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Titanium Alloys

Titanium Alloy
CNC Machining

Machining Grade 2 commercially pure titanium and Grade 5 Ti-6Al-4V (TC4) for aerospace, medical, marine, and high-performance structural applications where strength-to-weight ratio and corrosion resistance are critical.

Grade 2 (CP Ti) and Grade 5 (Ti-6Al-4V / TC4) in stock
Aerospace, medical, marine, and mission-critical applications
CNC milling, turning, 5-axis machining with titanium-optimized tooling
Material certification and full traceability on every order
Titanium CNC Machined Parts
Titanium Milling
Ti-6Al-4V Parts
Material Grades

Titanium Grades We Machine

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Grade 2 — Commercially Pure Ti
Excellent corrosion resistance · Good formability · Biocompatible
Chemical process equipment, marine hardware, heat exchangers, medical implant-adjacent components, and corrosion-resistant fittings where extreme strength is not the primary requirement but purity and corrosion performance are essential.
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Grade 5 — Ti-6Al-4V / TC4
Highest strength-to-weight · Aerospace standard · Heat-treatable
Aerospace structural brackets, flight-critical hardware, UAV lightweight frames, medical implant components, high-performance motorsport parts, and mission-critical assemblies for demanding environments where weight and strength are both critical.
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Grade Selection

Grade 2 vs Grade 5: How to Choose

Property Grade 2 (CP Ti) Grade 5 (Ti-6Al-4V)
Strength
Corrosion Resist.
Weight Both ~56% of steel weight — significant weight savings
Machinability
Weldability
Biocompatibility
Typical Parts Marine fittings, chemical parts, heat exchangers Aerospace brackets, UAV frames, medical implants
Best For Corrosion-critical, moderate-load parts Strength-critical, weight-sensitive parts
Core Value

Why Titanium Machining Requires Specialized Capability

Titanium is not just another metal to machine. Its low thermal conductivity, spring-back tendency, and tool wear behavior demand dedicated process control.

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Challenges with Titanium Machining
Extreme heat at the cutting edgeTitanium's low thermal conductivity concentrates heat in the tool — causing rapid tool wear if feeds, speeds, and coolant are not precisely managed.
Spring-back and deflectionTitanium is elastic — thin walls and slender features deflect under cutting forces, then spring back, producing out-of-tolerance dimensions.
Aggressive tool wearTitanium is chemically reactive with tool coatings at high temperature — causing built-up edge, chipping, and premature tool failure.
Work hardening at the surfaceInterrupted cuts and dwell time harden the machined surface — making subsequent passes more difficult and reducing surface quality.
How We Handle It
Titanium-optimized feeds, speeds, and coolant deliveryCutting parameters developed specifically for Grade 2 and Grade 5 — with high-pressure coolant directed at the cutting zone.
Rigid setups and controlled cutting forcesShort tool stick-out, rigid fixturing, and climb milling strategy to minimize deflection on thin-wall and slender features.
Coated carbide and ceramic toolingTool grade and coating matched to titanium — with tool life monitored and tools changed before wear affects part quality.
Continuous cutting strategy to avoid work hardeningProgramming avoids dwell, rubbing, and re-cutting of hardened surfaces — maintaining consistent chip load throughout.
Capabilities

Machining Capabilities for Titanium Alloys

Ti Milling
CAP / 01
CNC Milling for Titanium Parts
Structural brackets, housings, and pocketed components milled from Grade 5 billet with high-pressure coolant and controlled chip load for consistent surface quality.
Ti Turning
CAP / 02
CNC Turning for Titanium Shafts
Grade 2 and Grade 5 shafts, connectors, spacers, and rotational components turned with titanium-specific insert geometry and controlled surface finish.
5-Axis Ti
CAP / 03
5-Axis Machining for Complex Ti Parts
Multi-face aerospace brackets, UAV structural connectors, and complex lightweight parts machined in a single setup — eliminating re-fixturing error on high-value material.
Product Types

