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uxcell B68 Needle Roller Bearings, Full Complement
uxcell B68 Needle Roller Bearings, Full Complement
uxcell B68 Needle Roller Bearings, Full Complement
uxcell B68 Needle Roller Bearings, Full Complement
uxcell B68 Needle Roller Bearings, Full Complement

uxcell B68 Needle Roller Bearings, Full Complement Drawn Cup, Open, 3/8-inch I.D. 9/16-inch OD 1/2-inch Width 2590N Static Load 1810N Dynamic Load 7100Rpm Limiting Speed 2pcs

Product ID : 52377492


Galleon Product ID 52377492
Shipping Weight 0.03 lbs
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Model A19043000ux0070
Manufacturer Uxcell
Shipping Dimension 5.2 x 3.98 x 0.71 inches
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1,088

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uxcell B68 Needle Roller Bearings, Full Complement Features

  • Model: B68 (I.D. (Fw)=3/8", O.D. (D)=9/16", Width (C)=1/2")

  • ST14 steel drawn cup, GCr15 needle rollers full complement bearing

  • Good heat tolerance, high load carrying capacity and stiffness

  • Low cross section, enable downsizing and suit for use in restricted mounting spaces

  • Pre-Lubricated. Good running properties


About Uxcell B68 Needle Roller Bearings, Full Complement

Specification: Model: B68 Drawn Cup Material: ST14 Steel Needle Roller Material: Chromium Steel (GCr15) Accuracy: P0 Bore Diameter (Fw): 3/8" / 9.52mm Outside Diameter (D): 9/16" / 14.29mm Width: 1/2" / 12.7mm Dynamic Load Rating: 1810N Static Load Rating: 2590N Limiting Speed: 7100Rpm Number of Pack: 2 Pcs Description: -Drawn Cup Needle Roller Bearing features a deep drawn, thin-walled outer ring. They are compact bearings with high load carrying capacity and stiffness. -These bearings are especially suitable for high dynamic loads or radial-limited installation. They are mounted with a tight interference fit in the housing. -Shoulders or snap rings are not required to locate the bearing axially, thus enables a simple and economic design of the housing bore. -For various applications such as agricultural and construction equipment, pumps and compressors, and two-cycle engines, among others. -NOTE: Install with press machine or special tools instead of hammers because beating may lead to local deformation or brittle fracture.