Titanium CNC Machining Services for Custom Parts
Factory-direct titanium CNC machining for high-strength, lightweight and corrosion-resistant custom parts, including aerospace-style brackets, medical-style components, robotic parts, marine hardware, shafts, sleeves, fixtures and precision titanium assemblies. Upload CAD files for material selection, DFM review, tolerance evaluation and finishing recommendations.

Grade 2, Grade 5 & Ti-6Al-4V
Material selection reviewed by strength, corrosion and application.
Milling, Turning & 5-Axis
Process selected by geometry, datums, threads and tool access.
High Strength-to-Weight Parts
For aerospace-style, robotics and high-value assemblies.
Medical-Style Components
Smooth edges, clean handling and inspection requirements reviewed.
DFM & Inspection Review
Heat, chatter, burrs, threads, datums and roughness checked.
When should I choose titanium? | Choose titanium when your part requires high strength-to-weight performance, corrosion resistance, biocompatibility, heat resistance or reliable performance in demanding environments. |
| Which titanium grade should I choose? | Grade 2 is commonly used for corrosion-resistant commercially pure titanium parts. Grade 5 / Ti-6Al-4V is commonly used when higher strength and lightweight performance are required. |
Is titanium difficult to machine? | Yes. Titanium machining requires careful cutting strategy because heat buildup, low thermal conductivity, tool wear, chatter and burr control can affect part quality and cost. |
Can you machine Grade 5 titanium? | Yes. Baosheng can review Grade 5 / Ti-6Al-4V titanium parts for milling, turning, 5-axis machining, tolerance strategy, finishing and inspection requirements. |
| Can you support prototypes and production? | Yes. Baosheng supports titanium prototype machining, low-volume production and repeat CNC production for validated titanium components. |
| Can you inspect critical titanium features? | Yes. Critical dimensions, threads, holes, datum surfaces, mating faces, flatness, OD/ID and surface finish can be inspected according to drawing requirements. |
Titanium Capability
Titanium CNC Machining Capability
Titanium machining capability depends on material grade, part geometry, wall thickness, tool access, feature depth, tolerance, surface finish and inspection method. Baosheng reviews CAD models and 2D drawings before machining to identify heat buildup, tool wear, chatter, burr control, finishing impact and inspection requirements.
| Capability Area | Manufacturing Range | Best For |
|---|---|---|
| Titanium CNC Milling | Titanium brackets, plates, pockets, fixtures, housings and lightweight structural parts. | Aerospace-style brackets, robotic components, fixtures and high-performance mounting parts. |
| Titanium CNC Turning | Titanium shafts, pins, sleeves, spacers, bushings, threaded fittings and round parts. | Precision round components, medical-style turned parts, marine hardware and assembly parts. |
| 5-Axis Titanium Machining | Multi-face titanium parts with angled surfaces, datum relationships and reduced re-clamping. | Complex brackets, lightweight structures, medical-style components and aerospace-style parts. |
| Titanium Prototype Machining | Functional titanium prototypes for strength, corrosion, weight and assembly validation. | Engineering validation, material testing and pre-production review. |
| Low-Volume Titanium Production | Small-batch titanium parts after design validation. | Pilot runs, bridge production and repeat low-volume custom titanium parts. |
| Finishing & Inspection Support | Deburring, bead blasting, polishing, anodizing review, cleaning and dimensional inspection. | High-value titanium parts, medical-style components and customer-facing precision parts. |

Material Fit
When to Choose Titanium CNC Machining
Titanium CNC machining is often selected when a part needs high strength-to-weight performance, excellent corrosion resistance, biocompatibility, heat resistance or long-term reliability in demanding environments. It is commonly used for aerospace-style brackets, medical-style device components, robotic structures, marine hardware, chemical equipment parts, shafts, sleeves, fixtures and precision assemblies.
