Aerospace Titanium CNC Machining Services
Precision AS9100D aligned manufacturing specializing in multi-axis titanium machining for high-fatigue aviation hardware. Full material traceability with EN 10204 3.1 Mill Test Reports, AS9102 First Article Inspection, and CMM dimensional validation per ASME Y14.5 GD&T.
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5-Axis CNC Machining — Grade 5 Titanium Aerospace Structural Components
Simultaneous 5-axis milling of Grade 5 Titanium (Ti-6Al-4V) for aerospace brackets, bulkheads, and structural airframe nodes. Full GD&T compliance per ASME Y14.5 with active tool deflection compensation during thin-walled section milling.
Full 5-Axis Simultaneous Contouring
5-Axis CNC · DMG MORI / MazakMachining complex aerospace geometries — compound-angle brackets, twisted airframe nodes, and thin-walled bulkheads — in a single clamping operation. Eliminates positional errors from re-fixturing.
Technical Implementation- Adaptive trochoidal tool paths limit radial engagement to <10% of tool Ø — suppresses vibration on thin-wall structures
- Real-time spindle load feedback prevents work-hardening glazing on previously cut Ti-6Al-4V surfaces
- Achieves Ra 0.4 µm surface finish on aerospace structural brackets — eliminates secondary benching operations
Tool Deflection & Thin-Wall Compensation
Dynamic Compensation · ±0.005mm ToleranceFinite Element Analysis (FEA)-driven toolpath compensation predicts and counteracts tool deflection during thin-wall aerospace section milling. Closed-loop feedback ensures dimensional accuracy.
Technical Implementation- FEA-predicted tool deflection maps adjust feed-rate in real time — eliminates trial-and-error cutter passes
- Adaptive feed-rate control reduces radial engagement below 10% of tool diameter, eliminating work-hardening glazing
- Maintains geometric accuracy on high-aspect-ratio wall sections down to 0.5 mm thickness
CNC Swiss Lathe Turning — Aerospace Fasteners, Valve Stems & Grade 19 Beta Titanium
Micro-precision CNC Swiss turning of Grade 19 Beta Titanium (Ti-3Al-8V-6Cr-4Mo-4Zr) and Grade 5 (Ti-6Al-4V) for aerospace fasteners, threaded inserts, and hydraulic valve stems. Engineered to eliminate stress concentration in high-cycle fatigue threading.
Grade 19 Beta Titanium Swiss Turning
CNC Swiss Lathe · Ti-3Al-8V-6Cr-4Mo-4ZrGrade 19 Beta Titanium (Timetal 19) is the material of choice for high-strength aerospace fasteners and hydraulic valve stems — offering 1,240 MPa tensile strength with excellent corrosion resistance. Our CNC Swiss lathes hold tolerances to ±0.005 mm on small-diameter turned profiles.
Technical Implementation- Precision-ground single-point form tools for consistent UNJF/MJ thread root radii — eliminates notching fatigue
- Micro-finishing pass on hydraulic stem seal diameters — Ra 0.2 µm surface finish for zero-leak applications
- Full thread-form inspection via optical comparator — 100% compliance with AS8879, MIL-S-8879C thread standards
Thread Stress Concentration Elimination
Fatigue Life Optimization · Aerospace FastenersThread root geometry is the primary stress concentration site in aerospace fasteners. Our Swiss turning process controls thread root radius to eliminate notching, and applies post-process stress relief to maximize high-cycle fatigue life.
Technical Implementation- UNJF/MJ thread root radius controlled to AS8879 specification — eliminates sharp corners that initiate fatigue cracks
- Post-process thermal stress-relief cycle at 315°C for 2 hours — reduces residual tensile stresses by 40%
- Fatigue test verification per ASTM E466 — 10⁷ cycle minimum runout demonstrated on production lots
100% 100% Material Traceability — EN 10204 3.1 MTR, Heat Number Tracking & AS9102 FAIR
Full chain of custody from raw mill ingot to finished aerospace component. Every batch carries an EN 10204 3.1 Mill Test Report, unique heat number hard-stamped or laser-etched, and a complete AS9102 First Article Inspection Report before production scale-up.
