Titanium CNC Machining Services
Looking for a qualified titanium CNC machining partner? End-to-end solutions — from rapid prototyping to high-volume production — across 3/5-axis milling, turning, wire EDM, and custom industrial components.
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Are you evaluating a titanium CNC partner? Read this first.
Looking for a qualified titanium CNC machining supplier? This page answers the questions procurement and engineering teams actually ask before issuing an RFQ — for example: what tolerances are realistic, what file formats we accept, how lead time scales with complexity, and how we compare to a typical job-shop.
If your priority is fast DFM feedback, jump to our submission form.
Our CNC Process Spectrum
Four dedicated CNC workflows engineered for titanium, superalloys, and hardened materials — from single-piece prototyping to full-scale production runs.
3/5-Axis CNC Machining
Complex geometries, single-setup precision, aerospace structural parts.
- Simultaneous 5-axis contouring
- Prismatic machining in single setup
- Aerospace-grade structural components
- High-precision impellers and blisks
CNC Milling & Turning
Multi-axis mill-turn centers, custom threaded fasteners, bone screws.
- Multi-axis mill-turn centers
- Swiss-type precision turning
- Custom threaded fasteners and inserts
- Medical bone screws and implant abutments
Wire EDM Machining
Sub-0.1 mm wire diameter cuts for micro-slots, hardened alloys, thin walls.
- Sub-0.1 mm wire diameter cutting
- EDM of hardened tool steel and carbide
- Micro-slot and thin-wall profiles
- Tapered and draft-angle geometries
Custom Industrial Components
Vacuum chambers, high-pressure pump valves, batch production scaling.
- Vacuum chamber and pressure vessel machining
- High-pressure valve bodies and spools
- Low-volume prototyping to batch scaling
- Full documentation and NIST traceability
Machining Capability Dashboard
Our precision manufacturing limits — designed and verified across our CNC machining center fleet.
Max 5-Axis Work Envelope
Generous work zone for large titanium structural parts, complex aerospace housings, and multi-face prismatic components in a single setup.
Max Turning Diameter
Accommodates medium-to-large rotating titanium components including valve bodies, rings, and custom fastener families.
Achievable Tolerance
Repeatable bounds maintained through rigorous thermal compensation cycles, in-process probing, and climate-controlled machining environments.
Surface Finish
Microscopic surface finish achieved through precision finish insert geometries, optimized chip loads, and ultra-rigid spindle-tool interfaces.
All specifications measured under controlled conditions per ISO 2768-m and AS9100D. Actual results depend on material grade, geometry complexity, and batch size.
Process Capability Matrix
Side-by-side capability comparison across 3-axis, 5-axis, mill-turn, and wire EDM workflows. Values are quoted from internal process sheets; source: Boze engineering data, updated 2026-09-24.
| Parameter | 3-Axis Milling | 5-Axis Milling | Mill-Turn | Wire EDM |
|---|---|---|---|---|
| Typical Tolerance | ±0.025 mm | ±0.005 mm | ±0.01 mm | ±0.002 mm |
| Surface Finish (Ra) | Ra 0.8 µm | Ra 0.4 µm | Ra 0.6 µm | Ra 0.2 µm |
| Max Feature Size | 650 × 500 × 450 mm | 650 × 500 × 450 mm | Ø 320 mm × 600 mm | 400 × 300 × 250 mm |
| Best-Fit Depth vs Typical | Prismatic parts and pockets | Aerospace brackets and impellers | Shaft, fastener, threaded parts | Hardened micro-slots and thin walls |
| Material Standards Cited | ASTM B381 / AMS 4911 | ASTM B381 / AMS 4911 / AS9100D | ASTM B348 / ISO 5832-3 | ASTM F136 / NADCAP |
Source: Boze internal process sheets, cited from production-floor measurement data, revised 2026-09-24. Standards reference: ASTM B381, ASTM B348, AMS 4911, ISO 5832-3, AS9100D, NADCAP.
Procurement Practicalities — At a Glance
Five parameters procurement and engineering teams confirm before issuing an RFQ. Every value below is operationally measured; for example, our defect rate and scrap thresholds are reviewed monthly against customer FAIR data.
- 01
Minimum Order Quantity
MOQ: 1 piece for prototype and engineering samples; 50+ pieces unlocks tier-1 production pricing. No minimum spend.
- 02
Lead Time & Delivery
Standard lead time: 5–15 business days. Expedited turnaround in 3–5 business days for rush orders. Worldwide delivery via DDP, FOB, or EXW Incoterms 2020.
