TryBuildCalc

Raft Foundation Thickness CalculatorRaft thickness and concrete quantity estimator

Calculate concrete, two-way mesh steel, and shuttering quantity for an RCC raft (mat) foundation.

Raft Dimensions

ℹ️Overall raft footprint length, usually the building's outer plan dimension.

ℹ️Rafts are typically 300-1000+ mm thick depending on soil bearing capacity and building load — confirm from the structural drawing.

Concrete

ℹ️Foundation cover is typically higher than a suspended slab's — commonly 50 mm or more, confirm against your applicable code and exposure class.

Bottom Mesh (resists upward soil pressure)

Top Mesh (resists hogging near columns)

Include Top Mesh?

Lap Splices

Include Lap Splices?

Shuttering

Include Edge Shuttering?

Cost

Enable Cost Estimation?

For a 10.00 m × 8.00 m raft (80.0 m² footprint) at 500 mm thick, you need approximately 42.00 of concrete and 1,664.6 kg of reinforcement steel.

Concrete

Concrete volume: 42.00 (1,483.2 cft)

Cement: 338.9 bags

Sand: 17.64 (623.0 cft)

Aggregate: 35.28 (1,245.9 cft)

Steel Reinforcement

Bottom Mesh — X (along Length): 54 × 12 mm

Bottom Mesh — Y (along Width): 67 × 12 mm

Top Mesh — X (along Length): 41 × 12 mm

Top Mesh — Y (along Width): 51 × 12 mm

Total steel weight: 1,664.6 kg

Edge Shuttering

Perimeter: 36.00 m

Contact area: 18.00 (193.8 sqft)

Mesh LayerDiameterSpacingBar CountCutting LengthTotal LengthWeight
Bottom Mesh — X (along Length)12 mm150 mm c/c549.900 m534.60 m475.20 kg
Bottom Mesh — Y (along Width)12 mm150 mm c/c677.900 m529.30 m470.49 kg
Top Mesh — X (along Length)12 mm200 mm c/c419.900 m405.90 m360.80 kg
Top Mesh — Y (along Width)12 mm200 mm c/c517.900 m402.90 m358.13 kg

Assumptions Used

Steel weight: d² ÷ 162 (kg/m) | Mesh bar count: ROUND UP((span − 2 × cover) ÷ spacing) + 1 | Concrete dry volume factor: 1.54 | Shuttering (if included) is edge-only, since the raft bears on PCC/blinding below

Raft Foundation (Plan View)Length: 10 mWidth: 8 mThickness: 500 mm — mesh lines illustrative only, not actual bar count/spacing

Looking for the verification checklist, reference tables, tips, or common mistakes?See the complete Raft / Mat Foundation Calculator.

Raft foundation concrete quantity by thickness

This page is pre-filled with a 500 mm raft thickness — a typical figure for medium-rise residential or commercial construction — so you can quickly see how thickness drives concrete volume for your footprint.

Raft thickness has no single fixed answer: it depends on soil bearing capacity, column loads, and spacing, with punching shear near columns often governing rather than simple bending. Edit the thickness above to compare quantities against different design options.

  • Light residential (2-3 storey): commonly 300-450 mm.
  • Medium residential/commercial (4-8 storey): commonly 450-700 mm.
  • Heavy load or poor soil: 700 mm to over a metre, confirmed by structural/geotechnical design.

How Is the Raft Foundation Quantity Calculated?

The calculation happens in three parts — concrete volume, two-way mesh steel, and shuttering area — then an optional cost estimate on top.

Step 1 — Concrete Volume

Wet Volume = Length × Width × Thickness

Dry Volume = Wet Volume × 1.54

Cement Bags = Cement Volume ÷ 0.0347 m³/bag (50 kg bags)

Dry volume accounts for the voids between aggregate particles that disappear once the concrete is mixed and compacted. The dry volume is split into cement, sand, and aggregate using the selected mix ratio, and wastage is applied once to the final quantities.

Step 2 — Two-Way Mesh Steel

X-direction bar length = Length − (2 × Cover)

X-direction bar count = ROUND UP((Width − 2×Cover) ÷ Spacing) + 1

Y-direction bar length = Width − (2 × Cover)

Y-direction bar count = ROUND UP((Length − 2×Cover) ÷ Spacing) + 1

Unit Weight (kg/m) = Diameter² ÷ 162

Bars running along the length are spaced out and counted across the width, and vice versa — the same convention used on this site's Slab Steel calculator, applied once for the bottom mesh and again for the optional top mesh.

Step 3 — Edge Shuttering (Optional)

Perimeter = 2 × (Length + Width)

Contact Area = Perimeter × Thickness

Only the vertical edge strip around the raft's perimeter needs formwork — the underside rests on PCC/blinding and the top is finished open, the same logic used for isolated/strip footings.

Worked Example

This example walks through your current inputs above, using the same steps as the Formula section.

Input Values Used

InputValueWhy it is used
Raft length × width10m × 8mSets the footprint area and every mesh bar's run/count direction
Thickness500 mmSets concrete volume and the edge shuttering height
Mix ratio / wastage1:1.5:3, 5% wastageConverts wet volume to cement bags and adds a buffer for site losses
Cover50 mmReduces every bar's straight length from the raw span
Bottom mesh (X / Y)12 mm @ 150 mm / 12 mm @ 150 mmResists upward soil bearing pressure on the raft underside
Top mesh (X / Y)12 mm @ 200 mm / 12 mm @ 200 mmResists hogging moments near column locations

Step 1 — Concrete

CalculationSubstitutionResult
Wet volume10.00 × 8.00 × 0.50040.000
With 5% wastage40.000 × 1.0542.000 m³ (338.9 bags)

Step 2 — Steel

Mesh LayerSubstitutionWeight
Bottom Mesh — X (along Length)54 × 9.900 m × 12²÷162475.20 kg
Bottom Mesh — Y (along Width)67 × 7.900 m × 12²÷162470.49 kg
Top Mesh — X (along Length)41 × 9.900 m × 12²÷162360.80 kg
Top Mesh — Y (along Width)51 × 7.900 m × 12²÷162358.13 kg
Total steelSum of all mesh layers1,664.62 kg

Therefore, this 10.0 m × 8.0 m raft needs approximately 42.00 of concrete and 1,664.6 kg of mesh steel, plus 18.0 of edge shuttering.

Disclaimer: This calculator provides approximate results for planning and estimation purposes only. Actual requirements may vary based on site conditions, materials, workmanship, and local building regulations. Always consult a qualified engineer, architect, or construction professional before making final decisions.

FAQ

There's no single fixed number — it depends on soil bearing capacity, column loads, and spacing, with punching shear near columns often the governing factor. Treat any default as a starting point to verify with a structural engineer, not a final answer.
Indirectly — thickness itself doesn't change bar count or spacing (those come from the mesh design), but a thicker raft is heavier and often needs a correspondingly higher cover and sometimes a different mesh design, so confirm both together against the structural drawing.