Best fiber laser settings for 16mm Stainless Steel

Fiber Laser8 kW–15 kW16 mmIndustrial

These are conservative starting-point parameters for cutting 16mm stainless steel on a fiber laser in roughly the 8 kW–15 kW class. Use them as the center of your first test, then dial in for your exact machine, optics, assist-gas purity, and material batch. They are not a guaranteed recipe — no published chart can be, because two same-wattage machines can differ 4–5x in real-world feed rate.

Starting point — not a recipe. Run a material test on your own machine. Every laser, lens, gas supply, and material batch is different. These numbers exist to shrink your test, not replace it.

Recommended starting-point parameters

Assist gasNitrogen (N₂)
Gas pressure22–28 bar
Cutting speed500–900 mm/min

Start here, then push faster only if edge stays clean.

Focus position−5.0 to −7.0 mm (below surface)
NozzleDouble, Ø3.5 mm
Nozzle standoff0.8–1.5 mm
Pierce4–7 s; consider O₂-assisted pierce then switch to N₂
Power band assumed8 kW–15 kW

Dialing it in

  • Verify your assist-gas purity. With N₂, a drop from 99.999% to 99.5% can cost ~20–25% feed rate and leave an oxidized edge.
  • Check focus on a stainless ramp test before trusting any number — focal shift from a hot or contaminated lens is the most common cause of sudden dross.
  • If you see bottom-edge dross, drop speed ~10% or raise gas pressure ~1 bar before touching focus.
  • Resonator hours and nozzle wear shift these numbers over time. Re-baseline after a nozzle change or a few hundred resonator hours.

The material-test workflow

The fastest way to a reliable cut is not a perfect chart — it's a tight test loop that you only run once per machine/material combination, then never repeat:

  1. 1Start from this baseline. Load the starting-point numbers above as the center of your test.
  2. 2Run a small array. Cut a grid that sweeps speed (and power, if cutting) ±20% around the baseline — typically 9–16 small squares.
  3. 3Judge the edge. Look for dross, burn-back, kerf width, and squareness. Pick the square that meets your part's requirement, not the prettiest one.
  4. 4Log it once. Save the winning parameters against this exact machine + material so the next job starts from your proven number — not a generic chart.

Stop re-running the same test square

CutLog gives you a starting point calibrated to your wattage and lens, then remembers every cut you log — so your machine builds its own proven library. Free to start.

Frequently asked questions

What speed should I cut 16mm stainless steel at with a fiber laser?

A conservative starting point in the 8 kW–15 kW class is 500–900 mm/min. Treat this as the middle of your test range and adjust ±15–20% based on edge quality. Higher-wattage machines and clean optics will run faster; worn nozzles, low gas purity, or off-focus will run slower.

Which assist gas is best for 16mm stainless steel?

This starting point uses Nitrogen (N₂) at 22–28 bar. Gas choice trades cost, speed, and edge oxidation — confirm against the finish your parts require.

Why won't one settings chart work on every machine?

Beam quality, resonator hours, optics condition, nozzle wear, assist-gas purity, and material batch all move the numbers. Same-wattage machines from different brands routinely differ 4–5x in achievable feed rate. That is exactly why CutLog gives you a starting point and a fast test workflow instead of pretending there is one universal number.

Related settings

Last reviewed 2026-06-28. Values are conservative starting points generalized across brands and published cutting charts; always verify on your own machine.