DRILL SYSTEMS > MDS Solid Carbide Drills/KDS Brazed Carbide-Tipped Drills > MDS V-Type

MDS-V
Our V-type drill is an industry leader, when the ability to drill a broad range of materials is required. The TiAlN coating (purple/black color) is a wear resistant coating that allows the V-type drill to be applied at higher speeds than that of conventional carbide drills. Paired with a tough substrate yielding aggressive feed rates, the V-type drill often displays increased tool life and productivity.
* Solid carbide construction increases rigidity
* Hole over-sizing is small (.0008 - .002)
* Drill hole depths at 3.5 x drill diameter
* Excellent for drilling of steels, irons and hard to cut materials

MDS MHV (PDF)
* Solid carbide with coolant holes
* Standard lengths for 3.5 x drill diameter to hole depth ratios
* Excellent chip evacuation geometries
* Improved chip flow with high pressure coolants
* PVD coated for increased wear and excellent chip adhesion resistance

MDS LHV  (PDF)
* Solid carbide with coolant holes
* Capable of drilling up to 7 x drill diameter to hole depth ratios
* Excellent chip evacuation geometries
* Extremely accurate hole size consistencies
* PVD coated for increased wear and excellent chip adhesion resistance

MDS DMHV (PDF)
* DIN standard 6537
* Solid carbide drills with coolant holes
* Drill diameters ranging from 4mm with 6 mm shank diameters to 20mm drill diameters with 20mm shanks
* Excellent chip evacuation geometries
* Extremely accurate hole size consistencies
* TiNAlN coated for increased wear and excellent chip adhesion resistance

MDS SV (PDF)
* Geometry for high productivity steel drilling
* Machine steels > 320 Bhn
* Stub length drills for maximum rigidity
* PVD coated for increased wear resistance
* PVD coated for excellent adhesion resistance

MDS MV (PDF)
* Geometry for high productivity steel drilling
* Machine steels > 320 Bhn
* Medium length drills for extended hole depths
* PVD coated for increased wear and excellent chip adhesion resistance

MDS HV
* Solid carbide with coolant holes
* Hole depths of five to seven times the drill diameter
* Improved chip flow with high pressure coolants
* PVD coated for increased wear and excellent chip adhesion resistance


 

 

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