- 03
Accepted CAD File Formats
STEP, IGES, DWG, DXF, SolidWorks, CATIA, NX, Parasolid. PDF drawings and hand sketches accepted for quoting only. We return a manufacturability review within 24 hours.
- 04
Quality & Risk Mitigation
Cpk ≥ 1.33 on critical dimensions; first-pass yield ≥ 99.5%; documented defect rate < 0.5%; scrap < 1% across all production runs.
- 05
Production Capacity
Monthly capacity: 8,000+ parts. Backup machines on standby for redundancy. Production volume locked within 72 hours of PO confirmation.
Mastering Titanium's Hard Bones
Titanium's metallurgical characteristics present two fundamental machining challenges. Here's how our engineering team eliminates them.
Severe Heat Buildup
Titanium's low thermal conductivity (≈7 W/m·K) traps cutting heat at the tool-workpiece interface, accelerating flank wear, promoting built-up edge, and degrading surface integrity.
70-bar Through-Spindle Coolant + AlTiN-Coated Tooling
- Through-spindle coolant at 70+ bar (1,015 psi) sweeps the cutting zone, evacuating heat before it diffuses into the substrate
- AlTiN (Aluminum Titanium Nitride) PVD coating withstands oxidation temperatures exceeding 900°C, maintaining edge hardness during extended titanium cuts
- Micro-lubrication channels in custom carbide inserts reduce friction coefficient by up to 40% compared to standard uncoated tooling
Work Hardening & Spring-Back
Titanium's high yield-to-modulus ratio causes rapid strain hardening in the shear zone, leading to micro-deflection, dimensional drift, and accelerated edge degradation on subsequent passes.
Constant Chip-Load Feed Controls + High-Stiffness Hydraulic Clamping
- Adaptive feed-rate algorithms maintain constant chip load (mm/tooth) throughout engagement angle changes, preventing work-hardening 'glazing' on the machined surface
- Hydraulic workholding systems deliver triaxial clamping force up to 15 kN, eliminating chatter vibration and maintaining positional stability to ±2 µm
- Post-process spring-back compensation models predict elastic recovery up to 0.02 mm, enabling net-shape machining without secondary correction passes
Every titanium project we undertake is backed by decades of accumulated cutting data, in-house tooling development, and continuous process monitoring. Hard material demands hard engineering.
Frequently Asked Questions
What CAD file formats do you accept for a titanium CNC machining RFQ?
We accept STEP, IGES, DWG, DXF, SolidWorks (sldprt / sldasm), CATIA, NX, and Parasolid. For quoting only, PDF drawings or even hand-sketched dimensions are sufficient — our engineering team will follow up with manufacturability feedback within 24 hours.
What is the typical lead time for a titanium CNC machining order?
Standard lead time is 5 to 15 business days depending on part complexity, batch quantity, and surface treatment requirements. Expedited turnaround is available in 3 to 5 business days; for example, rush delivery of 20 machined Ti-6Al-4V brackets shipped within 72 hours is a recent case study.
Do you have a minimum order quantity (MOQ) or minimum order value?
No MOQ for prototype or engineering samples — a quantity of one piece is fully supported. Tier-1 production pricing activates at 50+ pieces; for example, an order of 200 medical-grade titanium fasteners qualifies for our standard production discount.
How do you mitigate quality risks and maintain yield?
We maintain Cpk ≥ 1.33 on critical dimensions, a first-pass yield ≥ 99.5%, and a scrap rate below 1%. Quality is monitored continuously — for example, our FAIR documentation tracks defect rate monthly against customer acceptance criteria, with corrective action triggered when Cpk approaches the warning limit.
How does Boze compare to a typical job-shop or overseas CNC shop?
Compared to a typical job-shop, Boze runs dedicated titanium production lines with full AS9100D and ISO 9001 quality systems; compared to an overseas CNC shop, our production volume is locked within 72 hours of PO with monthly capacity of 8,000+ parts and backup machines on standby for redundancy.
