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CFRP Carbon Fiber
CFRP Carbon Fiber
CFRP Carbon Fiber
CFRP Carbon Fiber
CFRP Carbon Fiber
CFRP Carbon Fiber
CFRP Carbon Fiber
CFRP Carbon Fiber
CFRP Carbon Fiber
CFRP Carbon Fiber
CFRP Carbon Fiber
CFRP Carbon Fiber
CFRP Carbon Fiber
CFRP Carbon Fiber
CFRP Carbon Fiber

CFRP Carbon Fiber

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Composite Materials Milling
Cod. 68DX

HPC Right Helix Endmill for CFRP Milling

Our HPC end mills for carbon fibre, featuring a right-hand helix and a high-thickness diamond coating, are engineered to combine high productivity with extended tool life.

Composite Materials Milling
Cod. 68SX

HPC Left Helix Endmill for CFRP Milling

Our HPC carbon fibre end mills, featuring a left-hand helix and a high-thickness diamond coating, are engineered to combine high productivity with extended tool life.

Composite Materials Milling
Cod. 68TD

HPC Straight Flute Endmil for CFRP Milling

Our HPC carbon fibre end mills, featuring straight cutting edges and a high-thickness diamond coating, are engineered to combine high productivity with extended tool life.

Composite Materials Milling
Cod. 68RDX

HPC Ball Nose Right Helix Endmill for CFRP Milling

Our HPC ball nose end mills for carbon fibre, featuring a right-hand helix and a high-thickness diamond coating, are engineered to combine high productivity with extended tool life.

Composite Materials Milling
Cod. 104PH

HPC Up&Down Cutter for CFRP Milling

Our HPC Up&Down end mills for carbon fibre, featuring opposed helix geometry and a high-thickness diamond coating, are engineered for optimal through-thickness machining. The compression cutting geometry prevents edge delamination, delivering clean surfaces and superior machining quality.

Composite Materials Milling
Cod. 419TD

HPC 4 Flutes Cutter Up&Down Chip Breaker

Our HPC 4-flute Up&Down end mills with alternating chipbreaker geometry provide a definitive solution for machining Kevlar without delamination.

Composite Materials Milling
Cod. 68SU

Right Helix Endmil for CFRP Milling

Our HPC carbon fibre end mills, featuring a right-hand helix and diamond coating, are engineered to combine high productivity with extended tool life.

Also available in an uncoated version.

Composite Materials Milling
Cod. 65SU

Fibreglass Straight Flute Endmill with Chip Braker

Our straight flute fibreglass end mills with chip breaker are designed to break the fibre and deliver a clean workpiece surface finish.

Also available with Cer-taC coating for extended tool life.

Composite Materials Milling
Cod. 66SU

10° Fibreglass Right Helix Endmill with Chip Breaker

Our fibreglass end mills with 10° right-hand helix and chip breaker are designed to break the fibre and deliver a clean workpiece surface finish.

Also available with Cer-taC coating for extended tool life.

Composite Materials Milling
Cod. 119P

2 Flutes Cutter Up&Down Chip Breaker

Our HPC Up&Down 2-flute end mills with alternating chip breaker provide an effective solution for machining Kevlar without delamination, both in drilling and milling operations.

The specialised front geometry ensures high stability and precision during drilling operations.

Composite Materials Milling
Cod. 106 F,M,G

GFRP End Mill without End Cut

End mills for fibrous materials designed for contour machining. Available in three different configurations: fine, medium or coarse (F, M or G), to suit different machining conditions.

The multi-cutting-edge geometry allows the fibre to be pulverised during machining.

Composite Materials Milling
Cod. 107 F,M,G

GFRP End Mill with End Cut

End mills for fibrous materials designed for contour machining with front cutting edges. Available in three different configurations: fine, medium or coarse (F, M or G), to suit different machining conditions.

The multi-cutting-edge geometry allows the fibre to be pulverised during machining.

Composite Materials Milling
Cod. 108 F,M,G

Z=2 Front Cut End Mill

End mills for fibrous materials designed for contour machining with two front cutting edges. Available in three different configurations: fine, medium or coarse (F, M or G), to suit different machining conditions.

The multi-cutting-edge geometry allows the fibre to be pulverised during machining.

Composite Materials Milling
Cod. 109 F,M,G

Z=2 Drilling Front Cut End Mill for Fibreglass

End mills for fibrous materials designed for contour machining with Z=2 front cutting edges. Available in three different configurations: fine, medium or coarse (F, M or G), to suit different machining conditions.

The multi-cutting-edge geometry allows the fibre to be pulverised during machining. In addition, the front cutting edges enable the tool to be used for drilling operations.

Composite Materials Milling
Cod. 106R F,M

Ball Nose End Mill for Glass Fibre Composites

Ball nose end mill designed for contour machining of fibrous composite materials, featuring front cutting edges. Available with Fine (F) or Medium (M) tooth geometry to suit different machining conditions.

The multi-edge cutting geometry pulverises the glass fibres during machining.

Drills
Cod. 217

Straight Flute Z=4 for Manual and CNC Drilling

Z=4 straight-flute drills, ideal for both manual and CNC drilling.
The specific geometry of the cutting edge prevents CFRP delamination and the separation of the layers.

Also available with Cer-DLC coating for extended tool life.

Drills
Cod. 118

Twist Drill for Manual and CNC Application for Kevlar drilling

Drills with a specific dagger-point geometry that makes them ideal for drilling aramid and glass fibres, ensuring excellent stability and precision while preventing any delamination of the fibre.

Suitable for both manual and CNC drilling.

Drills
Cod. 165C

HPC Twist Drill for CFRP Drilling

High-performance solution designed for intensive, automated drilling of carbon fibre on CNC machining. Thanks to the internal coolant or compressed air channels, the tool instantly evacuates abrasive dust and drastically reduces temperatures in the cutting area.

Drills
Cod. 165ST

HPC Twist Drill for CFRP+Ti or CFRP+Al Panels

Specifically developed for high-performance drilling of complex sandwich materials, such as carbon fibre stacked with titanium or aluminum. Thanks to its specialized multi-material geometry and internal coolant supply, the drill seamlessly manages both the highly abrasive carbon and the metals' tendency to overheat or stick.

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