Die Grinder Metal Cutting Bits Aluminium Tooth Type
Product Overview
Carbide rotary burrs designed specifically for metal processing applications, featuring specialized aluminum tooth geometry for optimal performance with aluminum alloys.
Key Features
- Ideal for metal processing, mold and pattern making, sinking, surface cleaning and maintenance
- Wide applications in body workshops, processing workshops and brake workshops
- Capable of cutting, shaping, grinding and removing sharp edges, burrs and excess material (deburring)
- Perfect for industrial plants, mold manufacturers, and grinders for cleaning welds, grinding weld beads, forming parts, and grinding rough castings
- Enables manual mechanization in various industries including aircraft, shipbuilding, automobiles, machinery, and chemistry
- Compatible with iron, cast steel, carbon steel, alloy steel, stainless steel, hardened steel, copper, aluminum, and wood
Important Usage Guidelines
- Workpiece and tools should always be steady and well supported
- Carbide burrs are not suitable for 'milling' large amounts of material - designed for light stock removal at high RPMs (LOW FEED - HIGH SPEED)
- Always ensure that at least 70% of the shank length is clamped by the collet or chuck of the tool being used
- Always ensure that the tool is rated to the recommended operating speed of the burr
Type C Size Specifications
Technical Advantages
Aluma Cut Die Grinder Bits are crafted from tungsten and cobalt metal powders through high-temperature sintering, creating exceptionally hard and wear-resistant tools specifically engineered for aluminum alloy processing.
- Hardness and Wear Resistance: High carbide hardness maintains sharpness during machining, extending tool life and ensuring performance stability
- High Thermal Stability: Resists deformation during high-speed cutting, maintaining cutting surface quality and prolonging tool lifespan
- Aluminum-Specific Design: Engineered specifically for aluminum alloys, accounting for their unique characteristics including lower hardness, high thermal conductivity, and chip adhesion tendencies
- Reduced Chip Accumulation: Specialized design minimizes chip adhesion, preventing cutting debris buildup and improving cutting efficiency while reducing friction and heat generation
Manufacturer Information