Cost-sensitive general parts may be more practical with aluminum CNC machining or stainless steel CNC machining. Highly conductive parts may require copper CNC machining or brass CNC machining.
Choose titanium when
You need strength-to-weight performance, corrosion resistance, heat resistance, reliability or selected biocompatibility requirements.
Review Grade 2 when
Commercially pure titanium and corrosion resistance are more important than maximum strength.
Review Grade 5 when
High-strength lightweight components, aerospace-style brackets or robotic structures are required.
Plan machining carefully
Heat buildup, tool wear, chatter, burrs and thread quality can affect cost and part quality.
Grade Selection
Titanium Grade Selection for CNC Machined Parts
The best titanium grade depends on strength requirement, corrosion environment, weight target, surface finish, cost, availability and drawing requirements. Grade 2 titanium is often selected for corrosion-resistant commercially pure titanium parts. Grade 5 / Ti-6Al-4V is often selected when higher strength and lightweight performance are required.
| Titanium Grade | Typical Use | Notes |
|---|---|---|
| Grade 2 Titanium | Corrosion-resistant parts, chemical equipment, marine hardware and medical-style components. | Commercially pure titanium with good corrosion resistance and moderate strength. |
| Grade 5 Titanium / Ti-6Al-4V | Aerospace-style brackets, high-strength lightweight parts, robotic components and precision assemblies. | Common high-strength titanium alloy used when strength-to-weight performance matters. |
| Grade 23 Titanium / Ti-6Al-4V ELI | Selected medical-style or high-reliability components when specified by drawing. | Extra-low interstitial version of Ti-6Al-4V; should be used when explicitly required. |
| Grade 7 Titanium | Corrosion-resistant components in selected chemical environments. | Used when enhanced corrosion resistance is required; availability and application should be reviewed. |
| Grade 9 Titanium | Tubing-related, aerospace-style and moderate-strength titanium applications. | Used in selected applications where formability and moderate strength matter. |
Process Selection
Titanium CNC Machining Processes
Titanium projects require careful process planning because titanium has low thermal conductivity and can generate concentrated heat at the cutting zone. Tool wear, chatter, chip control, burr formation, thread quality and surface finish should be reviewed before production.
01
Titanium CNC Milling
02
Titanium CNC Turning
03
5-Axis Titanium Machining
04
Precision Titanium Machining
Part Types
Custom Titanium CNC Parts We Manufacture
Baosheng supports titanium machined parts where strength, weight, corrosion resistance, tool-access planning, surface finish and inspection control matter.
- Titanium brackets
- Titanium aerospace-style components
- Titanium robotic components
- Titanium medical-style parts
- Titanium shafts
- Titanium pins
- Titanium sleeves
- Titanium spacers
- Titanium bushings
- Titanium threaded fittings
- Titanium fixture plates
- Titanium mounting blocks
- Titanium lightweight structures
- Titanium marine hardware
- Titanium chemical equipment parts
- Grade 2 titanium corrosion-resistant parts
- Grade 5 titanium machined parts
- Ti-6Al-4V precision components
- Low-volume titanium production parts

Finishing
Surface Finishing for Titanium CNC Parts
Titanium surface finishing should be reviewed before machining because bead blasting, polishing, brushing, anodizing, cleaning and deburring can affect edges, cosmetic surfaces, roughness, fit and inspection planning. For medical-style, aerospace-style or customer-facing titanium parts, surface finish and packaging requirements should be defined early.
Titanium anodizing is often used for color identification or appearance control, but final color and surface expectations should be reviewed before production.
As-Machined
Functional titanium parts where tool marks are acceptable.
Bead Blasting
Uniform satin or matte surface for titanium components.
Polishing
Appearance surfaces or lower roughness requirements.
Brushing
Linear cosmetic texture for selected visible titanium parts.
Titanium Anodizing
Color identification or selected appearance requirements.
Cleaning Review
Selected corrosion, cleanliness or medical-style requirements.
