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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
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CFRP Carbon Fiber

CFRP Carbon Fiber

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Cod. 68DX

HPC Right Helix Endmill for CFRP Milling

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

Composite Materials Milling
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Cod. 68SX

HPC Left Helix Endmill for CFRP Milling

Our HPC carbon fibre milling cutters, featuring a left-hand helix and a thick diamond coating, are designed to combine high productivity with a long tool life.

Composite Materials Milling
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Cod. 68TD

HPC Straight Flute Endmil for CFRP Milling

Our HPC carbon fibre milling cutters, featuring a straight flute and a thick diamond coating, are designed to combine high productivity with a long tool life.

Composite Materials Milling
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Cod. 68RDX

HPC Ball Nose Right Helix Endmill for CFRP Milling

Our HPC radius end mills for carbon fibre, featuring a right-hand helix and a thick diamond coating, are designed to combine high productivity with a long tool life.

Composite Materials Milling
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Cod. 104PH

HPC Up&Down Cutter for CFRP Milling

Our HPC Up&Down carbon fibre end mills, featuring a mixed helix and a thick diamond coating, are designed for optimal thickness machining. The compression geometry prevents edge delamination, delivering clean surfaces.

Composite Materials Milling
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Cod. 419TD

HPC 4 Flutes Cutter Up&Down Chip Breaker

Our 4-flute HPC Up&Down end mills with alternating chip breakers offer a definitive solution for machining Kevlar without delamination.

Composite Materials Milling
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Cod. 68SU

Right Helix Endmil for CFRP Milling

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

Also available uncoated.

Composite Materials Milling
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Cod. 65SU

Fibreglass Straight Flute Endmill with Chip Braker

Our fibreglass cutters, available with straight flutes and chip breakers, are designed to break up the fibre and produce a clean workpiece surface.

They are also available with a Cer-taC coating for increased tool life. 

Composite Materials Milling
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Cod. 66SU

10° Fibreglass Right Helix Endmill with Chip Breaker

Our fibreglass end mills, featuring a 10° right-hand helix and a chipbreaker, are designed to break up the fibre and produce a clean workpiece surface.

Also available with a Cer-taC coating, for increased tool life.

Composite Materials Milling
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Cod. 119P

2 Flutes Cutter Up&Down Chip Breaker

Our HPC Up&Down 2-flute end mills with alternating chip breakers offer a definitive solution for machining Kevlar without delamination, whether for drilling or milling.

The special front geometry ensures excellent stability and precision when drilling.

Composite Materials Milling
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Cod. 106 F,M,G

No Front Cut Endmill for GFRP Milling

Cutters for fibrous materials, designed for contour machining. They are available in three different configurations: fine, medium or coarse (F, M or G), to suit different working conditions.

The multi-cutting-edge geometry allows the fibre being machined to be pulverised.

Composite Materials Milling
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Cod. 107 F,M,G

Front Cut Endmill for GFRP Milling

Cutters for fibrous materials, designed for contour machining with front cutting edges. They are available in three different configurations: fine, medium or coarse (F, M or G), to suit different working conditions.

The multi-cutting-edge geometry allows the fibre being machined to be pulverised.

Composite Materials Milling
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Cod. 108 F,M,G

Z=2 Front Cut Endmill for GFRP Milling

Cutters for fibrous materials, designed for contour machining with Z2 front cutting edges. They are available in three different configurations: fine, medium or coarse (F, M or G), to suit different working conditions.

The multi-cutting-edge geometry allows the fibre being machined to be pulverised.

Composite Materials Milling
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Cod. 109 F,M,G

Z=2 Drilling Front Cut Endmill for GFRP Milling

Cutters for fibrous materials, designed for contour machining with Z2 front cutting edges. They are available in three different configurations: fine, medium or coarse (F, M or G), to suit different working conditions.
The multi-edge geometry allows the fibre being machined to be pulverised. Furthermore, the front cutting edges enable the tool to be used for drilling operations as well.

Composite Materials Milling
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Cod. 106R F,M

Ball Nose Endmill for GFRP Milling

Radius cutters for fibrous materials, designed for contour machining with front cutting edges. They are available in three different configurations: fine, medium or coarse (F, M or G), to suit different working conditions.

The multi-cutting-edge geometry allows the fibre being machined to be pulverised.

Composite Materials Milling
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Cod. 217

Straight Flute Z=4 for Manual and CNC Drilling

4-flute drill bits with a straight edge, ideal for both manual and CNC drilling.
The special geometry of the cutting edge prevents delamination of the CFRP fibres and separation of the fabric layers.

Also available with a Cer-DLC coating, for increased tool life. 

Cod. 118

Twist Drill for Manual and CNC Application for Kevlar drilling

Drill bits with a distinctive front geometry that makes them ideal for drilling aramid and glass fibres, ensuring excellent stability and precision whilst preventing any delamination of the fibre.

Suitable for both manual and CNC drilling.

Cod. 165C

Punta HPC per Fibra di Carbonio (per CNC)

Soluzione ad altissimo rendimento progettata per la foratura intensiva e automatizzata della fibra di carbonio su centri di lavoro CNC. Grazie ai canali di adduzione interna per il refrigerante o l'aria compressa, l'utensile evacua istantaneamente le polveri abrasive e riduce drasticamente le temperature nella zona di taglio.

Cod. 165ST

Punta HPC per Pannelli CFRP+Ti o CFRP+Al

Sviluppate specificamente per la foratura ad alte prestazioni di materiali sandwich complessi, come l'unione di fibra di carbonio con titanio o alluminio. Grazie alla speciale geometria multi-materiale e all'adduzione interna per il refrigerante, la punta gestisce contemporaneamente l'abrasività del carbonio e la tendenza al surriscaldamento o all'incollamento dei metalli..

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