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Tee 210×267×69 - Section Properties

The Tee 210×267×69 is a structural tee with a mass of 69.1 kg/m, an overall depth of 274.5 mm and width of 213.9 mm. It has a cross-sectional area of 88.1 cm², a second moment of area Iᵧ of 5990 cm⁴, a plastic modulus Wₚₗ,ᵧ of 520 cm³, tabulated by CivilAxis from BS EN 10365:2017 (SCI P363 Blue Book).

Mass
69.1 kg/m
Depth
274.5 mm
Width
213.9 mm
Area
88.1 cm²
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Tees (from UB) section profile showing the dimension symbols used for Tee 210×267×69

Dimension symbols for Tees (from UB) sections. Not to scale.

Tee 210×267×69 section properties to BS EN 10365:2017.

Geometry

Depth of sectionh274.5
Width of sectionb213.9
Web thicknesstw14.7
Flange thicknesstf23.6
Root fillet radiusr12.7

Mass and area

Mass per metremass69.1
Cross-sectional areaA88.1

Bending about the major axis (y-y)

Area moment of inertia about y-axisIy5990
Elastic section modulus about y-axisWel,y292
Plastic section modulus about y-axisWpl,y520
Radius of gyration about y-axisiy8.24
Elastic section modulus at flange faceWel,y flange862
Elastic section modulus at toeWel,y toe292

Bending about the minor axis (z-z)

Area moment of inertia about z-axisIz1930
Elastic section modulus about z-axisWel,z181
Plastic section modulus about z-axisWpl,z284
Radius of gyration about z-axisiz4.68

Torsion and warping

Torsion constant (St Venant)It125
Warping constantIw2490

Classification and stability

Flange local-buckling ratiocf/tf3.68
Web local-buckling ratiocw/tw18.7
Buckling parameteru0.609
Torsional indexX12.5
Mono-symmetry indexψ0.719

Detailing dimensions

Centroid distance from back of leg (y)cy6.94

Common questions about Tee 210×267×69

Tee 210×267×69 has a mass of 69.1 kg/m, tabulated to BS EN 10365:2017. A 12 m length therefore weighs about 829 kg, which is the figure to use for a steel take-off or when checking a lift.

Tee 210×267×69 has a depth of 274.5 mm, a width of 213.9 mm, a web thickness of 14.7 mm, a flange thickness of 23.6 mm, with a cross-sectional area of 88.1 cm². These are the nominal dimensions from BS EN 10365:2017; rolling tolerances apply to the delivered section.

The plastic section modulus about the major axis, Wpl,y, is 520 cm³, and the elastic modulus Wel,y is 292 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 185 kNm before any stability check.

The second moment of area about the major axis, Iy, is 5,990 cm⁴, and about the minor axis Iz is 1,930 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.

Its local-buckling ratios are cf/tf = 3.68 for the flange and cw/tw = 18.7 for the web. EN 1993-1-1 Table 5.2 compares these against limits scaled by epsilon = sqrt(235/f_y), so the class depends on the steel grade as well as the geometry - the same section can be Class 1 in S275 and Class 3 in S355. Use the Capacity tab on this page for the classification at a specific grade.

iy is 8.24 cm about the major axis and iz is 4.68 cm about the minor axis. Column buckling is governed by the SMALLER value: the slenderness is lambda = L_cr / i, so with iz = 4.68 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 125 cm⁴, and the warping constant Iw is 2490 dm⁶. Open sections carry torsion mainly by warping rather than uniform torsion, which is why Iw appears in the lateral-torsional buckling resistance - both values feed M_b,Rd.

Related Tees (from UB) sizes

Tee 312×267×136Tee 312×267×110Tee 312×267×91Tee 312×267×75Tee 210×267×61Tee 210×267×55Tee 210×267×51Tee 210×267×46

Compare with other sections

Side-by-side properties against the closest equivalent in each catalogue.

vs WT 10.5X46.5vs ST 10X43vs WT 10.5X55.5

Learn more

📘 How to read a steel section table (UB, UC, IPE, HE)📘 Section modulus explained: elastic (Wel) vs plastic (Wpl)
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