W12×53 Steel Beam
A W12×53 is a wide flange steel beam 12.1 inches deep with 10-inch flanges, weighing 53 pounds per foot. In ASTM A992 steel (Fy = 50 ksi) it has a design bending strength of 292 kip-ft (LRFD) when its compression flange is braced, and a design shear strength of 125 kips.
Design a W12×53 beam Opens a 18 ft span in the free beam designer.
W12×53 dimensions
| Dimension | Value |
|---|---|
| Depth, d | 12.1 in |
| Flange width, bf | 10.0 in |
| Flange thickness, tf | 0.575 in |
| Web thickness, tw | 0.345 in |
| Distance to web toe of fillet, kdes | 1.18 in |
| Distance between flange centroids, ho | 11.53 in |
| Cross-sectional area, A | 15.6 in2 |
| Weight | 53 lb/ft |
Dimensions are AISC design values. Detailing dimensions are rounded to the nearest 1/16 in.
W12×53 section properties
| Property | Strong axis (x) | Weak axis (y) |
|---|---|---|
| Moment of inertia, I | 425 in4 | 95.8 in4 |
| Elastic section modulus, S | 70.6 in3 | 19.2 in3 |
| Plastic section modulus, Z | 77.9 in3 | 29.1 in3 |
| Radius of gyration, r | 5.23 in | 2.48 in |
| Torsion and slenderness | Value |
|---|---|
| Torsional constant, J | 1.58 in4 |
| Warping constant, Cw | 3160 in6 |
| Effective radius of gyration, rts | 2.79 in |
| Flange slenderness, bf/2tf | 8.69 |
| Web slenderness, h/tw | 28.1 |
W12×53 bending and shear strength
For ASTM A992 steel (Fy = 50 ksi, E = 29,000 ksi) per AISC 360-16. Its flanges and web are compact for bending, so with its compression flange braced it reaches its full plastic moment.
| Strength | LRFD | ASD |
|---|---|---|
| Bending, compression flange braced | φMn = 292 kip-ft | Mn/Ω = 194 kip-ft |
| Shear | φVn = 125 kips | Vn/Ω = 83.5 kips |
If the compression flange isn't braced, the beam can buckle sideways before it yields. Up to Lp = 8.8 ft between braces it keeps its full strength; past Lr = 28.2 ft it buckles elastically. With uniform moment between braces (Cb = 1.0):
| Unbraced length, Lb | φMn (LRFD) | Mn/Ω (ASD) |
|---|---|---|
| Braced | 292 kip-ft | 194 kip-ft |
| 5 ft | 292 kip-ft | 194 kip-ft |
| 8.8 ft (Lp) | 292 kip-ft | 194 kip-ft |
| 10 ft | 285 kip-ft | 190 kip-ft |
| 15 ft | 258 kip-ft | 172 kip-ft |
| 20 ft | 230 kip-ft | 153 kip-ft |
| 25 ft | 203 kip-ft | 135 kip-ft |
| 28.2 ft (Lr) | 185 kip-ft | 123 kip-ft |
| 30 ft | 171 kip-ft | 114 kip-ft |
| 35 ft | 141 kip-ft | 93.7 kip-ft |
| 40 ft | 120 kip-ft | 79.8 kip-ft |
| 45 ft | 105 kip-ft | 69.6 kip-ft |
| 50 ft | 92.8 kip-ft | 61.7 kip-ft |
| 55 ft | 83.4 kip-ft | 55.5 kip-ft |
A beam with a uniform load between braces has Cb above 1.0 (1.14 for a simple span braced only at its ends), so these values are conservative. The beam designer works out Cb for every segment between braces.
W12×53 load table by span
The largest uniform load a simply supported W12×53 can carry, in kips per foot, with its compression flange braced along its length (by a floor or roof deck, for example). The loads include the beam's own weight of 0.053 kips per foot.
| Span | Factored load (LRFD) | Allowable load (ASD) | Load at span/360 | Load at span/240 |
|---|---|---|---|---|
| 6 ft | 41.7* | 27.8* | 84.5 | 126.8 |
| 7 ft | 35.8* | 23.9* | 53.2 | 79.9 |
| 8 ft | 31.3* | 20.9* | 35.7 | 53.5 |
| 9 ft | 27.8* | 18.6* | 25.0 | 37.6 |
| 10 ft | 23.4 | 15.5 | 18.3 | 27.4 |
| 11 ft | 19.3 | 12.9 | 13.7 | 20.6 |
| 12 ft | 16.2 | 10.8 | 10.6 | 15.9 |
| 13 ft | 13.8 | 9.20 | 8.31 | 12.5 |
| 14 ft | 11.9 | 7.93 | 6.65 | 9.98 |
| 15 ft | 10.4 | 6.91 | 5.41 | 8.12 |
| 16 ft | 9.13 | 6.07 | 4.46 | 6.69 |
| 17 ft | 8.09 | 5.38 | 3.72 | 5.57 |
| 18 ft | 7.21 | 4.80 | 3.13 | 4.70 |
| 19 ft | 6.47 | 4.31 | 2.66 | 3.99 |
| 20 ft | 5.84 | 3.89 | 2.28 | 3.42 |
| 21 ft | 5.30 | 3.53 | 1.97 | 2.96 |
| 22 ft | 4.83 | 3.21 | 1.71 | 2.57 |
| 23 ft | 4.42 | 2.94 | 1.50 | 2.25 |
| 24 ft | 4.06 | 2.70 | 1.32 | 1.98 |
| 25 ft | 3.74 | 2.49 | 1.17 | 1.75 |
| 26 ft | 3.46 | 2.30 | 1.04 | 1.56 |
| 27 ft | 3.21 | 2.13 | 0.93 | 1.39 |
| 28 ft | 2.98 | 1.98 | 0.83 | 1.25 |
| 29 ft | 2.78 | 1.85 | 0.75 | 1.12 |
| 30 ft | 2.60 | 1.73 | 0.68 | 1.01 |
- Factored and allowable loads are limited by bending, or by shear where marked *.
- The deflection columns are the service loads that make the beam sag span/360 or span/240. Compare span/360 with the live load alone and span/240 with dead plus live load, the usual floor limits in IBC Table 1604.3.
Reading the table
At a 18 ft span, a W12×53 carries a factored load of 7.21 kips per foot (LRFD) or an allowable load of 4.80 kips per foot (ASD). A live load of 3.13 kips per foot would deflect it span/360, which is 0.60 in. The beam works if the factored load is under the first number and the live and total loads are under the deflection numbers. For other spans, supports or loads, open it in the beam designer, or follow the steel beam design guide to check one by hand.
W12×53 questions
What does W12×53 mean?
W means a wide flange shape. 12 is its nominal depth in inches (the actual depth is 12.1 in) and 53 is its weight in pounds per foot.
How much does a W12×53 weigh?
53 pounds per foot, so a 20 ft W12×53 weighs about 1,060 pounds.
How far can a W12×53 span?
It depends on the load. Braced along its length, it carries 41.7 kips per foot of factored load at 6 ft and 2.60 kips per foot at 30 ft; the load table has the spans in between. Floor beams are often 18 to 24 ft for this depth (span-to-depth ratios of about 18 to 24), where deflection usually governs.
Is a W12×53 a compact section?
Yes. Its flanges (bf/2tf = 8.69) and web (h/tw = 28.1) are both compact for bending in 50 ksi steel.