Milwaukee® SAWZALL® 48-01-6189 Double Duty Thin Kerf Reciprocating Saw Blade, 12 in L x 3/4 in W, 18 TPI, Bi-Metal Body, Universal/Toothed Edge Tang
Thin Kerf metal-cutting blades with the Double Duty Upgrade™ feature a tooth form that is optimized for the longest life and increased speed. Tough Neck™ is engineered to protect against tang breakage and delivers the strongest SAWZALL® blade tang on the market. Maintaining a short profile and thin body, these blades are ideal for making fast, flexible cuts.
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BrandMilwaukee®
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UPC045242084883
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Manufacturer Part Number48-01-6189
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CountryUSA|Canada
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Teeth TypeMatrix II
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Teeth per Inch18 TPI
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FinishUncoated
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Thickness0.035 in
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TypeDouble Duty Thin Kerf
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Applicable MaterialsMost Metal
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Width3/4 in
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Cutting Edge MaterialBi-Metal
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Body MaterialBi-Metal
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Length12 in
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Tang Size1/2 in
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Tang StyleUniversal/Toothed Edge
- Grid Iron honeycomb pattern increases blade rigidity to resist blade buckling
- Optimized tooth design providing 2X more life than our previous generation SAWZALL blades
- Tough Neck ribs strengthen the blade tang and minimize breakage
- Matrix II bi-metal teeth for greater durability
| Competitor Name | Competitor Part Number |
|---|---|
| Grainger | 1BV36 |
| MSC | 82826017 |
| Fastenal | 0213143 |
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Alternative Part Number8571556
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UNSPSC27112802
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IDEA Index ID8571556
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Package DescriptionEACH
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WarrantyNo Warranty
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Catalog
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Specification Sheet
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Milwaukee® SAWZALL® 48-01-6189 Double Duty Thin Kerf Reciprocating Saw Blade, 12 in L x 3/4 in W, 18 TPI, Bi-Metal Body, Universal/Toothed Edge Tang
Thin Kerf metal-cutting blades with the Double Duty Upgrade™ feature a tooth form that is optimized for the longest life and increased speed. Tough Neck™ is engineered to protect against tang breakage and delivers the strongest SAWZALL® blade tang on the market. Maintaining a short profile and thin body, these blades are ideal for making fast, flexible cuts.
Synchronous belt drives help reduce the problems of slippage, belt stretch, lubrication and metal to metal contact. They provide superior performance because power is transmitted by positive engagement of belt teeth rather than by friction, as in conventional belt drives.
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