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Mix Design calc

Concrete Mix Calculator UK | Cement Sand Aggregate 2026

Concrete Mix Calculator UK

Cement, Sand, Aggregate Quantities & Costs 2026

Calculate Your Concrete Mix Requirements

Your Concrete Mix Calculation Results:

Wet Volume Required:
Dry Volume (1.54 factor):
Mix Ratio:

Cement Required: bags (25kg)
Sand Required: tonnes
Aggregate Required: tonnes
Water Required: litres

Total Material Cost: £

Understanding Concrete Mix Ratios

Concrete mix ratios express proportions of cement : sand : aggregate required for specific strength grades. The notation 1:2:4 indicates 1 part cement, 2 parts sand, and 4 parts aggregate by volume, producing M15-M20 grade concrete suitable for foundations and general construction. Mix ratios determine final concrete strength, workability, and durability with stronger ratios using more cement relative to aggregates.

Dry volume calculation multiplies wet concrete volume by 1.54 factor accounting for 54% increase from material bulking when water fills voids between particles. This conversion ensures accurate material quantities preventing shortages during mixing. Cement converts from cubic metres to 25kg bags using 0.0167 m³ per bag factor while sand and aggregate measure in tonnes using standard bulk densities of 1.6 tonnes/m³ and 1.5 tonnes/m³ respectively.

Common UK Mix Ratios

M10 (1:3:6) suits non-structural applications including garden paths, shed bases, and trench fill requiring minimal strength. M15-M20 (1:2:4) provides general purpose concrete for strip foundations, garage bases, and retaining walls. M20 (1:2:3) supports driveways, workshop floors, and moderate load applications. M25 (1:1.5:3) delivers structural grade concrete for beams, columns, and suspended slabs demanding higher compressive strength.

Material Selection Guide

Portland cement (CEM I 42.5N or 52.5N) provides standard strength development suitable for all applications. Sharp washed sand ensures clean fine aggregate free from clay or organic contamination weakening concrete. 20mm clean gravel or crushed stone aggregate maximises packing density and bond strength. All-in ballast simplifies mixing combining sand and aggregate at 1:4 or 1:5 cement ratios equivalent to standard volumetric mixes.

Mixing Procedure

Dry mix cement, sand, and aggregate thoroughly achieving uniform colour before adding water gradually. Target water-cement ratio of 0.45-0.60 produces workable concrete without excess water compromising strength. Mixer rotation continues 2-3 minutes after water addition ensuring complete coating of all particles. Test workability using slump cone achieving 50-100mm slump for general purpose concrete suitable for most construction applications.

Standard Mix Ratios & Applications

Mix Ratio Grade Strength Applications
1:3:6 M10 10 N/mm² Paths, sheds, trench fill
1:2:4 M15-M20 15-20 N/mm² Foundations, garage bases
1:2:3 M20 20 N/mm² Driveways, floors
1:1.5:3 M25 25 N/mm² Beams, columns, slabs
Material Density 2026 Price Notes
Cement (25kg bag) 0.0167 m³ £7.00-8.50 42.5N or 52.5N grade
Sharp Sand 1.6 t/m³ £32-38/tonne Washed, clean
20mm Aggregate 1.5 t/m³ £26-32/tonne Gravel or crushed stone
All-in Ballast 1.7 t/m³ £22-28/tonne 1:4 or 1:5 cement ratios

Essential Concrete Mixing Facts

1.54 Dry Factor

Wet volume × 1.54 = dry volume accounting for 54% material bulking when water fills voids.

25kg = 0.0167m³

One cement bag occupies 0.0167 cubic metres for volume-to-bag conversion accuracy.

Sand 1.6t/m³

Standard sharp sand bulk density for accurate tonne calculations from volume.

Aggregate 1.5t/m³

20mm gravel/crushed stone density ensuring precise material ordering quantities.

Water-Cement 0.45-0.60

Optimum ratio balancing workability and maximum concrete compressive strength.

10% Wastage Standard

Accounts for spillage, bulking variations, and mixing losses during construction.

Frequently Asked Questions

What mix ratio for shed base?

1:2:4 (M15-M20) provides adequate strength for garden sheds and light structures. 100-150mm depth with good sub-base preparation ensures long-term performance without cracking or settlement issues.

Why multiply by 1.54 factor?

Dry materials occupy 54% more volume than wet concrete due to air voids between particles. Water fills these voids during mixing reducing total volume - 1.54 factor ensures correct dry quantities.

Hand mixing or machine?

Hand mixing suitable up to 0.2m³ batches. Concrete mixer recommended above 0.5m³ ensuring uniform mixing and consistent strength. Ready-mix economical for volumes exceeding 3m³ total requirement.

How much water to add?

Add water gradually achieving workable consistency without excess free water. Target 50-100mm slump test result. Too much water significantly reduces final concrete compressive strength.

Can I use all-in ballast?

Yes, 1:4 or 1:5 cement to ballast ratios equivalent to 1:2:4 or 1:3:6 mixes. Simplifies ordering but slightly less control over sand/aggregate proportions compared to separate materials.

How long does mixed concrete last?

Use within 2 hours maximum from water addition. Initial set begins after 45-90 minutes depending on temperature. Do not retemper with additional water - discard unused concrete after working time expires.

© 2026 Concrete Mix Calculator UK. Calculations based on standard UK construction practice. Always test small batches before large pours and consult structural engineer for critical applications.