Boze Titanium Manufacturing Center | Titanium Parts Procurement Gateway

Custom Titanium Parts Manufacturing

Custom titanium components manufactured from prototype to production. BOZE provides precision CNC machining, welding, EDM and fabrication solutions with direct access to the Baoji titanium supply chain.

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7 Part Categories
Gr1-Gr23 Titanium Grades
24-48h Quote TAT
CNC Machining Welding & Fabrication Wire EDM Rapid Prototyping Material Traceability

What is custom titanium parts manufacturing?

Custom titanium parts manufacturing from BOZE covers prototype through mid-volume production of CNC-machined, fabricated, welded and EDM-processed titanium components, machined from certified grades (Gr1–Gr4 CP-titanium and Ti-6Al-4V / Ti-6Al-4V ELI alloys) under AS9100D, ISO 9001 and ISO 13485 quality systems with full EN 10204 3.1 traceability. Submit drawings for a 24–48 hour DFM-reviewed quotation.

BOZE is a titanium parts manufacturing partner for aerospace, marine, UAV, motorsport, medical and industrial OEMs. Upload your drawing for a DFM review and quotation, or browse the part categories below to understand the titanium components we machine, fabricate and assemble — from Grade 1 CP-titanium to Ti-6Al-4V ELI.

Titanium Parts We Manufacture

Browse titanium part categories to understand what we machine, fabricate and assemble.

CNC milled titanium flat-mount brake adapter with machined pockets and bolt pattern

01 — Titanium CNC Parts

Precision CNC milled, turned and wire-EDM titanium components to ±0.005 mm.

Key Facts

3/5-axis CNC · ±0.005 mm tolerance · Prototype → 10,000+ pc · 1.0–2.5× cost index

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Fabricated titanium ceramic-heater clamp plate with bolt pattern and forming features

02 — Titanium Fabricated Parts

Welded, laser-cut, waterjet and formed titanium assemblies and fabrications.

Key Facts

TIG / laser / formed · ±0.1 mm typical · 1 → 500 assemblies · 1.1–2.0× cost index

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Titanium ASME B16.5 blind flange with machined sealing face and bolt holes

03 — Titanium Pipe Components

Pipe spool fabrication, flanges, fittings, tube assemblies and welded pipe systems.

Key Facts

Welded spools · ±0.2 mm on spool OD · Project-order quantities · 1.2–2.4× cost index

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CNC turned titanium AUV propeller shaft for marine and subsea service

04 — Titanium Marine Parts

Corrosion-resistant titanium hardware for seawater, subsea and marine systems.

Key Facts

CNC + fabrication · ±0.05 mm critical · Low-volume to series · 1.4–2.6× cost index

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Lightweight titanium shadow-ring bracket for UAV and drone airframe structures

05 — Titanium UAV Components

Lightweight, high-strength titanium precision parts for UAV and drone airframes.

Key Facts

5-axis + Swiss-type · ±0.005 mm thin-wall · Prototype → 1,000 pc · 1.6–3.0× cost index

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Machined titanium brake rotor disc for high-performance motorsport applications

06 — Titanium Motorsport Parts

High-performance titanium suspension, fasteners and exhaust components for racing.

Key Facts

CNC + welded assemblies · ±0.02 mm suspension · Small series lots · 1.5–2.8× cost index

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Titanium acetabular cup for orthopedic medical implant applications

07 — Titanium Medical Components

Biocompatible, certified titanium implants and surgical instruments.

Key Facts

CNC + electropolish · ±0.01 mm · Ra ≤ 0.4 µm · Project / sterile-pack · 1.8–3.5× cost index

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Start Your Titanium Parts Project

Send your drawing for a DFM review — our engineering team returns a quote within 24–48 hours.

Request Quote

Procurement & Supply-Chain Readiness

Indicative commercial parameters for evaluation. Final terms are confirmed per RFQ.

