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- Specialized Spiral Angle: Features a carefully engineered helix angle that enhances chip evacuation and reduces cutting forces, resulting in improved machining efficiency and surface finish.
- Premium AP Coating: Equipped with an advanced imported AP coating, offering exceptional wear resistance and heat reduction. This significantly prolongs tool life, even under high-speed cutting conditions.
- Unique Variable Helix Design: The variable helix structure minimizes vibration and chatter, improving stability during cutting and reducing the risk of chipping or tool breakage.
- Optimized for Difficult-to-Machine Materials: Specifically designed for high-performance cutting of stainless steel, titanium alloys (TC4, TC7), nickel-based alloys, and other high-temperature alloys, delivering superior results where ordinary end mills fail.
- Durable & Precise Construction: Crafted from premium-grade carbide and CNC-ground for consistent precision. The 4-flute design balances rigidity with chip evacuation, ensuring a smooth cutting experience and extended tool longevity.
Pairs well with

Carbide Square Nose End Mill for Stainless Steel & Titanium Alloy (TC4/TC7), AP Coating, Variable Helix-Imperial
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PRODUCT HIGHLIGHTS
Ultra-high hardness and wear resistance: The carbide substrate provides extremely high hardness and wear resistance. With the AlTiN coating, it can maintain a sharp cutting edge under high temperature and high-speed cutting, greatly extending the tool life.
Advantages of AlTiN coating: The AlTiN coating has excellent thermal hardness and oxidation resistance, stable cutting, and reduced adhesive wear.
4-edge spiral design: The evenly distributed 4-edge spiral groove design has a more balanced cutting force distribution, reduces vibration and radial runout, and significantly improves surface finish and processing accuracy.
Multi-scenario application: It is widely used in various processing methods such as milling grooves, face milling, and intermittent cutting. It is compatible with various materials such as alloy steel, carbon steel, and cast iron to meet the processing needs of complex parts.

APPLICATION SCENARIOS
Mold manufacturing: Efficiently remove hard cavity materials to ensure mold cavity accuracy and surface quality. High temperature and wear resistance, significantly extending the service life.
Mechanical mass production: Maintain stability under high cutting loads, suitable for large-scale and continuous production, and reduce the frequency of tool changes.