W920x491 G40.21 350W — Canadian W-Shape Section Properties

Approximate equivalent of W36X330 per AISC A6. Approx. equivalent of W36X330. Verify against CISC Handbook.

Dimensions (Metric)

Property Value Unit
Depth (d) 957.6 mm
Flange Width (bf) 421.6 mm
Flange Thickness (tf) 47.0 mm
Web Thickness (tw) 25.9 mm
Cross-Sectional Area (A) 625.2 cm²
Mass 491.0 kg/m

Elastic Section Properties (Metric)

Property Strong Axis (X-X) Weak Axis (Y-Y) Unit
Moment of Inertia (I) 969,816 59,105 cm⁴
Elastic Section Modulus (S) 20,320 2,802 cm³
Plastic Section Modulus (Z) 23,106 4,343 cm³
Radius of Gyration (r) 39.37 9.73 cm

Torsional Properties

Property Value Unit
Torsional Constant (J) 3,509 cm⁴
Warping Constant (Cw) 122,436,000 cm⁶
Distance Between Flange Centroids (ho) 91.19 cm
Effective Radius (rts) 11.51 cm

Imperial Reference

Property Value Unit
Depth (d) 37.70 in
Flange Width (bf) 16.60 in
Area (A) 96.90 in²
Weight 330 lb/ft

Section Profile Summary

Hot-rolled W-shape with Sx = 20,320 cm³. The section is well-suited for primary framing in multi-storey buildings, crane girders, and bridge stringers.

At 957.6 mm deep and 491 kg/m, this is a heavy section for primary framing — transfer beams, long-span roof girders, and major bridge stringers.

Key Design Checks (CSA S16)

Check Formula This Section
Plastic moment Mp = Zx × Fy 8,087 kN·m
Deflection Δ = 5wL⁴/(384EIx) Use Ix = 969,816 cm⁴
Torsion St. Venant = GJ/L J = 3,509 cm⁴
Column buckling KL/r → Fcr r_x = 39.37 cm

Design Notes

Verification (CSA S16): All designs using this section must be verified by a licensed Professional Engineer. Before finalizing member selection, check beam-column interaction (P-M), lateral-torsional buckling, serviceability deflections, and all connection limit states. See Engineering Disclaimer.

Worked Example: Industrial floor beam — w920x491

Scenario: Light industrial floor — forklift traffic and storage considerations. Simply supported wide flange, 22.0 m span, 3 m tributary width. Service loads: 5.0 kPa dead + 7.5 kPa live (37.5 kN/m total).

Given:

Step 1 — Live load deflection:

Δ_LL = 5 w_L L⁴ / (384 E Ix)

Δ_LL = 5 × 22.5 × (22025)⁴ / (384 × 200000 × 9,698,160,000)

Δ_LL = 35.5 mm

Step 2 — Deflection limit (L/250):

Δ_limit = L / 250 = 22025 / 250 = 88.1 mm

Step 3 — Dead + live deflection:

Δ_total = 59.2 mm

Step 4 — Design check:

✓ Live load deflection is within the L/250 limit.

Verify the design moment M*_Ed (from factored loads 1.35G + 1.5Q per CSA S16) does not exceed φMn = 7,278 kN·m. Also confirm shear resistance and bearing details at the supports.

Related Resources

Design Resources


Educational reference only. Verify all section properties against the current CSA S16 Manual and mill certificates before design. Results are PRELIMINARY — NOT FOR CONSTRUCTION.