Laser Marking
Part numbers, revision marks and traceability.
Deburring / Edge Break
Safe handling, assembly and burr-sensitive features.
Not sure which titanium grade or finish is best?
Upload CAD files and drawings. We will review strength, corrosion, weight, machinability, thread quality, surface finish and inspection requirements before quoting.
Titanium Part Quality
Heat Control, Tool Wear, Threads and Titanium Part Inspection
Titanium is strong, lightweight and corrosion resistant, but it is more difficult to machine than aluminum and many stainless steels. Because titanium has low thermal conductivity, heat can concentrate near the cutting edge, increasing tool wear and affecting surface finish. Baosheng reviews part geometry, titanium grade, wall thickness, thread depth, tool access, tolerance requirements, surface finish and inspection methods before machining.

Grade Review
Grade 2, Grade 5, Grade 23 or other titanium grade reviewed.
Heat Control
Cutting strategy and tool wear risk reviewed.
Chatter Risk
Thin walls, long features and fixturing checked.
Thread Review
Thread depth, gauges and galling risk considered.
Machining
Milling, turning, 5-axis or Swiss process selected.
Finishing Review
Bead blasting, polishing, anodizing and cleaning reviewed.
Inspection
Datums, holes, threads, OD/ID, flatness and roughness checked.
Packaging
Protect high-value surfaces and titanium components.
Application Proof
Titanium CNC Machining Case Studies
The cases below focus on titanium-specific risks: strength-to-weight performance, heat-control machining, 5-axis datum relationships, thread quality, tool wear, burr-sensitive features and high-value inspection.
| Project | Material / Process | Challenge | Inspection / Result |
|---|---|---|---|
| Grade 5 Titanium Aerospace-Style Bracket | Grade 5 titanium / Ti-6Al-4V · 5-axis CNC machining + bead blasting · 60 pcs | Lightweight bracket required angled mounting faces, pocket features and accurate hole alignment. | Multi-axis machining reduced re-clamping and protected feature relationships; datum surfaces, hole positions, mating faces and critical dimensions checked before shipment. |
| Grade 2 Titanium Corrosion-Resistant Fitting | Grade 2 titanium · CNC turning + threading + deburring · 200 pcs | Fitting required corrosion resistance, clean threads and controlled bore condition. | Thread depth, bore finish, burr control and tool wear reviewed; thread gauges, OD/ID, bore condition and sealing surfaces checked through sampling inspection. |
| Grade 5 Titanium Robotic Joint Component | Grade 5 titanium · CNC milling + precision inspection · 80 pcs | Component required lightweight strength, controlled mating surfaces and repeatable joint alignment. | Machining sequence planned around datum surfaces and functional holes; flatness, hole positions, datum surfaces and mating faces checked by first article and batch sampling. |
| Titanium Medical-Style Prototype Component | Titanium Grade 5 or Grade 23 by drawing review · CNC milling + polishing / bead blasting review · 20 pcs | Prototype required smooth edges, controlled holes and clean handling for device assembly review. | Edge break, surface finish, burr-sensitive holes and inspection requirements reviewed; hole positions, edge condition, surface finish and mating surfaces checked before shipment. |

Scale-Up Path
From Titanium Prototype Machining to Production Parts
Many titanium CNC projects begin with functional prototypes, move into low-volume pilot builds and later transition into repeat production. Baosheng helps review titanium grade selection, machining strategy, tolerance requirements, thread design, surface finishing, inspection planning and packaging standards so validated titanium parts can scale more smoothly.
Titanium prototype machining
Validate strength, weight, corrosion resistance, assembly and finish before production.
Low-volume titanium manufacturing
Move validated titanium designs into pilot builds and bridge production.
Repeat titanium CNC machining
Support repeat production when process, inspection and finishing are stable.
Precision titanium machining
Review datums, critical holes, threads, OD/ID, roughness and inspection reports.
