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Freud 8" x 48T Thick-Stock Laminate Blade (LU92M008)

Product ID : 9449622


Galleon Product ID 9449622
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4,725

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About Freud 8" X 48T Thick-Stock Laminate Blade

Product Description This heavy-duty production blade produces an excellent finish on the top and bottom of thick laminates and melamine. The LU92M series is ideal for cutting stacked 3/4" laminates and melamine. Each tooth has a special modified triple chip grind design created by computer simulation to breeze through thick stock and single or double-sided laminates, leaving a chip-free edge. 8" Blade Diameter, 5/8" Arbor, 48 MTCG Teeth, MTCG Grind, .126" Kerf (K), -6° Hook Angle, .087" Plate (P) Ideal For: Double Sided Laminates and Stacked Chipboard is ideal for cutting stacked 3/4" laminates and melamine. Application: Thick laminates and melamine. Made In Italy. Amazon.com The 8-inch Freud LU92M008 Thick Stock Laminate Cutting Saw Blade is a heavy-duty production blade designed to make smooth, chip-free cuts when working with thick laminates and melamine. It features a modified, application-specific, triple-chip tooth grind, the long-term dependability of TiCo high-density carbide, and the anti-friction performance of Freud's Silver I.C.E. coating. LU92M008 Thick Stock Laminate Cutting Saw Blade At a Glance: Ideal for single- and double-sided laminates, melamine, and stacks of 3/4-inch manmade materials Heavy-duty plate with laser-cut, anti-vibration slots Silver I.C.E. coating reduces friction and prevents gumming Technical Specs: Coating Silver ICE Diameter 8" Teeth 48 MTCG Arbor 5/8" Kerf (K) .126 Plate (P) .087 Depth of Cut Modified Triple Chip Grind (MTCG) Tooth Design for long life and chipfree cuts in thick stock manmade materials Negative Hook Angle minimizes chipping in laminates and melamine Special Grind and Negative Hook Angle for Chip-Free Laminates Built to leave a high-quality, chip-free finish on both the top and the bottom of thick laminates and melamine, this blade features 48 teeth with a special, modified triple-chip grind. Based on the results of extensive computer simulations, this grind is ideally suited to working with thick stock and stacks of single- or double-sided laminates. The blade's teeth also feature 6-degree, negative hook angles, which helps prevent the blade from being too aggressive and further reduces the possibility of chipping. This blade is designed for optimal performance when cutting stacks of 3/4-inch laminates and melamine, and it's also an excellent performer in plywood and chipboard. This blade can also crosscut or rip wood, and it can tackle thinner or thicker materials. However, some loss of surface finish may occur when it is used outside its ideal range. It has a 5/8-inch arbor and produces a 0.126 kerf. Well-Balanced, Anti-Vibration DesignThis Freud blade is precision balanced and pretensioned for truer cuts under heavy loads. It also features laser-cut, anti-vibration slots that reduce chatter for a cleaner finish, longer blade life, and reduced noise while you work. And because the entire blade is laser cut from high-strength steel, you can trust that it will stay stable, flat, and true, even after prolonged use. Furthermore, this well-balanced, anti-vibration design means there's no need to use add-on stabilizers with this blade. High-Density Carbide for Maximum Cutting PerformanceThis thick-stock saw blade's 48 teeth are finished with tips made from Freud's application-specific TiCo high-density carbide "laminate blend." Formulated to extend tooth life in the face of work with laminates, melamine, and solid surfaces, this blend is extra hard--due to the proportion of high-density tungsten carbide that goes into it--and it still offers the mix of improved corrosion resistance, heat resistance, and impact resistance that you expect from TiCo. With teeth that start out sharper and deliver improved edge retention, the blade can go longer between sharpening, and will hold up longer--saving you time and money. Silver I.C.E. Coating Resists Corrosion, Heat, and Resin BuildupThis blade is finished with Freud's Silver I.C.E. coating, which resists corrosion for improved perform