AS9100 & ISO 9001 Certified Aerospace Facility

Aerospace CNC Machining

Aerospace CNC machining demands more than accurate parts. It demands certified quality, documented materials, and traceability you can audit, because the components we make may end up in flight-critical assemblies. At Baetro, we machine aerospace parts to AS9100 and ISO 9001 standards, with 5-axis capability, tolerances to ±0.001″, and full material traceability on every order.

We work the alloys aerospace relies on, from titanium and Inconel to high-strength aluminum 7075, and we back every part with CMM inspection and AS9102 first-article documentation. Because we manufacture direct from our certified facility in Qingdao, you get that aerospace-grade rigor at 30 to 60% below typical domestic cost, with a dedicated engineer on your program from quote to delivery.

±0.001″ Aerospace tolerance
AS9100 Certified quality system
30–60% Below typical domestic cost
Dedicated Engineer on every program
5-axis aerospace CNC machining of titanium and Inconel components
5-axis machining AS9100 certified CMM inspection AS9102 FAI
Aerospace CNC Machining Fundamentals

What Is Aerospace CNC Machining?

Aerospace CNC machining is the precision manufacturing of components for aircraft, spacecraft, and defense systems. It demands tighter tolerances, stricter material controls, and more rigorous documentation than standard machining. Every part must meet AS9100 quality standards, with full traceability from raw material to finished component.

At Baetro, we specialize in 5-axis machining of aerospace alloys, including titanium, Inconel, and aluminum 7075. We hold tolerances to ±0.001", with CMM inspection and AS9102 first-article inspection reports. Our facility is AS9100 and ISO 9001 certified, ensuring every part meets the stringent requirements of the aerospace industry.

AS9100 Certified Aerospace quality system with full traceability
Difficult Alloys Titanium, Inconel, 7075 aluminum, and more
5-Axis Capability Complex geometries in a single setup
Full Documentation CMM inspection, AS9102 FAI, material certs
5-axis CNC machining of aerospace titanium component
Certified Precision for Flight-Critical Parts AS9100 certified, 5-axis machining, and full material traceability — built for aerospace demanding standards.
Aerospace capabilities

What Aerospace CNC Machining Demands

Aerospace parts are not ordinary machined components. They operate under extreme loads, temperatures, and safety requirements, so the standards around them are strict. Aerospace CNC machining is defined by four demands that go beyond typical precision work.

AS9100 certified quality system for aerospace manufacturing
Certified quality

AS9100 Quality Systems

Aerospace buyers require a quality management system built for the industry, which is exactly what AS9100 provides. Our processes follow the International Aerospace Quality Group standards, with rigorous risk management and configuration control.

  • AS9100 certified: built on ISO 9001 with aerospace-specific requirements
  • Process control: first-article inspection and in-process checks ensure consistency
  • Audit-ready: documentation that stands up to customer and regulatory review
View certifications
Material traceability and mill certifications for aerospace components
Documented materials

Traceability & Mill Certs

Every part needs traceability back to the raw material lot, with mill certifications to prove it. We maintain full material documentation from raw stock to finished component, so you always know what went into your part.

  • Material traceability: complete chain from mill lot to finished part
  • Mill certifications: included with every shipment
  • Alloys: titanium, Inconel, 7075 aluminum, stainless, and more
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CMM inspection and verified tolerances for aerospace parts
Verified precision

Tight, Inspected Tolerances

Critical features are inspected and recorded, not just machined and shipped. Any shop can claim precision. Aerospace machining is about proving it, consistently, with documentation that stands up to audit.

  • Standard: ±0.001" (±0.025 mm) on critical features
  • CMM inspection: every part verified, not assumed
  • AS9102 FAI: first-article reports for production approval
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Procurement confidence

Why Choose Baetro for Aerospace CNC Machining

Buyers evaluating aerospace machining services face strict standards and real cost pressure. Here is how our aerospace cnc machining services meet both.

Certified, Documented Quality

AS9100 and ISO 9001 certified, with CMM inspection, AS9102 first-article reports, and full material traceability on every order.

5-Axis Precision for Complex Parts

Complex aerostructures machined in a single setup, holding ±0.001" on critical features.

Difficult Materials, Handled

Titanium, Inconel, and high-strength aluminum machined with the rigidity and process control they demand.

