concrete calculator · Utah

Concrete Calculator — Utah

Estimate how much concrete you need for a slab, footing, wall, column, stairs, or curb. Enter the shape and dimensions, and this calculator returns the volume in cubic yards plus the number of 60-lb and 80-lb bags — with a waste allowance you control and every step of the math shown. Quantities are the same nationwide; this page adds a Utah price estimate for delivered material, scaled from national averages by a regional cost index.

Quick answer

A 10×10 ft slab at 4 in needs ~1.23 cu yd of concrete before waste — order ~1.36 cu yd (≈ 62 bags of 80-lb) with 10% waste.

You order: 1.36 cubic yardsStandard industry factors

Estimated concrete price · Utah

~$168 / cu yd

Typically $133–$204 per cu yd delivered in Utah. A 10 × 10 ft slab at 4 in pour (~1.36 cubic yards) runs about $228, plus a roughly $150 short-load fee under a full truck.

Regional estimate, not a firm quote — national averages scaled by Utah’s cost index (1.02×, measured confidence). How this is calculated →

Enter your project

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Start with a preset

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ft
in
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$ / cu yd

Live result

1.36 cubic yards

What you order

  • Concrete volume1.23 cu yd
  • Waste allowance (10%)+0.12 cu yd
  • Order this much (ready-mix)1.36 cu yd
  • Or 80-lb bags62 bags
  • Or 60-lb bags82 bags
Standard industry factors · confirm with your supplier

The model, unpacked

Scenario breakdown

10 × 10 ft slab at 4 in

Concrete volume

1.23 cu yd

Waste allowance (10%)

+0.12 cu yd

Order this much (ready-mix)

1.36 cu yd

Or 80-lb bags

62 bags

Or 60-lb bags

82 bags

You may also need

Planning a full project? Most jobs use more than one material. You will often pair gravel, paver base and sand with concrete on the same site.

How this concrete calculator works

Every estimate starts from volume. The calculator measures the space your pour will fill, converts it to cubic feet, and divides by 27 to reach cubic yards, the unit ready-mix suppliers sell by. One cubic yard equals 27 cubic feet, because a yard is three feet and three cubed is 27.

The volume formula depends on the shape. A slab, footing, wall, or curb is length times width times thickness, with the thickness converted from inches to feet. A round column uses pi times radius squared times height, which is why a 12-inch column holds far less concrete than a 12-inch-square form of the same height. Stairs are the sum of each step's wedge plus the platform, which the tool builds up step by step.

Bag counts come from published manufacturer yields. An 80-lb bag of standard concrete mix yields about 0.60 cubic feet, a 60-lb bag about 0.45, and a 40-lb bag about 0.30. Dividing your total cubic feet by the per-bag yield gives the bag count. That is why one cubic yard is roughly 45 eighty-pound bags or 60 sixty-pound bags.

Finally, the tool adds a waste allowance you set, 10 percent by default. Concrete is unforgiving once it is mixed, so ordering slightly long is normal practice. Every step of this math is shown in the breakdown above, and the factors it uses are documented on the methodology page.

Choosing the right slab thickness

Thickness is the single biggest driver of how much concrete you order, because it multiplies volume directly. A slab at 6 inches uses 50 percent more concrete than the same slab at 4 inches. Getting the thickness right first, before you calculate quantity, keeps your order honest.

Four inches is the standard for patios, walkways, garden-shed floors, and other foot-traffic surfaces. It resists cracking under normal use when poured over a compacted base. Most residential flatwork lands here.

Five to six inches is the range for driveways, garage slabs, and any surface that carries a car, truck, or trailer. The extra depth spreads wheel loads and resists the cracking that thin slabs develop under repeated vehicle weight. If heavy trucks or RVs are in the picture, stay at the top of that range and add reinforcement.

Footings and structural elements follow their own rules and local code, and are usually deeper still. When in doubt on a load-bearing pour, size it to the plan or to a local building department's minimums rather than to a rule of thumb, then use the calculator to turn that thickness into cubic yards.

Concrete strength: choosing a mix and PSI

Concrete is specified by its compressive strength, measured in pounds per square inch, or PSI, at 28 days of curing. The quantity you order does not change with strength, since a cubic yard is a cubic yard, but the mix you ask for does, so it is worth settling before you call the plant. A higher PSI means more cement in the mix, a harder and more durable result, and a higher price per yard.

