A 24 R Supra Kronenflex® large cutting-off wheels for Steel

Properties
Class Supra
Bonding agent Synthetic resin, fibre-reinforced
Grain Aluminium oxide
Aggressiveness
Service life
Bond
Materials
Steel
Stainless steel
Castings
Applications
Apparatus and container manufacturing
Locksmith's shop
Metal construction
Plant engineering

Kronenflex large cutting-off wheel A 24 R Supra: universal suitability for steel

The Kronenflex large cutting-off wheel A 24 R Supra performs exceedingly well during industrial applications on

  • steel,
  • stainless steel
  • castings.

When ultimate power is of the essence, the Kronenflex large cutting-off wheel A 24 R Supra will deliver without compromise: It has become an indispensable tool for users in plant engineering, steel construction, and steel fabrication as well as for maintenance and repairs.

Supra quality: high performance and exceptional service life

The Kronenflex large cutting-off wheel A 24 R Supra merges robust aluminium oxide with a medium-hard bond: the ideal combination for the cutting of steel or stainless steel. Operating with medium aggressiveness, this tool stands out with a service life that is second to none. The synthetically made abrasive grains provide for uniform results and convincing cutting performance until they are worn down completely. Aluminium oxide has good heat conductivity and wear resistance. The Kronenflex large cutting-off wheel A 24 R Supra reduces the need for maintenance downtime substantially. Process flow disruptions are less frequent - cutting quality remains consistently high.

Created for stationary cutters

The Kronenflex large cutting-off wheel A 24 R Supra is available in a variety of diameters. The available options vary in wheel diameter and bore size. The options make it possible to use the product stationary saws / cutters with a capacity of three to five kilowatts. The Kronenflex large cutting-off wheel A 24 R Supra reaches its maximum potential up to the recommended speed: Klingspor's engineers have optimised the wheel to adapt perfectly to the material it is developed for.

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Diameter/mm Thickness/mm Bore/mm Form Vmax m/s Max. RPM structural shape
300
Diameter
3
Thickness
30
Bore
H
Form
100
Vmax
6.400
Max. RPM
flat
structural shape
350
Diameter
3,5
Thickness
25,4
Bore
H
Form
100
Vmax
5.500
Max. RPM
flat
structural shape
350
Diameter
3,5
Thickness
32
Bore
H
Form
100
Vmax
5.500
Max. RPM
flat
structural shape
250
Diameter
3
Thickness
32
Bore
H
Form
100
Vmax
7.600
Max. RPM
flat
structural shape
400
Diameter
4,5
Thickness
32
Bore
H
Form
100
Vmax
4.800
Max. RPM
flat
structural shape
400
Diameter
4,5
Thickness
25,4
Bore
H
Form
100
Vmax
4.800
Max. RPM
flat
structural shape
400
Diameter
4,5
Thickness
40
Bore
H
Form
100
Vmax
4.800
Max. RPM
flat
structural shape
300
Diameter
3
Thickness
25,4
Bore
H
Form
100
Vmax
6.400
Max. RPM
flat
structural shape
300
Diameter
3
Thickness
32
Bore
H
Form
100
Vmax
6.400
Max. RPM
flat
structural shape
300
Diameter
3
Thickness
22,23
Bore
H
Form
100
Vmax
6.400
Max. RPM
flat
structural shape