Calculate Concrete In Cubic Feet From Direct CFT, Feet-And-Inches Dimensions, Square Feet Plus Thickness, Or Round Holes. Then Convert The Same Quantity To Cubic Metres, Cubic Yards And Litres, Add An Optional Site Allowance, Estimate Bags From Product Yield, And Build A Simple Concrete-Only Cost Check.
Use Direct Cubic Feet When You Already Know The Volume, Or Calculate CFT From Project Dimensions. Every Number Field Starts Empty: The Faint 0 Is Only A Placeholder, So Typing 5 Gives 5 — Not 05.
Your Result Will Appear Here After You Press Calculate Concrete CFT.
CFT Means Cubic Feet. The Calculator Also Converts The Same Volume To m³, yd³ And Litres So One Measurement Can Be Checked Across Different Plans, Product Information And Supplier Quotes.
A Concrete Volume Needs Three Dimensions. When Length And Width Are In Feet But Thickness Is In Inches, Convert Thickness To Feet Before Multiplying. The Diagram Below Uses A Simple 10 ft × 6 ft × 4 in Example.
One Calculation Is Presented In Several Volume Units So You Can Move Between Imperial Dimensions, Metric Concrete Ordering And Packaged Product Yield Without Rebuilding The Takeoff.
See Base And Allowance-Adjusted Concrete Volume In Cubic Feet.
Convert The CFT Quantity To Metric Volume For Cross-Checking Quotes And Plans.
See The Same Concrete Volume In Cubic Yards Without A Separate Converter.
Use Litres To Compare The Project Requirement With Packaged Concrete Yield.
Add Your Own Percentage For Real-Site Differences Instead Of A Hidden Preset.
Apply Your Own A$/m³ Rate To The Rounded Or Calculated Order Volume.
A Concrete CFT Calculator works out concrete volume in cubic feet. CFT is a common construction shorthand for cubic feet, and it is useful whenever project measurements are taken from drawings, tape measurements or legacy specifications written in feet and inches. The important idea is that CFT is a volume, not an area. A slab may cover a certain number of square feet, but the quantity of concrete depends on the thickness as well. A trench may have a long plan length, but its width and depth determine how much space the concrete actually occupies.
This page keeps the cubic-foot result visible while also converting the same amount to cubic metres, cubic yards and litres. That matters because different parts of a concrete job can use different units. A drawing may show feet and inches, a supplier quote may use cubic metres, a U.S.-style reference may use cubic yards, and bagged concrete data may describe mixed yield in litres. Converting from one geometric calculation helps reduce repeated manual conversions and makes it easier to compare quantities.
The calculator does not assume a project thickness, waste percentage, concrete rate or packaged-concrete yield. Enter the values that belong to your actual project. This is especially important for thickness: changing a slab from 4 inches to 6 inches increases the volume by 50% when length and width stay the same. Small measurement assumptions can become large ordering differences over a wide area.
CFT means cubic feet, written as ft³. One cubic foot is the volume of a cube measuring one foot long, one foot wide and one foot high. In concrete estimating, CFT therefore describes three-dimensional space. A 1 ft × 1 ft × 1 ft block is 1 CFT. A 10 ft × 5 ft slab that is 0.5 ft thick is 25 CFT because 10 × 5 × 0.5 = 25.
Do not confuse CFT with square feet. Square feet (ft²) measures surface area. Cubic feet (ft³) measures volume. To move from square feet to concrete CFT, multiply the area by the concrete thickness in feet. If thickness is in inches, divide by 12 first.
CFT = Length (ft) × Width (ft) × Depth (ft)When all three dimensions are already in feet, multiply them directly. When thickness or another dimension is in inches, convert the inch portion to feet by dividing by 12. For example, 4 inches is 4 ÷ 12 = 0.3333 ft. A 10 ft × 6 ft slab at 4 inches thick therefore has a base volume of about 20 ft³.
The Feet + Inches mode accepts separate feet and extra-inches boxes for length and width, which is useful for real tape measurements such as 12 ft 7 in. It combines those values internally as 12 + 7/12 feet. Thickness is entered in inches because shallow concrete work is often easier to describe that way. The calculation stays transparent: every measurement becomes feet before the three dimensions are multiplied.
