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PEEK CNC Machining: Best Practices, Tolerances & Surface Finish
PEEK Machining Characteristics
Why PEEK Machines Well
· Low cutting forces — reduces tool wear and machine deflection
· Clean chip formation — no stringy chips or built-up edge
· No abrasive fillers (unfilled grades) — extends tool life
· Good thermal conductivity — dissipates cutting heat
· Dimensional stability — maintains tolerances after machining
Challenges
· Low thermal conductivity (compared to metal) — heat builds up at cutting zone
· Softening temperature (143°C Tg, 343°C melt) — can smear if overheated
· Internal stress — from manufacturing process, can cause warpage
· Filled grades (GF30, CF30) — abrasive, require special tooling
Tool Selection
Unfilled PEEK
Tool Type | Recommendation | Notes |
End mills | Carbide, 2-flute, sharp | Positive rake, polished flutes |
Drills | Carbide, 118° point | Peck drilling recommended |
Turning inserts | Carbide, sharp, positive | C-grade or uncoated |
Taps | Spiral flute | For blind holes |
Filled PEEK (GF30/CF30)
Tool Type | Recommendation | Notes |
End mills | PCD or CVD diamond coated | Glass/carbon fibre is abrasive |
Drills | Carbide, diamond coated | Extended tool life |
Turning inserts | CBN or PCD | Premium tooling required |
Machining Parameters
Spindle Speed & Feed
Operation | Unfilled PEEK | Filled PEEK (GF30/CF30) |
Face milling | 200–400 m/min, 0.1mm/tooth | 100–200 m/min, 0.08mm/tooth |
End milling | 150–300 m/min, 0.05–0.1mm/tooth | 80–150 m/min, 0.03–0.08mm/tooth |
Drilling (Ø10mm) | 3000–6000 RPM, 0.1mm/rev | 1500–3000 RPM, 0.08mm/rev |
Turning | 200–400 m/min, 0.05–0.15mm/rev | 100–200 m/min, 0.05–0.1mm/rev |
Tapping | 500–1000 RPM | 300–500 RPM |
Coolant Recommendations
· Air blast: Preferred for unfilled PEEK — prevents chip melting, no contamination
· Flood coolant: Use for deep holes and aggressive cuts
· MQL (Minimum Quantity Lubrication): Good compromise
· No coolant: Possible for light finishing cuts
Achievable Tolerances
Dimension Type | Standard Tolerance | Precision Tolerance |
Linear (≤25mm) | ±0.10mm | ±0.025mm |
Linear (>25mm) | ±0.15mm | ±0.05mm |
Hole diameter | H8 | H7 |
Bore diameter | H8 | H7 |
Flatness (per 100mm) | 0.05mm | 0.02mm |
Surface finish (Ra) | 1.6µm | 0.4µm |
Thread class | 6H/6g | 4H/4g |
Surface Finish Options
Method | Ra Achievable | Application |
Standard milling | 1.6–3.2µm | General purpose |
Finish pass | 0.8–1.6µm | Visible surfaces |
Diamond turning | 0.1–0.4µm | Optical/sealing |
Polishing | 0.05–0.1µm | Medical implants |
Bead blasting | 1.0–2.0µm | Matte finish |
Anodising | N/A | Not applicable to PEEK |
Stress Relief Procedure
PEEK stock contains internal stresses from the manufacturing process. For precision parts:
1. Rough machine to within 0.5mm of final dimensions
2. Stress relieve at 150°C for 2 hours (air or nitrogen atmosphere)
3. Cool slowly to room temperature (≤ 30°C/hour)
4. Finish machine to final dimensions
This procedure reduces warpage in thin-wall and asymmetrical parts by 70–90%.
Best Practices Summary
1. Use sharp, polished carbide tools with positive geometry
2. Keep cutting temperature below 140°C (PEEK softening point)
3. Use air blast for chip removal and cooling
4. Apply stress relief between rough and finish operations
5. Take light finish passes (0.1–0.25mm) for best surface finish
6. Use soft jaws or vacuum fixtures to prevent clamping distortion
7. Allow 24-hour acclimatisation before final inspection
8. Dry PEEK before machining (if moisture-sensitive operation)
For PEEK product information, see our PEEK Plastic Sheet Guide. For machining services, contact NAGOMER.
FAQ
Q1: Can PEEK be CNC machined with standard equipment?
Yes, PEEK can be machined with standard CNC mills, lathes, and drills using carbide tooling. No specialized equipment is needed. However, parameters (speed, feed, depth of cut) must be optimized for PEEK’s thermal properties to prevent melting or smearing.
Q2: What tolerance can be achieved when machining PEEK?
Standard machining achieves ±0.10mm for dimensions up to 25mm. With proper stress relief and finish passes, precision tolerances of ±0.025mm are achievable. Surface finishes of Ra 0.4µm are possible with diamond turning.
Q3: Should PEEK be stress-relieved before or after machining?
Stress relief should be performed between rough and finish machining. Rough machine to within 0.5mm, stress relieve at 150°C for 2 hours, cool slowly, then finish machine. This reduces warpage by 70–90% in precision parts.
Q4: What tools are needed for glass-filled PEEK (GF30)?
Glass-filled PEEK requires PCD (polycrystalline diamond) or CVD diamond-coated tools due to the abrasive nature of glass fibres. Standard carbide tools wear rapidly and may need replacement after every 1–2 parts.
Need precision-machined PEEK components? Contact NAGOMER for CNC machining services, or explore our PEEK stock shapes.
NAGOMER — Professional Engineering Plastics Solutions
www.nagomer.com | info@nagomer.com