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Klingspor | Cutting Disc 115 X 1 X 22,23mm S/Steel

SKU 322184EACH
Save 14% Save 14%
Original price R 49.00
Original price R 49.00 - Original price R 49.00
Original price R 49.00
Current price R 42.00
R 42.00 - R 42.00
Current price R 42.00

The thin cutting-off wheel Z 960 TX Special

The Kronenflex Z 960 TX Special by Klingspor is a thin cutting-off wheel that is suitable for various areas of application. These include work on

  • stainless steel
  • alloys
  • carbon steel
  • titanium

Scoring exceptional marks in the categories of aggressiveness, performance on INOX steel, service life and hardness, the thin cutting-off wheel Z 960 TX Special is ideal for such tough and hard materials as titanium and high-alloy steels.

Synthetic zirconia alumina guarantees perfect results

The synthetically made zirconia alumina is also a fine choice for work on such treated / alloyed materials as stainless steel. The product owes its consistent aggressiveness and high removal rate to the low thermal load that is guaranteed by the narrow cut, keeping burr formation at a minimum.

A myriad of application for every need

The thin cutting-off wheel Z 960 TX Special is a member of the Kronenflex Special performance class, which features high-performance products for special applications that are free of iron, sulphur and chlorine. Superior service life and cutting performance in any scenario make this wheel an absolute best seller among professionals.

The Z 960 TX Special is available in two sizes

Customers can purchase the Z 960 TX Special by Kronenflex in two different dimensions. It can be ordered with diameters of 115mm and 125mm. The thickness of one millimetre remains the same for both wheels. Boasting a cutting performance of 80 m/s and an overall speed of 12,200 at a diameter of 125mm, this wheel of the Special class ranges at the top end of the performance scale. The wheel is of equal appeal to professional craftsmen and do-it-yourselfers as well as hobbyists working in their workshop at home thanks to its exceptional storage behaviour.