Tuesday, January 3, 2012

Spyraflo PB1-375-N Self-Aligning, Needle-Roller Bearing With 3/8" Inner Diameter Aluminum Pillow-Block

Spyraflo PB1375N
Spyraflo PB1-375-N Self-Aligning, Needle-Roller Bearing With 3/8" Inner Diameter Aluminum Pillow-Block
by Spyraflo
Ranking has gone up in the past 24 hours 7,412% Sales Rank in Industrial & Scientific: 388 (was 29,147 yesterday)

Buy new: $12.62

(Visit the Movers & Shakers in Industrial & Scientific list for authoritative information on this product's current rank.)

Review & Description

The PB1-375-N combines the Spyraflo Self-Aligning High Performance, Drawn-Cup, Needle-Roller bearing with their sintered aluminum Pillow-Block housing. The unique final assembly offers design engineers a Pillow-Block that is lightweight, has clean lines, dimensional consistency and is corrosion resistant. The hardened steel shaft acts as the inner bearing raceway on this narrow cross-section rolling element bearing with the needles being retained in a cage. The bearings are pre-lubricated with lithium-complex grease for optimum performance. High temperature grease, sealed and full-compliment bearing options are also available. Spyraflo Pillow-Blocks are often able to replace more expensive, larger and heavier cast-iron ball bearing assemblies. The profile and performance of Spyraflo Pillow-Blocks make them a very cost effective alternative to traditional Pillow-Block mounting challenges. Military Vehicles, Playground Equipment, Conveyors, Packaging Machines, Lawn Care Equipment, Loading Platforms and Radar Equipment are among the wide cross-section of applications benefiting from productivity and performance gains from Spyraflo Pillow-Blocks.

Product Details

  • Amazon Sales Rank: #388 in BISS
  • Brand: Spyraflo
  • Number of items: 1

Features

  • ± 5º Self-Alignment accommodating machining and assembly mis-alignment
  • Corrosion resistant and lightweight, approximately 50% of that of cast-iron or steel
  • Unique Design, Minimum profile 2-1/4 inches L 5/8 inches W 1-1/4 inches H
  • High speed, high load applications
  • Minimum dynamic friction

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