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Carbide Tapered Ball Nose Endmill Cutting Tool For Aluminum Moulds And Machining

Categories Customized Carbide Tool
Brand Name: AMG
Model Number: Standard/Customized
Certification: ISO9001
Place of Origin: China
MOQ: 3
Delivery Time: 3-7 days for standard products/7-10 days for non-standard products
Price: Request Quote
Name: Carbide Tapered Ball Nose Endmill for Aluminum
Coating: DLC/AlTiN coating
Product name: Surface Finish Optimized Tool
Suitable for: Alloy Steel,Stainless Steel,Titanium Alloy, etc
Express: TNT,DHL,EMS
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Carbide Tapered Ball Nose Endmill Cutting Tool For Aluminum Moulds And Machining

The carbide tapered ball nose end mill for aluminum moulds is a high-performance cutting tool designed by AMG Precision Tools for machining aluminum alloy moulds. This tool features unique tapered design combined with a ball nose, making it ideal for creating complex geometries, more difficulty details, and smooth surface finishes in aluminum moulds. The carbide construction offers excellent wear resistance and high-temperature performance, ensuring long tool life and improved cutting efficiency. AMG’s carbide tapered ball nose end mill excels in high-precision and high-speed cutting, making it an ideal choice for industries such as mould manufacturing, automotive, and aerospace.


Applications:

  • Mould Manufacturing: Primarily used for precision machining of aluminum alloy moulds, especially for complex cavities, slopes,and curved surface machining, ensuring high accuracy and smooth surface finishes.

  • Automotive Parts: Ideal for machining aluminum alloy parts used in automotive manufacturing, meeting high precision requirements.

  • Aerospace: Used for precision machining of aluminum components in the aerospace industry, ensuring strength and surface smoothness.

  • Electronics: Used for machining aluminum alloy parts for electronic devices, ensuring accuracy and surface quality.

Specifications Table:

ParameterDescription
MaterialHigh-quality carbide (Carbide)
CoatingTiAlN, DLC, AlTiN (customizable upon request)
Tool Diameter3mm - 12mm (customizable based on requirements)
Tool Length50mm - 200mm (based on the size of the mould)
Number of Flutes2 Flutes, 3 Flutes (customizable)
Helix Angle30° - 45° (optimized for efficient chip removal)
Taper Angle1°, 2° (for different depths and angled cuts)
Cutting Speed2000 - 4000 m/min (adjustable for different aluminum alloys)
Feed Rate0.1 - 0.3 mm/tooth (higher for roughing, lower for finishing)


Working Principle

AMG's carbide tapered ball nose end mill operates by rotating at high speeds to precisely cut through aluminum alloy materials. The tapered design allows it to adapt to various depths and angles, making it ideal for machining complex mould cavities, slopes, and holes. The ball nose ensures that curved surfaces,and fine features are achieved with high accuracy. Carbide allows the tool to maintain sharpness and perform efficiently even at high cutting speeds. Coatings like TiAlN and DLC reduce friction and heat buildup,extend tool life and improving cutting efficiency.


FAQ

  • What aluminum alloys can the carbide tapered ball nose end mill cut?
    This tool is suitable for cutting various aluminum alloys, including common grades like 6061, 7075, and other high-strength alloys, such as some non-ferrous metals.

  • How do I optimize cutting parameters?
    For roughing, increase cutting speed (2000 - 4000 m/min) and feed rate (0.1 - 0.3 mm/tooth) to improve machining efficiency. For finishing, reduce the feed rate and cutting depth to ensure smoother surface finishes and precision.

  • What is the tool life of the carbide tapered ball nose end mill?
    With proper cutting parameters and cooling, the tool can last for a long time. Carbide tools generally offer a longer life due to their hardness and wear resistance. Regular inspection and appropriate cooling fluids can further extend the tool life.

  • How do I select the right tool size?
    Tool size should be selected based on the design requirements of the mould and the complexity of the part. Smaller diameters are ideal for fine details, while larger diameters are better for creating larger cavities.



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