Aerospace Quality at a Better Cost

Direct manufacturing from our Qingdao facility delivers certified quality at 30 to 60% below typical domestic pricing, with no hidden costs.

A Dedicated Engineer on Your Program

An English-speaking project manager keeps you updated from quote to delivery, with ITAR support available on request.

No Minimum Order Quantity

Order one prototype or scale to production volumes with the same aerospace-grade quality and documentation across every order size.

Material library

Materials We Mill

We machine 50+ materials across metals and plastics, with full material certifications and traceability available for every project.

Metals

Aluminum Alloys: 6061-T6 general-purpose, excellent machinability, weldable; 7075-T6 high-strength aerospace-grade; 2024-T3 high fatigue resistance; 5052 corrosion-resistant and marine applications.

Learn more about aluminum CNC machining

Stainless Steel: 304 general-purpose, corrosion-resistant, food-grade; 316 marine-grade, chemical-resistant, medical applications; 17-4 PH precipitation-hardened, high strength with corrosion resistance; 303 free-machining grade for faster production.

Learn more about stainless steel CNC machining

Other Metals: Carbon steel (1018, 1045, 4140), Brass (C360), Titanium (Grade 2, 5), Copper (C110), Tool steel (O1, A2, D2).

Plastics

PEEK: High-temperature, medical-grade, chemical-resistant polymer.

Learn more about PEEK CNC machining

ABS: Impact-resistant, cost-effective prototyping material.

Nylon (PA6, PA66): Wear-resistant, low friction, suitable for bearings and bushings.

POM (Delrin/Acetal): Excellent dimensional stability for precision mechanical parts.

Polycarbonate: Transparent, high-impact strength.

Acrylic (PMMA): Optical clarity, decorative applications.

Browse our full materials library

Aluminum CNC machined sample component
Material

Aluminum

6061, 7075, 2024, and 5052 alloys for general and aerospace applications.

Stainless steel CNC machined sample component
Material

Stainless Steel

304, 316, 17-4 PH, and 303 grades for corrosion resistance and high strength applications.

Titanium CNC machined sample component
Material

Titanium

Grade 2 and 5 for aerospace and medical applications requiring high strength-to-weight ratios.

PEEK plastic CNC machined sample component
Material

PEEK

High-performance plastic for demanding thermal, chemical, and biocompatible applications.

Manufacturing reference

Aerospace Manufacturing Reference

Aerospace favors materials with high strength-to-weight ratios and strong performance at temperature. Each machines differently, and knowing how matters as much as knowing why it is used.

Material Why Aerospace Uses It Machining Notes
Titanium (Ti-6Al-4V) Strength-to-weight, heat resistance Work-hardens; needs sharp tooling, low speeds, rigid setup
Inconel / superalloys Extreme high-temperature strength Very tough to cut; slow, rigid, heavy coolant
Aluminum 7075 High-strength aluminum Machines well; great for structural brackets
Aluminum 6061 Versatile, weldable Easy to machine; general airframe parts
Stainless 316 Corrosion resistance Work-hardens; sharp tools, steady feeds

Titanium and Inconel are where aerospace machining gets demanding. Both work-harden and resist cutting, so they punish dull tools and weak setups. Our 5-axis centers, rigid workholding, and process discipline are built for exactly these alloys.

Engineering data

5-Axis Capability and Tolerances

Many aerospace components have complex, contoured geometry that is hard to reach from a single direction. Our 5-axis simultaneous machining centers handle these shapes in one setup, which matters for two reasons.

5-Axis Machining Capabilities

Axis Configuration Typical Application Precision Efficiency
3-Axis Prismatic parts, flat faces, standard features ±0.005" (±0.13 mm) Multiple setups required
4-Axis Multi-sided parts, angular holes, indexed features ±0.002"–0.005" Fewer setups, better alignment
5-Axis Simultaneous Undercuts, deep pockets, contoured surfaces, aerostructures ±0.001" (±0.025 mm) standard Single setup, eliminates cumulative error

Across our aerospace work, we hold tolerances to ±0.001" (±0.025 mm) as standard, with tighter available on request for critical features. That precision is verified, not assumed.

