Menu

Bi-metal Reciprocating Saw Blades for Cutting Metal / All Purpos - Vermont American

Part #: 30260

Designed for the demanding needs of professional technicians and industrial users, the Vermont American 30260 Bi-Metal Reciprocating Saw Blades deliver exceptional performance and longevity. These all-purpose blades are engineered to tackle a wide array of materials with superior cutting efficiency and reduced blade changes, making them an indispensable addition to any professional toolkit.

Key Features:

  • Extended Blade Life: Bi-metal construction offers significantly greater durability, lasting up to 10 times longer than high carbon steel blades and twice as long as high-speed steel blades, minimizing downtime and replacement costs.
  • Flexible Spring Back: A robust, flexible steel spring back enhances the blade's resistance to breakage, providing consistent performance and extending overall service life in rigorous cutting applications.
  • Precision Cutting Teeth: Super-hard high-speed steel teeth maintain a sharp, long-lasting cutting edge for clean, efficient cuts through tough materials.
  • Versatile Material Compatibility: Engineered for effective cutting across multiple material types, offering a single solution for diverse job requirements.

Applications:

These bi-metal reciprocating saw blades are ideally suited for a variety of professional applications, including:

  • Metal Fabrication & Repair: Efficiently cuts through various metals such as pipes, conduit, sheet metal, and automotive body components.
  • Woodworking & Demolition: Capable of handling wood framing, planks, and general demolition tasks.
  • Plastic & PVC Cutting: Provides clean cuts in plastic materials, including PVC pipes and conduit.
  • General Industrial Use: Compatible with a range of reciprocating saws for general maintenance, repair, and operational tasks in industrial settings.

Specifications:

  • Blade Length: 6"
  • Teeth Per Inch (TPI): 18
Browse Saws

This product was added to our catalog on Sunday 04 November, 2012.