advanced structural analysis...
TRANSCRIPT
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Bending and Section Properties
Advanced Structural Analysis
EGF316
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Lecture Content
• Beam bending
• Stresses due to bending
• Symmetrical and Unsymmetrical (skew) bending
• Section properties
– Centroid, First and Second moment of area
• Parallel axis theorem
• Principal axes
• Shear centre
• Torsion of circular sections
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Beam bending
Credits: www.dlsweb.rmit.edu.au
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Beam bending
Credits: www.dlsweb.rmit.edu.au
Important quantities: 1) Deflection/displacement (d) 2) Bending moment (M) 3) Shear force (S) 4) Bending stress (s) 5) Second moment of area (I)
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Compressive stresses
Tensile stresses
Tensile stresses
Compressive stresses
Beam bending
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Beam bending
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Stresses due to bending
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Cantilever Beam
L
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Simply Supported Beam
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Built-in Beam
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Section properties
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The first moment of area is a measure of the distribution of
mass relative to an axis
First Moment of Area
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The centroid is the point at which the
first moment of area goes to zero
for any orthogonal axis system
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Locating the Centroid
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Example 1
Locate the centroid for the below shape:
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Second Moment of Area
(moment of inertia)
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The second moment of area is a section property and is a
measure of how far away the material is located from the
neutral axis and therefore its resistance to bending.
The second moments of area must be taken relative to the
centroid.
Second Moment of Area
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Second Moment of Area
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Some useful facts…
For a circular section of diameter D:
For a rectangular section:
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Parallel Axis Theorem
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Principal Axis
It can be shown that:
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Symmetrical Vs Unsymmetrical Bending
Symmetric
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Symmetrical Vs Unsymmetrical Bending
Symmetric – no twist Unsymmetric – twist
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Unsymmetric Bending
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Unsymmetric Bending
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Shear center
Shear center is that point in the cross-section through
which the applied loads produce no twisting.
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Example 1 (continued)
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Example 2
A 50mm by 50mm square section steel cantilever beam
is 1m long and supports an end load of 100N.
Calculate the maximum bending stress and the
maximum deflection in the beam.
Assume Young’s modulus to be 210GPa.
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Torsion of Circular Sections
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Example 3
A 2m length of 20mm diameter steel bar is subjected to
a torque of 5kNm.
Calculate the maximum shear stress and the angle of
twist.
Assume a Young’s modulus, Poisson’s ratio and yield
stress of 210GPa, 0.3 and 300MPa respectively