EN 10204 3.1 Mill Test Reports
Every incoming titanium lot — Grade 5, Grade 19, or Grade 23 — is verified against its EN 10204 3.1 Mill Test Report. Chemical composition, mechanical properties, and ultrasonic integrity are confirmed and archived.
- Chemical composition verified per ASTM E2371 — O₂ ≤0.20%, N₂ ≤0.05%, Fe ≤0.40%
- Mechanical properties certified: UTS, 0.2% Yield Strength, % Elongation, % RA, Hardness
- Digital MTR archive — each heat associated with unique batch ID for full lot traceability
Heat Number Identification
Every component carries its originating mill heat number — laser-etched, hard-stamped, or DataMatrix-encoded per customer specification. Full chain of custody from melt to finished assembly.
- Heat number laser-etched or hard-stamped per customer marking specification
- DataMatrix 2D barcode serialization for automated tracking through production and supply chain
- DFARS-compliant domestic titanium sourcing — full country-of-origin documentation
AS9102 First Article Inspection
Every aerospace production run begins with a complete AS9102 First Article Inspection Report (FAIR) — covering dimensional, material, and process validation. The FAIR package ensures full design intent verification against engineering drawing requirements before volume scale-up.
- AS9102 form-compliant reporting: design data check, material/process certs, dimensional results
- 100% dimensional validation of all drawing-characteristic callouts with CMM points
- FAIR package delivered with every first production lot — auditable by prime contractors
CMM Dimensional Gating — ASME Y14.5 GD&T Validation for Aerospace Components
Absolute dimensional validation via Coordinate Measuring Machine (CMM) with geometric accuracy verified against ASME Y14.5 GD&T specifications. Every aerospace bracket, structural component, and fastener lot is measured against engineering drawing callouts before release.
CMM (Coordinate Measuring Machine)
ZEISS CMM · ±1.9 µm AccuracyOur in-house metrology lab is equipped with ZEISS CMM platforms capable of measuring complex aerospace geometries — brackets, bulkheads, valve stems, and threaded fasteners — with volumetric accuracy of ±1.9 µm. Every dimensional characteristic per the engineering drawing is captured, analyzed, and reported.
Technical Implementation- Full 5-axis CMM scanning with adaptive probe path planning — reduces inspection time by 60% vs touch-trigger
- ZEISS CALYPSO metrology software — native GD&T callout interpretation and true-position reporting
- Temperature-controlled lab (20°C ±0.5°C) — eliminates thermal expansion error on titanium components
ASME Y14.5 GD&T Compliance
Geometric Dimensioning & Tolerancing · ASME Y14.5All aerospace components are measured and reported to ASME Y14.5 GD&T standards. Our metrology team interprets every drawing callout — from simple flatness to complex profile-of-surface — ensuring full compliance with engineering requirements.
Technical Implementation- GD&T callout interpretation: flatness, parallelism, perpendicularity, position, profile, runout
- Datum reference frame alignment — ensures measurement consistency across first article and production runs
- SPC data trending — early detection of tool wear, thermal drift, or fixture variation
Ready for AS9100D Certified
Aerospace Titanium CNC Machining?
Submit your engineering drawings or CAD models for a complimentary Design for Manufacturability (DFM) analysis. Our engineering team will review your aerospace bracket, fastener, or structural component requirements and respond with a competitive quote within 24 hours.
Engineering response within 24 hours · CAD models accepted in STEP, IGES, STL formats
One Metal. One Focus. Infinite Precision.
Founded in 2011 in Baoji's Titanium Valley, BOZE Metal is dedicated exclusively to titanium — from raw material to precision engineering. AS9100D, ISO 13485 & ISO 9001 certified with 500+ clients across Aerospace, Medical & Motorsport industries, we deliver end-to-end precision titanium CNC machining with full material traceability from source to component.
Boze CNC Ti is the dedicated titanium manufacturing center of Baoji Boze Metal Products Co., Ltd.