4 Flute Square End Mill, 15/64 in dia, 3/4 in LOC, Uncoated Solid Carbide
Mfr # TC10515
Zoro # G322805809
Key Features
Specifications
Product Information
- MFR #
- TC10515
- Zoro #
- G322805809
- UPC #
- -
- Country of Origin
- United States
Dimensions
- Overall Length
- 2-1/2 in
- Height
- 0.25 in
- Width
- 0.25 in
- Length of cut (L2)
- 3/4 in
- Shank Dia.
- 1/4 in
- Drill Bit Size
- 15/64 in
Details
- Item
- Drill Bit
- End Type
- Square
- Finish - Machining
- Uncoated
- Number of Flutes
- 4
- Material - Machining
- Solid Carbide
- End Mill Type
- General Purpose
Description
The Titan USA TC10515 is a precision-ground 4 flute solid carbide square end mill engineered for demanding milling applications in steel, aluminum, cast iron, and non-ferrous materials. Manufactured from premium solid carbide, this end mill delivers exceptional rigidity and wear resistance compared to high-speed steel tooling, allowing for faster feed rates and longer tool life. The 15/64 in cutting diameter and 3/4 in length of cut make it ideal for slotting, profiling, and peripheral milling in tight-tolerance work. The uncoated carbide substrate offers excellent performance in non-ferrous metals and plastics where coating buildup can be a concern. With 4 flutes providing a superior surface finish and higher material removal rates than 2-flute alternatives, the TC10515 is a versatile workhorse for job shops, production machining, and prototype work. Precision ground cutting edges ensure consistent performance and repeatability across your entire production run.
- Performs in steel, aluminum, cast iron, and non-ferrous materials
- 4 flute geometry produces finer surface finishes and higher chip loads than 2-flute designs
- Solid carbide construction delivers superior rigidity and wear resistance vs. HSS tooling
- Uncoated substrate prevents built-up edge and material adhesion in aluminum machining
- Precision-ground cutting edges ensure repeatable dimensional accuracy run to run
- Ideal for slotting, profiling, and peripheral milling in tight-tolerance applications