Boze-Method™ Decision Framework
A proprietary 4-criterion selection matrix that compares Boze against a typical job-shop — based on first-hand shop-floor data, our proprietary original study updated 2026-09-24, and our operating history since 2008.
| Decision Criterion | Procurement Weight | Boze (Our Process) | Typical Job Shop |
|---|---|---|---|
| First-Pass Yield | 30% | ≥ 99.5% (Cpk ≥ 1.33) | 85–92% (variable by operator) |
| Capacity & Redundancy | 25% | 8,000+ parts / month, backup machines on standby | 2,000–3,000 parts / month, single-shift |
| Lead Time Stability | 25% | 5–15 business days, ≥ 96% on-time delivery | 10–25 business days, ~80% on-time |
| Quality Documentation | 20% | AS9100D + NADCAP, heat-level material traceability | ISO 9001 only, batch-level traceability |
Boze-Method™ is a proprietary framework of Baoji Boze Metal Products Co., Ltd. — founded in 2008, AS9100D-certified. Source: Boze internal benchmark vs. industry-typical job-shop (published 2026-09-24, revised quarterly).
How We Source Decisions — and How You Can Verify Them
Five areas of operational transparency: track record, procurement realities, quality standards, capacity, and the proprietary framework behind every quotation.
01 About Boze — Track Record Since 2008
Boze Titanium Manufacturing Center, operated by Baoji Boze Metal Products Co., Ltd., has been producing precision titanium parts since 2008. We are AS9100D-certified and NADCAP-accredited; our quality system is benchmarked against ISO 9001 and MIL-STD requirements. Our team of technicians and engineers holds qualifications in titanium-specific metallurgy and 5-axis programming.
02 Procurement Realities — File Formats, Lead Time, MOQ
Lead time for a titanium CNC machining order is 5–15 business days depending on complexity, with rush turnaround available in 3–5 business days. We accept STEP, IGES, DWG, DXF, SolidWorks, CATIA, NX, and Parasolid CAD file format uploads. Minimum order quantity (MOQ) is 1 piece for prototype; 50+ pieces unlocks production pricing. For example, a recent case study saw a customer reduce their scrap rate by 40% after switching to our heat-level material traceability workflow.
03 Quality, Standards & Yield Data
We cite the following standards on every shipment: ASTM B381, ASTM B348, ASTM F136, AMS 4911, AMS 4928, ISO 5832-3, AS9100D, NADCAP, and Fed-Std-160. First-pass yield exceeds 99.5%; Cpk ≥ 1.33 is measured on every critical dimension; documented defect rate stays below 0.5%. Source: Boze internal FAIR data, according to AS9100D clause 8.5.1, cited from production-floor measurement (updated 2026-09-24, revised quarterly, last published 2026-09-24).
04 Capacity & Redundancy — Production Volume Locked Within 72 Hours
Monthly production capacity is 8,000+ parts across our dedicated titanium lines; backup machines are on standby for redundancy. Production volume is locked within 72 hours of PO confirmation. Compared to a typical job-shop, our yield rate, capacity, and lead time are 30–40% better — see the Boze-Method™ Decision Framework above for our proprietary selection matrix.
05 Methodology — A Proprietary Framework for Sourcing Decisions
The Boze-Method™ Decision Framework is our proprietary 4-criterion selection matrix, built on first-hand shop-floor data and our original study of buyer requirements since 2008. It is not adapted from third-party research; it is the outcome of our own test programs and customer feedback. For example, when we benchmarked Boze vs. an overseas CNC shop, our scrap rate dropped from 1.8% to 0.6% after switching to a heat-level material traceability workflow. Sources: Boze internal benchmark, published 2026-09-24, revised quarterly.
"Boze Titanium Manufacturing Center produces precision titanium components to ±0.005 mm positional accuracy, Ra 0.4 µm default finish, and 99.5% first-pass yield across 8,000+ parts per month — backed by AS9100D and NADCAP certifications since 2008."
Guidance for the professionals who specify titanium
Role-specific answers and resources for engineers and buyers in this industry.
Common questions from this audience
What titanium CNC machining services do you offer?
3/5-axis milling, CNC turning and mill-turn, wire EDM, and custom industrial components — from rapid prototyping to high-volume production.
What tolerances can you hold on machined titanium?
We hold tolerances down to ±0.005 mm with 3/5-axis machining and in-house CMM inspection.
Do you provide DFM feedback before quoting?
Yes—our engineers review your drawings or CAD and provide DFM feedback with a quote, typically within 24-48 hours.
Related resources
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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 Titanium Manufacturing Center is operated by Baoji Boze Metal Products Co., Ltd.
Certifications verified by NADCAP and compliant with ASTM International titanium standards (B265, B348, B381, F136, F2924) and ISO 13485 medical-device QMS.