Freud 550 Medium to Thick Aluminum & Non-Ferrous Blades with Mechanical Clamping
Features:
- Flat-triple chip tooth with positive cutting angle.
- Silver I.C.E. Coating prevents build up on the blade surface and keeps the blade running cooler and cleaner
- Ideal For: To cut solid drawn products with a thickness included between 2 and 10 mm.
- Cuts: Plastic, Vinyl, Aluminum, Brass, Copper.
Details:
Carbide-Tipped blade ideal for cutting aluminum and non-ferrous metals incorporates Tri-Metal Brazing which consists of copper sandwiched between two layers of silver alloy to create a stronger, more impact-resistant bond between the carbide and the blade body.
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Product Information
Shipping & Returns
Shipping & Returns






Freud 550 Medium to Thick Aluminum & Non-Ferrous Blades with Mechanical Clamping
Freud 550 Medium to Thick Aluminum & Non-Ferrous Blades with Mechanical Clamping
Features:
- Flat-triple chip tooth with positive cutting angle.
- Silver I.C.E. Coating prevents build up on the blade surface and keeps the blade running cooler and cleaner
- Ideal For: To cut solid drawn products with a thickness included between 2 and 10 mm.
- Cuts: Plastic, Vinyl, Aluminum, Brass, Copper.
Details:
Carbide-Tipped blade ideal for cutting aluminum and non-ferrous metals incorporates Tri-Metal Brazing which consists of copper sandwiched between two layers of silver alloy to create a stronger, more impact-resistant bond between the carbide and the blade body.
Product Information
Product Information
Shipping & Returns
Shipping & Returns
Description
Features:
- Flat-triple chip tooth with positive cutting angle.
- Silver I.C.E. Coating prevents build up on the blade surface and keeps the blade running cooler and cleaner
- Ideal For: To cut solid drawn products with a thickness included between 2 and 10 mm.
- Cuts: Plastic, Vinyl, Aluminum, Brass, Copper.
Details:
Carbide-Tipped blade ideal for cutting aluminum and non-ferrous metals incorporates Tri-Metal Brazing which consists of copper sandwiched between two layers of silver alloy to create a stronger, more impact-resistant bond between the carbide and the blade body.























