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Elliptical Hollow Sections (Hot-finished) (EHS) - Section Properties Table

Theory
ehs cross-section diagram
Section DesignationMass per MetreDimensionsSecond Moment of AreaRadius of GyrationElastic ModulusPlastic ModulusArea of SectionSurface Area
massi
ti
Iyi
Izi
iyi
izi
Wel,yi
Wel,zi
Wpl,yi
Wpl,zi
Ai
SA/mi
SA/ti
kg/mmmcm⁴cm⁴cmcmcm³cm³cm³cm³cm²m²/mm²/t
EHS 150×75×4#10.74.0301.0101.04.702.7240.1026.9056.1034.4013.60.36333.9
EHS 150×75×5#13.35.0367.0122.04.662.6948.9032.5068.9042.0016.90.36327.4
EHS 150×75×6.3#16.56.3448.0147.04.622.6459.7039.1084.9051.5021.00.36322.0
EHS 200×100×5#17.95.0897.0302.06.273.6489.7060.40125.076.8022.80.48427.1
EHS 200×100×6.3#22.36.31,100.0368.06.233.60110.073.50155.094.7028.40.48421.7
EHS 200×100×8#28.08.01,360.0446.06.173.54136.089.30193.0117.035.70.48417.3
EHS 200×100×10#34.510.01,640.0529.06.103.47164.0106.0235.0141.044.00.48414.0
EHS 200×100×12.5#42.412.51,950.0619.06.023.39195.0124.0284.0169.054.00.48411.4
EHS 250×125×6.3#28.26.32,210.0742.07.844.55176.0119.0246.0151.035.90.60521.5
EHS 250×125×8#35.48.02,730.0909.07.784.49219.0145.0307.0188.045.10.60517.1
EHS 250×125×10#43.810.03,320.01,090.07.714.42265.0174.0376.0228.055.80.60513.8
EHS 250×125×12.5#53.912.54,000.01,290.07.634.34320.0207.0458.0276.068.70.60511.2
EHS 300×150×8#42.88.04,810.01,620.09.395.44321.0215.0449.0275.054.50.72617.0
EHS 300×150×10#53.010.05,870.01,950.09.325.37391.0260.0551.0336.067.50.72613.7
EHS 300×150×12.565.512.57,120.02,330.09.245.29475.0311.0674.0409.083.40.72611.1
EHS 300×150×16#82.516.08,730.02,810.09.125.17582.0374.0837.0503.0105.00.7268.8
EHS 400×200×8#57.68.011,7003,970.012.607.35584.0397.0811.0500.073.40.96916.9
EHS 400×200×10#71.510.014,3004,830.012.507.28717.0483.01,000.0615.091.10.96913.6
EHS 400×200×12.588.612.517,5005,840.012.507.19877.0584.01,230.0753.0113.00.96910.9
EHS 400×200×16112.016.021,7007,140.012.307.071,090.0714.01,540.0936.0143.00.9698.6
EHS 500×250×10#90.010.028,5009,680.015.809.191,140.0775.01,590.0976.0115.01.21013.4
EHS 500×250×12.5#112.012.535,00011,80015.709.101,400.0943.01,960.01,200.0142.01.21010.8
EHS 500×250×16#142.016.043,70014,50015.608.981,750.01,160.02,460.01,500.0180.01.2108.5
# Check availability.

Dimensions and section properties for all 23 Elliptical Hollow Sections (Hot-finished) (EHS) to BS EN 10210 (SCI P363 Blue Book): size, wall thickness, mass and section properties for hot-finished EHS. Sort or search the table above, and open any size for its full data sheet or an EC3 capacity check.

Related section types

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Elliptical Hollow Sections - Hot-finished (BS EN 10210) - section properties reference

What is in the EHS table

This page lists every Elliptical Hollow Sections - Hot-finished (BS EN 10210) size to BS EN 10210-2:2006, with the full set of section properties for each one. The table is sortable on any column and searchable by designation, and each size links to its own page with the complete property set, a worked capacity check and dimensions for detailing.

Sizes in this table
23
Mass range (kg/m)
10.7 to 142.0 - from EHS 150×75×4 up to EHS 500×250×16
Section size range (mm)
150.0 to 500.0
Major-axis stiffness, I (cm⁴)
301 to 43,700 - a factor of 145 across the range
Published to
BS EN 10210-2:2006

The spread is worth noticing: the heaviest EHS weighs 13.3x the lightest but carries roughly 145x the major-axis stiffness. Bending stiffness grows far faster than weight, which is the whole reason the range is shaped this way - going deeper buys stiffness much more cheaply than going heavier.

