Beam Bracket When a steel beam-column structure, such as a high-rise building or a manufacturing plant, is constructed, its columns are erected| before the beams can be elevated, positioned, and welded. The function of a beam bracket is to precisely position a beam and safely transfer the loads from the beam to the columns. The beam bracket consists of a seat plate (the flange) and a web plate. The design considerations include: • Would the maximum stress exceed the allowable stress? • Would the web buckle under the load? The beam bracket is made of structural steel (E = 200 GPa, Poisson's ratio = 0.3, yield strength = 250 MPa). Assume a load of 27KN is uniformly distributed over the seat plate, and that the beam's back face is rigidly welded on a steel column.

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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Beam Bracket
When a steel beam-column structure, such as a high-rise building or a manufacturing plant, is
constructed, its columns are erected| before the beams can be elevated, positioned, and welded. The
function of a beam bracket is to precisely position a beam and safely transfer the loads from the
beam to the columns.
The beam bracket consists of a seat plate (the flange) and a web plate. The design considerations
include:
• Would the maximum stress exceed the allowable stress?
• Would the web buckle under the load?
The beam bracket is made of structural steel (E = 200 GPa, Poisson's ratio = 0.3, yield strength =
250 MPa). Assume a load of 27KN is uniformly distributed over the seat plate, and that the beam's
back face is rigidly welded on a steel column.
Transcribed Image Text:Beam Bracket When a steel beam-column structure, such as a high-rise building or a manufacturing plant, is constructed, its columns are erected| before the beams can be elevated, positioned, and welded. The function of a beam bracket is to precisely position a beam and safely transfer the loads from the beam to the columns. The beam bracket consists of a seat plate (the flange) and a web plate. The design considerations include: • Would the maximum stress exceed the allowable stress? • Would the web buckle under the load? The beam bracket is made of structural steel (E = 200 GPa, Poisson's ratio = 0.3, yield strength = 250 MPa). Assume a load of 27KN is uniformly distributed over the seat plate, and that the beam's back face is rigidly welded on a steel column.
REVISION HISTORY
REY
NOorar
DATE
NOTES:
140mm
180mm
16mm
1 20mm
R16mm
R10mm
164mm
20mm
10mm
PARTS LIST
INIT
APPROVALS DATE INIT
APPROVALS OATE
CONTRACT ND
ATERIAL
TITLE
RD E ROECTION
THEATMENT
awaNo
NOXT AGEY
SMLAR TO
APPLICATION
SCALE
EET
Transcribed Image Text:REVISION HISTORY REY NOorar DATE NOTES: 140mm 180mm 16mm 1 20mm R16mm R10mm 164mm 20mm 10mm PARTS LIST INIT APPROVALS DATE INIT APPROVALS OATE CONTRACT ND ATERIAL TITLE RD E ROECTION THEATMENT awaNo NOXT AGEY SMLAR TO APPLICATION SCALE EET
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