Precision Titanium CNC Machining — Technical Case Studies

Documented real-world engineering case studies following a rigorous Background → Pain Point → Engineering Strategy → Metrology Verification framework. Each case includes measurable outcomes with CMM-verified dimensional data.

Case Study 001 — Aerospace Structural Housing

Severe Thin-Wall Resonant Trap — Trochoidal Milling Breakthrough & CMM Verification

Background & Technical Pain Point

Project Overview: Manufacturing a high-stress titanium alloy dynamic housing assembly for a commercial aerospace subsystem. The engineering blueprint specifies the utilization of Grade 5 titanium (Ti-6Al-4V) to sustain violent operating vibrations. The Technical Pain Point: The structural architecture features a complex unbraced thin-wall geometry with a continuous depth of 45 mm and a targeted nominal wall thickness restricted to just 0.60 mm (±0.015 mm). During initial prototyping trials by the client's previous supplier, traditional linear slotting passes induced intense dynamic harmonic resonance (chatter). The severe micro-vibrations led to rapid tool choking, micro-cracking along the material grain boundaries, and an unacceptable wall deformation displacement yielding an out-of-tolerance variance of +0.18 mm, resulting in a 100% scrap rate.

Advanced Manufacturing Strategy & Kinetic Process Breakthroughs

BOZE Process Engineering: To eliminate harmonic displacement and circumvent severe work hardening, the BOZE engineering matrix re-engineered the entire manufacturing workflow. We deployed a high-rigidity 5-Axis Machining Center equipped with a specialized hydraulic anti-vibration fixture setup to stabilize the part base. Kinetic Toolpath Strategy: We transitioned from linear milling to an optimized dynamic high-feed trochoidal milling toolpath. We selected a custom 4-flute sub-micron grain tungsten carbide end mill coated with PVD multi-layer AlTiN, running a strict axial depth of cut (aₚ) of 20 mm combined with an extremely conservative radial engagement (aₑ) limited to exactly 6% of the tool diameter. The cutting velocity (Vc) was locked at 85 m/min with a constant feed per tooth (fz) maintained at 0.08 mm. Simultaneously, a water-soluble synthetic ester coolant was delivered directly into the primary shear zone at a continuous high pressure of 70 bar (1000 psi), instantly flushing the turnings and repressing thermal concentration.

Final Quality Metrology Report & CMM Deviation Analysis

Metrology & Validation: Final dimensional verification was executed inside our climate-controlled metrology lab utilizing a high-precision coordinate measuring machine (CMM) calibrated to an accuracy boundary of 0.0015 mm. Definitive Tolerance Report: The actual measured thin-wall profile demonstrated flawless consistency, holding a continuous nominal thickness of 0.605 mm, representing a maximum deviations variance of a mere +0.005 mm — safely inside the client's stringent ±0.015 mm gating threshold. True positioning alignment relative to the structural datum reference framework achieved a strict boundary of ∅0.02 mm. Microstructural grain examination via digital microscopy confirmed a complete absence of alpha-case contamination, and the final surface finish recorded an ultra-clean roughness rating of Ra ≤ 0.4 µm, fully verifying absolute structural component integrity.

Case Study 002 — Medical Devices

5,000-Piece Grade 23 ELI Bone Screws — Ra ≤ 0.4 µm, Zero-Contamination

Challenge: M3.5 × 14 mm cortical bone screws in Grade 23 Ti-6Al-4V ELI (ASTM F136), thread Ra ≤ 0.4 µm, zero burrs, cleanroom packaging for direct surgical use.

Solution: Swiss-type turning with precision-ground form tools and thread whirling achieved Ra 0.38 µm. Multi-stage ultrasonic cleaning with deionized water and solvent extract verified residues < 10 µg.

Result: 100% dimensional compliance. Ra 0.38-0.42 µm (Cpk 1.67). Delivered ISO Class 5 with full EN 10204 3.1 MTR per heat lot.

Case Study 003 — Semiconductor

UHV Gas Showerhead — 2,400 Micro-Drilled Ø0.3 mm Holes

Challenge: Grade 5 Ti gas showerhead with 2,400 holes at ±0.01 mm positional accuracy, Ra ≤ 0.1 µm ID finish, UHV 10⁻⁹ Torr compatibility.

Solution: Micro-drilling with peck cycles and high-pressure through-tool coolant achieved consistent hole geometry. Post-drilling electropolishing removed micro-burrs and achieved Ra 0.08 µm ID finish.

Result: 100% holes within spec. Position ±0.008 mm. Ra 0.08 µm after electropolishing. Outgassing < 1×10⁻¹¹ Torr·L/s for 3nm fab readiness.

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