How to read an EHS designation

A hollow section is called out as the two outside face dimensions × the wall thickness, all in millimetres - EHS 250×125×12.5. The outside size stays constant across the thickness range, so a heavier wall eats into the bore rather than growing the section.

That matters when you substitute a size: increasing the wall thickness of an EHS raises area and capacity without changing the connection geometry or the cladding line, which is usually why the range is built that way.

What each column in the table means

The table above publishes 13 properties for every EHS Hot-finished size. These are the ones that decide a design:

Mass per metre
Self-weight of the section, and the basis on which steel is bought - so it is the first cost signal when comparing two sections that both pass.
Cross-sectional area, A
Governs axial capacity and, with mass, tells you how efficiently the shape uses its steel.
Second moment of area, I (major axis)
Resistance to bending about the strong axis. It is what deflection is proportional to, so a serviceability check is driven by this number rather than by strength.
Second moment of area about the minor axis
The weak-axis stiffness. It sets lateral-torsional buckling behaviour and matters whenever the compression flange is not continuously restrained.
Elastic section modulus, Wel
Moment capacity while the extreme fibre stays elastic - the value to use for a Class 3 section, and for any check where yielding is not permitted.
Plastic section modulus, Wpl
Moment capacity once the whole section has yielded - the value used for Class 1 and 2 sections, and typically 10-20% above the elastic modulus.
Radius of gyration, i
The slenderness term: effective length divided by i gives the slenderness that drives buckling. The minor-axis value normally governs a column.
Surface area per metre
Drives the cost of painting, galvanising and fire protection - often the deciding factor between two sections of similar capacity.

Every one of these is a property of the shape alone. None of them depends on the steel grade - grade enters only when a property is multiplied by a design strength to give a capacity, which is what the Capacity tab above does.

Choosing an EHS size

Which property governs depends on what is being checked, and it is rarely the one people reach for first:

Bending strength
Compare plastic modulus Wpl for Class 1 and 2 sections, elastic Wel for Class 3. Depth buys this cheaply.
Deflection
Compare second moment of area I. A section that passes strength can still fail serviceability, and this is usually the check that decides the size.
Compression
Compare the MINOR-axis radius of gyration. A deep section with a narrow flange is efficient in bending and poor as a column.
Torsion
Compare J. If the load is genuinely torsional, a closed section beats an open one so decisively that the comparison is rarely close.
Cost
Compare mass per metre first, then surface area per metre - protective treatment is charged by area, not weight.
Elastic section modulus
Wel=IcW_{el} = \frac{I}{c}
Radius of gyration
i=IAi = \sqrt{\frac{I}{A}}
Slenderness
λ=Lcri\lambda = \frac{L_{cr}}{i}

Open the Capacity tab above with a size selected to run these as a full EC3 check rather than comparing the raw properties by eye.

Common questions about EHS sections

23 Elliptical Hollow Sections - Hot-finished (BS EN 10210) sizes are published to BS EN 10210-2:2006, and all 23 are listed in the table above. Availability from stock is a separate question from what the standard publishes - check with a supplier before specifying an unusual size.

The lightest is EHS 150×75×4 at 10.7 kg/m, and the heaviest is EHS 500×250×16 at 142.0 kg/m.

No. Everything in the table above is geometry - area, second moment of area, section moduli, radii of gyration and torsion constants are properties of the shape and are identical in S235, S275 and S355. Grade only enters when a property is multiplied by a design strength to produce a capacity.

They are the published values from BS EN 10210-2:2006, not recomputed approximations. That matters at the third significant figure: values derived from idealised dimensions drift from the tabulated ones because the real shape includes root radii and rolling tolerances.

The section properties follow the geometry, so two sections of the same size and wall thickness have near-identical area and inertia either way. What differs is the corner radius, the residual stress pattern and therefore the buckling curve used in design - so the finish changes the CAPACITY, not the geometry. This table covers elliptical hollow sections - hot-finished (bs en 10210).

Yes. Select a size and open the Capacity tab above to run an EC3 check - bending, shear, compression and the combined interaction - or open that size's own page for a worked example with the numbers substituted.

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