3M™ 265X Lapping Film Disc 3M™ The 3M™ 265X lapping film disc is designed to deliver high-precision finishing in various industrial environments. Ideal for applications such as polishing metal surfaces, preparing optical lenses, and sharpening delicate components, this disc ensures a uniform finish thanks to its flexible film structure. Its ability to provide consistent, high-quality results makes it an essential tool for professionals. Additionally, it is compatible with a variety of mounting systems, making it easy to use in different work contexts. Learn more
Non-Woven Abrasive Belt SC-BL 3M™ Scotch-Brite™ 3M™ The SC-BL non-woven abrasive belt 3M™ Scotch-Brite™ is specifically designed for cleaning, deburring, and finishing applications on various materials, including metals, plastics, and composites. Made from durable synthetic fibers impregnated with abrasive grains, this belt provides controlled abrasive action that is both gentle on sensitive surfaces and effective at removing oxides, light contaminants, and surface imperfections. The non-woven structure of the belt allows for good airflow, reducing heat buildup and preventing clogging, thereby extending the abrasive's lifespan. The SC-BL belt is ideal for operations requiring a uniform and high-quality finish in demanding industrial environments such as aerospace, automotive, and metalworking. It easily adapts to irregular surfaces, ensuring precise and consistent work. Learn more
3M™ Scotch-Brite™ CF-FB Non-Woven Flap Brush 3M™ The 3M™ Scotch-Brite™ CF-FB non-woven flap brush is designed to deliver high-quality finishing and effective cleaning in various industrial environments. Ideal for applications such as paint stripping, cleaning welds, and preparing metal surfaces, this brush provides uniform results while minimizing the risk of scratches. Its non-woven fiber construction ensures gentle abrasive action, making it suitable for delicate or contoured surfaces. Professionals will appreciate its durability and adaptability to different machines, ensuring optimal productivity. Learn more
Diamond Superabrasive Block 6200J 3M™ 3M™ The diamond superabrasive block 6200J 3M™ is a high-precision sanding and finishing tool designed for demanding applications on hard materials such as metals, ceramics, and composites. This block uses diamond particles, the hardest known material, to provide extremely efficient and long-lasting cutting action. With its flexible structure, the 6200J block easily conforms to contours and complex surfaces, ensuring a uniform and precise finish even in hard-to-reach areas. It is particularly used in industries such as aerospace, automotive, and industrial manufacturing, where finish quality and tool longevity are critical. This superabrasive block guarantees superior performance and exceptional durability, reducing the need for frequent tool replacement. Learn more
Scotch-Brite™ DB-WL Deburring Wheel 3M™ The Scotch-Brite™ deburring wheel is ideal for use on various surfaces during light to moderate deburring operations. Made from silicon carbide with a density of 11 (hard), our wheels, available in fine and medium grits, are especially suited for deburring edges on carbon steel, stainless steel, titanium, and soft metals. With their non-woven spiral design, they provide consistent abrasive action on both flat and irregular surfaces. These wheels are tough, durable, and well-suited for deburring stamped or laser-cut parts, as well as for cleaning and finishing after belt sanding. By reducing substrate scratches, they minimize the need for additional finishing steps. The sharp silicon carbide abrasive grain ensures an exceptional finish and prolonged product life, thanks to its open structure that resists heat buildup and clogging. Scotch-Brite™ industrial abrasives combine non-woven nylon fibers with abrasive grains to ensure consistent performance throughout their use, boosting productivity while reducing reliance on chemical cleaners and wire brushes. Whether for finishing or weld grinding, these products deliver quick and uniform results every time. Learn more