BOZE CNC Ti | Aerospace & Defense

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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AS9100D Cert
5-Axis CNC
100% MTR
AS9100D 5-Axis CNC Grade 5 Ti EN 10204 3.1 FAIR
5-Axis CNC Machining

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 / Mazak

Machining 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 Tolerance

Finite 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
Entity Cluster: 5-Axis CNC Machining + Grade 5 Titanium Ti-6Al-4V + Aerospace Brackets & Bulkheads + ASME Y14.5 GD&T
Precision Swiss Turning

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-4Zr

Grade 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 Fasteners

Thread 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
Entity Cluster: CNC Swiss Lathe Turning + Grade 19 Beta Titanium + Aerospace Fasteners + Hydraulic Valve Stems + AS8879 Threads
Material Traceability & Compliance

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
Entity Cluster: EN 10204 3.1 MTR + Heat Number Tracking + AS9102 FAIR + DFARS Compliance + AS9100D aligned
Precision Metrology

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 Accuracy

Our 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 Y14.5

All 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
Entity Cluster: CMM (Coordinate Measuring Machine) + ASME Y14.5 GD&T + ZEISS CMM + ISO 17025 + SPC Quality Control
Start Your Aerospace Project

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.

AS9100D Certified Grade 5 & Grade 19 Ti 5-Axis CNC Capable Full MTR Tracing
Request Aerospace DFM Analysis & Quote

Engineering response within 24 hours · CAD models accepted in STEP, IGES, STL formats

About Boze Titanium Manufacturing Center

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.

AS9100D ISO 13485 ISO 9001 500+ Clients 15+ Years OEM/ODM