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CF SHS 120×120×3 - Section Properties

The CF SHS 120×120×3 is a square hollow section with a mass of 10.8 kg/m, an overall depth of 120 mm and width of 120 mm and a wall thickness of 3 mm. It has a cross-sectional area of 13.8 cm², a second moment of area Iᵧ of 312 cm⁴, a plastic modulus Wₚₗ,ᵧ of 60.2 cm³, tabulated by CivilAxis from BS EN 10219-2:2006 (SCI P363 Blue Book).

Mass
10.8 kg/m
Depth
120 mm
Width
120 mm
Wall thickness
3 mm
Area
13.8 cm²
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SHS Cold-formed section profile showing the dimension symbols used for CF SHS 120×120×3

Dimension symbols for SHS Cold-formed sections. Not to scale.

CF SHS 120×120×3 section properties to BS EN 10219-2:2006.

Geometry

Depth of sectionh120
Width of sectionb120
Wall thicknesst3

Mass and area

Mass per metremass10.8
Cross-sectional areaA13.8

Bending about the major axis (y-y)

Area moment of inertia about y-axisIy312
Elastic section modulus about y-axisWel,y52.1
Plastic section modulus about y-axisWpl,y60.2
Radius of gyration about y-axisiy4.76

Bending about the minor axis (z-z)

Area moment of inertia about z-axisIz312
Elastic section modulus about z-axisWel,z52.1
Plastic section modulus about z-axisWpl,z60.2
Radius of gyration about z-axisiz4.76

Torsion and warping

Torsion constant (St Venant)It488
Section modulus for torsionWt78.2

Surface area

Surface area per metreSA/m0.47
Surface area per tonneSA/t43.4m²/t

Common questions about CF SHS 120×120×3

CF SHS 120×120×3 has a mass of 10.8 kg/m, tabulated to BS EN 10219-2:2006. A 12 m length therefore weighs about 130 kg, which is the figure to use for a steel take-off or when checking a lift.

CF SHS 120×120×3 has a depth of 120 mm, a width of 120 mm, a wall thickness of 3 mm, with a cross-sectional area of 13.8 cm². These are the nominal dimensions from BS EN 10219-2:2006; rolling tolerances apply to the delivered section.

The plastic section modulus about the major axis, Wpl,y, is 60.2 cm³, and the elastic modulus Wel,y is 52.1 cm³. Wpl,y is what sets the moment capacity of a Class 1 or 2 section: M_pl,Rd = Wpl,y x f_y / gamma_M0, so at S355 with gamma_M0 = 1.0 this section reaches about 21 kNm before any stability check.

The second moment of area about the major axis, Iy, is 312 cm⁴, and about the minor axis Iz is 312 cm⁴. Iy is the value deflection depends on - for a simply supported beam under a uniform load, the midspan deflection is 5wL⁴/384EIy - so on spans where a deflection limit governs rather than strength, this is the number that decides the section.

iy is 4.76 cm about the major axis and iz is 4.76 cm about the minor axis. Column buckling is governed by the SMALLER value: the slenderness is lambda = L_cr / i, so with iz = 4.76 cm a 0.5 m effective length already gives lambda = 100. Minor-axis buckling almost always controls unless the weak axis is restrained.

The St Venant torsion constant It is 488 cm⁴. Closed sections carry torsion in a shear flow around the perimeter, which makes them far stiffer in torsion than an open section of the same weight and is usually why one is specified.

Related SHS Cold-formed sizes

CF SHS 100×100×4CF SHS 100×100×5CF SHS 100×100×6CF SHS 100×100×8CF SHS 120×120×4CF SHS 120×120×5CF SHS 120×120×6CF SHS 120×120×8

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