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The 3M 7010299277 Scotch-Brite EXL Convolute Deburring Wheel is a hard, dense abrasive wheel engineered to deburr, finish, and polish metals, composites, and glass in production and fabrication environments. Constructed with aluminum oxide abrasive in a convolute build, the wheel delivers consistent surface contact and a smooth, clean finish without undercutting or gouging the workpiece. At 12 inches in diameter and 2.6 inches wide, it is sized for bench-mounted or automated robotic deburring operations. Fabricators, machinists, and finishing technicians working on stamped, laser-cut, or belt-sanded parts rely on this wheel for repeatable results across a range of substrate types.
This wheel is well suited for deburring stamped or laser-cut metal parts, finishing operations following belt sanding, and surface preparation on composites and glass. Its conformable characteristic allows the abrasive to maintain contact with complex or irregular part geometries, making it effective in both manual and robotic processing setups. The unique resin system minimizes smearing, reducing post-process cleaning time. It is particularly useful in light manufacturing, metal fabrication shops, and aerospace or automotive finishing lines where heat-sensitive substrates require controlled abrasion with minimal thermal buildup.
Designed for use on metals, composites, and glass substrates in deburring, finishing, and polishing applications. Suited for stamped parts, laser-cut components, and workpieces requiring post-belt-sanding surface finishing.
This wheel is installed and serviced by machinists or finishing technicians on compatible bench grinders, deburring machines, or automated robotic systems. Before mounting or changing the wheel, power down and lock out the machine per standard OSHA lockout/tagout procedures. Verify that the spindle speed rating of the equipment does not exceed the maximum operating speed of the wheel before running. Inspect the wheel for damage before each use and never operate a cracked or compromised wheel.
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