Why 5-Axis Matters

  • Accuracy: The part is never re-fixtured and re-aligned between operations, which eliminates cumulative positioning error.
  • Complex geometry: Handles undercuts, deep pockets, and contoured surfaces that are impossible or difficult on 3‑axis machines.
  • Verification: Every part is inspected on CMM equipment, with AS9102 first‑article documentation available.
  • Cost efficiency: Single‑setup machining reduces fixture costs, programming time, and overall lead time on complex parts.
Quality Assurance

Quality, Inspection and Traceability

In aerospace cnc machining, the paperwork is part of the product. Our quality system is built to deliver both.

Quality systems

Our Quality Systems

  • ISO 9001 certified quality management system
  • AS9100 certified for aerospace quality standards
  • Full material traceability from raw mill lot to finished component
  • In-process inspection at multiple production stages
  • CMM final inspection on Coordinate Measuring Machine equipment
  • AS9102 first-article inspection for production approval
  • Mill test reports available for your records
  • 100% inspection or AQL sampling per customer requirements
Shipment documentation

What You Receive with Every Shipment

Every order includes comprehensive inspection documentation you can hand to your own quality team with confidence.

  • Dimensional measurements against your drawing
  • Material certification and traceability
  • Surface finish verification when specified
  • Pass/fail status for all critical dimensions
  • AS9102 first-article inspection reports where required
  • Inspector signature and inspection date
Applications

Aerospace Applications

Aerospace CNC machining produces the structural and functional components that keep aircraft and spacecraft operating. Here are the parts we machine most.

Aerospace CNC machined aluminum structural bracket and mount
Application

Brackets & Mounts

Structural attachment brackets and mounting plates across airframes — machined in titanium and high-strength aluminum with full traceability.

Aerospace CNC machined housing and enclosure for avionics
Application

Housings & Enclosures

Precision housings and enclosures for avionics, sensors, and actuators, with tight tolerances and EMI/EMC considerations built in.

Aerospace CNC machined titanium and aluminum structural fitting
Application

Structural Fittings

Titanium and high-strength aluminum structural fittings for airframes and landing gear, machined to ±0.001" with AS9102 FAI documentation.

Aerospace CNC machined Inconel engine component
Application

Engine & System Components

High-temperature alloy parts for engines and propulsion systems — Inconel, titanium, and superalloys machined with the rigidity they demand.

Aerospace CNC machined prototype and test part
Application

Prototype & Test Parts

New program development and validation parts, machined in the same certified facility with the same quality system as production.

Aerospace CNC machining across commercial, defense, and space sectors
Industry

Commercial, Defense & Space

These applications span commercial aviation, defense, space, and unmanned systems. Whether the part is a simple bracket or a complex 5-axis contour, the same certified quality system applies.

Certifications

Certifications That Qualify Us

Certifications are table stakes in aerospace, but buyers' teams deserve to know what each one actually guarantees. Here is the plain-English version.

AS9100 & ISO 9001

ISO 9001 is the baseline quality management standard used across industries. AS9100 builds on it with aerospace-specific requirements for risk management, configuration control, and product safety. It is the certification most aerospace and defense buyers require before they will even quote you, and it is the foundation of our quality system. The standard is maintained by the International Aerospace Quality Group, and our processes follow its requirements.

AS9102 First-Article Inspection

First-article inspection is the aerospace way of proving a new part is made correctly before full production. Under AS9102, we document every dimension, material, and process on the first article and verify it against your drawing. That record gives you confidence that the production run will match the approved part, and it gives your quality team the paperwork they need. The AS9102 forms and requirements are published through SAE International.

ITAR & NADCAP

ITAR governs the handling of defense-related technical data and parts, and we can support ITAR-controlled work on request. NADCAP covers special processes like heat treatment and plating. If your program requires either, talk to our team so we can align documentation and controls to your needs. For dedicated defense programs, see our defense manufacturing capabilities.

How it works

Prototype to Production, One Supplier

Aerospace buyers worry about a specific risk: qualifying a supplier for prototypes, then having to re-qualify someone new for production. That re-qualification costs time, money, and program risk. We eliminate it by handling the full lifecycle under one roof.

Upload Your CAD File

Send your aerospace design in STEP, IGES, or SolidWorks format, with material and tolerance requirements. Our engineers review your file and prepare a manufacturing plan.

