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What Size Rebar for A house foundation?

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Rebar Guides · House Foundations

What Size Rebar for a House Foundation?

Bar-diameter, spacing, mat layout, and cover guidance for reinforced concrete house foundations — DIN 488 / EN 10080 B500B rebar supplied with full export documentation worldwide.

DIN 488 · EN 10080 Mill Test Certificate Worldwide export

What Size Rebar Does a House Foundation Need?

A house foundation must transfer the full structural load of the building — walls, floors, roof, live loads — safely into the bearing soil. The rebar embedded in the concrete gives the foundation the tensile strength to resist bending, differential settlement, hydrostatic pressure (for basements), and in seismic zones, lateral forces.

For most residential house foundations in Europe, 12 mm or 16 mm B500B deformed bar is the primary reinforcement, with spacings of 150–200 mm in both horizontal directions. Raft (mat) foundations for larger houses or poor soils step up to 16–20 mm. All figures below reference B500B (500 MPa min yield, Agt ≥ 5.0 %, k ≥ 1.08) per DIN 488 / EN 10080.

ⓘ Foundation reinforcement is always a structural engineering design item. The values below are indicative procurement references. All foundation reinforcement must be designed by a qualified structural or geotechnical engineer in compliance with Eurocode 2 (EN 1992-1-1), Eurocode 7 (geotechnical design), and applicable national building regulations. Actual quantities depend on soil bearing capacity, building loads, and foundation geometry.

Rebar Size Guide by House Foundation Type

Indicative bar diameters, spacing, and cover for common residential foundation systems.

Foundation TypeTypical UseMain Bar DiaSpacing c/cCover (min)Bar kg/m
Strip footing (shallow)1–2 storey house, good soil12 mm200 mm50 mm0.888
Strip footing (heavy)2–3 storey, heavier loads16 mm150–200 mm50 mm1.58
Raft / mat foundationPoor soil, large footprint16 mm150 mm50–75 mm1.58
Basement wallRetaining + structural16–20 mm150–200 mm40–50 mm1.58–2.47
Pile capPiled foundation, poor soil20–25 mm150 mm75 mm2.47–3.85

All values indicative. Designed quantities may differ significantly. Always confirm with your structural engineer.

Strip Foundations: Standard Bar Sizes and Layout

A reinforced strip foundation for a standard two-storey house typically uses three or four 12 mm B500B bars as bottom longitudinal steel, with 10 mm transverse distribution bars at 200–300 mm c/c. The longitudinal bars resist the bending moment from the upward soil reaction; the transverse bars resist any differential bearing and tie the section together.

Key bar properties from the EN 10080 spec bank:

  • 12 mm B500B: 0.888 kg/m, 113 mm² cross-section
  • 16 mm B500B: 1.58 kg/m, 201 mm² cross-section
  • 20 mm B500B: 2.47 kg/m, 314 mm² cross-section

Starter bars (dowels) project above the footing to lap with the ground floor wall or column cage reinforcement. Lap length is a minimum of 50d per Eurocode 2 — for 12 mm bar that is 600 mm, for 16 mm bar, 800 mm.

Raft Foundations: Two-Way Mat Reinforcement

A raft (mat) foundation distributes the house load across the entire footprint, making it the preferred choice where bearing capacity is low, ground conditions are variable, or differential settlement must be minimised. Rafts are typically reinforced with a two-way mat of 16 mm B500B at 150 mm c/c in both top and bottom layers, though heavier houses or poor soil may require 20 mm bar.

For a 10 m × 8 m raft using 16 mm bar at 150 mm c/c both ways, top and bottom:

  • Each layer, one direction: (10 m ÷ 0.15 + 1) × 8 m = 68 bars × 8 m = 544 m
  • Each layer, other direction: (8 m ÷ 0.15 + 1) × 10 m = 54 bars × 10 m = 540 m
  • Total per layer: ~1084 m × 1.58 kg/m ≈ 1,713 kg
  • Two layers (top + bottom): ~3,426 kg (≈ 3.4 t) of 16 mm B500B

Add 5–10 % for laps (min 40d = 640 mm for 16 mm bar), chairs, and waste. These are indicative quantities — confirm with your engineer’s design schedule.

