr = 450 mm²
%3D
%3D
Lor
Transcribed Image Text:A composite bar is made by connecting a steel bar with a length of Lst = 200 mm and an brass bar with a length of Lpr= 300 mm as shown. If the composite bar just fits between the supports when the temperature is 15 °C, determine the magnitude of the axial force in the composite bar when the temperature is 44 °C. Express your answer in kN to the nearest 100 N. %D Brass Steel Es = 200 GPa a = 12(10-6)/°C At = 200 mm² Epr = 100 GPa apr = 21(10-6)/°C Abr = 450 mm² %3D %3D Lor
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