Plan a concrete pour before you order or mix material. Enter your own metric measurements for slabs, pads, footings or post holes, add a practical waste allowance, compare the quantity with 20 kg bag yield and enter an A$/m³ rate for a clear concrete-only budget.
Select the shape that best matches the pour. Every numeric field starts visually at 0, but the 0 is only a placeholder. When you type a number, it replaces the placeholder instead of being added after it.
Zero-entry behaviour: the faded 0 is only a placeholder. The field itself is empty, so typing 5 gives 5 — not 05. Reset returns fields to the same empty-with-placeholder state.
Your result will appear after you enter measurements and press Calculate Concrete.
Confirm final dimensions, mix specification, delivery access, minimum-load rules, approvals and supplier charges before ordering.
A rectangular concrete pour needs length, width and depth. Keep all three dimensions in metres before multiplying. When thickness is measured in millimetres, divide by 1000 first.
The tool separates the raw geometric volume from waste, bags and cost so you can see exactly which assumptions are changing the final planning quantity.
Calculate cubic metres for common residential and landscaping shapes.
Add your own contingency rather than relying on a fixed percentage.
Use the exact manufacturer yield in litres for bagged-concrete planning.
Enter a current supplier quote instead of relying on a hard-coded online concrete price.
Save the estimate with measurements, waste, bags and concrete-only cost.
The visual zero is a placeholder only, so new typing replaces it automatically.
A reliable concrete estimate starts with volume, not with a guess about truck size or the number of bags. For a rectangular slab, patio, shed base or path, measure the finished internal length and width of the formed area, then multiply those dimensions by the concrete thickness. Because concrete thickness is commonly recorded in millimetres in Australia, convert the thickness to metres before multiplying. A 100 mm thickness is 0.10 m, 125 mm is 0.125 m and 150 mm is 0.15 m.
The Concrete Pouring Calculator is designed for planning quantities rather than structural design. It can tell you the mathematical volume created by your dimensions, but it cannot determine whether a slab should be 100 mm, 125 mm or another thickness. That decision can depend on the use of the slab, soil conditions, reinforcement, loads, engineering details, exposure, drainage, building classification and project approvals. Use the thickness and concrete specification shown on your approved plans, engineering documents or other project requirements where those documents apply.
m³ = Length (m) × Width (m) × Thickness (mm ÷ 1000)For example, if a formed area is 6 m long, 4 m wide and 100 mm thick, the mathematical volume is 6 × 4 × 0.10 = 2.40 m³ before any contingency. The useful part of a calculator is not simply doing that multiplication; it is keeping the base volume separate from any waste allowance so you can see exactly how much extra material is being added.
A generic example cannot account for your actual excavation, access, finished levels, ground conditions or formwork. Every pour should be based on the real formed or excavated space. A slab that looks rectangular on a sketch may contain steps, beams, rebates, thickenings, drainage falls or separate sections. A hand-dug footing can also be wider or deeper than its nominal dimension. Measure the real formed or excavated space as closely as practical before ordering concrete.
For irregular areas, divide the project into simple shapes. Calculate each rectangle or circular section separately and add the volumes. This is usually clearer than trying to force an irregular patio or driveway into one large rectangle. You can also use the Concrete Area Calculator first, then use this page to convert area and thickness into volume.
There is no single waste percentage that is correct for every concrete job. Accurate formwork over a level, well-prepared base may need only a modest contingency, while rough excavation, deep post holes, trenches, thickened edges or multiple small sections can make the required quantity less predictable. The calculator leaves the field at a visual 0 so you decide whether to add 3%, 5%, 10% or another value that reflects your site.
| Thickness | Depth In Metres | Concrete Per 10 m² | Concrete Per 50 m² |
|---|---|---|---|
| 75 mm | 0.075 m | 0.75 m³ | 3.75 m³ |
| 100 mm | 0.100 m | 1.00 m³ | 5.00 m³ |
| 125 mm | 0.125 m | 1.25 m³ | 6.25 m³ |
| 150 mm | 0.150 m | 1.50 m³ | 7.50 m³ |
| 200 mm | 0.200 m | 2.00 m³ | 10.00 m³ |
A circular concrete pad uses the area of a circle. Divide the diameter by two to get the radius, square the radius, multiply by π, then multiply by depth in metres. The calculator performs that calculation automatically. If you have multiple identical pads, enter the number of pads as the quantity. For a circular spa base, tank pad or landscape feature, check that a simple cylinder correctly represents the actual design before using the result as an order quantity.
