Premium CNC Lathe Tool Set: MGEHR2020-3 right-hand grooving tool holder (0.787 inch shank) paired with 3 MGMN300 carbide inserts delivers precision cutting for diverse metalworking applications. Color-coded blade system—yellow for steel processing, purple for stainless steel machining, silver for aluminum alloy and copper work—eliminates material-matching guesswork while maximizing cutting efficiency across your CNC turning operations.
Forged 40CR Alloy Steel Construction: Crafted through advanced hot forging and high-temperature tempering processes, this tool holder exhibits superior strength, hardness, and fatigue resistance compared to standard cast holders. The bright polished finish while the shank maintains dimensional stability during heavy cutting loads, insuring consistent chip removal and extended service life in demanding production environments.
Advanced Wear-Resistant Coating Technology: Each carbide insert features thick multi-layer coating applied through stress accumulation spraying, creating exceptional wear resistance and thermal stability. The optimized cutting geometry with smooth rake angles reduces friction and chip buildup, enabling faster feed rates while maintaining superior surfaces finishes on workpieces ranging from soft aluminum to hardened stainless steel.
Complete Machining Solution: Package includes 1 precision-ground tool holder, 3 color-coded MGMN300 carbide inserts (3mm cutting width), and 1 hex wrench for quick blade changes. The standardized ISO tooling interface fits most CNC lathes and turning centers, allowing seamless integration into existing setups without requiring special adapters or modifications to your machine tool configuration.
Enhanced Productivity Features: Secure blade clamping system prevents vibration and insert movement during interrupted cuts, while the 20mm*20mm holder size provides optimal rigidity-to-weight ratio for general-purpose turning operations. The thicker coating application extends tool life by 40-60% standard inserts, reducing downtime for blade changes and lowering per-part machining costs in high-volume production runs.