Quote & Engineering Review

In under 60 seconds, receive a transparent price and lead time, along with free DFM feedback on manufacturability, tooling access, and design for aerospace-grade production.

Prototype Validation

We machine your prototypes in the same AS9100 facility that will handle production. You validate fit, function, and documentation before committing to volume.

Seamless Production Scale-Up

When you are ready, we move directly into production with the same quality system, the same engineers, and the same processes — no re-qualification, no new supplier risk.

In-Process & Final Inspection

Every part is inspected during and after machining. Critical dimensions are verified on CMM, with AS9102 first-article documentation for production approval.

Ship with Full Traceability

Parts ship with inspection reports, material certifications, and full traceability — from raw mill lot to finished component — all backed by ISO 9001 and AS9100.

Design guidance

Design for Manufacturability in Aerospace

Good aerospace design balances performance against machinability, and small choices have a big effect on cost and lead time. Our free DFM review looks for these on every quote, but it helps to know them up front.

  • Apply tight tolerances only where they matter. Over-tolerancing drives up cost and inspection time. Hold ±0.001" on critical features and use general tolerances elsewhere.
  • Design for 5-axis access. Geometry a single setup can reach is faster and more accurate than shapes that need multiple fixtures.
  • Simplify where you can. Fewer deep pockets, thin walls, and hard-to-reach features mean shorter cycle times and less risk.
  • Pick the right alloy for the job. Titanium and Inconel cost far more to machine than aluminum, so reserve them for where their properties are truly required.
  • Plan finishing early. Specifying anodizing, passivation, or plating up front avoids surprises late in the program.
  • Design with these in mind. Your aerospace parts will quote lower, machine faster, and pass inspection more easily.
FAQ

Frequently Asked Questions

Answers to common questions about aerospace CNC machining certifications, materials, tolerances, and production.

What certifications do aerospace machine shops need?

Most aerospace and defense buyers require AS9100, which builds on ISO 9001 with aerospace-specific quality requirements. Depending on the work, ITAR registration and NADCAP special-process accreditation may also apply. As an AS9100 machine shop with ISO 9001 certification, we can also support ITAR-controlled work on request.

What materials are used in aerospace CNC machining?

Common aerospace materials include titanium alloys like Ti-6Al-4V, nickel superalloys like Inconel for high-temperature parts, high-strength aluminum such as 7075 and 6061, and stainless steels like 316. Each is chosen for its strength-to-weight ratio and performance at temperature.

What tolerances do aerospace parts require?

Requirements vary by part, but critical aerospace features often call for ±0.001" or tighter. We hold ±0.001" (±0.025 mm) as standard, with tighter tolerances available on request, and we verify critical dimensions with CMM inspection and documented first-article reports.

Why is 5-axis machining used in aerospace?

Many aerospace components have complex, contoured geometry. 5-axis machining produces these shapes in a single setup, which improves accuracy by eliminating re-fixturing and reduces cumulative error between features. It also shortens lead time on complex parts.

What is AS9102 first-article inspection?

AS9102 is the aerospace standard for first-article inspection. It requires documenting every dimension, material, and process on the first production part and verifying it against the drawing. That record confirms the part is made correctly before full production and gives your quality team the required documentation.

How much does aerospace CNC machining cost?

Cost depends on material, complexity, tolerances, and quantity. Difficult alloys like titanium and Inconel cost more to machine than aluminum. Because we manufacture direct from our Qingdao facility, aerospace-grade quality typically runs 30 to 60% below domestic pricing. Upload your CAD file for an exact instant quote.

Can you handle both prototypes and production?

Yes. We machine low-volume aerospace prototypes and full production runs in the same AS9100 certified facility, with the same quality system and traceability. That lets you validate a design, then scale to production without re-qualifying a new supplier or changing your documentation.

Quote-ready manufacturing

Start Your Aerospace Machining Program

Get aerospace CNC machining with the certifications, traceability, and precision your program requires, at a cost that protects your budget.

Upload your CAD file for an instant quote with full AS9100 documentation, and a dedicated engineer will guide your parts from prototype to production.

Parts ship in 3–7 days. No minimum order quantity. AS9100 & ISO 9001 certified.

Not ready to upload a file? Contact our engineers to discuss your project, review material options, or get guidance on tolerance and certification requirements.