Enhanced Cutting Precision
- Durability: Tungsten carbide teeth for extended lifespan and cutting through tough materials.
- Versatility: Ideal for a variety of materials including metals, hardwood, and laminates.
- Accuracy: 32mm width and 50mm cutting depth for precise and controlled cuts.
Efficient cutting with Makita
- Durable carbide tipped teeth: The tough carbide teeth allow you to plunge cut through hard metals without rapid blade wear.
- High torque power transfer: The StarlockPlus mounting interface ensures you get maximum energy transfer directly to the cutting edge.
- Deep reach plunge cuts: With a 50 mm working depth, you access confined spaces and cut cleanly into thick workpieces.
With the Makita B-66357 MAP004 plunge saw blade, you cut through tough metals, hardened screws, nails, and stainless steel in tight, hard-to-reach spaces. Its robust tungsten carbide teeth (TC/HM) with 23 tpi prevent rapid blade wear when working on demanding materials such as fibreglass and plasterboard. The StarlockPlus mounting interface ensures direct torque transfer and low-vibration performance on multitools with a StarlockPlus or StarlockMax mount. Featuring a working length of 50 mm and a width of 32 mm, this blade delivers deep plunge cuts and clean flush cuts for efficient renovation and installation tasks.
Product description
Blade for various deep plunge cuts of 50 mm
Starlock Plus multi-tool blade specially designed for cutting materials such as metal, stainless steel and fibreglass. This TC/HM blade has a width of 32 mm and a working length of 50 mm. The blade has 23 TPI. The pack contains 1 blade.
Multitool blade with Starlock Plus attachment. Also suitable for multitools with Starlock Max attachment. Starlock Plus has high torque transfer and is suitable for heavy-duty applications. The Starlock Plus blade is colour-coded for easy identification. The blade is designed for plunge-cut saws. It has a carbide tip welded to the cutting edge of the blade. This makes this very hard blade highly resistant to abrasion and overheating. These properties make the blade suitable for a variety of materials.