REQUEST PRICE
Please enter these characters in the following text field.

Fields with * are required
For commercial customers only

3M Cubitron II Hookit Clean Sanding Abrasive Sheet 737U, 70 mm x 396 mm, 400+, PN52022

3M Cubitron II Hookit Clean Sanding Abrasive Sheet 737U, 70 mm x 396 mm, 400+, PN52022
To get more information about products, please log in or request the product via the button below | Register here...
Minimum purchase: 300 pc(s).
3M Cubitron II Hookit Clean Sanding Abrasive Sheets 737U are premium long lasting sanding sheets with self-sharpening grains, which also provide a faster cut whilst the multi-hole pattern delivers excellent dust extraction.

Delivery time upon request

  • WS00417479
3M Cubitron II Hookit Clean Sanding Abrasive Sheet 737U combines the highest 3M technology for... more
Product information "3M Cubitron II Hookit Clean Sanding Abrasive Sheet 737U, 70 mm x 396 mm, 400+, PN52022"
3M Cubitron II Hookit Clean Sanding Abrasive Sheet 737U combines the highest 3M technology for automotive repair. Its long-lasting triangular-shaped grains are electrostatically oriented and precision shaped with self-sharpening properties. This allows a faster cut rate, whilst the disc performance also lasts twice as long as conventional industrial abrasives. These precision properties in combination with the multi-hole pattern for superior dust extraction make the sheets ideal for paint removal, rough body filler shaping and preparation for finer sanding steps. Our Hookit system makes for quick sheet change-outs between grades.
Related links to "3M Cubitron II Hookit Clean Sanding Abrasive Sheet 737U, 70 mm x 396 mm, 400+, PN52022"
Read, write and discuss reviews... more
Customer evaluation for "3M Cubitron II Hookit Clean Sanding Abrasive Sheet 737U, 70 mm x 396 mm, 400+, PN52022"
Write an evaluation
Evaluations will be activated after verification.
Please enter these characters in the following text field.

The fields marked with * are required.

Last viewed wind turbine spare parts and repair material