TryBuildCalc

Plastic Landscape Edging Calculator (Rolls & Stakes for Flexible Edging)

Size plastic roll edging and stakes from your bed's real perimeter.

Inputs

Bed / Border Shape

Bed Shape

ℹ️Overall rectangular footprint of the bed or border. Perimeter = 2 x (length + width).

💡Total COMBINED width of any gaps where no edging is installed, such as a path crossing the border. Leave at 0 for none.

Edging Material

▾

ℹ️Sets the roll/section sizes offered below, whether stakes and splice connectors apply, and (for rigid strip edging) the joint overlap that reduces effective coverage per section.

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💡Real installer specs vary by brand — check your specific product's installation guide rather than trusting this default.

in

💡Tighten spacing on curves or in soft/sandy soil; widen it on a firm, straight run.

ft

💡Covers trimming, corners, and cutting losses. 10% is a reasonable default.

%

Cost

Enable Cost Estimation?

Rolls Needed

1

Plastic / Poly Roll Edging

Stakes / Pins

30

every 3 ft

Splice Connectors

—

not needed for this material

90 ft (27.43 m) perimeter — closed loop

Edging to Buy

Plastic / Poly Roll Edging

Size: 100 ft (99.75 ft effective, after a 3 in overlap)

Rolls: 1

Hardware

Stakes / pins: 30

No splice connectors needed for this material.

Bed / Border Layout (Schematic)

Edging (closed loop)Stake90 ft perimeter — 1 roll30 stakes total (display capped for legibility)

Diagram simplified for clarity (not to scale) — stake count capped for legibility; totals above are the real result.

Looking for the verification checklist, reference tables, tips, or common mistakes?See the complete Landscape Edging / Garden Border Calculator.

Flexible edging trades material cost for closer stake spacing

Plastic roll edging is generally the least expensive material option and follows a curved bed line without any special corner cutting — but being flexible, it needs stakes spaced more closely than a rigid material to hold its position, especially on curves or in soft, sandy soil. A wider stake spacing to save on hardware is a common shortcut that shows up later as edging that has wandered out of line.

Roll length matters for waste, too — a longer roll (100 ft, where sold) needs fewer splices than several shorter 20 ft rolls for the same total perimeter, at the cost of being bulkier to handle and store before install.

Landscape Edging Formula

The steps this calculator works through, in order.

Step 1 — Perimeter

Rectangular bed: perimeter = 2 x (length + width)

Circular bed: perimeter = pi x diameter

Direct entry: perimeter as measured

An opening you enter (such as a path crossing the border) is subtracted from the perimeter, and always breaks the loop for hardware-counting purposes regardless of the bed's own shape.

Step 2 — Purchase length

Purchase length = (perimeter - opening) x (1 + waste% / 100)

The waste allowance covers trimming, corners, and cutting losses — applied before rolls or units are counted, not after.

Step 3 — Run count

Run count (R) = 0 if the border is one unbroken closed loop

Otherwise R = number of openings, +1 if the bed shape itself is already an open run

Each opening cuts the border into one more physically separate run. Starting from a closed loop, N openings cut it into N separate runs (two openings leave 2 runs, not 1); starting from a bed shape that's already an open run, N openings cut it into N+1 runs, since the two original free ends already counted as one run before any opening was added. Either way, more openings of the same combined width genuinely need more hardware than fewer, larger ones — more runs means more free ends, so more end stakes and fewer internal splices per section.

Step 4 — Rolls or units

Effective coverage per section = section length - joint overlap (0 for butt-jointed segments)

R = 0 (unbroken loop): rolls/units = ceil(purchase length / effective coverage)

R >= 1: PER RUN, assuming an even split = purchase length / R:

per-run rolls/units = max(1, ceil((per-run length - overlap) / effective coverage))

total rolls/units = R x per-run rolls/units

R separate runs are physically independent pieces — one run's own leftover material can never help cover a DIFFERENT run, so each is sized on its own, not as one pooled quantity (pooling can under-count: two 8.1 ft runs each genuinely need 2 of an 8 ft section, 4 total, even though their combined 16.2 ft pools to only 3 sections' worth). This calculator only collects the openings' combined width and count, not each run's own real length, so an EVEN split across the R runs is the modeling assumption — exact when openings are reasonably evenly spaced, approximate otherwise (see this page's own Limitations). Each run's own first section still gets no overlap subtracted from it, since it has no preceding joint; a fully unbroken loop has no such free pass anywhere, since every joint — including the one that closes the loop — consumes an overlap.

Step 5 — Stakes and splice connectors

R = 0: stakes = ceil(effective edging length / stake spacing)

R >= 1, per run (even split): stakes = R x (ceil(per-run length / stake spacing) + 1)

Splice connectors = rolls/units - R

Stakes have the identical per-run boundary effect as rolls/units — a fully unbroken loop needs no extra "end" stake at all, while each of the R separate runs needs its own fencepost count at its own two free ends, computed from its own (evenly-split) length rather than pooling the combined length. Splice connectors have one fewer per run than that run's own section count (no joint at either of its free ends), which sums to rolls/units minus R regardless of how the length actually splits across runs.

Real-World Landscape Edging Calculation Example

This example uses the values you have entered above and follows the same steps as the formula section.

Input Values Used

InputValueWhy it is used
Bed shapeRectangular Bed (Length x Width)Sets the perimeter formula
MaterialPlastic / Poly Roll EdgingSets whether stakes/couplers apply and the joint overlap
Size100 ftRoll or section length before overlap
Waste allowance10%Covers trimming and cutting losses

Step 1 — Perimeter

CalculationFormula / SubstitutionResult
Rectangular Bed-90 ft (27.43 m)

Step 2 — Purchase length

CalculationFormula / SubstitutionResult
Purchase length90 x (1 + 10/100)99 ft

Step 3 — Run count

CalculationFormula / SubstitutionResult
Run count (R)one unbroken loop0

Step 4 — Rolls / units

CalculationFormula / SubstitutionResult
Effective coverage100 - 0.2599.75 ft
Rollsceil(99 / 99.75)1 rolls

Step 5 — Stakes / connectors

CalculationFormula / SubstitutionResult
Stakesceil(90 / 3)30

Therefore: buy 1 roll of plastic / poly roll edging, 30 stakes.

Disclaimer: This calculator provides approximate results for planning and estimation purposes only. Actual requirements may vary based on site conditions, materials, workmanship, and local building regulations. Always consult a qualified engineer, architect, or construction professional before making final decisions.

Frequently Asked Questions

Every 2-4 ft is the common range — tighter (2-3 ft) on curves or in soft/sandy soil, wider (up to 4 ft) on a firm, straight run. Very tight curves (under about 3 ft radius) commonly need stakes as close as every 12 in to hold the bend.
No separate connector PART — plastic roll edging typically joins at a splice by overlapping the two roll ends by a few inches and staking through both layers together, rather than using a separate hardware piece, so this calculator adds no coupler cost for this material. That overlap still genuinely reduces how much NEW ground each roll covers, though — this calculator's editable overlap field accounts for it when sizing how many rolls you need, even though it never turns into its own purchased connector line item.