Lenox Gold Power Arc Curved Extreme Metal Cutting Reciprocating Saw Blades deliver up to 2X longer life vs. traditional straight Lenox reciprocating saw blades
Lenox Gold Power Arc curved extreme metal cutting reciprocating saw blades deliver up to 2X longer life vs. traditional straight Lenox reciprocating saw blades.
Make sure you have the blade you need when the project calls for high-speed cutting with this 5 PK 12 in. 18 TPI METALWOLF .035 in. Thick WAVE EDGE Bi-Metal Reciprocating Saw Blade. Built for performance and dependability, the blade offers up to 50% longer life with its rugged, 3-stage tooth structure. It delivers efficient cuts in medium-thickness metals with its high-speed steel cutting edge while the spring steel backing helps reduce blade fractures as you work.
Speedily cut across thick metals using this pack-leading 8 in. 14 TPI METALWOLF .035 in. Thick WAVE EDGE Bi-Metal Reciprocating Saw Blade. This long-lasting 5 pack helps professionals like you get the most out of your power tool with revolutionary WAVE EDGE technology designed to deliver up to 50% longer life. Its spring steel backing helps reduce breaks by reinforcing the blade so users can do more work over the life of the tool.
When you need consistently high cutting speed and durability for challenging lumber work, count on this 6 in. 6 TPI LUMBERWOLF .05 in. Thick Bi-Metal Reciprocating Saw Blade. Seamlessly execute fast, clean plunge cuts with the blade’s dense profile, which was designed to bolster the base for durability and reduced breakage.
Quickly cut medium-thickness metals with this long-lasting 6 in. 18 TPI METALWOLF .035 in. Thick WAVE EDGE Bi-Metal Reciprocating Saw Blade, which is designed to offer up to 50% longer life. Well-suited to withstand the daily demands of heavy-duty work, the blade features a 3-stage tooth arrangement engineered for consistently high cut performance. Swiftly execute fast cuts with the blade’s thin build and fortified spring steel backing which helps reinforce the base for endurance and reduced breakage over time.