Single Flute Coated Milling Cutter for Aluminum

Designed specifically for aluminum machining, the single flute milling cutter has an advanced coating on the tool surface that effectively improves the tool’s wear resistance and cutting efficiency. The single flute design not only reduces the heat generated during machining, but also significantly improves chip removal, ensuring finish and machining accuracy.

Product Features

  • Single-edged design: Single-edged milling cutter can cut fast, especially suitable for high-speed machining of aluminum and other non-ferrous metals, with excellent chip removal effect.
  • Surface coating: High-quality coating increases the durability of the cutter, reduces the sticking phenomenon when machining aluminum, and prolongs the life of the cutter.
  • Suitable for high speed cutting: Optimized tool geometries and coating combinations maintain excellent performance at high RPMs, especially for CNC machining centers.
  • High cutting finish: The tool is precision designed and machined to achieve a high finish and reduce the need for secondary machining.
  • Strong chip removal capacity: The single-edged structure makes chip removal smoother and is suitable for high volume machining of aluminum and other non-ferrous metals.

Applications

  • Aluminum processing
  • Non-ferrous metal machining, such as copper, brass, etc.
  • CNC machining centers
  • Mold manufacturing
  • Precision machining in aerospace, automotive, electronics, etc.

Recommended Cutting Parameters

Cutting speed (aluminum): 500-1200 m/min

The optimum speed range for high-speed cutting of aluminum ensures a smooth surface finish and reduces tool wear.

Feed rate: 0.01-0.1 mm/tooth

The recommended range of feed speeds allows for optimal cutting results in different aluminum hardness.

Depth of cut: adjusted to process requirements

The tool is adapted to cutting operations at different depths, and shallow cutting is recommended to obtain higher surface accuracy.

Precautions for Use

  1. Ensure sufficient supply of coolant during cutting to minimize tool wear and overheating of the work piece surface.
  2. Adjust the rotational speed and feed rate reasonably to avoid excessive wear of the tool during high speed cutting.
  3. Clean and maintain the tool after use and store it properly to prolong its service life.

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