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3M ROLOC +CPFB MEDIUM 63MMX32MM


Product Specifications
Ordering Code:10036616 
Mfr Code:7000077933 
Pack Size:10 
Unit of Sale:EACH 
Brand:3M 
 
Scotch-Brite Roloc+ Cut and Polish Flap Brush, 9701, A Med, 63 mm x 32 mm

Our Scotch-Brite Roloc+ Cut and Polish Flap Brush uses our unique non-woven web design, binding synthetic fibres and abrasive particles to create a conformable, three-dimensional material to provide a smooth and polished finish.

Benefits of the Cut and Polish Flap Brush

Scotch-Brite™ Roloc™+ Cut and Polish Flap Brush is made with aluminium oxide mineral. A popular choice among industrial professionals because of its cut-rate and long life. This mineral is a tough, durable abrasive that self-fractures to expose fresh cutting edges in use, whereas traditional abrasives, such as garnet, quickly wear down with use. Due to its high cut-rate, hardness, strength, and low heat retention, aluminium oxide mineral is widely used for sanding and finishing applications. Aluminium oxide is suitable on a wide variety of substrates in both woodworking and metalworking, including ferrous alloys.



We engineered the Scotch-Brite™ Roloc™+ Cut and Polish Flap Brush to conform to the substrate, making it a great option for working inside diameters and for blending surface imperfections. Its open, flexible flap construction makes it soft and pliable, producing uniform finishes. The open structure of the web reduces the risk of discoloring the part and resists loading, which prolongs the product's life. Our Non-Woven Web is engineered to continually expose fresh abrasive to the work surface, for a consistent, smoother finish – without the risk of overworking the part and disturbing critical tolerances.



Aluminium oxide mineral easily removes surface imperfections, helping to cut faster

Easy abrasive wheel attachment

Heavy-duty design prolongs service life

Load resistant open web helps produce a consistent finish

Open web conforms to substrate to minimise gouging

Open web conforms to substrate to minimise gouging
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