Bi-Metal Bandsaw Blades
   SGLB - M-42 Bi-metal Blade

The SGLB was designed to cover a broad range of cutting applications and to provide maximum efficiency in sawing wear-resistant tool steels. The blade's tough M-42 cobalt edge resists heat and abrasion, while the varied pitch tooth form expands the ranges of sizes and shapes that can be sawed successfully without

changing blades. » read more
   SUPER HI-LO - M-42 Bi-metal Blade
Combines the effective of the HI-LO design with a multi-set tooth design. This design allows more cutting surfaces to be in the work piece that increases cutting rates, improves surface finishes and extends blade
life. » read more
   DUOS - HSS Bi-Metal Band Saw Blade
Blade exclusively designed for the light-duty band sawing machines to cover a wide range of cutting
applications. No Break-in procedure is necessary. » read more
   MAGNUM HI-LO - M-71 Bi-metal Blade
With its special alloying technology, Magnum Hi Lo achieves HRC70 tooth hardness. It maintains positive cutting action and outlasts other blades in production cutting of large-diameter, work hardening steels and
nickel-base super alloys with tensile strength of up to 164,000 psi. » read more
   M-71 HSS Bi-metal Band Saw Blade

Blade exclusively for small-and medium-diameter hard-to-cut material with largely improved wear

resistance, using Amada's original M71 HSS edge material which is as hard as Hv 1000. » read more
   PROTECTOR - Matrix Bi-metal Blade
Protector provides long blade life and prevents tooth breakage, eliminating excessive tooth stripping. It can withstand the shock of interrupted cuts, allowing for heavier penetration for faster cutting rates. Protector uses a broaching style set pattern designed to eliminate pinching, which prevents the blade from binding
the cut. » read more
   CTB - Set Type Carbide Blade
Designed exclusively for heat-resistant alloys, nickel-based alloys, titanium alloys, and special cast tensile steels, all with high tensile strength of over 142,000 psi. It features ultra-hard, diamond sharp carbide tipped teeth that resist low thermal conductivity and abrasion that can quickly break down conventional bi-
metal type bands. » read more
   BCTB - Multi-faceted Triple Chip Carbide Blade
Designed exclusively for heat-resistant alloys, nickel-based alloys, titanium alloys, and special cast tensile steels, all with high tensile strength of over 142,000 psi. It features ultra-hard, diamond sharp carbide tipped teeth that resist low thermal conductivity and abrasion that can quickly break down conventional bi-
metal type bands. » read more
   MGLB - Matrix Bi-metal Blade
The MGLB is best suited for cutting structural shapes, tubing and stacks of mild steel pieces. The MGLB allows band saw machines to cut a wide range of material sizes and shapes without requiring a change of blades. Its tough high-speed steel teeth resist chipping, stripping and abrasion. It can also tolerate the
occasional improper speeds and feeds that are often used by inexperienced saw operators. » read more
   GLB contour
High Grade High speed steel,which provides high wear resistance,is used for the teeth and tough special spring
steel is used for the backing material.Highest grade contour blade made of HSS bi-metal » read more
   Blade Pitch selection table by material to be cut
         
         
         
Note 1:   It is recommended for optimum cutting to select a pitch to allow for 20 to 30 teeth to correspond to the cutting length.
Note 2:   When cutting deformed material or like that varies in the cutting length suddenly, it is desirable that at least 2 teeth are in contact with the material constantly while cutting.
Note 3:   The above table based on "SGLB" should be used as a guide. Specific applicability varies somewhat depending on the characteristics of the blades. For example, 3/4P of "PROTECTOR" is capable of cutting materials in the range including 4/6P in the above table.
   Circular Saw Blade

Designed for accurate cuts at a higher cutting rate. This blade features the highest quality sawing grade of

carbide. » read more
 
 
 
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