Slender columns fail by buckling (lateral instability) before they crush — and the
effective-length factor K, set by the end conditions, is the single number the exam uses to ask
“which column buckles first?”
Key points
Buckling = a compression member fails laterally due to instability rather than material
failure. It governs for slender columns; stocky columns are limited by material strength.
Effective-length factor K converts actual length into the effective length that drives
buckling. The more an end resists rotation/translation, the lower the K and the more buckling
capacity.
Key K values (end conditions):
Fixed-fixed ≈ 0.5 — most stable.
Pinned-pinned = 1.0 — the standard/reference condition.
Fixed-free = 2.0 — least stable (a cantilevered / flagpole column).
Implication: higher K → greater effective length → greater buckling risk under the same load.
Buckling depends mainly on material strength and column slenderness, commonly written as KL/r. K is the end-condition factor, L is the unbraced length, and r reflects stiffness about the weaker axis.
Soft story — a story markedly weaker/softer than those above; a seismic-zone hazard. Avoid
top-heavy buildings that drive demand into the weak story.
End fixity sets effective length — which decides who buckles first
PROPORTIONAL
Effective length KL = K × the real column height. A bigger K means a longer KL. Read each blue stem against the shared scale — the column with the tallest stem buckles first.
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Higher K means MORE buckling risk, not more strength: the fixed-free flagpole's effective length is twice its real height, so it buckles first.
Confusions / comparison
End condition
K (effective-length factor)
Stability
Fixed–fixed
≈ 0.5
Most stable (shortest effective length)
Fixed–pinned
≈ 0.7
Between the two
Pinned–pinned
1.0
Standard reference
Fixed–free (cantilever)
2.0
Least stable (longest effective length)
Related
→ End connections (this topic): fixed vs pinned defines the K value · Structural system selection
(this topic): steel HSS/W columns chosen to resist buckling · Beam basics (this topic): the bending
counterpart to compression behavior.