If you already know surface area in square feet, use the Area + Thickness mode. This is useful for simple slabs, floors, paths and pads where area has already been measured by another tool or taken from a plan. Convert thickness from inches to feet, then multiply by square feet.
Concrete CFT = Area (ft²) × Thickness (in) ÷ 12For example, 120 ft² at 4 inches thick gives 120 × 4 ÷ 12 = 40 ft³. If the same 120 ft² area were 6 inches thick, it would need 60 ft³. That comparison shows why thickness is one of the most important inputs in a concrete takeoff.
| Thickness | Depth In Feet | CFT Per 100 ft² | m³ Per 100 ft² | yd³ Per 100 ft² |
|---|---|---|---|---|
| 2 in | 0.1667 ft | 16.67 ft³ | 0.472 m³ | 0.617 yd³ |
| 3 in | 0.2500 ft | 25.00 ft³ | 0.708 m³ | 0.926 yd³ |
| 4 in | 0.3333 ft | 33.33 ft³ | 0.944 m³ | 1.235 yd³ |
| 5 in | 0.4167 ft | 41.67 ft³ | 1.180 m³ | 1.543 yd³ |
| 6 in | 0.5000 ft | 50.00 ft³ | 1.416 m³ | 1.852 yd³ |
| 8 in | 0.6667 ft | 66.67 ft³ | 1.888 m³ | 2.469 yd³ |
The exact conversion used by the calculator is 1 ft³ = 0.028316846592 m³. Multiply cubic feet by that factor to obtain cubic metres. The reverse calculation divides cubic metres by the same factor. For quick field estimates you may see rounded factors, but keeping the full conversion factor inside the calculator reduces conversion drift across larger volumes.
Cubic Metres = Cubic Feet × 0.028316846592For example, 100 ft³ is 2.8316846592 m³ before any rounding. If the project requires an allowance for site variation, apply that allowance to the base geometric volume first and then convert the adjusted quantity. This page shows both base CFT and allowance-adjusted CFT so you can distinguish geometry from planning contingency.
One cubic yard contains exactly 27 cubic feet because a yard is 3 feet and volume scales in three dimensions: 3 × 3 × 3 = 27. Therefore, divide CFT by 27 to convert concrete volume to cubic yards. Multiply cubic yards by 27 to go in the opposite direction.
Cubic Yards = Cubic Feet ÷ 27If you mainly work with cubic-yard quantities, the dedicated Cubic Feet to Cubic Yards Concrete Calculator provides a conversion-focused workflow. This CFT page is broader because it also calculates volume directly from project dimensions and shows metric, litres, bags and optional cost.
Litres are useful when comparing a project volume with the stated mixed yield of packaged concrete. Because 1 m³ equals 1000 litres, one cubic foot equals approximately 28.3168 litres. The calculator converts the allowance-adjusted CFT to litres, then divides by the yield you enter in litres per bag. It always rounds the bag count upward because partial packaged bags are not normally a practical purchasing unit.
Do not estimate bag count from bag weight alone. A 20 kg bag is a dry product mass, while concrete yield is a mixed volume. Different products can have different formulations and yields. Use the yield stated for the exact product you intend to use. For a bag-focused workflow, open the Concrete Bag Estimator or Concrete Bag Yield Calculator.
A rectangular slab is the simplest CFT calculation: length × width × thickness, with all values in feet. Measure the concrete area at the formwork, not only from a rough nominal description. If the slab contains thickened edges, beams, steps or isolated pads, calculate those extra volumes separately unless they are already included in the main dimensions.
For a driveway or path, divide irregular geometry into simple sections. A long walkway can be broken into rectangles. A driveway that flares near the road can be separated into a main rectangle and one or more smaller shapes. Calculate each section, then add the CFT values. Dedicated tools such as the Concrete Driveway Calculator and Concrete Sidewalk Calculator can make those project-specific takeoffs easier.
Footings and trenches also use length × width × depth. Their challenge is usually not the formula but the excavation. Soil can break away, trench widths can vary and bottoms can be uneven. Measure representative widths and depths along the run rather than assuming every section is identical. When dimensions vary materially, split the footing into several sections and add their CFT.