Most residential flatwork lands between 3,000 and 4,000 PSI. A patio or walkway is often fine at 3,000 to 3,500, while a driveway, a garage floor, or anything carrying vehicle weight is usually specified at 4,000 and sometimes higher. Footings and structural work follow the plan or local code. When you are unsure, 4,000 PSI is a safe, common choice for a durable home slab.

Bagged concrete mix is formulated to a set strength too. A standard bagged mix commonly reaches about 4,000 PSI at 28 days, and fast-setting bagged products reach a working strength much sooner for posts and small repairs. Read the bag, because the strength and set time vary by product.

Strength is not the only mix choice. In cold-winter regions, an air-entrained mix with tiny trapped air bubbles resists the freeze-thaw damage that spalls a driveway surface, and your supplier can add fiber or adjust the mix for a specific job. Ask for the PSI and any admixtures when you order ready-mix. The calculator sizes the volume, and the plant batches it to the strength you request.

Bags versus ready-mix: where the crossover is

The practical break point is about one cubic yard. Below it, bagged concrete mix is convenient and there is no delivery to schedule. Above it, ready-mix delivered by the cubic yard is the better call, because mixing 45 or more bags by hand for a single pour is slow, physically punishing, and risks cold joints if the pour outruns your mixing.

Bags shine for small, discrete jobs: setting fence posts, a few stair treads, a small pad, or a repair. You buy only what you need, store the rest, and mix on your own schedule. The trade-off is labor and consistency, since hand-mixed batches vary more than plant-batched concrete.

Ready-mix shines once volume climbs. The concrete arrives at a consistent, specified strength, a single pour avoids cold joints, and the labor is loading the chute rather than opening bags. The trade-offs are that you must be ready when the truck arrives, you may pay a short-load fee under a full truck, and you order in whole-yard increments.

The calculator gives you both views at once: the cubic yards for a ready-mix order and the equivalent 60- and 80-lb bag counts. That lets you see exactly where your project sits relative to the crossover and choose the cheaper, easier path for your size of job.

How much waste to add

A waste allowance is not padding for its own sake. It covers the real losses between the ideal volume and what a pour actually consumes. For concrete, 5 to 10 percent is the normal range, and this calculator defaults to 10 percent.

The losses come from several places. Subgrade is never perfectly flat, so low spots pull extra volume. Excavation often over-digs slightly. Some concrete is lost to spillage, to the chute and wheelbarrow, and to the forms flexing under the weight of a full pour. On a rough or sloping site, those add up quickly.

Running short is far worse than ordering a little long, and this is the gotcha that sets concrete apart from a dry material. Once the pour is underway you cannot simply add more partway through. If a pour outruns its supply, the concrete already placed begins to set before the next batch arrives, creating a cold joint, a visible and structurally weaker seam. A second small delivery to finish a pour is both slow and, per yard, expensive.

Match the allowance to the site. A smooth, well-prepared base with tight forms can run at 5 percent. A rough subgrade, hand-dug footings, or an awkward-access pour justifies the full 10 percent or slightly more. Set the slider to reflect your conditions, and the calculator folds it into the final order quantity.

Ordering ready-mix: trucks, short loads, and timing

Ready-mix is sold and delivered by the cubic yard, and the logistics of the truck shape how you should order. A full-size mixer holds up to 10 cubic yards, and most standard loads run 8 to 10. Knowing that ceiling helps you plan large pours and see when a job needs more than one truck.

Orders well under a full truck often carry a short-load fee, because the supplier is moving a truck for a partial load. That is one more reason the bag-versus-ready-mix crossover matters, since a tiny ready-mix order can be inefficient. When your volume is modestly below a full truck, it is worth confirming the plant's short-load policy before you book.

Timing is the part first-time buyers underestimate. Concrete starts to set soon after it is batched, so the site, forms, and crew must be ready when the truck arrives. Have your base compacted, forms braced, tools staged, and enough hands to place and finish before the pour outpaces you. Hot, dry, or windy weather shortens your working time.

Order the calculator's total in whole yards, rounding up rather than down. It is standard practice to finish a pour with a little concrete to spare, and short is the one outcome you cannot fix cleanly once the truck has left.

