Combined Stresses — Worked Examples
Every combined-stress calculation is point-specific. Resolve load effects at the section, compute compatible stress components at the same point, then superimpose or transform them as required.
1. Concentric Compression
A short column with area carries a concentric compressive force of . Determine the normal stress using tension-positive signs.
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0 of 2 Steps Completed2. Eccentric Compression at the Middle-Third Boundary
A rectangular column carries compression with eccentricity along the depth. Determine the edge stresses.
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0 of 2 Steps Completed3. Eccentricity Inside the Kern
Use the same column and load as Example 2, but with . Determine the edge stresses.
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0 of 2 Steps Completed4. Eccentricity Beyond the Kern
Use the same column and load, but take . Evaluate the linear full-contact edge stresses.
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0 of 2 Steps Completed5. Axial Tension plus Bending
A rectangular member carries axial tension and a bending moment of about the strong centroidal axis. Determine the extreme normal stresses.
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0 of 2 Steps Completed6. Middle-Third Limit for a Wall Base
A rectangular wall base is wide in the direction of eccentricity. What is the maximum eccentricity that preserves full compression under the elementary middle-third rule?
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0 of 2 Steps Completed7. Eccentricity from Force and Moment
A compression resultant is and the same load system produces about the section centroid. Determine the equivalent eccentricity. If the section depth is , is it inside the middle third?
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0 of 2 Steps Completed8. Principal Stresses from Combined Normal and Shear Stress
At a point in a beam, , , and . Determine the principal stresses.
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0 of 2 Steps Completed9. Extreme Fiber of a Beam under Transverse Loading
At the extreme top fiber of an elementary beam section, the bending stress is . What transverse shear stress does the elementary free-surface model give there, and what are the in-plane principal stresses?
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0 of 2 Steps Completed10. Neutral-Axis Shift under Eccentric Compression
For the column carrying at , locate the zero-normal-stress line measured from the centroid using the linear full-contact model.
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0 of 2 Steps Completed11. Point-Specific Combined-Stress Check
A rectangular beam section has its largest bending stress at the extreme fibers and its largest transverse shear stress at the neutral axis. Is it correct to add those two maxima directly and call the result the stress state at one material point?