Tarmac Weight Calculator

Returns weight in kilograms and tonnes for any area and depth, using the density of the mix you select.

Project dimensions

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Tarmac Weight Calculator

Returns weight in kilograms and tonnes for any area and depth, using the density of the mix you select.

Density by mix type

DesignationDescriptionDensity (kg/m³)Typical useStandard
AC 10 surfAsphalt concrete surface course, 10 mm2,340Surface course 25–40 mmBS EN 13108-1
AC 14 surfAsphalt concrete surface course, 14 mm2,350Surface course 40–50 mmBS EN 13108-1
HRA 30/14Hot rolled asphalt with pre-coated chippings2,290Traditional surface courseBS EN 13108-4
SMA 10 surfStone mastic asphalt2,400High-traffic surface courseBS EN 13108-5
Thin surface course systemProprietary thin surfacing2,320Surface course 20–40 mmBS EN 13108-2
AC 20 binAsphalt concrete binder course, 20 mm2,360Binder course 50–80 mmBS EN 13108-1
AC 32 baseAsphalt concrete base, 32 mm2,370Base 80–150 mmBS EN 13108-1
EME2High-modulus base2,435Heavy-duty baseBS EN 13108-1 / CD 226
Porous asphaltPA 202,000Drainage surface courseBS EN 13108-7
Recycled planingsReclaimed asphalt planings2,000Drives, hardstanding, sub-baseBS EN 13108-8
Type 1 sub-baseGranular sub-base2,100Unbound sub-base 100–300 mmSHW Clause 803
Bitumen 40/60Paving grade binder1,030Tack coat and binder onlyBS EN 12591

The formula

Tonnes = m² × m × 2.35
m³ = m² × m
kg = m³ × 2,350

Waste and compaction allowance

Loose material behind the paver occupies roughly 20% more volume than the finished compacted surface. Add edge trimming, material left in the vehicle body and normal measurement tolerance, and you need an allowance on top of the calculated tonnage.

SituationAllowanceReason
Simple rectangle, machine-laid, experienced crew5%Minimal trimming and predictable compaction
Standard driveway or car park10%Normal edge detail and some hand work at the perimeter
Curved edges or several separate zones15%More offcuts and more hand placement
Hand-laid work and small patches15%Hand compaction is less consistent
Recycled planings15–20%Higher compaction factor and less predictable spread
Unbound granular base20–25%Significant consolidation under the roller

Round the final figure up to the nearest half tonne. Being short means a cold joint in the middle of the surface and a second delivery charge, which costs far more than the extra material would have.

The base underneath

The unbound layer under the surfacing does more structural work than the surfacing itself, and it is where most premature failures actually originate. A thinner bound layer over a deep, well-compacted, free-draining base will outlast a thicker bound layer over a shallow one.

SubgradeApproximate CBRBase under domestic accessBase under commercial
Well-graded gravel20–40100 mm150 mm
Sand, well drained10–20100–150 mm150–200 mm
Silty sand6–10150 mm200 mm
Loam5–8150–200 mm200–250 mm
Silty clay3–5200–250 mm250–300 mm
Heavy clay, poorly drained2–3250–300 mm plus geotextile300–450 mm plus stabilisation
Peat or organic soilunder 2Excavate and replaceExcavate and replace

Two additions repay their cost on marginal ground: a separation geotextile between the subgrade and the granular layer, which stops stone punching down into soft clay and can save 50–100 mm of aggregate; and proof-rolling with a loaded vehicle before any stone is placed, which finds the soft spots while they are still cheap to deal with.

Remember that the granular base is usually the larger tonnage of the two. A 100 m² area with 200 mm of base at 2,100 kg/m³ needs 42 tonnes of stone against roughly 12 tonnes of surfacing at 50 mm. Budget and order for both.

Ordering and delivery

What the plant needs from you

Delivery vehicles

VehicleTypical payloadBest suited to
Rigid tipper (4-wheel)6–8 tVery tight access, small domestic work
Rigid tipper (6-wheel)10–14 tDomestic drives, restricted sites
Rigid tipper (8-wheel)16–20 tThe usual default for driveways and small car parks
Artic tipper26–29 tLarger car parks and road work with good access
Insulated / thermal bodyas aboveLonger hauls, cold weather, thin surfacing
Material transfer vehicle25 t+Continuous paving, eliminates segregation

A part-load at the end of a job is common. It is often worth increasing the design thickness slightly to fill the last vehicle rather than paying a small-load surcharge on two or three tonnes.

Standards and who administers them

Surfacing work in the United Kingdom is specified under BS EN 13108 and BS 594987, administered by National Highways and the Specification for Highway Works. In practice that governs three things you will see on any quotation or drawing:

For private domestic work none of this is legally binding, but the same physics applies. Asking a contractor which specification they are working to, and getting the compacted thickness written into the quotation in millimetres, is the single most useful thing you can do to make competing quotations comparable.

Frequently asked questions

How many tonnes do I need?

Area in m² × compacted thickness in m × 2.35. A 100 m² area at 50 mm needs about 11.8 tonnes.

How many m² does a tonne cover?

About 8.5 m² at 50 mm compacted.

What allowance should I add?

10% for standard work, 5% for simple machine-laid rectangles, 15% for curved or hand-laid areas.

Does the calculator handle several areas?

Yes — add a zone per shape, each with its own thickness and mix type. Multi-layer structures and irregular sites are entered directly.

Which standards apply?

BS EN 13108 and BS 594987, administered by National Highways and the Specification for Highway Works.

Sources and further reading

Last reviewed: Next review: November 2026 Reviewed by: AsphaltCalculatorPrice Editorial TeamRegion: United Kingdom