Why concrete prices vary by region

The quantity of concrete a project needs is the same in every state, since a cubic yard is a cubic yard. The delivered price is not. That regional gap is why this calculator pairs national quantity math with a state-level price estimate.

Several forces move the delivered price. Cement and aggregate are heavy and cheap relative to their weight, so freight from the plant to your site is a real share of the cost, and it rises with distance and fuel prices. Local demand matters too, and in busy metros with full order books, plants price higher than in slower markets. Labor, permitting, and the local cost of doing business all feed in as well.

Because those forces track broader regional construction costs, this page estimates a state's delivered price by scaling a national average by a published regional cost index. It is an estimate meant for budgeting, not a firm local quote, and the methodology page explains exactly how the index is applied and what it is based on.

For an accurate number on a specific job, get quotes from two or three local ready-mix suppliers. Use this page to know the quantity precisely, to set a realistic regional budget before you call, and to sanity-check the quotes you receive.

Reinforcement, joints, and finishing

The calculator sizes the concrete itself, but a durable pour depends on what goes in it and on top of it. Reinforcement, control joints, and finishing are where a slab either lasts for decades or cracks in its first season, so plan them alongside the quantity.

Reinforcement resists the tension that concrete is weak in. Welded wire mesh is common for residential slabs and patios, while rebar on a grid is used for driveways, structural slabs, and anything carrying heavy loads. Position it in the middle third of the slab's depth, not lying on the subgrade, because reinforcement that sits on the ground does almost nothing. Fiber-reinforced mixes are another option your supplier can batch in.

Control joints give cracks a planned place to happen. Concrete shrinks as it cures and will crack somewhere, so tooled or saw-cut joints, spaced in feet at roughly two to three times the slab thickness in inches, steer that cracking into straight, hidden lines instead of random surface breaks. Cut them early, within the first day, before random cracks form.

Finishing and curing set the surface for good. Screed to level, float to bring up the paste, then choose a texture, a broom finish for grip on driveways and walkways or a smoother trowel finish where slip is less of a concern. Then cure by keeping the surface damp or covered for several days so the concrete gains strength slowly. Rushed curing in hot, dry wind is a leading cause of weak, dusty, or crazed surfaces.

Common concrete estimating mistakes

Most ordering errors are avoidable, and they cluster in a few predictable places. Knowing them ahead of time is the difference between a smooth pour and a scramble on the day.

The most common is skipping waste entirely. Ordering the exact calculated volume leaves no margin for an uneven subgrade or spillage, and running short mid-pour creates a cold joint. Always carry 5 to 10 percent. The opposite error, padding by 25 percent to be safe, wastes money and leaves you with concrete you must dispose of before it sets.

Unit mix-ups are next. Thickness is entered in inches while length and width are in feet, and forgetting to keep those straight throws the volume off by an order of magnitude. This calculator handles the conversion, but double-check that a 4 means four inches of thickness, not four feet.

Shape errors bite on anything that is not a plain rectangle. Round columns follow pi times radius squared times height, so estimating them as square forms over-orders badly. Stairs are a stack of wedges plus a platform, not a simple box. Let the tool compute these rather than approximating by eye.

Finally, people forget the subgrade and the forms. A base that has not been compacted will settle and pull extra concrete, and forms that are not braced will bow outward under a full pour and quietly increase the volume you need. Prepare the base, brace the forms, then trust the number the calculator gives you.

Interpret the output

What makes this move?

A trustworthy estimate explains the levers behind the number. These are the factors that change how much you need to order.

01

Thickness dominates

A slab at 6 in needs 50% more concrete than the same slab at 4 in — depth is a linear multiplier on volume.

02

Shape matters

Round columns use πr², so a 12-in column holds far less concrete than a 12-in-square form of the same height.

03

Bags vs ready-mix

Under about 1 cubic yard, bags are practical. Above it, ready-mix is cheaper per yard and avoids mixing 60+ bags by hand.

FAQ

Common questions

Straight answers about quantities, conversions, and how much to order — no lead-gen fog.

45 — each 80-lb bag yields about 0.60 cu ft, and 27 ÷ 0.60 = 45. A 60-lb bag yields about 0.45 cu ft, so 60 per cubic yard.