Basement Walls: Retaining and Structural Reinforcement

A reinforced basement wall must act simultaneously as a retaining wall (resisting soil and hydrostatic pressure from outside) and as a structural wall supporting the floors above. This dual role typically requires vertical bars of 16–20 mm B500B at 150–200 mm c/c on both faces, with horizontal distribution bars of 12–16 mm at 200 mm c/c.

Concrete cover for basement walls in contact with soil should be 40–50 mm on the soil side (XC2/XD2 exposure class per EN 206), and 25–30 mm on the internal face. For basement slabs in contact with groundwater, 50–75 mm cover is often specified.

Steel Rebar Germany supplies the full range needed for basement construction: B500B bar 12–32 mm, cut-and-bend to shape codes, and mechanical couplers 16–40 mm for lap-free splices through thick sections. All material ships with EN 10204 3.1 Mill Test Certificates and full export documentation.

Procurement and Export of Foundation Rebar

Foundation reinforcement is typically one of the largest single steel orders for a residential project. Planning the procurement in advance — with bar schedules drawn from the engineer’s design — minimises site delays. Key considerations:

  • Stock lengths: B500B is available in 6 m and 12 m standard lengths (up to 18 m on request). For strip footings and basement walls, 12 m bars reduce lap frequency.
  • Cut-and-bend: Factory-bent starter bars, U-bars, and distribution links arrive pre-tagged and ready to place. See our cut-and-bend service.
  • Export packaging: Seaworthy bundles of approximately 2 tonnes each; container or break-bulk to any port. Mill Test Certificates, Certificate of Origin, CE/DoP included.
  • Mesh alternative: For raft slabs with uniform geometry, B500A welded mesh panels (6.0 × 2.3 m, DIN 488-4) can reduce site labour significantly.

Frequently Asked Questions

What size rebar is used for a house foundation?
For a standard residential house, 12 mm B500B is typical for lightly loaded strip foundations, while 16 mm B500B is more common for raft foundations and heavily loaded strips. Basement walls often use 16–20 mm vertical bars. All dimensions must be confirmed by a structural engineer based on soil conditions and building loads — these figures are indicative procurement references only.
How much rebar do I need for a house foundation?
This depends entirely on the foundation type, dimensions, and design. As a rough indicative guide, a 10 × 8 m raft with 16 mm bar at 150 mm c/c top and bottom requires approximately 3.4 tonnes of rebar. A typical strip footing perimeter for a two-storey house may need 0.5–1.5 tonnes depending on wall lengths and bar size. Your engineer will provide an exact bar schedule — use that for ordering. Add 5–10 % for laps and waste.
What concrete cover is required in a house foundation?
For foundations in contact with soil (exposure class XC2), EN 1992-1-1 (Eurocode 2) requires a minimum cover of 40–75 mm: 75 mm when cast directly against ground without blinding, 40–50 mm over a blinding layer. For basement walls in contact with groundwater (XD2), 50 mm is a common design value. Your engineer will specify exact cover.
Should I use a raft or strip foundation for a house?
Strip foundations suit stiff, uniform soils with adequate bearing capacity and are economical for standard two-storey houses. Raft foundations are preferred on soft, variable, or clay soils where differential settlement is a risk, or where the building footprint is large. The choice is a geotechnical and structural engineering decision — not a procurement one.
Does Steel Rebar Germany supply rebar for residential foundation projects?
Yes. We supply B500B bar in diameters 8–40 mm, welded mesh, cut-and-bend elements, and mechanical couplers for foundation projects of all scales, with EN 10204 3.1 Mill Test Certificates and full export documentation for international buyers. Request a quote with your foundation schedule and destination port.

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