Low-Altitude Economy Components

UAV Power System Parts

Lightweight, high-precision CNC structures for UAV power system components requiring thin-wall control and stable surface treatment.

Quote On Request

Drawing-based engineering review · response within 24–48 hours

Material
Aluminum alloy
Process
5-axis / 3+2 machining, surface pretreatment and anodizing
Tolerance
Drawing based
Quantity
ISO 13485 Drawing-based quote Prototype 10-20 days
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Technical Specification

Manufacturing profile for quotation and DFM review.

Material
Aluminum alloy
Process
5-axis / 3+2 machining, surface pretreatment and anodizing
Machining Focus
Thin-wall hollow structures, deformation control, GD&T and lightweight features
Supply
Drawing-based custom prototype and batch production
Lead Time
Prototype 10-20 days; batch 20-30 days
Manufacturing Strength

Controlled CNC execution for demanding geometry and surface requirements.

The process route is selected around the part geometry, material behavior, inspection method and delivery volume.

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Manufacturing Route

Lightweight parts with drawing-driven process planning and controlled fixture strategy.

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Dimensional Control

Thin-wall control supported by inspection checkpoints and tolerance-stack review.

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Surface & Edge Quality

Anodizing with burr, edge condition and finish requirements checked before delivery.

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Quality System

ISO13485 / ISO9001 driven documentation, inspection and production feedback.

Applications

Where It Fits

  • UAV power-system structural parts
  • Lightweight motor and drive-system components
  • Low-altitude economy hardware programs
Quality & Inspection

Control Points

  • Thin-wall dimensional review
  • Anodizing appearance inspection
  • Fit interface checks
  • Batch consistency tracking
Execution Workflow

A practical route from drawings to inspected delivery.

Each step is adjusted to part risk, tolerance sensitivity, surface requirements and batch size.

01

Drawing Review

Evaluate CAD, material, tolerance, surface finish and annual volume before quotation.

02

Process Route

Define machining sequence, fixture strategy, deformation control and inspection plan.

03

Prototype Build

Run prototype or pilot production with dimensional and surface checkpoints.

04

Inspection & Delivery

Provide inspection support, packaging review and batch production feedback.

Send drawings for review

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