Discover the TaeguTec TNMG 160404 MT TT5080 carbide insert – engineered for high-performance turning of steel and stainless steel. Features TiAlN+TiN coating for extended tool life and excellent surface finish.
Elevate your machining operations with the TaeguTec TNMG 160404 MT TT5080 carbide insert, now available at CNC Tools Depot. Designed for medium rough turning applications, this insert excels in processing steel and stainless steel materials.
Geometry: Negative triangular insert with a 60° cutting edge angle.
Coating: TiAlN+TiN for enhanced wear resistance and heat resistance.
Material: CVD-coated carbide for durability and longevity.
Insert Thickness (S): 4.76 mm
Cutting Edge Length (L): 16.5 mm
Inscribed Circle Diameter (IC): 9.52 mm
Corner Radius (RE): 0.4 mm
Depth of Cut (APMX): Up to 3.5 mm
Minimum Feed Rate (ft(min)): 0.17 mm/rev
Maximum Feed Rate (ft(max)): 0.4 mm/rev
Minimum Depth of Cut (ap(min)): 1 mm
The TT5080 grade is specifically formulated for turning operations on steel and stainless steel, providing excellent surface finish and chip control.
The TaeguTec TNMG 160404 MT TT5080 insert is renowned for its reliability and performance. Its robust coating ensures minimal wear, reducing downtime and maintenance costs. The insert's geometry and coating work in tandem to deliver a superior surface finish, making it a preferred choice for professionals seeking efficiency and quality.
Automotive: Precision turning of engine components.
Aerospace: Machining of critical parts requiring high strength.
Die & Mold: Manufacturing of molds with intricate details.
General Engineering: Versatile use in various machining applications.
This insert is designed for turning operations on steel and stainless steel materials.
The insert features a TiAlN+TiN coating, providing enhanced wear resistance and heat resistance.
The maximum depth of cut is 3.5 mm.
Yes, the TNMG 160404 MT TT5080 insert is suitable for both external and internal turning applications.
The TiAlN+TiN coating enhances the insert's wear resistance, allowing for higher cutting speeds and improved surface finishes, leading to increased productivity and reduced tool wear.