Floating Double Roller Bearing Pillow Block F-DPB-32-OPN-STG for 2" Shaft Diameter, Scrapers, Top Grease Port

Floating Version of the scraper and lubrication port fortified Double Roller Bearing Pillow Block (DPB-32) for a 2" Diameter Shaft. Features an open bearing style and two sets of 3 opposing roller bearings while maintaining the standard size profile of a Single Roller Pillow Block (SPB); thus the term "Double." In contrast, the Twin Roller Pillow Block (TWN) also incorporates two sets of three opposing roller bearings but comes in a double size, effectively resembling two SPBs fused together.

  • Use this floating "F" part number for each opposing normal part number block on a parallel shaft. F-DPB pillow blocks offer flexibility for imperfect alignments
  • Scraper mounted to each end made of spring-tempered beryllium copper that conforms to the shaft diameter
  • Top Grease Lubrication Port
  • Double the load capacity of a Single Roller Bearing (SPB) Pillow Block
  • A set of opposing roller bearings consists of 1 fixed side roller, 1 eccentric side roller (to account for any misalignment) and a top support roller
  • FUBK Series replacement kits provide 1 new roller for each of the 3 rollers in a set
  • Order two replacement kits for the 2 sets of this product's opposing bearings

3D Models

TypeFileFormatLink
3dF-DPB-32-OPN-STG.htmlhtmlView
cadF-DPB-32-OPN-STG.x_tSolidWorks >=2006Download
$976.46
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Product Dimensions

weightwidthlengthheight
5.5 lbs6.25 in4.75 in3.58 in
Roller Bearing Pillow Block Features
Roller Bearing Pillow Block Features
How to Adjust a Roller Pillow Block
How to Adjust a Roller Pillow Block
Parallel Rail Alignment Video
Parallel Rail Alignment Video

3D Models

html
3dView
SolidWorks >=2006
cadDownload

Catalogs & Datasheets

Simplicity Linear Bearings Chemical Chart
datasheetOpen Link
Simplicity Linear Plain Bearings
datasheetOpen Link

News & Blogs

Heavy-Duty Solution: Roller Pillow Block System
blogOpen Link
How to Adjust Roller Bearing Pillow Blocks
blogOpen Link
Overview of Linear Guides in Motion Design
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