Industries
Titanium CNC Machining for Engineering Applications
Aerospace & UAV
Titanium aerospace-style parts, lightweight brackets, structural parts, mounting plates and high-value components.
Medical Devices
Titanium medical-style components, fixtures, instrument-style parts and clean-surface prototypes.
Robotics
Titanium robotics parts, lightweight joint components, brackets, sleeves, spacers and structural parts.

DFM Guidance
Design Tips for Titanium CNC Machined Parts
Good titanium part design balances material grade, tool access, heat control, thin-wall stability, thread quality, surface finish and inspection requirements.
- Use Grade 2 for corrosion-resistant commercially pure titanium parts and Grade 5 / Ti-6Al-4V for high-strength lightweight parts.
- Tighten only dimensions that affect fit, function, alignment or assembly.
- Review deformation, vibration and heat buildup risk before machining thin titanium sections.
- Deep pockets increase machining time, heat concentration and tool wear.
- Add realistic internal radii to improve tool access and reduce machining risk.
- Define thread type, depth and gauge requirements clearly. Review galling risk for titanium threads.
- Small or deep holes in titanium can increase machining time and cost.
- Define bead blasting, polishing, brushing, anodizing or roughness requirements early.
- Mark datum surfaces, mating faces and critical feature relationships on the drawing.
For broader pricing factors, review CNC machining cost.
Your questions answered
Titanium CNC Machining FAQs
Is titanium good for CNC machining?
Yes. Titanium is suitable for CNC machined parts requiring high strength-to-weight performance, corrosion resistance, heat resistance or biocompatibility. Machining strategy should consider heat buildup, tool wear, chatter, burr control and surface finish.
What titanium grades can be CNC machined?
Common CNC machined titanium grades include Grade 2 titanium, Grade 5 titanium / Ti-6Al-4V, Grade 23 titanium and selected specialty titanium grades depending on application and drawing requirements.
What is the difference between Grade 2 and Grade 5 titanium?
Grade 2 is commercially pure titanium and is often selected for corrosion-resistant parts. Grade 5 / Ti-6Al-4V is a stronger titanium alloy often selected for high-strength lightweight components.
Is titanium harder to machine than aluminum?
Yes. Titanium is more difficult to machine than aluminum because it has lower thermal conductivity, higher strength and greater tool wear risk. Cutting strategy, fixturing, tool access and inspection planning are important.
Can you machine Grade 5 titanium?
Yes. Baosheng can machine Grade 5 / Ti-6Al-4V titanium parts by CNC milling, turning, 5-axis machining or combined processes depending on geometry and drawing requirements.
Can titanium parts be anodized?
Yes. Titanium anodizing can be reviewed for selected color identification or appearance requirements. Final color and surface expectations should be confirmed before production.
Can you machine titanium threaded parts?
Yes. Titanium threaded parts can be machined, but thread depth, thread type, gauge requirements and galling risk should be reviewed before production.
Can you support titanium prototypes and production parts?
Yes. Baosheng supports titanium prototype machining, low-volume production and repeat CNC machining for validated titanium components.
What files do you need for a titanium CNC machining quote?
We recommend 3D CAD files and 2D drawings with titanium grade, quantity, tolerances, thread details, surface finish, roughness, datum references and inspection requirements.
Can you sign an NDA before reviewing titanium part drawings?
Yes. NDA can be arranged before reviewing confidential CAD files, drawings or product information.
Get a Quote for Titanium CNC Machined Parts
Upload CAD files and drawings with titanium grade, quantity, tolerance, thread, surface finish, roughness, datum and inspection requirements. Our engineers will review material selection, machinability, tool access, process planning, finishing impact and inspection requirements before quoting.
- NDA available before file review
- Grade 2 / Grade 5 / Grade 23 material review
- Heat buildup, tool access and chatter DFM review
- Thread, burr, surface finish and inspection review
- Prototype to production support
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