A composite beam has a simple span of 6 m. This consists of a Wide Flange steel section and a 12 mm concrete slab whose width is 1.5 m. Assume shoring was provided. Wide Flange A-9480 mm² D= 400 mm Unit Wt. = 23KN/m 1, = 270x10°mm* ww 0.74 KN/m |F>=138 MPa Concrete f~-20.7 MPa n-10 a) Determine the moment of inertia (transformed steel section) b) Compute the moment capacity of the composite beam. e) Compute the allowable live load moment of the composite beam.
A composite beam has a simple span of 6 m. This consists of a Wide Flange steel section and a 12 mm concrete slab whose width is 1.5 m. Assume shoring was provided. Wide Flange A-9480 mm² D= 400 mm Unit Wt. = 23KN/m 1, = 270x10°mm* ww 0.74 KN/m |F>=138 MPa Concrete f~-20.7 MPa n-10 a) Determine the moment of inertia (transformed steel section) b) Compute the moment capacity of the composite beam. e) Compute the allowable live load moment of the composite beam.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Transcribed Image Text:A composite beam has a simple span of 6 m. This consists of a Wide Flange steel section and a 12 mm concrete
slab whose width is 1.5 m. Assume shoring was provided.
| Wide Flange
A = 9480 mm²
D= 400 mm
Unit Wt. = 23KN/m 1,= 270x10°mm*
w= 0.74 KN/m
| F,-138 MPa
Concrete
f~-20.7 MPa
n=10
a) Determine the moment of inertia (transformed steel section)
b) Compute the moment capacity of the composite beam.
c) Compute the allowable live load moment of the composite beam.
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