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CNC Machining Tolerances for Titanium Components

Achievable tolerances for titanium machining by process type and feature category per ISO 2768.

tolerances
Cited (no URL)
Source: ISO 2768, Industry Practice
PropertyValueUnitNotes
3-Axis Milling Tolerance (Standard)±0.025mmISO 2768
3-Axis Milling Tolerance (Precision)±0.005mm
CNC Turning Tolerance (Standard)±0.010mm
Wire EDM Tolerance (Standard)±0.005mm
Wire EDM Tolerance (Ultra)±0.001mm
Reamed Hole FitH7Typical; H6 best practice
Flatness (per 100mm, typical)0.025mm

Tolerances by Process

Process Standard Precision Ultra-Precision
3-Axis Milling ±0.025 mm ±0.005 mm ±0.001 mm
5-Axis Milling ±0.025 mm ±0.005 mm ±0.001 mm
CNC Turning ±0.010 mm ±0.005 mm ±0.002 mm
Wire EDM ±0.005 mm ±0.002 mm ±0.001 mm

Feature-Specific

Feature Typical Best Practice
Hole diameter (reamed) H7 H6
Hole position ±0.050 mm ±0.010 mm
Flatness (per 100mm) 0.025 mm 0.005 mm
Concentricity 0.025 mm 0.005 mm

Evidence Basis

Based on ISO 2768 general tolerances and industry machining practice. The tolerance values are production capabilities by process, not ISO-mandated requirements; ISO 2768 defines the class system.

Engineering Interpretation (titanium.blog)

(titanium.blog) Wire EDM holds the tightest tolerances because it is a non-contact thermal process with no cutting forces and no springback. Milling and turning on titanium are limited by tool deflection and the material’s low modulus (114 GPa). Reamed-hole fits follow ISO H-class; specify H7 as typical and H6 for critical mating.