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  6. 3M™ Cubitron™ II Roloc™ Cloth Disc 984F, 76 mm, R300V, 60+

3M™ Cubitron™ II Roloc™ Cloth Disc 984F, 76 mm, R300V, 60+

  • 3M ID 7000045172

Metalworking

Disc life is significantly increased, completing more parts per disc for less disc changes

Incorporated grinding aid reduces grinding temperatures on heat sensitive alloys increasing longevity

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Overall Diameter (Metric) 76,2 Millimeter
Grit 60+
Attachment Type TR
Abrasive Material Precision Shaped Ceramic

Details

Highlights
  • Metalworking
  • Disc life is significantly increased, completing more parts per disc for less disc changes
  • Incorporated grinding aid reduces grinding temperatures on heat sensitive alloys increasing longevity
  • Roloc™ quick attachment system makes for easy disc changes between grades or applications
  • Backing supports medium to high pressure grinding applications
  • 2-ply construction gives added durability for edge work
  • Use wet or dry

The 3M™ Cubitron™ II Roloc™ discs out perform others because they contain fast-cutting 3M™ precision shaped grain - a self-sharpening feature that allows them to vut faster and last longer. Plus, a durable edge backing makes the discs stronger around the edges so they won't fray or wear out prematurely.

Use 3M™ Cubitron™ II Roloc™ Durable Edge Disc 984F for an exceptionally high cut rate with a long disc life. Our discs use a laminated 2-ply polyester backing for durability and wear resistance in edge work. The incorporated grinding aid makes this an outstanding product for all types of metals. This keeps the disc cooler on stainless steel and heat-sensitive metals such as nickel alloys and titanium, reducing metal discoloration/oxidation and the chance of heat-related stress cracks. These discs feature 3M Precision Shaped Grain which forms into triangular points that slice through metal rather than gouging or ploughing like traditional abrasives. The points continuously self-sharpen as they fracture, generating an extremely fast cut. This allows operators to finish tough tasks with less fatigue.

Typical properties

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