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Aerospace & Aviation

The aerospace and aviation industry demands the highest level of precision, safety, and material performance. From structural components to complex internal parts, CNC machining plays a vital role in producing parts that meet strict aerospace standards.

Tolerance up to ±0.01 mm

Surface roughness as low as Ra 0.4 μm

ISO 9001 production environments

Rapid prototyping and serial production of components

Home Industry Applications Aerospace & Aviation

Manufacturing Capabilities

At REKO, we offer 3-axis, 4-axis, and 5-axis CNC machining services that can handle intricate geometries and tight tolerances required by aerospace applications. Our team is experienced in machining high-strength alloys and producing parts in small or large batches.

Industry Parts Display

Material

Commonly used processing materials in the industry

Aluminum 7075-T6

Why it's recommended:

Excellent strength-to-weight ratio, widely used in aircraft structural parts.

Key features:

  • Very high strength, second only to steel
  • Good fatigue resistance
  • Lightweight
  • Corrosion resistance with surface treatment

Typical applications:

Wing spars, fuselage frames, brackets

Titanium

Why it's recommended:

Excellent strength-to-weight ratio, widely used in aircraft structural parts.

Key features:

  • Very high strength, second only to steel
  • Good fatigue resistance
  • Lightweight
  • Corrosion resistance with surface treatment

Typical applications:

Wing spars, fuselage frames, brackets

Stainless Steel

Why it's recommended:

Excellent strength-to-weight ratio, widely used in aircraft structural parts.

Key features:

  • Very high strength, second only to steel
  • Good fatigue resistance
  • Lightweight
  • Corrosion resistance with surface treatment

Typical applications:

Wing spars, fuselage frames, brackets

PEEK

Why it's recommended:

Excellent strength-to-weight ratio, widely used in aircraft structural parts.

Key features:

  • Very high strength, second only to steel
  • Good fatigue resistance
  • Lightweight
  • Corrosion resistance with surface treatment

Typical applications:

Wing spars, fuselage frames, brackets

Part Machining Case Study

From Raw Material to Precision Component
  • Material: 7075-T6 Aluminum
  • Processing method: 5-Axis CNC Milling
  • Surface treatment: Transparent Oxidation
  • Tolerance: ±0.01 mm
  • Roughness: Ra 1.6 µm
  • Weight: 2.647Kg
  • Processing time: 8 hours
  • DFM Analysis Optimized for aerospace weight and strength balance.
  • Precision CNC Milling ±0.01 mm tolerance using 5-axis machining.
  • Anodizing Finish Surface hardness improved by 30%, corrosion resistance enhanced.

Aerospace & Aviation CNC Machining FAQ

What are the typical materials used for aerospace CNC parts?
  • Common materials include aluminum alloys (e.g., 7075-T6), titanium alloys (e.g., Ti-6Al-4V), stainless steels, and high-performance polymers like PEEK. These materials offer a good balance of strength, weight, and corrosion resistance.
Do you offer prototyping services for aerospace
  • Common materials include aluminum alloys (e.g., 7075-T6), titanium alloys (e.g., Ti-6Al-4V), stainless steels, and high-performance polymers like PEEK. These materials offer a good balance of strength, weight, and corrosion resistance.
Are surface finishes like anodizing or passivation available for aerospace parts?
  • Yes, we work with a wide range of metals (e.g. aluminum, steel, brass, titanium) and plastics (e.g. POM, ABS, PEEK, PTFE).
How do you ensure the quality of aerospace parts?
  • Common materials include aluminum alloys (e.g., 7075-T6), titanium alloys (e.g., Ti-6Al-4V), stainless steels, and high-performance polymers like PEEK. These materials offer a good balance of strength, weight, and corrosion resistance.

Related Cases

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