Titanium CNC machining.
Titanium Ti-6Al-4V components where strength-to-weight, heat resistance, and corrosion resistance matter. Common in aerospace structural components and medical device applications.

Grades supported.
| Grade | |
|---|---|
| Ti-6Al-4V (Grade 5) | Stocked or sourced for qualified titanium programs. |
What engineers should know.
Ti-6Al-4V (Grade 5) is the most widely specified titanium alloy across aerospace and medical applications.
Lower material removal rates than aluminum or stainless — programming and tooling strategies matter for cost control.
Surface finish and handling controlled to avoid contamination on critical components.
Machining Capabilities for Titanium
Titanium CNC Milling
3- and 4-axis production of titanium brackets, housings, and fittings.
Titanium 5-Axis Milling
Complex titanium geometries produced in a single controlled setup.
Titanium CNC Turning
Efficient production of rotational titanium geometry with concentricity control.
Titanium Swiss Turning
Small-diameter titanium components with tight concentricity and repeatability.
Typical applications.
- Aerospace structural brackets
- Medical instrument components
- High-strength fittings
- Heat-tolerant hardware
Surface finishing options.
Anodize and passivation coordinated through qualified outside processors when specified.

Titanium — FAQs
The questions engineering and procurement teams ask most often before a first quote.
Do you machine other titanium grades?
Ti-6Al-4V (Grade 5) is the most common. Other grades can be sourced for qualified programs — discuss requirements at RFQ.
Why is titanium more expensive to machine?
Material cost is higher and cycle times are longer due to lower removal rates and specific tooling requirements. DFM review can identify opportunities to manage cost on titanium parts.
Have a titanium part for review?
Upload your CAD files or drawings and our engineering team will review the project requirements.