Volume = π × Radius² × Depth × QuantityFor a straight strip footing, multiply total length by width and depth. The calculator accepts width and depth in millimetres because that is often convenient for site measurements. If the footing changes size along its length, calculate each section independently rather than averaging dimensions. Structural footing dimensions should come from the appropriate plans or engineering information; a volume calculator does not design a footing.
Fence posts, pergola posts and similar holes are commonly treated as cylinders for volume estimating. Enter the hole diameter, depth and number of holes. The optional displacement setting allows a rough reduction for the space occupied by the post itself. For a precise calculation, use the actual cross-sectional dimensions of the post rather than a generic percentage. Our Concrete Fence Post Calculator provides more dedicated post-hole planning.
Bagged concrete can be convenient for small repairs, individual post holes and locations where a concrete truck cannot practically reach the placement area. As volume increases, the bag count can become very large. Instead of assuming that every 20 kg bag makes the same volume, this calculator asks you to enter the manufacturer-stated mixed yield in litres. If a product states a yield of 10 litres, for example, one cubic metre would mathematically require 100 bags before waste because 1 m³ equals 1000 litres. Always use the current data sheet for the actual product you plan to buy.
For larger pours, compare bagged material with a current ready-mix quote. The calculator lets you enter both an A$/m³ ready-mix rate and an A$/bag price. Those figures are intentionally blank on load because product and delivery pricing can change by supplier, suburb, order size, access and service requirements. For another comparison, see the Concrete Bags Per Cubic Yard Calculator.
A concrete cost estimate is only meaningful when the price input matches the quote you are actually considering. A supply-only cubic-metre rate may not include delivery, small-load charges, waiting time, pumping, placement labour, reinforcement, formwork, excavation, base preparation, disposal, sealing or finishing. Enter the concrete rate quoted to you and treat the result as a concrete-material planning figure, not a full installed-project price.
For a broader budget, use the Total Concrete Cost Calculator or Concrete Cost Calculator alongside supplier and contractor quotes. Keep each cost category separate so you can compare quotes fairly.
The calculator does not determine whether your project needs a building permit, planning approval, engineering sign-off or a pre-pour inspection. Those requirements depend on the project type, location and scope. Confirm any required approvals and inspection hold points before booking concrete so the pour is not delayed on site.
Project-specific advice from your building surveyor, certifier, designer, engineer, builder or relevant authority should take priority over any online calculator. Check reinforcement, formwork, service penetrations, levels and inspection requirements before placement begins.
Outdoor concrete should not be treated as a volume-only problem. Patios, paths and driveways often need controlled falls so water moves toward an appropriate drainage path rather than toward a building or neighbouring property. The correct slope depends on the design and surrounding levels. Use the Concrete Slope Calculator to translate rise and run into percent slope, ratio and angle, but confirm the required drainage design for the site.
Site conditions, seasonal temperature, drainage, soil conditions and the intended structural use can all affect concrete detailing. An online calculator cannot assign an exposure classification, strength grade or mix specification. Cement Concrete & Aggregates Australia publishes technical information on concrete construction, residential slabs and saline environments. Use the project specification and current professional guidance rather than selecting strength or durability requirements solely from a location name.
Concrete work can create hazards during mixing, placing, cutting, drilling, grinding and demolition. WorkSafe Victoria identifies crystalline silica as a hazard in concrete and other construction materials, particularly when dust is generated by mechanical processing. The safest work method is not determined by this calculator. Follow current Victorian workplace safety requirements, use appropriate dust controls and protective equipment, and use qualified trades where required.
| Example Project | Dimensions | Base Volume | Before Waste? |
|---|---|---|---|
| Small pad | 3 m × 3 m × 100 mm | 0.90 m³ | Yes |
| Patio area | 5 m × 4 m × 100 mm | 2.00 m³ | Yes |
| Path | 12 m × 1 m × 100 mm | 1.20 m³ | Yes |
| Thicker slab example | 6 m × 4 m × 125 mm | 3.00 m³ | Yes |
These examples illustrate the mathematics only. They are not recommendations for slab thickness or construction design. Use the required project thickness and specification for your job.
