Difficult-Alloy Precision CNC Machining

Titanium Milling Services (CNC) — RFQ-Ready Machining for Critical Titanium Parts

AXALLOY Precision in Shenzhen supports international engineering, procurement, and quality teams that need titanium parts machined correctly the first time, with documented inspection and a repeatable process — from prototype to controlled production.

If your titanium components include thin walls, tight GD&T, precision interfaces, or difficult holes and threads, our team can review your drawings and return a machining plan that balances tolerance, surface finish, lead time, and cost risk.

Titanium CNC milling precision machining

What you get when you request a Titanium Milling RFQ

Every RFQ is evaluated for manufacturability, tolerance risk, and lead time before we commit — so you receive a realistic plan, not just a quotation.

1) DFM feedback that reduces redesign loops

You receive practical suggestions on:

  • Tool access, internal radii, and feature sequencing to avoid chatter and deflection in titanium
  • Tolerance stack and datum strategy to protect your critical interfaces
  • Fixture approach (especially for thin walls and long-reach features) to improve repeatability

Why it matters: fewer ECO cycles, fewer scrapped prototypes, and a smoother handoff into repeat builds.

2) Multi-axis milling for fewer setups

Use 3-axis, 4-axis, or 5-axis machining to reduce re-clamping and improve feature relationships across the part.

What you gain:

  • Tighter positional relationships between features
  • More stable flatness and parallelism
  • Less risk of tolerance drift across setups

Particularly valuable for aerospace brackets, medical tooling components, semiconductor equipment parts, and precision manifolds.

3) Surface finish and edge-condition control

Titanium milling often fails at the "small details" stage: burrs, sharp edges, inconsistent finishes, or damaged sealing surfaces.

What you receive: defined deburring and edge breaks, optional grinding where appropriate, and finish control aligned to your drawing and inspection needs — so parts fit and seal as intended.

4) Inspection evidence and traceability

For quality teams, we provide the documentation you need to sign off parts:

  • Material certification and lot traceability
  • First Article Inspection (FAI) and full dimensional reports
  • Surface roughness reporting and special-process records (when required)

How this helps you: faster internal approval, fewer back-and-forth emails, and clearer containment if anything changes.

5) Lead times that protect your program schedule

Prototype and low-volume titanium programs are often schedule-driven — design validation, customer trials, line-down risk.

What you gain: shorter iteration cycles, so you can validate fit and function earlier, freeze the design sooner, and reduce the chance of late-stage surprises that delay qualification or shipment.

Titanium alloys we commonly mill

We machine titanium alloys used in demanding applications, including:

  • Titanium Grade 2 — commercially pure, excellent corrosion resistance
  • Titanium Grade 5 (Ti-6Al-4V) — the workhorse aerospace alloy
  • Titanium Grade 23 — ELI variant for medical and high-toughness applications
  • Titanium Grade 9, Grade 12 — project-dependent specialty grades

If you're unsure which grade best matches corrosion, strength, or temperature needs, share the application context and we'll flag manufacturability considerations before you commit.

Typical titanium parts we machine

Aerospace & UAV

Structural components, brackets, housings

Medical Device

Components and precision fixtures

Semiconductor Equipment

Interfaces, plates, frames

Robotics & Automation

Components requiring stiffness-to-weight performance

Energy & Marine

Components needing corrosion resistance

Titanium Milling capability parameters

Our production floor is equipped to handle titanium parts from single prototypes to batch production of 10,000+ units, with documented quality control at every stage.

General Capability

Supported Production Volume 1–10,000+ parts
Prototype Quantity 1–20 parts
Low-Volume Production 20–500 parts
Batch Production 500–10,000+ parts
Standard Dimensional Tolerance ±0.010 mm
Precision Dimensional Tolerance ±0.005 mm
Position Tolerance Down to 0.010 mm
Flatness Down to 0.005 mm
Concentricity Down to 0.008 mm
Standard Surface Finish Ra 1.6 μm
Precision Machined Finish Ra 0.8 μm
Ground Surface Finish Down to Ra 0.2 μm
Minimum Wall Thickness 0.5 mm
Min. Machined Hole Diameter Ø0.5 mm
Minimum Thread Size M1.0
Maximum Part Weight 1,000 kg
Accepted Drawing Units Metric and Imperial
Prototype Lead Time 5–10 business days
Standard Lead Time 10–20 business days
Expedited Service Available
Minimum Order Quantity 1 part

CNC Milling (Titanium Milling Core)

Machining Types 3-axis, 4-axis and 5-axis CNC milling
Max 3-Axis Part Size 1,000 × 600 × 600 mm
Maximum 4-Axis Part Size Ø500 × 800 mm
Maximum 5-Axis Part Size Ø500 × 400 mm
Maximum Table Load 800 kg
Maximum Spindle Speed 20,000 rpm
Spindle Taper BT40 / HSK-A63
Tool Magazine Capacity Up to 60 tools
Positioning Accuracy ±0.005 mm
Repeatability ±0.003 mm
Milling Tolerance Down to ±0.005 mm
Minimum Internal Corner Radius R0.3 mm
Minimum Wall Thickness 0.5 mm
Supported Operations Facing, contouring, pocketing, drilling, tapping, boring, thread milling

Quality control for titanium parts

If your internal process requires evidence, we can align inspection output to your needs — from FAI to full dimensional reporting with material traceability.

Inspection Capabilities

CMM Measuring Range 700 × 1,000 × 600 mm
CMM Accuracy Up to 1.8 + L/300 μm
Optical Measurement Accuracy ±0.002 mm
Height Gauge Resolution 0.001 mm
Surface Roughness Range Ra 0.05–40 μm
Hardness Testing Rockwell, Brinell and Vickers
Thread Inspection Thread gauges and optical measurement
Inspection Environment Temperature-controlled inspection room
First Article Inspection Available
Full Dimensional Inspection Available
In-Process Inspection Available
Final Inspection Standard

Documentation Deliverables

Material Test Report / MTC Yes
Certificate of Conformance (CoC) Yes
First Article Inspection Report Yes
Ballooned Drawing + Dimensional Report Yes
Surface Roughness Report Yes
Heat Treatment / Coating Certificates Yes (when required)
Material and Lot Traceability Yes
Special Process Records Yes
Inspection Photos Upon request

Special processes that support titanium milling

When your part needs more than milling, we coordinate:

EDM (wire / sinker) Precision grinding Deburring & cleaning Marking Assembly support Heat treatment Passivation Coating

You get a clearer single-supplier workflow, fewer handoffs, and less schedule risk.

RFQ checklist for an accurate quote

To return a quote you can actually use for internal approval, please include the following:

Supported file formats:

STEP, STP, IGES, IGS, X_T, X_B, SLDPRT, SAT, PDF, DWG, DXF (up to 500 MB per RFQ)

1

3D Model + 2D Drawing

STEP/STP preferred; PDF/DWG/DXF accepted

2

Titanium Grade

e.g., Grade 5 / Grade 2 and any spec requirements

3

Quantity

Prototype + expected repeat volume

4

Critical Tolerances / GD&T

Include any inspection notes

5

Surface Finish Requirements

Ra value and edge-break / deburr expectations

6

Required Certificates

MTR, CoC, FAI, dimensional report, etc.

7

Target Ship Date & Delivery Terms

Include your program schedule requirements

Request a Titanium Milling RFQ

Send your drawings and models, and we'll respond with:

  • A manufacturability review (as needed)
  • Recommended process route (3/4/5-axis, fixturing approach)
  • Quote with lead time and requested quality documentation options

Email / Upload: Share your RFQ package with quantities, target date, and required certificates to start.