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3M Scotch-Brite EXL Deburring Wheel 152mm x 25.4mm in various colours

3M Scotch-Brite EXL Deburring Wheel 152mm x 25.4mm in various colours
When you need an aggressive wheel for a variety of deburring tasks and surfaces, the Scotch-Brite™ Deburring Wheel is a good place to start. 
From £55.88 excl VAT
£67.06 inc VAT
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Non Hazardous
Commodity Code: 68053000
Country of Origin: United States

Features of  EXL Deburring Wheel:

  • Hard density conformable wheel performs effective burr removal without undercutting the workpiece
  • Convolute construction keeps the wheel running smooth, producing consistent results
  • Scotch-Brite™ non-woven material resists loading and continuously supplies fresh abrasives for continuous cutting action
  • Resulting finish may negate subsequent conditioning steps
  • Minimises heat build up to reduce risk of discolouration and warping on heat sensitive substrates
  • Effective for all types of metals, composites, and glass, allowing one wheel to perform more tasks



This silicon carbide wheel offers a hard, 11 density rating in both medium and fine grades for light to medium edge deburring on carbon steels, stainless steel, titanium; soft metals such as aluminium, copper and brass; composites, plastics and glass. Use our hard, aggressive Scotch-Brite™ Deburring Wheel for a variety of deburring tasks and surfaces. Our silicon carbide wheels are of a hard 11 density rating, in medium and fine grades. They are effective in light to medium edge deburring on carbon steels, stainless steel, titanium and soft metals. The convolute and non-woven design of our Scotch-Brite™ deburring wheels provides a consistent abrasive action over flat or irregular surfaces throughout the entire wheel life. Our wheels are hard and durable, making them ideal for deburring stamped or laser cut parts, cleaning or finishing after belt sanding, reducing gouging of the base material. They offer a superior finish, which may eliminate the need for further final finishing steps. They use extra sharp silicon carbide abrasive grain, a synthetic material typically used for low pressure applications such as paint finishing and preparation. Silicon carbide breaks down faster than aluminium oxide, for a finer finish. The open web material runs cool and resists loading, limiting clogging of the fibres. Together with the continual breakdown of fibres in the web to reveal fresh minerals, this keeps the high cutting performance of the minerals. The result is an extremely long service life. Scotch-Brite industrial abrasives are unique surface conditioning products that comprise of abrasives incorporated into non-woven nylon or synthetic fibres. Combining abrasives with fibres in this way creates an abrasive system that delivers consistent results for the product lifespan. Use Scotch-Brite products to enhance productivity while reducing the need for cleaning chemicals and wire brushes. From aesthetic finishing to weld blending, deburring, and more, they work fast and deliver consistent results, part after part.


  • Use for a variety of deburring tasks
  • Suitable for light to medium edge deburring on carbon steels, stainless steel, titanium
  • For use on soft metals including aluminium, copper and brass, composites, plastics and glass

Orders over £50 placed online will now qualify for FREE UK Mainland delivery*

Orders under £50 placed online for UK Mainland delivery is £8.00*

**Orders requiring Pre 10.00am Next Day delivery has also been lowered from £35.00 to £21.00, orders placed through the office will incur additional charges.** 

International delivery (door to door delivery) is available for selected countries worldwide. Shipping will be automatically calculated based on the weight, location and hazardous nature of the goods. Customers can also choose ex works to arrange their own collection.
Please refer to our delivery page for more information.

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Sil-Mid Limited DO NOT GUARANTEE that the information in these documents is the most up to date information available from the manufacturer, there are times when updated information is released and we are not made aware immediately.