A reliable pour starts before the truck arrives. Recheck the forms and excavation, confirm levels and thickness, make sure reinforcement and embedded items are complete, then compare the calculator result with the supplier order quantity. Plan access for wheelbarrows, chutes or a pump, and make sure the crew can place, compact, strike off and finish the concrete without unnecessary delay.
After placement, curing is part of the job rather than an optional extra. Cement Concrete & Aggregates Australia includes handling and placing, compaction, finishing, curing and hot- and cold-weather concreting in its Guide to Concrete Construction. Follow the project specification and suitable curing practice for the concrete and site conditions.
If you are building a larger estimate, combine this page with the Concrete Volume Calculator, Concrete Thickness Calculator, Concrete Coverage Calculator, Concrete Patio Calculator, Concrete Quantity Calculator and Concrete Foundation Calculator. Each tool focuses on a different part of the estimating process, so the underlying measurements should remain consistent between calculators.
Use the calculator result as one input in a broader pre-pour planning and ordering check.
Use the required dimensions, thickness, reinforcement and concrete specification from the appropriate project documents.
Check truck or pump access, placement route, washout arrangements and any supplier delivery requirements.
Check with the relevant certifier or authority whether approvals or inspections apply before concrete is placed.
Quick answers about concrete pour volume, bags, waste, pricing and site planning.
Multiply length in metres by width in metres by depth in metres. If the thickness is in millimetres, divide it by 1000 first.
The visible 0 is a placeholder only. The real field is empty, so when you type 5 you get 5 rather than 05. Reset returns the field to that empty placeholder state.
Only if you enter a waste percentage. The base volume and volume-with-waste are shown separately so you can see the effect of the allowance.
There is no universal percentage. The appropriate contingency depends on measurement accuracy, excavation, formwork, thickenings and site conditions. Re-measure before ordering.
Yes, if the patio can be represented by the available shapes and you know the required thickness. For more patio-specific inputs, use the Concrete Patio Calculator.
You can use it to estimate geometric concrete volume from known dimensions. It does not determine driveway thickness, reinforcement, crossover requirements, drainage or approvals.
Divide 1000 litres by the manufacturer-stated mixed yield per bag, then round up to whole bags. Different products can have different yields.
Only to the extent that the rate you enter includes delivery. Use the exact basis of your supplier quote and keep other costs separate.
No. Use the strength and specification required by the engineer, plans, builder, certifier or other applicable project documents.
Yes. Select Round Pad and enter diameter, depth and quantity.
Yes. Enter the total footing length, width and depth. The tool calculates volume only and does not design the footing.
Yes. Select Post Holes and enter hole diameter, depth and quantity. A dedicated fence-post calculator is also internally linked for more detailed planning.
Yes. Where approvals, engineering sign-off or inspections apply, confirm them before concrete is placed. The calculator cannot determine those requirements for your project.
Concrete and delivery costs can change by supplier, order size, location, access and service requirements. A current quote is more useful than a fixed online price.
No. It is a quantity and cost-planning tool only. Structural dimensions, reinforcement, strength, exposure requirements and approvals must come from the appropriate project information and professionals.
Use current industry and safety information alongside any online concrete calculation.
Australian guidance covering specifying, ordering, handling, placing, compaction, finishing, curing and hot- and cold-weather concreting.
Read The CCAA GuideIndustry information about curing concrete after placement to support the intended performance of the finished concrete.
Read Curing GuidanceAustralian concrete information covering slabs, construction and technical guidance.
Visit CCAANational guidance about silica hazards and risk controls when concrete and other silica-containing construction materials are cut, ground or disturbed.
Read Silica Guidance