Do not treat the calculator as a structural design tool. Required footing width, depth, reinforcement and concrete specification depend on the actual building or engineering requirements. This page only converts dimensions into quantity.
Post holes, piers and round pads use the volume of a cylinder. Convert the diameter to feet, divide by two to obtain radius, square the radius, multiply by π, then multiply by depth. The Round Hole mode accepts diameter in inches and depth as feet plus extra inches because those are convenient field measurements.
CFT = π × (Diameter In Feet ÷ 2)² × Depth In Feet × QuantityThe calculation uses the full cylindrical hole. If a large post or other object displaces a meaningful amount of concrete, calculate its volume separately and deduct it only when that is appropriate for your project. Small estimating shortcuts should not replace engineering or installation requirements.
A mathematical volume assumes perfect geometry. Real forms, trenches and excavations are rarely perfect. An allowance can cover small measurement differences, rough ground, minor spillage and other site variability. There is no universal percentage that fits every project, so the calculator leaves the field empty and lets you enter the allowance you want.
Better measurement should come before a larger contingency. If a project has clearly defined dimensions and accurate formwork, you may choose a smaller allowance. If excavation is irregular, split the work into more measured sections rather than masking uncertainty with one large percentage. The result section separates base CFT from allowance-adjusted CFT so the effect of the allowance stays visible.
Concrete suppliers may apply minimum order quantities or practical increments. The calculator therefore offers optional rounding in cubic metres after the allowance has been applied. Select no rounding if you only want the exact calculated planning volume. Select an increment if you want to see an order-friendly quantity for comparison with a quote. The available options are not a statement of any supplier's rules; confirm the actual order increment, minimum load and delivery conditions with the supplier you plan to use.
If you enter an A$/m³ concrete rate, the calculator multiplies it by the rounded order volume. If no rounding is selected, it uses the allowance-adjusted cubic metres. This produces a concrete-only material estimate, not a complete project budget. Labour, pumping, delivery surcharges, short-load fees, reinforcement, base preparation, formwork, excavation, finishing, permits, access constraints and disposal can all affect total project cost.
For cost planning, use a current supplier quote rather than an old online average. The calculator intentionally leaves the price field empty so it does not imply a national fixed rate.
Suppose a slab measures 18 ft long, 10 ft wide and 5 inches thick. Convert 5 inches to feet: 5 ÷ 12 = 0.4167 ft. The base CFT is 18 × 10 × 0.4167 ≈ 75 ft³. That volume converts to about 2.124 m³ and 2.778 yd³. If you add an 8% allowance, the planning quantity becomes about 81 ft³, or 2.294 m³. The calculator performs those conversions together and can then estimate bags or cost if you provide product yield or a concrete rate.
Assume a floor area of 240 ft² with a 4-inch thickness. Divide 4 by 12 to obtain 0.3333 ft. Multiply 240 × 0.3333 to get 80 ft³. The same base quantity is about 2.265 m³ or 2.963 yd³. If the floor contains thickened strips or local pads, calculate those additional volumes separately and add them to the base floor volume.
Consider eight round holes, each 12 inches in diameter and 3 feet deep. A 12-inch diameter is 1 foot, so the radius is 0.5 ft. One hole is π × 0.5² × 3 ≈ 2.356 ft³. Eight holes therefore require about 18.85 ft³ before any allowance. The calculator can show the same quantity in litres, which is especially helpful if you intend to use bagged concrete.
| Concrete Volume | Cubic Metres | Cubic Yards | Litres |
|---|---|---|---|
| 1 ft³ | 0.0283 m³ | 0.0370 yd³ | 28.32 L |
| 5 ft³ | 0.1416 m³ | 0.1852 yd³ | 141.58 L |
| 10 ft³ | 0.2832 m³ | 0.3704 yd³ | 283.17 L |
| 20 ft³ | 0.5663 m³ | 0.7407 yd³ | 566.34 L |
| 27 ft³ | 0.7646 m³ | 1.0000 yd³ | 764.55 L |
| 50 ft³ | 1.4158 m³ | 1.8519 yd³ | 1,415.84 L |
| 100 ft³ | 2.8317 m³ | 3.7037 yd³ | 2,831.68 L |
| 200 ft³ | 5.6634 m³ | 7.4074 yd³ | 5,663.37 L |
Irregular projects should be divided into smaller shapes that are easier to measure. For a path with changing width, split the length into sections and calculate each rectangle. For a slab with a cut-out, calculate the full rectangle and subtract the cut-out volume if it truly will not contain concrete. For curved areas, use circle or sector geometry where appropriate. The aim is to make the geometry reflect the space being filled rather than forcing an irregular project into one inaccurate rectangle.
