UESHE212

UESHE212 Pillow Block Bearing
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Overview

Part Number UESHE212
Brand: LILY Brand: LILY Interchangeable With: AMI
Bearing Part Number UE212
Housing Part Number SHE12

Characteristics

System of Measurement Metric
Bearing Type Ball Bearing
Bearing Seal Type Double Sealed
Inner Ring Type Wide Inner Ring
Mounted Type Pillow Block Bearing
Shaft Mount Type Eccentric Collar Locking
Product Series UESHE200
Lubrication Fitting Tap 1/8-27 NPT

Dimensions

Bore Dia 60 mm
Bore Dia Tolerance -0.0005" to 0"
Hole Width 20 mm
Hole Length M16
Overall Height 140 mm
Center Height 69.9 mm
Whole Length 150 mm
Hole Center to Center 118 mm
Hole Ctr-to-Ctr Min 118 mm
Hole Ctr-to-Ctr Max 118 mm
Width of Inner Ring 61 mm
Width with Concentric Collar 66.6 mm

Material

Bearings Material AISI 52100 Steel
Housing Material Cast Iron

Performance

Temperature Range -30° to 110 °C

Properties

RoHS Compliant
REACH Compliant
Lubrication Required
Weight 4.5 kg
The housing of pillow block bearing, crafted from iron, is engineered to withstand heavy-load and high-vibration conditions with the structural rigidity and dimensional stability needed to keep the overall mounted bearing assembly performing reliably over the long term.
Shaft retention is achieved through eccentric collar locking in this pillow block bearing unit, which secures the shaft reliably against moderate loads and intermittent vibration — provided the collar is rotated firmly in the direction of shaft rotation and the locking screw is fully tightened — without damaging the shaft surface.

Why choose Iron for the bearing housing?

Because this pillow block bearing is specifically designed for heavy-load and high-vibration conditions, cast iron delivers superior rigidity and dimensional stability where lighter or polymer housings are prone to deformation under load, making it a purpose-built choice for this application rather than a generic substitute.

Why does this bearing use Eccentric Collar Locking to secure the shaft?

Eccentric collar locking works by rotating an offset collar in the direction of shaft rotation until it clamps firmly around the shaft, which makes it well suited to applications where the shaft surface must remain undamaged and load distribution needs to be more even. Its main advantage over other shaft locking methods is a broader contact area that reduces shaft stress, which matters most when the application involves intermittent loads, frequent starts and stops, or softer shaft materials.

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