LVL Beam Calculator & Size Chart

LVL beam size is the shallowest depth whose bending, shear and sag all pass: a 12 ft floor beam with a 10 ft tributary width at 40 psf live and 10 psf dead needs a 2-ply 1¾ x 9½ in LVL.

Units
Beam span
ft
in

Clear distance between supports.

How the load is given
Tributary width
ft
in

Half the joist span on each side of the beam.

psf

40 psf living areas, 30 psf bedrooms.

psf

10 psf is a light floor.

The beam carries
Plies of 1¾ in LVL
Live load sag limit

Shallowest 2-ply 2.0E LVL for a 12 ft span

9 ½ indeep, 2-ply 1¾ in LVL

Carries 9,173 lb-ft of bending at 78% of its allowable. Beam weight (9.6 plf) is included. The least material is 1-ply 1¾ × 14 in.

Depth needed by number of plies

Plies of 1¾ in LVLDepthBeam widthWeight
1-ply14 in1 ¾ in7.1 plf
2-ply9 ½ in3 ½ in9.6 plf
3-ply9 ¼ in5 ¼ in14.1 plf
4-ply9 ¼ in7 in18.8 plf
12 ft0.48 in
Deflection drawn exaggerated. Dashed line: the beam before loading.

Every 2-ply depth checked

Bending, shear and sag of each 2.0E LVL depth
DepthBending, % of allowableShear, %Live sagTotal sag
5 ½ in214%83%1.94 in2.46 in
7 ¼ in128%63%0.83 in1.06 in
9 ¼ in82%50%0.41 in0.52 in
9 ½ in78%48%0.37 in0.48 in
11 ¼ in57%41%0.22 in0.29 in
11 ⅞ in52%39%0.19 in0.24 in
14 in38%33%0.12 in0.15 in
16 in30%29%0.08 in0.10 in
18 in24%26%0.05 in0.07 in
20 in20%23%0.04 in0.05 in

Shaded row: the shallowest depth that passes all four checks. Muted figures fail. 2.0E Microllam LVL, Weyerhaeuser TJ-9000 properties.

Design check

  • Bending 78%

    9,173 lb-ft of 11,770 lb-ft allowed

  • Shear 48%

    3,058 lb of 6,320 lb allowed

  • Live load sag 0.37 in

    0.40 in max, L/360

  • Total load sag 0.48 in

    0.60 in max, L/240

Have an engineer or the LVL maker verify the size before you order. This tool checks a simple, uniformly loaded span with equal ply sharing. Bearing length, ply fastening, lateral bracing, notches and holes, concentrated loads away from the center and roof or wall loads above are not covered.
The math
  1. Beam load

    400 plf live + 100 plf dead + 9.6 plf beam = 510 plf

  2. Bending demand

    w L² ÷ 8 = 510 plf × (12 ft)² ÷ 8 = 9,173 lb-ft

  3. Bending allowed

    2 × 5,885 lb-ft × 1.00 duration factor = 11,770 lb-ft

  4. Total load sag

    5 w L⁴ ÷ (384 E I), E = 2,000,000 psi, I = 2 × 125 in⁴ = 0.48 in

LVL beam size is the shallowest depth whose bending, shear and sag all pass: a 12 ft floor beam with a 10 ft tributary width at 40 psf live and 10 psf dead load needs a 2-ply 1¾ x 9½ in LVL. Enter your span and load above and the calculator sizes 1, 2, 3 and 4 plies of 2.0E Microllam LVL, with the beam's own weight included.

How the LVL beam size is found

The calculator treats the beam as a simple span with a uniform load, and checks four things for every depth from 5½ to 20 in:

  1. Bending: the moment w × L² ÷ 8 must not exceed the allowable moment of the section.
  2. Shear: the end reaction w × L ÷ 2 must not exceed the allowable shear.
  3. Live load sag: at most span ÷ 360 (or ÷ 480 if you pick the stricter limit).
  4. Total load sag: at most span ÷ 240.

Load on the beam = (live psf + dead psf) × tributary width + beam weight. Sag = 5 × w × L⁴ ÷ (384 × E × I), with E = 2,000,000 psi for 2.0E LVL.

The allowable moment and shear per 1¾ in ply come straight from the manufacturer's table, which already applies the 2,600 psi bending value, the size factor for depths other than 12 in and the 285 psi shear value. They are multiplied by the number of plies and by the load duration factor: 1.00 for a floor, 1.15 for a roof in a snow load area and 1.25 for other roofs. Sag is not adjusted for duration.

Worked example: a 12 ft floor beam

Span 12 ft, tributary width 10 ft, live load 40 psf, dead load 10 psf, floor. The line load is 10 ft × 50 psf = 500 plf, plus 9.6 plf for a 2-ply 9½ in beam, 509.6 plf.

  • Bending: 509.6 × 12² ÷ 8 = 9,173 lb-ft against 2 × 5,885 = 11,770 lb-ft allowed, 78 percent.
  • Shear: 3,058 lb against 2 × 3,160 = 6,320 lb allowed.
  • Live sag: 0.37 in against a 0.40 in limit (144 in ÷ 360).
  • Total sag: 0.48 in against a 0.60 in limit (144 in ÷ 240).

A 2-ply 9½ in beam passes; a 2-ply 9¼ in does not (its live sag is over the limit). With other ply counts the answers are 14 in for one ply, 9¼ in for three plies and 9¼ in for four plies. The least material is the 2-ply 9½ in.

LVL size chart: one 1¾ in ply of 2.0E Microllam

Allowable values per ply at 100 percent load duration, from Weyerhaeuser's Beam, Header and Column Specifier's Guide TJ-9000 (2015).

Depth, inAllowable moment, lb-ftAllowable shear, lbMoment of inertia, in⁴Weight, lb/ft
5½2,1251,830242.8
7¼3,5552,410563.7
9¼5,6003,0751154.7
9½5,8853,1601254.8
11¼8,0703,7402085.7
11⅞8,9253,9502446.1
1412,1304,6554007.1
1615,5555,3205978.2
1819,3755,9858519.2
2023,5806,6501,16710.2

How many plies

Each ply is 1¾ in wide. Two plies make a 3½ in beam that sits flush in a 2x4 wall, three plies make 5¼ in and four plies 7 in. More plies buy stiffness and strength at the same depth, but the plies have to be fastened together as the manufacturer specifies, and side-loaded beams need their own connection design. The calculator assumes the plies share the load equally.

LVL versus sawn lumber

A 2-ply 9½ in LVL carries the load above in a beam 3½ in wide and 9½ in deep, a size that fits inside a 2x4 wall and a 2x10 floor. Sawn lumber girders are limited to the IRC tables and to the grades and sizes in them, while LVL is made in long, straight, consistent pieces to 20 in deep, which is why it is the usual answer for floor girders and for openings wider than a sawn header allows. To compare a sawn girder or header for the same job, use the beam span calculator.

Next questions

LVL sizes here come from one manufacturer's published properties for 2.0E Microllam; other brands and grades have their own tables. Bearing length, lateral bracing, holes and notches, point loads away from the center, and the posts and footings under the beam are not checked. Have an engineer or the LVL maker verify the beam before you order it.