CNC Machined Aerospace Components Australia
We manufacture custom aerospace parts — structural brackets, engine mounts, landing gear components, avionics housings. Aluminium 7075, titanium, Inconel. AS9100 certified suppliers. Full material traceability. Quote in 2 business days.
Aerospace Parts We Manufacture
Precision components for commercial aircraft, defence aviation, space systems, and unmanned aerial vehicles.
Structural Brackets & Fittings
High-strength, lightweight brackets for aircraft structure. Aluminium 7075 or titanium. Critical stress analysis and fatigue-tested designs.
Engine Mount Components
Engine isolation mounts and support structures. Titanium or Inconel. High-temperature and vibration-resistant designs.
Landing Gear Parts
Precision landing gear components including trunnions, side stays, and actuator interfaces. Steel or titanium. Load-rated and fatigue-tested.
Interior Cabin Fittings
Cabin structure components including seat mounts, overhead bin supports, and interior trim. Aluminium or composite-compatible materials.
Avionics Housings & Enclosures
Precision enclosures for flight-critical avionics. EMI/RFI shielding. Vibration and thermal management integrated.
Fluid System Manifolds
Hydraulic and pneumatic manifolds for aircraft systems. Stainless steel or titanium. Ultra-high-pressure capability.
Fasteners & Pins
Critical aerospace fasteners including shear pins, locking pins, and high-strength bolts. Titanium or high-strength steel.
Control Surface Hinges
Precision hinge components for control surfaces. Titanium. Zero-backlash, fatigue-critical designs.
Materials for Aerospace Components
| Material | Specification | Applications |
|---|---|---|
| Aluminium 7075-T6 | AMS 4159 | Highest strength-to-weight, structural brackets, wings |
| Aluminium 6061-T6 | AMS 4027 | Cabin components, non-critical structure, exterior access covers |
| Titanium Ti-6Al-4V | AMS 4911 | Engine compartments, landing gear, extreme-temperature areas |
| Inconel 718 | AMS 5596 | Engine components, combustor sections, high-temperature fasteners |
| 17-4 PH Stainless | AMS 5604 | High-strength fasteners, bearings, seals |
| 4130 Steel | AMS 6350 | Welded aircraft structure, fuselage frames |
Manufacturing Capabilities
AS9100 Certification
- ✓ AS9100 certified suppliers
- ✓ Aerospace quality systems
- ✓ Regular audits & documentation
- ✓ First-article inspection (FAI)
Aerospace Tolerances
- ✓ ±0.005mm critical dimensions
- ✓ CMM inspection with full reports
- ✓ Fatigue analysis support
- ✓ Stress analysis integration
Traceability & Documentation
- ✓ Full material traceability
- ✓ Heat treatment documentation
- ✓ Batch and smelter certifications
- ✓ Complete audit trail
Industries We Serve
Aerospace Components FAQ
Do your suppliers hold AS9100 certification?
Yes. All our aerospace manufacturing partners hold AS9100 certification (aerospace quality management system). This certification includes ISO 9001 requirements plus additional aerospace-specific quality, safety, and security controls. We maintain regular audits and compliance documentation.
What materials are standard for aerospace components?
Aluminium 7075-T6 is the primary aerospace alloy — highest strength-to-weight ratio, used for structural components. 6061-T6 is used for non-critical structural and cabin components. Titanium Ti-6Al-4V is standard for engine compartments and high-temperature areas. Inconel 718 is used for extreme-temperature engine components. 17-4 PH stainless is common in fasteners and fittings. Material selection depends on stress, temperature, and service requirements.
Can you achieve aerospace-grade tolerances?
Yes. Aerospace tolerances are typically ±0.01mm or tighter. We routinely achieve ±0.005mm on critical dimensions. All components include full CMM inspection reports with traceability to material certs and first-article inspection (FAI) where required by customer specifications.
Do you provide full material traceability?
Absolutely. Aerospace supply requires full material traceability from smelter to finished part. All components include material certificates, heat treatment documentation, batch numbers, and inspection reports. We maintain documented procedures for material tracking and can provide complete traceability chains for audits.
What is the typical lead time for aerospace parts?
Lead times vary based on complexity and material availability. Standard aerospace components: 12–18 business days. Complex high-precision parts: 3–4 weeks. Expedited delivery available for critical items. Lead time includes first-article inspection, documentation, and full traceability reporting.
Can you manufacture parts for obsolete aircraft?
Yes. We support aircraft maintenance and repair (MRO) with replacement parts for in-service and obsolete aircraft. We can reverse engineer components from existing parts or drawings. Maintenance documentation and supply plans are coordinated with your MRO requirements.
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