Menu

Stikit Low Profile Disc Pad D/F, 5 Inch - 3M Automotive

Part #: 5655

The 3M Automotive Stikit Low Profile Disc Pad D/F, 5 Inch (Model 5655), is engineered for professional automotive and industrial sanding applications. Designed to work seamlessly with 5-inch diameter Stikit™ D/F (Dust-Free) abrasive discs, this pad provides the firm support required for aggressive material removal and effective surface leveling. Its robust construction ensures consistent performance and durability in demanding work environments.

Key Features

  • Stikit™ Attachment System: Facilitates quick and efficient abrasive disc changes, minimizing downtime during projects.
  • Low Profile Design: Offers enhanced control and reduced vibration, contributing to a smoother finish and improved user comfort.
  • Firm Density: Provides the necessary rigidity for coarse grade sanding, aggressive material removal, and achieving superior leveling on various surfaces.
  • Durable 15-Degree Blunt Edge: Engineered for exceptional edge durability and extended pad life, even under rigorous use.
  • 5-Hole Dust Extraction: Compatible with dust-free sanding systems, effectively evacuating sanding dust to maintain a cleaner work environment and improve abrasive performance.
  • Thread Compatibility: Features a 5/16-24 EXT thread, designed to fit most random orbital sanders with a corresponding internal thread.

Applications

This disc pad is ideal for a range of professional tasks, including sanding body filler, shaping putties, paint stripping, and preparing metal or composite surfaces for subsequent coatings. Its firm density and durable edge make it particularly effective for achieving flat, level surfaces required in automotive collision repair, manufacturing, and industrial finishing.

Specifications

  • Part Number: 5655
  • Disc Size: 5 inch
  • Density Rating: Firm
  • Thread Size: 5/16-24 EXT
  • Maximum Operating Speed: 12,000 RPM
  • Hole Design: 5 Holes
  • Attachment Method: Stikit™

This product was added to our catalog on Friday 08 April, 2011.