Executive summary

The general rule: 3D printing for prototypes and short runs, CNC for high precision or non-printable materials, injection for high volumes where tooling cost is amortised.

Economic crossover point

Injection moulding is only economical above 500–2,000 units. Below that volume, 3D printing or CNC are almost always cheaper on total cost.

Direct comparison

Criterion FDM 3D Printing CNC Injection
Setup costNoneLow–MediumHigh (tooling)
Cost per part (high qty)MediumHighVery low
Lead time24h–3 days3–10 days6–12 weeks
Geometric complexityVery highMediumMedium
Tolerâncias típicas±0,1–0,3 mm±0,01–0,05 mm±0,05–0,1 mm
Available materialsFDM polymersMetal, plastic, compositeMost thermoplastics
Volume mínimo económico1 peça1 peça500–2,000 parts
Design iterationVery fastFastSlow and expensive

FDM 3D Printing — speed and flexibility

FDM 3D printing has zero setup cost. Unbeatable for functional prototypes, low-volume parts and complex geometries.

Strengths: 24h delivery, no tooling, free geometries, fast iteration.

Limitations: Z-axis anisotropy; ±0.1–0.3 mm tolerances; visible layer lines without post-processing.

CNC — precision and premium materials

CNC is the right process for tight tolerances, metal or aluminium, or high-quality surface finishes.

When to choose CNC: metal parts, high-precision fits, quality metric threads.

Limitations: geometry limited by tool access; cost doesn't scale for high volumes.

Injection moulding — industrial scale

Injection moulding is the reference process for mass production of plastics. Tooling cost (€5,000–€80,000) is amortised over a large number of parts.

When to choose injection: volumes above 1,000–5,000 units/year, stable geometry.

Limitations: tooling costs €5,000–€80,000 and takes 6–12 weeks; design changes are expensive.

Hybrid strategy

The most efficient product teams use all three processes throughout the product lifecycle:

  1. Phase 1 — Concept: FDM 3D printing for form and fit validation. Multiple iterations in days.
  2. Phase 2 — Functional validation: 3D printing with technical materials for real mechanical testing.
  3. Phase 3 — Pre-series: CNC or 3D printing for first 50–200 units while tooling is being made.
  4. Phase 4 — Production: injection for high volumes. 3D printing for variants and spare parts.

Decision table by volume

Annual volumeRecommended processNote
1–10 peças3D Printing24h delivery, zero setup cost
10–100 peças3D Printing or CNCDepends on material and tolerances
100–500 peças3D Printing (plastic) / CNC (metal)Injection not yet economical
500–2.000 peçasCase by case analysisCrossover point — calculate total cost
>2,000 partsInjection mouldingTooling amortised, low unit cost

Still in prototype or pre-series phase?

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