Typical Titanium Parts We Machine

Aerospace Brackets
Aerospace Structural Brackets
Grade 5 / Ti-6Al-4V
5-axis machining · Flight-critical hardware
UAV Frames
UAV & Drone Structural Parts
Grade 5 / Ti-6Al-4V
Lightweight frames · Motor mounts · Arm connectors
Medical Parts
Medical & Implant Components
Grade 2 · Grade 5
Biocompatible · Surgical instruments & implant-adjacent
Marine Hardware
Marine & Chemical Parts
Grade 2
Corrosion-resistant · Heat exchangers & fittings
High-Performance Fasteners
High-Performance Fasteners
Grade 5 / TC4
Precision turned · Motorsport & aerospace
Mission-Critical Parts
Mission-Critical Structural Parts
Grade 5 / Ti-6Al-4V
High-reliability assemblies · Demanding environments
Ti Shafts
Titanium Shafts & Connectors
Grade 2 · Grade 5
CNC turning · Lightweight rotational parts
Ti Transmission
Ti Transmission Components
Grade 5 / TC4
Gears, shafts & precision rotational hardware
Surface Treatment

Surface Finish Options for Titanium Parts

Precision Machined Finish
Standard CNC machined surface for structural and internal parts. Titanium's natural oxide layer provides inherent corrosion protection without additional coating in most environments.
Polishing & Electropolishing
Mirror or near-mirror finish for medical, optical, and high-cleanliness applications. Electropolishing removes micro-burrs and creates a passivated, ultra-smooth surface.
Bead Blasting
Uniform matte texture for a clean, non-reflective appearance. Common on aerospace and visible titanium parts where machining marks need to be removed.
Titanium Anodizing
Color anodizing for identification, aesthetic, or functional oxide layer enhancement. Unlike aluminum anodizing, titanium anodizing produces color through interference — no dye required.
Workflow

Titanium Machining Process Flow

1
Material & Cert Review
Grade 2 or Grade 5 billet sourced with mill certificate — heat number and chemistry verified before release to production.
2
Rough Machining
Billet roughed with titanium-optimized feeds and high-pressure coolant — managing heat and tool wear from the first cut.
3
Finish Machining
Final dimensions, surface finish, and critical features completed with fresh tooling and controlled cutting strategy.
4
Surface Treatment
Bead blasting, polishing, anodizing, or passivation applied as specified — or shipped with as-machined natural oxide finish.
5
Inspection & Delivery
CMM verification, surface checks, and documentation package — mill cert, inspection report, and traceability records shipped with parts.
Why Choose Us

Why Machine Titanium With Us

Titanium is expensive material with narrow process windows. The cost of a scrapped part is high — not just in material, but in lead time. Getting it right the first time matters more here than on any other metal.

1
Dedicated Titanium Process Knowledge
Feeds, speeds, coolant strategy, and tooling selection developed specifically for Grade 2 and Grade 5 — not adapted from aluminum or steel parameters.
2
Aerospace, Medical & Mission-Critical Experience
Parts delivered into aerospace supply chains, medical device programs, UAV platforms, and high-reliability systems where documentation and traceability are mandatory.
3
Full Material Traceability on Every Order
Mill certificates, heat numbers, chemical composition, and mechanical properties documented and delivered — because titanium applications always require it.
4
Prototype to Production — No Supplier Switch
From 1-piece prototype validation to recurring production supply — same machines, same process, same quality system. No re-qualification when you scale.
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Send Your Drawing.
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Every enquiry includes a DFM review — tolerance feasibility, material confirmation, and process approach confirmed before production starts. MOQ 1 piece.

24hr
Quote Response
MOQ 1
Prototypes OK
ISO
9001:2015
📐
DFM Review on Every Enquiry
Tolerance feasibility, fixturing strategy, and material confirmation. Specific, actionable feedback — not generic pushback.
🎯
First Article Inspection — Standard
FAI report on every new run. Material certs and surface treatment certs included with every shipment.
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Same Process: Prototype to Production
Process plan from your prototype applies to production batches. No re-qualification when you scale.
3 / 4 / 5-Axis CNC + Turning
Complex structural parts, shafts, housings, and transmission components. Metals and engineering plastics.
ISO 9001:2015 3/4/5-Axis Milling CNC Turning CMM Inspection Global Delivery