Parameter Value
Batch Range 1-piece prototype → 10–1,000-piece mid-volume production
MOQ 5–10 pieces or ≥5 kg per part number (project-dependent)
Sample Policy Paid prototypes at cost recovery; fees refundable against bulk PO
Prototype Lead Time 3–5 working weeks (incl. DFM + First Article Inspection)
Low-Volume Lead Time 4–6 working weeks (5–50 pieces)
Mid-Volume Lead Time 5–8 working weeks (50–500 pieces; bar stock lead time included)
Expedited Surcharge Typically +20–30% on standard lead time
Customer-Supplied Material Accepted (customer-issued titanium bar/plate); full traceability preserved
Quality Systems AS9100D · ISO 9001 · ISO 13485
Material Traceability EN 10204 3.1 mill certificates per shipment
NDT Capability UT / RT / PT / MPI as specified
Ti-6Al-4V Roughing Vc (m/min) 60–80 (TiAlN-coated carbide, f 0.15–0.25 mm/rev, ample coolant)
Ti-6Al-4V Finishing Vc (m/min) 40–60 (TiAlN/AlCrN-coated, f 0.05–0.10 mm/rev; Ra ≤ 0.8 µm)
Ti-6Al-4V Drilling Vc (m/min) 20–40 (carbide twist drill, f 0.10–0.20 mm/rev, chip evacuation mandatory)
Ti-5Al-5V-5Fe-3Cr Roughing Vc (m/min) 50–70 (higher strength; TiAlN-coated, f 0.12–0.20 mm/rev)
Beta-C (Ti-3Al-8V-6Cr-4Zr-4Mo) Roughing Vc (m/min) 40–60 (high-temperature alloy; coated carbide, f 0.10–0.18 mm/rev)
Ti-5Al-2.5Sn Roughing Vc (m/min) 70–90 (cold-formable titanium; carbide, f 0.15–0.25 mm/rev)
CP Grade 2/5 Roughing Vc (m/min) 80–120 (best machinability; carbide, f 0.15–0.30 mm/rev)
Industry-Adjusted Vc Cap Aerospace AS9100D ≤ 60 m/min · Medical ISO 13485 40–50 m/min · Industrial 60–80 m/min · Prototype 30–50 m/min

Indicative parameters; project-specific MOQ, lead time and surcharge confirmed on RFQ.

Titanium Part Family Comparison

Engineering-side view of the seven titanium part families BOZE manufactures through /parts/. Cost index is qualitative (CP titanium baseline) and reflects families most commonly procured for multi-vertical OEM programs.

Part FamilyPrimary ProcessTypical ToleranceTypical LotRelative Cost
Titanium CNC Parts 3/5-axis milling, turning, wire EDM±0.005 mm (CMM-verified)Prototype → 10,000+ pc1.0–2.5×
Titanium Fabricated Parts TIG / laser cut / formed±0.1 mm typical1 → 500 assemblies1.1–2.0×
Titanium Pipe Components Spool fabrication, welded±0.2 mm on spool ODProject-orders1.2–2.4×
Titanium Marine Parts CNC + fabrication±0.05 mm critical featuresLow-volume to series1.4–2.6×
Titanium UAV Components 5-axis milling, Swiss-type±0.005 mm thin-wallPrototype → 1,000 pc1.6–3.0×
Titanium Motorsport Parts CNC + welded assemblies±0.02 mm suspensionSmall series1.5–2.8×
Titanium Medical Components CNC, electropolished±0.01 mm + Ra ≤ 0.4 µmProject / sterile-pack1.8–3.5×

Tolerance, lot and cost ranges are engineering-side reference figures, not quotations. Project-specific terms confirmed via RFQ.

Cutting Speed (Vc) Reference by Titanium Grade

Cutting speed Vc — not spindle RPM — is the primary constraint for titanium. Titanium has very low thermal conductivity (≈ 7 W/m·K), so heat concentrates at the cutting edge: raising RPM to "compensate" slow feed accelerates built-up edge and chipping. Coolant: oil-based > emulsion >> dry. Tool coating: TiAlN / AlCrN > TiN > uncoated.

Grade / Operation Cutting Speed (Vc) Feed (f) Tool Coolant Notes
Ti-6Al-4V — Roughing 60–80 m/min f 0.15–0.25 mm/rev TiAlN-coated carbide ample flood + air blast Generic first choice; hot-hardness retention
Ti-6Al-4V — Finishing 40–60 m/min f 0.05–0.10 mm/rev TiAlN / AlCrN-coated ample flood ISO 5/6 tolerance · Ra ≤ 0.8 µm
Ti-6Al-4V — Drilling 20–40 m/min f 0.10–0.20 mm/rev carbide twist drill ample flood + chip evacuation Titanium sticks to flute; forced evacuation mandatory
Ti-5Al-5V-5Fe-3Cr — Roughing 50–70 m/min f 0.12–0.20 mm/rev TiAlN-coated carbide ample flood Higher strength → Vc trimmed vs Ti-6-4
Beta-C (Ti-3Al-8V-6Cr-4Zr-4Mo) — Roughing 40–60 m/min f 0.10–0.18 mm/rev coated carbide ample flood High-temperature alloy; hardest to cut
Ti-5Al-2.5Sn — Roughing 70–90 m/min f 0.15–0.25 mm/rev carbide ample flood Cold-formable titanium; better machinability
CP Grade 2 / 5 — Roughing 80–120 m/min f 0.15–0.30 mm/rev carbide ample flood Best machinability; low strength

Industry-Adjusted Vc Cap

Aerospace (AS9100D)
Vc ≤ 60 m/min (conservative)

Ra ≤ 0.8 µm · full cutting-parameter file archived and traceable

Medical (ISO 13485)
40–50 m/min

Ra ≤ 0.4 µm · no burrs, no micro-cracks (implant-critical)

