Cutting Tools: High-Performance HSS and Carbide Tools for Machining

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Cutting Tools: Types, Materials, Applications, Selection Tips, Care & Safety for Machining & Woodworking

A general term for tools used in metal or non-metal cutting, including milling cutters, drills, boring heads, etc. Made from HSS, carbide, etc., they require appropriate coatings (e.g., TiN, TiAlN) based on materials and processes, suitable for turning, milling, drilling, etc.
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Advantages of the product

High-Speed Cutting Performance

Capable of speeds up to 300m/min (carbide) and feeds of 0.5mm/tooth, reducing cycle times in aluminum machining. Variable helix angles (30°-45°) minimize vibration in high-feed milling of complex molds.

Related products

These burrs are capable of deburring metal surfaces and shaping them with tungsten carbide cutting edge rotary files at a rotating speed of 10 000 to 30 000 rpm. With the ability to remove 5cm³/min of material at the surface finish of Ra≤3,2μm in stainless steel, they are available in taper, ball, and cylinder shapes. Their application is common in mold making and repair in aerospace industry, and are replacing hand filing which is time consuming. They can save 60% of labor time while maintaining uniform edge profiles.

Frequently Asked Questions

What materials are cutting tools made of?

They are made of HSS, carbide, and PCD, with carbide tools featuring AlTiN coatings for heat-resistant alloys (up to 1200°C) and HSS for general machining.

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Customer Reviews

Bailey

Carbide end mills with variable helix angles (45°) minimized vibration in titanium alloy blades, allowing 300m/min speeds. Their durability reduced tool change time by 40% in 5-axis machining centers.

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Coolant Integration

Coolant Integration

Tools with internal coolant channels (pressure up to 20MPa) improve chip evacuation in deep holes and reduce tool temperature by 30%. Essential for machining heat-sensitive materials like Inconel and stainless steel.
Industry Compliance

Industry Compliance

Meets ANSI/ASME B94.19 standards for cutter geometry and ISO 14424 for tool life testing, ensuring consistency in aerospace, automotive, and medical device manufacturing.
Sustainable Design

Sustainable Design

Reusable carbide inserts and regrindable HSS tools reduce waste, while eco-friendly coatings (e.g., TiCN) minimize environmental impact. Aligns with circular economy principles in manufacturing.