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The SECO 00035449 is a solid carbide milling insert carrying the ANSI and ISO designation XOMX060208R-M05, manufactured to the F40M fine-grain carbide grade with a PVD-applied TiAlN and TiN dual-layer coating. This single-sided, right-hand insert features a parallelogram shape with a 90-degree included angle, a positive rake geometry at 20.2 degrees, and a honed cutting edge for clean, controlled engagement. It delivers two usable cutting edges per insert and is held in the cutter body by a screw clamp. The M05 chip breaker geometry is optimized for balanced chip control across a range of depths of cut up to 0.2165 inches. Licensed machinists and CNC operators working in job shops, production cells, and maintenance machining environments install this insert in compatible milling cutter bodies.
This insert is suited for milling steel, stainless steel, cast iron, non-ferrous metals, superalloys, and titanium. It fits application codes P, K, S, and N, making it a versatile choice for facing, shoulder milling, and light ramping operations. The TiAlN and TiN PVD coating delivers heat resistance and extended tool life when cutting ferrous and difficult-to-machine materials. The positive rake angle reduces cutting forces, which benefits operations on less rigid setups or long-reach tooling. It is compatible with the SECO R217.69-06 cutter series and is sold individually with a minimum order quantity of 10 pieces per order.
Designed for use with the SECO R217.69-06 cutter series. Insert style is XOMX, series XOMX-06, with ANSI and ISO code XOMX060208R-M05. Verify cutter body pocket geometry and screw specification before installation.
Installation is performed by qualified machinists or CNC tooling technicians. Power down and lock out the machine spindle before seating or removing inserts. Use the correct torx or hex key to the cutter body manufacturer's specified fastener procedure and inspect the pocket seat for chips or debris before installing the insert. Do not mix insert grades or chip breaker styles within a single cutter body, as this creates uneven load distribution across cutting edges.
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