Automotive / Industrial
60–80 m/min

Cost-sensitive · optimise cycle time · wider tool-wear budget

Prototype / Low-Volume
30–50 m/min

First-article yield ≥ 95% · time secondary

Troubleshooting

Symptom Likely Cause Action
Built-up edge / smearing Vc too high OR insufficient coolant Reduce Vc · increase coolant flow · verify coating selection
Insert chipping / breakage Workpiece rigidity insufficient OR f too aggressive Re-check fixturing · reduce feed per tooth · verify ap
Surface roughness exceeds spec Feed too high OR coolant concentration low Reduce f · raise coolant concentration · switch to finer edge prep
Conservative Start Parameter

Conservative start for Ti-6Al-4V finish milling (D = 25 mm): n ≈ 760 RPM · Vf = n × f ≈ 760 × 0.08 ≈ 60 mm/min · actual Vc ≈ 60 m/min. Ramp in small increments only after confirming chip color and surface finish.

Titanium Parts FAQ

What is the difference between /parts/ and /products/ on this site?

The Titanium Parts section is our B2B procurement gateway — it answers how we custom-manufacture titanium components to your drawings (CNC, welding, EDM, fabrication) and how to request a quote. The Products & Solutions section demonstrates our engineering systems and component capabilities. Both reference the same certified manufacturing center in Baoji, China.

Which titanium grades can BOZE manufacture parts in?

We machine and fabricate commercially pure grades (Gr1–Gr4) and alpha-beta, beta and near-beta alloys including Ti-6Al-4V (Gr5), Ti-6Al-4V ELI (Gr23), Ti-0.2Pd (Gr7), Gr9, Gr12, Gr19 and Gr21 — all supplied with material traceability and mill test certificates.

Can I upload a drawing for a quote?

Yes. Use the "Upload Drawing" or "Request Quote" buttons on this page. Our engineering team performs a DFM (design-for-manufacturing) review and returns a quotation within 24–48 hours, including tolerance, surface finish and delivery recommendations.

What quality certifications does the BOZE manufacturing center hold?

The facility operates under AS9100D and ISO 9001 quality systems (with ISO 13485 for medical). Every shipment is backed by material traceability (EN 10204 3.1 mill certificates) and non-destructive testing as specified.

What is your minimum order quantity (MOQ)?

We support prototypes, low-volume production and batch production. MOQ is project-dependent — for many CNC and fabricated titanium parts we can produce single-piece prototypes and ramp to production.

From Drawing to Shipment — Manufacturing Workflow

How a custom titanium parts program moves through BOZE engineering, production and quality gates.

  1. 1. RFQ Intake

    Customer submits 3D/2D drawing, grade, tolerance, surface finish, NDT.

    Deliverable: RFQ ticket + NDA on request

  2. 2. DFM Review

    Engineering reviews manufacturability, GDAM, fixturing and cost drivers.

    Deliverable: DFM report + indicative price (24–48 h)

  3. 3. Quotation

    Formal quote issued with lead time, MOQ, payment terms and sample policy.

    Deliverable: Signed quotation + PO

  4. 4. First Article (FAI)

    First article machined, CMM-checked, material certificates issued.

    Deliverable: FAI report + CMM inspection

  5. 5. Production Run

    Approved FAI released to batch; in-process inspection at each stage.

    Deliverable: Batch + traveler + MTC (EN 10204 3.1)

  6. 6. NDT & Surface

    UT / RT / PT, surface treatment (passivation, anodizing, PVD) as specified.

    Deliverable: NDT report + surface records

  7. 7. Shipment

    Export packing, HS code, COO, Incoterms and logistics coordinated.

    Deliverable: Shipment + commercial invoice + packing list

Boundary Conditions & Engineering Failure Modes

Engineering-side disclosures for buyers and designers evaluating titanium parts manufacturing feasibility.

Not Suitable For

  • Mass-production > 50,000 pcs/month

    Optimized for prototype-to-mid-volume; for very high-volume runs another process tier is more cost-effective.

  • Non-titanium substitutes

    Titanium-specific tooling, fixturing and chemistry — aluminum / steel jobs are out of scope for this page.

  • Replacing certified OEM-issued parts

    Customer-OEM parts remain governed by their own FAA / MDR / MIL documentation chain; BOZE supports build-to-print but cannot re-issue OEM certifications.

Common Design Mistakes

  • Mistake: Specifying ±0.001 mm tolerances where ±0.05 mm is sufficient

    Fix: Tighten only critical GDAM features; reduces cycle time and cost 10–30%.

  • Mistake: Ignoring titanium-specific machinability (work-hardening, springback)

    Fix: Engage DFM in Step 2; fixturing and cutter selection reviewed before quotation.

  • Mistake: Mixing grades on a single part (CP + alloy)

    Fix: Confirm grade(s) up-front; mixing affects weld procedure and certificates.

  • Mistake: Assuming Ti-6Al-4V weldability like CP-Ti

    Fix: Post-weld heat treatment required; design weld access accordingly.

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 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.

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