Milwaukee SAWZALL Blade 48-00-5226 9 Inch AX Carbide Teeth Reciprocating Saw Accessory (5 TPI Fang Tip Demolition Nail Embedded Wood)

Only 1 left
SKU: 48-00-5226
Regular price $9.89 USD

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Milwaukee 9 Inch 5 TPI AX Carbide Teeth SAWZALL Blade

The Milwaukee 48-00-5226 9-Inch AX Carbide Teeth SAWZALL Blade is a heavy-duty reciprocating saw accessory engineered for extended-reach demolition cuts in nail-embedded wood. Featuring a 5 TPI tooth profile and specialized Fang Tip geometry, this blade delivers up to 50 times longer service life than bi-metal alternatives when cutting deep wall headers, roof decking, and cement board.

Best Used For:

  • Deep Header Demolition: Cutting through multi-layered framing studs, thick headers, and double top plates containing embedded steel nails.
  • Roofing and Subfloor Remodeling: Slicing through asphalt shingles, wooden subflooring, plaster lath, and heavy Durock cement boards.
  • Pocket and Plunge Cuts: Executing immediate plunge cuts directly into structural wall sections without blade skating or pilot holes.

Key Performance & Safety Features

  • Carbide-Tipped Teeth: Delivers up to 50X longer life in nail-embedded wood and abrasive construction materials.
  • Nail Guard Technology: Protects teeth from fracturing or tearing out when striking hardened steel fasteners.
  • Fang Tip Geometry: Bite-style tip design enables immediate, controlled plunge cutting in wood framing.
  • Aggressive 5 TPI Profile: Clears wood chips rapidly to maintain high cutting speed and low thermal friction.

What's Included

  • (1) 9 in. AX Carbide Teeth SAWZALL Blade (48-00-5226)

Technical Specifications

Brand Milwaukee
Model Number 48-00-5226
Series The AX™
Blade Length 9 in.
Blade Width 1 in.
Teeth Per Inch (TPI) 5 TPI
Blade Material Carbide Tipped
Shank Size 1/2 in. Universal
Total Teeth 45
Material Application Nail-Embedded Wood, Demolition
Pack Quantity 1
Country of Origin USA
Pro-Tip: Maintain steady orbital action on your reciprocating saw and let the 5 TPI carbide teeth self-feed through deep framing assemblies without applying excess downward force.