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Engineering quick reference

Speeds, Feeds & Chip Load Chart

Recommended chip load (feed per tooth) by end-mill diameter across material groups, plus turning/milling SFM by material.

True Precision Machining
Top view of a four-flute end mill cutting into sectioned stock: the tool rotates clockwise at the surface speed (SFM) and feeds into the material (IPM); each flute removes a crescent-shaped chip whose maximum thickness is the chip load (IPT) — the spacing between successive tooth paths, shown magnified in the detail view. SFM = SURFACE SPEED FEED CHIP LOAD (IPT) = FEED PER TOOTH CHIP FORMATION — TOP VIEW · 4-FLUTE END MILL Each flute shaves a crescent chip (red) — max thickness = chip load, IPT. DETAIL · SUCCESSIVE TOOTH PATHS IPT N−1 N MACHINED STOCK CHIP LOAD (IPT) Successive tooth paths N−1 → N, gap exaggerated.

RPM = (SFM × 3.82) / D (3.82 ≈ 12/π)

IPM = RPM × flutes × IPT

Chip load is the chip thickness each flute takes — too thin rubs and work-hardens, too thick snaps tools. Radial chip thinning at stepover ae < D/2: RCTF = 1 / √(1 − (1 − 2·ae/D)²) ≈ 1.15× @ 25% · 1.4× @ 15% · 1.67× @ 10%.

Recommended chip load (in/tooth) by end-mill diameter — solid carbide

Material group Chip load, IPT (in/tooth) — by end-mill Ø
1/8″3/16″1/4″3/8″1/2″3/4″1″
Aluminum (6061 / 7075)
Free-cutting; high MRR. Sharp uncoated/polished or ZrN flutes, generous chip room.
0.001–0.0020.0015–0.00250.002–0.0040.003–0.0050.004–0.0070.005–0.0090.006–0.011
Mild & low-alloy steel
1018, 1045, 4140/4340 (prehard ≤ ~32 HRC). Coated carbide; flood or MQL.
0.0005–0.0010.001–0.00170.0015–0.00250.002–0.00350.0025–0.0040.0035–0.00550.004–0.007
Stainless & PH steel
304/316L, 17-4PH, 15-5PH. Keep the tool cutting — too light a chip work-hardens the surface.
0.0004–0.00090.0008–0.00140.0012–0.0020.0018–0.0030.002–0.00350.003–0.00450.0035–0.0055
Titanium (Ti-6Al-4V)
Low thermal conductivity; high cutting pressure. High-pressure coolant, avoid dwell.
0.0003–0.00070.0005–0.0010.0007–0.00150.001–0.0020.0014–0.00250.002–0.00350.0025–0.004
Nickel superalloy (Inconel)
Inconel 718, 625. Severe work-hardening; rigid setup, positive geometry, never rub.
0.0003–0.00060.0005–0.00090.0007–0.00130.001–0.00180.0012–0.00220.0016–0.0030.002–0.0035
Brass / Bronze
C360 brass, C932 bronze. Free-machining; sharp tools, watch for grabby zero/negative rake.
0.001–0.0020.0015–0.00250.002–0.00350.0025–0.00450.003–0.0060.004–0.00750.005–0.009
Plastics (Delrin / PEEK / Ultem)
Sharp single/two-flute or O-flute; clear chips fast to avoid melting and re-cutting.
0.001–0.0030.002–0.0040.003–0.0060.004–0.0080.005–0.010.006–0.0120.007–0.014

Each cell = low–high IPT range. Feed per tooth (in) for square end mills at ~30–50% radial engagement. Use the low end for small/long-reach tools and finishing; the high end for rigid setups and roughing. Apply RCTF (above) at light stepover before computing IPM. See the full chip load chart.

Cutting speed (SFM) by alloy — solid-carbide turning & milling

Alloy Family Carbide SFM Mach.
Rough Finish
Metals
2024-T3 Aerospace aluminum (Cu-Mg) 500–1200 700–1500 80
7075-T6 Aerospace aluminum (Zn-Mg-Cu) 400–1000 600–1500 70
6061-T6 Aluminum (Mg-Si) 600–1500 800–2000 90
304 Stainless Austenitic stainless 300–400 400–500 50
316L Stainless Austenitic stainless 300–450 400–550 45
MIC-6 Cast aluminum tooling plate (Al-Si) 600–1500 800–2000 90
A2 Tool Steel Cold-work tool steel 200–300 300–400 70
D2 Tool Steel Cold-work tool steel 50–100 80–150 50
BeCu C172 Cu-Be alloy (precipitation hardening) 300–500 400–600 40
Brass C360 Free-machining brass (Cu-Zn-Pb) 300–500 400–700 100
H13 Tool Steel Hot-work tool steel 200–300 300–400 75
C932 Bronze Leaded tin bronze 200–400 300–500 70
4130 Chromoly Low-alloy steel 300–400 400–500 70
4140 Steel Low-alloy steel 150–250 250–400 65
Magnesium AZ31 Mg-Al-Zn alloy 1500–3000 2500–4000 100
Inconel 718 Ni-Cr-Fe-Nb superalloy 30–60 50–100 12
Hastelloy C-276 Nickel superalloy (corrosion grade) 30–60 50–100 18
Monel 400 Nickel-copper alloy 60–120 100–180 35
17-4PH Stainless Precipitation-hardening stainless 150–250 200–300 45
4340 Steel Premium low-alloy steel 100–200 200–350 50
C110 Copper Pure copper (>99.9%) 200–400 300–600 20
17-7PH Stainless Semi-austenitic PH stainless 150–225 225–300 35
Ti-6Al-4V α-β Titanium 60–100 100–180 22
Plastics
Delrin / POM Engineering thermoplastic 300–600 400–800 80
Ultem (PEI) Engineering thermoplastic (high-T amorphous) 200–500 300–700 70
PEEK High-performance semi-crystalline thermoplastic 200–400 300–600 65

SFM ranges are typical solid-carbide values for the listed condition; coatings and rigidity shift the working value. Machinability rated 1–100 (B1112 = 100). Convert to spindle speed with RPM = (12 × SFM) / (π × D). For composition, specs, and per-alloy machining notes, see the full material datasheets.

Free engineering reference from True Precision Machining
trueprecisionmachining.com · 805-964-4545 · Buellton, CA · AS9100 / ISO 9001 / ITAR
Conservative carbide starting points (Machinery's Handbook / tooling-maker charts). Confirm against your tool data sheet and run a test cut. · September 2026