Skip to content
PrintReckonSupport Us

3D print cost calculator

Cost per part

$5.15

Total for the print $5.15. Suggested price at a 50% margin: $10.30 per part.

Filament

$2.20

$0.0220 per gram

Electricity

$0.14

0.800 kWh

Machine time

$2.40

Consumables

$0.00

Labour

$0.00

Failure allowance (8%)

$0.41

x1.0870 on the exposed cost

What you paid, divided by the filament payload — not the shipping weight.
Your slicer's figure. It is only as good as the density in the loaded profile.
Sets the wattage below to this site's stored figure for that machine.
Steady-state while printing — never the power-supply rating.
Published national averages, compiled August 2026 from published national-average residential electricity price surveys.
Your own bill beats every average in the list above.
Prints started versus prints kept, measured over a month.
Wear and amortisation. Zero is the one value that is certainly wrong.
Adhesive, isopropyl, a share of a plate or a nozzle.
Slicing, plate prep, removal, support cleanup, finishing.
Gross margin on the selling price, not markup on cost.
1 assumes a failure wastes the whole print. 0.5 models catching failures early.

What this calculation assumed

  • multiplier = 1 + w*f/(1-f) where f = 8% and a failed attempt is assumed to waste its FULL material and machine time (w = 1), which makes the surcharge exactly 1/(1-f). Expected attempts per good part = 1/(1-f) = 1.0870.
  • Wattage: repeatedly reported plug-meter figures for this model — Bambu Lab A1.
  • Electricity rate: United States national average, USD 0.175/kWh, compiled August 2026 from published national-average residential electricity price surveys. Your own bill beats this figure.
  • Resale price: gross margin on the selling price (price = cost / (1 - margin)), not markup on cost. The same suggestion is a 100% markup on cost, and leaves $5.15 per part.

Nothing looks wrong with these inputs

Wattage, failure rate and machine rate are all inside the ranges this site's printer and material data considers ordinary. That is not a promise the figures are right for your machine — it is only a statement that none of them is obviously wrong.

Get corrections to these figures

Once a month: newly metered printer wattages, corrected filament densities and prices, and what moved in the electricity table. The numbers in this calculator change when the data behind them does.

One email a month. Unsubscribe from any of them.

A print's cost is four numbers added together, and most published calculators show you only the first. This page explains each term, what it is sensitive to, and what a reasonable value looks like — so that when the calculator returns a figure you can tell whether to believe it.

Term one: filament

Filament cost is grams used multiplied by price per gram, and the only genuinely difficult part is the grams.

The grams figure you paste in comes from your slicer, and your slicer got it from the density field in the loaded filament profile. Leave that field at plain PLA's 1.24 g/cm³ while printing a matte grade at 1.30 or a metal-filled one at 3.2 and every cost this tool returns is wrong by the same ratio — which makes correcting that one field the highest-value thing on this list.

Price per gram is straightforward arithmetic on a 1 kg spool, but check what the spool weighs empty before assuming you got a kilogram of plastic. Reels vary from roughly 140 g of cardboard to about 250 g of plastic, and a spool sold as "1 kg" is a kilogram of filament, not a kilogram of package.

Term two: electricity

Electricity is wattage multiplied by hours multiplied by your rate, and every one of those three varies enough to matter.

Wattage should be the steady-state figure while printing, not the printer's power-supply rating. The rating is a ceiling — a machine with a 350 W supply typically settles somewhere between 60 and 130 W once the bed is up to temperature, and quoting the rating instead overstates the print by several times. The printer pages on this site record which of those two a figure is, and mark estimates as estimates.

Your rate is the one input nobody else can supply. Published national averages across the regions listed in the rate reference span roughly four to one, so an estimate computed at one country's average can be double or half the truth somewhere else. The calculator asks rather than assuming.

Term three: failures

A print that fails at 80% consumed 80% of the filament and 80% of the electricity and produced nothing. If you print for yourself, ignoring this is a reasonable choice. If you print for other people, it is how a job that looked profitable stops being profitable.

The honest way to set a failure allowance is to measure it: count the prints you started and the prints you kept over a month. A 5% failure rate means dividing your per-part cost by 0.95, which is a small correction. A 20% rate — common with a difficult material on an open-frame machine — is a 25% increase in real cost, which is not small at all.

Term four: machine time

Nozzles wear, belts stretch, build plates get scratched, hotends get replaced, and the machine itself has a finite life. Amortised over thousands of hours it is a small hourly figure, and it is the term most often left out entirely.

The useful way to think about it is a rough hourly rate rather than a precise depreciation model: purchase price spread over the hours you expect before replacement, plus consumables. Even a rough number is better than a zero, because zero is the only value that is certainly wrong.

Sanity-checking the result

Put a finished print on the scale and divide by what the slicer predicted. The ratio you get is your own machine's correction factor, and it beats any published average because it silently folds in purge, prime lines, supports and every small extrusion inaccuracy no model captures.

If you are working out material quantities for something other than a print — how much paint, concrete or tile a job needs — our sister site GetTheAmount runs the same kind of quantity-and-cost calculation at house scale.

The two purchases that make this number yours

Product searches rather than specific listings, because a listing identifier goes stale silently.

  • A plug-in energy meter

    A socket meter that reads watts and accumulated kilowatt-hours.

    31 of the 42 machines in this site's printer data carry an estimated wattage rather than a measured one. Twenty minutes with one of these replaces the estimate in the cost calculator with your own machine's real figure, and the electricity term stops being a guess.

    Find one
  • A kitchen scale reading to 1 g

    A flat scale with at least 5 kg capacity and 1 g resolution.

    The spool-remaining mode subtracts the reel from the gross weight, so it needs a scale that takes a whole spool. One gram is ample precision — the uncertainty is always in the reel weight, never in the weighing. It also gives you the weighed-versus-slicer ratio, which is the most useful number on this site.

    Find one