Precision CNC Machining for Aerospace Titanium Parts

When your project requires complex geometry, tight tolerances, and strict material traceability, machining titanium becomes a significant challenge. Tool wear, heat generation, and material deformation can quickly derail production schedules.

At AXALLOY Precision, we specialize in CNC machining aerospace titanium parts. We provide international engineering, procurement, and quality teams with a stable, controlled manufacturing route—from initial prototype development through low-volume and repeat production.

If you are transferring a project from an unreliable supplier or launching a new high-value component, we evaluate your geometry, tolerances, and surface requirements before we define the machining process.

Aerospace titanium parts precision CNC machining

How We Support Your Engineering and Procurement Teams

We focus on manufacturability, process control, and dependable communication so you receive components that work right the first time. Here is exactly what your team gets when partnering with us:

Predictable Lead Times to Keep Your Assembly Moving

We don't just rush parts out the door; we build a controlled manufacturing process. With prototype lead times of 5–10 business days and standard production taking 10–20 days, your engineering team can validate designs sooner. For procurement, our predictable scheduling means you avoid assembly line downtime and maintain your project milestones.

Traceability and Documentation Ready for Audit

Aerospace applications demand rigorous proof of compliance. Your quality managers won't have to chase us for paperwork. We provide Material Test Reports, First Article Inspection (FAI) reports, and full dimensional inspection records alongside your shipment. You get the evidence you need to clear internal audits and satisfy your own customers without delay.

Proactive DFM Feedback Before the First Cut

Difficult-to-machine alloys require careful planning. When you submit your drawings, we don't just blindly quote. We review your 3D models and 2D prints for thin walls, critical interfaces, and difficult holes. You receive actionable Design for Manufacturability (DFM) feedback, tolerance reviews, and fixture planning insights, helping you avoid costly design revisions later in the production cycle.

Reduced Setups for Tighter Tolerances

Aerospace titanium parts often feature complex contours and multi-sided features. By utilizing our 4-axis, 5-axis, and multi-axis mill-turn capabilities, we machine your parts in fewer setups. This ensures stronger feature relationships, tighter position tolerances (down to 0.010 mm), and concentricity down to 0.008 mm, reducing the risk of component failure in critical applications.

Technical Capabilities for Aerospace Machining

We match the right equipment to your specific component, whether it is a complex structural bracket, a fluid manifold, or a precision rotational shaft.

General Machining Tolerances & Parameters

Parameter Standard Capability
Supported Production Volume1–10,000+ parts (Prototypes: 1-20, Low-Volume: 20-500)
Precision Dimensional Tolerance±0.005 mm
Precision Angular Tolerance±0.1°
Position ToleranceDown to 0.010 mm
FlatnessDown to 0.005 mm
ConcentricityDown to 0.008 mm
Precision Machined FinishRa 0.8 μm
Minimum Wall Thickness0.5 mm
Minimum Machined Hole DiameterØ0.5 mm
Minimum Thread SizeM1.0

CNC Milling (3, 4, and 5-Axis)

Ideal for aerospace housings, brackets, manifolds, impellers, blades, and complex structural components.

Machining Types3-axis, 4-axis and 5-axis CNC milling
Maximum 5-Axis Part SizeØ500 × 400 mm
Maximum Spindle Speed20,000 rpm
Positioning Accuracy±0.005 mm
Repeatability±0.003 mm
Milling ToleranceDown to ±0.005 mm

CNC Turning & Mill-Turn Machining

Ideal for multi-feature rotational components, complex shafts, nozzles, fittings, and valve parts.

Mill-Turn ConfigurationMain spindle, sub-spindle, C-axis, Y-axis, live tooling
Controlled AxesUp to 9 axes
Maximum Machining DiameterØ400 mm
Maximum Machining Length800 mm
Turning / Diameter ToleranceDown to ±0.005 mm
RoundnessDown to 0.005 mm

Note: We also offer Swiss CNC Turning for precision pins, screws, and connectors under Ø32 mm, as well as Wire/Sinker EDM for deep cavities and narrow slots.

Titanium Grades & Difficult Alloys We Machine

We understand the specific machining behaviors of different titanium grades and superalloys. Our material focus ensures we apply the correct cutting speeds, feeds, and tool paths to prevent work hardening and surface degradation.

Titanium Alloys

  • Grade 2
  • Grade 5 (Ti-6Al-4V)
  • Grade 9
  • Grade 12
  • Grade 23 (Ti-6Al-4V ELI)

Nickel-Based Superalloys

  • Inconel (718, 625, X-750)
  • Hastelloy (C-276, C-22)
  • Monel
  • Haynes

High-Performance Stainless Steels

  • 17-4 PH
  • 15-5 PH
  • 316L
  • A286
  • Duplex 2205
  • Super Duplex 2507

Cobalt Alloys

  • Cobalt Chrome
  • Stellite
  • L605
  • MP35N

Inspection and Quality Documentation

We know that for aerospace procurement and quality teams, a part is only as good as the documentation that accompanies it. Our temperature-controlled inspection room ensures accurate validation of your critical features.

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
  • Surface Roughness Range: Ra 0.05–40 μm
  • Hardness Testing: Rockwell, Brinell, Vickers
  • Thread Inspection: Gauges & optical measurement

Quality Documentation Available

  • Material Test Report & Mill Test Certificate
  • Certificate of Conformance
  • First Article Inspection (FAI) Report
  • Full Dimensional Inspection Report
  • Ballooned Drawing Report
  • Material and Lot Traceability

Submit Your RFQ for Aerospace Machining

We are ready to support your next high-value project. To help our engineering team provide you with the most accurate DFM feedback and pricing, please prepare the following strong project inputs:

  1. 1 3D CAD Files (STEP, STP, IGES, X_T, SLDPRT)
  2. 2 2D Drawings (PDF, DWG, DXF) with identified critical features and tolerances
  3. 3 Defined Material Grade (e.g., Titanium Grade 5)
  4. 4 Expected Prototype and Production Quantities
  5. 5 Required Quality Documentation (e.g., Material Certs, FAI)

Our standard RFQ response includes a full drawing review and tolerance evaluation. Maximum upload size is 500 MB per RFQ. We accept both Metric and Imperial drawing units.

Request a Quote

Tell us about your component requirements and material challenges.

We'll get back to you shortly.