If your plans mix metric and imperial measurements, the Concrete Measurement Calculator is useful for cross-checking units. If you are proportioning site-mixed materials rather than ordering ready-mixed or packaged concrete, use the Concrete Mix Calculator.
Keeping both units visible reduces the risk of losing the original takeoff. If your geometry is measured in feet, CFT is a natural result because it comes directly from the measurements. Converting that result to m³ lets you compare it with metric product data or a metric quote without changing the geometry itself. If a later check reveals a measurement error, you can correct the source dimension and regenerate every unit together.
The conversion factors used here follow established unit relationships. NIST lists the cubic foot to cubic metre factor as 2.831685 × 10⁻² and the cubic yard to cubic metre factor as 7.645549 × 10⁻¹. This calculator uses the more precise exact foot-based conversion internally for ft³ to m³, then derives litres and yd³ from the same base result.
These Simple Relationships Make It Easier To Check A Result Before Ordering Or Buying Material.
Divide Inches By 12 Before Multiplying A Depth With Feet-Based Dimensions.
Divide Cubic Feet By 27 To Convert CFT To Cubic Yards.
Multiply CFT By The Cubic-Foot-To-Cubic-Metre Conversion Factor.
One Cubic Foot Is About 28.3168 Litres Of Volume.
Common Questions About Cubic Feet, Concrete Volume, Feet And Inches, m³, yd³, Bags And Waste.
It is a volume calculator that expresses concrete quantity in cubic feet. This page can calculate CFT directly or derive it from rectangular, area-based or round-hole measurements.
CFT stands for cubic feet, written ft³. It measures three-dimensional volume rather than surface area.
For a rectangular volume, multiply length × width × depth after converting every dimension to feet. If depth is in inches, divide it by 12 first.
Multiply square feet by concrete thickness in feet. If thickness is in inches, use area × inches ÷ 12.
One cubic metre is approximately 35.3147 cubic feet. The calculator uses the exact foot-to-metre relationship internally.
There are 27 cubic feet in one cubic yard.
One cubic foot is approximately 28.3168 litres.
Yes. Use Feet + Inches for length, width and thickness, or Area + Thickness when you already know square feet.
Yes. Use Round Hole mode and enter diameter, depth and number of holes. The calculator uses cylindrical volume.
The zero is only a placeholder. The field is actually empty, so typing 5 enters 5 rather than 05. Reset restores the empty placeholder state.
No. The waste or contingency field starts empty. Enter the allowance you want based on your project and measurements.
Yes. Enter the mixed yield in litres per bag. The calculator converts the allowance-adjusted volume to litres and rounds the required bag count upward.
Yes. Enter an A$/m³ rate and the calculator applies it to the selected order volume. The result is concrete-only and does not include broader project costs.
Use the unit required by your supplier. If your measurements are in feet, CFT is useful for the takeoff, while the calculator also provides m³ so you can communicate the converted volume where metric ordering is required.
No. It estimates volume only. Slab thickness, footing dimensions, reinforcement, strength and other structural requirements must come from the appropriate project documents or qualified advice.
Use Authoritative Unit References, Product Data And Project Requirements Alongside The Calculator.
Reference Conversion Factors For Cubic Feet, Cubic Yards And Cubic Metres.
View Volume Conversion FactorsPackaged Concrete Product Information, Applications And Mixing Guidance.
View Concrete Mix InformationMeasure Concrete With Metric And Imperial Inputs And Cross-Check Project Volume.
Open Measurement CalculatorTurn Concrete Volume Into Whole Bags Using The Exact Yield Of Your Product.
Open Bag Estimator