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Effective Length for Bending Formula and Calculator
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Wood Structural Design Effective Length for Bending Members Formula and Calculator
Preview: Wood Structural Design Effective Length Calculator
Effective Length, le , for Bending Members
Cantilever1 | where lu /d < 7 |
where lu /d ≥ |
eq. 1, Uniformly distributed load | le = 1.33 lu |
le = 0.90 lu |
eq. 2, Concentrated load at unsupported end | le = 1.83 lu |
le = 1.44 lu |
Single Span Beam 1, 2 | ||
eq. 3, Uniformly distributed load | le = 2.06 lu |
le = 1.63 lu |
eq. 4, Concentrated load at center with no intermediate lateral support | le = 1.80 lu |
le = 1.37 lu |
eq. 5, Concentrated load at center with lateral support at center |
le = 1.11 lu |
|
eq. 6, Two equal concentrated loads at 1/3 points with lateral support at 1/3 points |
le = 1.68 lu |
|
eq. 7, Three equal concentrated loads at 1/4 points with lateral support at 1/4 points |
le = 1.54 lu |
|
eq. 8, Four equal concentrated loads at 1/5 points with lateral support at 1/5 points |
le = 1.68 lu |
|
eq. 9, Five equal concentrated loads at 1/6 points with lateral support at 1/6 points | le = 1.73 lu |
|
eq. 10, Six equal concentrated loads at 1/7 points with lateral support at 1/7 points | le = 1.78 lu |
|
eq. 11, Seven or more equal concentrated loads, evenly spaced, with lateral support at points of load application | le = 1.84 lu |
|
eq. 12, Equal end moments | le = 1.84 lu |
1 For single span or cantilever bending members with loading conditions not specified in Table above:
e = 2.06 lu where lu/d < 7
e = 1.63 lu + 3d where 7 ≤ lu/d ≤ 14.3
e = 1.84 lu where lu/d > 14.3
2. Multiple span applications shall be based on table values or engineering analysis.
Where
lu = laterally unsupported span length of bending member, in
d =
least dimension of compression member, in.
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Source:
National Design Specification for Wood Constuction
American Wood Council