Showing 1–12 of 34 results

Coolant tube incl. 1/8″ Adapter fur VDI-Werkzeuge

25.00

Application:
For use on static and driven toolholders via threaded connector 1/8".

Version:
For targeted cooling and lubrication on the cutting edge/evacuation of chips.

Coolant tube M4 M4 – 2 – 100

9.00

Version:
Material stainless steel Type 304

Application:
In VDI arbors in ball type coolant nozzles with metric threads.

Coolant tube M4 M4 – 2 – 15

9.00

Version:
Material stainless steel Type 304

Application:
In VDI arbors in ball type coolant nozzles with metric threads.

Coolant tube M4 M4 – 2 – 200

9.00

Version:
Material stainless steel Type 304

Application:
In VDI arbors in ball type coolant nozzles with metric threads.

Coolant tube M5 M5 – 3 – 100

9.00

Version:
Material stainless steel Type 304

Application:
In VDI arbors in ball type coolant nozzles with metric threads.

Coolant tube M5 M5 – 3 – 15

9.00

Version:
Material stainless steel Type 304

Application:
In VDI arbors in ball type coolant nozzles with metric threads.

Coolant tube M5 M5 – 3 – 200

9.00

Version:
Material stainless steel Type 304

Application:
In VDI arbors in ball type coolant nozzles with metric threads.

Coolant tube M6 M6 – 4 – 100

9.00

Version:
Material stainless steel Type 304

Application:
In VDI arbors in ball type coolant nozzles with metric threads.

Coolant tube M6 M6 – 4 – 15

9.00

Version:
Material stainless steel Type 304

Application:
In VDI arbors in ball type coolant nozzles with metric threads.

Coolant tube M6 M6 – 4 – 200

9.00

Version:
Material stainless steel Type 304

Application:
In VDI arbors in ball type coolant nozzles with metric threads.

Kugel mit Duse (Messing) 10 mm O 10 mm – 35 – 3

11.00

Application:
For use on static and driven toolholders.

Version:
For targeted cooling and lubrication on the cutting edge/evacuation of chips.

Kugel mit Duse (Messing) 12 mm O 12 mm – 38 – 4

12.00

Application:
For use on static and driven toolholders.

Version:
For targeted cooling and lubrication on the cutting edge/evacuation of chips.