Consultation
Technical needs assessment
Ucpa206-17 Pillow Block Bearing 1-1/16" Bore — featuring a cast iron short-base housing with slotted feet and a deep groove single-row insert for reliable radial support.
Full Brand Authorization — one consolidated shipment covers mixed-brand requirements without juggling multiple vendors for your Ucpa206-17 inventory.
| Parameter | Value |
|---|---|
| Designation | Ucpa206-17 |
| Product Type | Pillow Block Bearing |
| Housing Material | Cast Iron |
| Housing Model | P (Short-base with slotted feet) |
| Insert Bearing Type | UC (Inner ring with grub screw locking) |
| Dimension Series | 2 |
| Bore Diameter Code | 06 |
| Bore Diameter | 1-1/16" (Imperial) |
| Raceway Type | Deep Groove Raceway |
| Number of Rows | Single |
| Aligning Capability | Non-Aligning Bearing |
| Separated | Separated |
| Feature Options | Corrosion Resistant, High Temperature, High Speed variants available |
| Industry | Typical Applications |
|---|---|
| Agricultural Machinery | Combine harvester grain auger drives, tractor PTO shaft supports, planter seed metering shafts |
| Material Handling | Belt conveyor tail pulley shafts, bucket elevator bottom sprocket supports, roller bed idler stations |
| General MRO | Packaging machine line shafts, industrial fan axle supports, vibratory screen eccentric shaft mounts |
Matching the base designation while ignoring internal clearance and seal suffixes leads to thermal binding or rapid grease purge in dusty environments.
When sourcing replacement units, procurement teams often focus solely on the primary number, assuming dimensional equivalence guarantees operational success. However, field failures frequently occur when a standard clearance insert is pressed into a high-temperature conveyor application, or when a light-duty seal is deployed in an abrasive agricultural setting. The resulting thermal expansion restricts internal movement, while inadequate sealing allows particulate ingress that destroys the raceway . Finding a reliable Ucpa206-17 pillow block bearing supplier means securing a partner who verifies the complete suffix string against your specific operational parameters, preventing catastrophic downtime caused by microscopic specification mismatches.
Transitioning between metric and imperial shafting often creates procurement bottlenecks in mixed-fleet maintenance environments. The Ucpa206-17 pillow block bearing supplier provides exact 1-1/16" bore sizing to eliminate the need for improvised adapter sleeves or shaft machining. This precise imperial fit ensures the grub screw locking mechanism engages fully without inducing localized stress concentrations on the shaft surface, maintaining concentricity under continuous radial loading.
Agricultural and material handling environments subject bearing nodes to extreme particulate contamination and moisture fluctuations. The deep groove raceway design handles moderate radial loads effectively, but longevity depends entirely on the seal configuration retaining the lubricant film. Contact seals generate friction heat at higher rotational speeds, while non-contact shields fail to exclude fine silica dust. Selecting the appropriate sealing arrangement requires evaluating the specific contamination profile and rotational velocity to prevent premature grease degradation and subsequent raceway scoring .
Understanding the designation prevents costly cross-reference errors. The "UC" prefix identifies the inner insert bearing featuring a wide inner ring and set screw locking, designed for standard commercial shafting. The "PA" denotes the specific short-base cast iron housing with slotted mounting feet, allowing for minor axial alignment adjustments during installation. The "2" indicates the light-to-medium dimension series, balancing load capacity with spatial constraints. The "06" is the bore diameter code, while the "-17" explicitly defines the 1-1/16" imperial bore size, distinguishing it from metric counterparts like the UCP206 series.
Overlooking internal clearance specifications during replacement sourcing inevitably drives unplanned downtime and secondary component damage. When an application requiring C3 clearance for thermal expansion receives a standard CN clearance unit, the internal rolling elements experience excessive preload as operating temperatures rise. This condition accelerates fatigue spalling and can lead to catastrophic cage failure, voiding equipment warranties and necessitating complete shaft and housing replacement. Adhering to ISO 15243 failure analysis frameworks reveals that a significant share of premature failures stems directly from these initial specification oversights rather than manufacturing defects .
Our distribution model addresses the specific friction points encountered when sourcing Ucpa206-17 units for diverse equipment fleets. We provide cross-reference mapping that aligns not just the base housing dimensions, but the exact internal geometry and sealing configurations required for your specific OEM equipment. Every shipment includes batch traceability documentation, allowing your maintenance team to verify the metallurgical origin and manufacturing lot via official brand applications. This eliminates the risk of installing counterfeit units with soft inner rings that fail under the high shock loads typical of agricultural harvesting operations.
To ensure the selected Ucpa206-17 configuration matches your exact operational demands, please provide the continuous and shock radial loads, maximum rotational speed, and ambient operating temperature range. Supplying the specific OEM equipment model number or the complete designation from the failed unit allows our engineering team to execute a precise cross-reference verification. Detailing the environmental exposure, such as high silica dust or washdown conditions, enables us to recommend the optimal seal type and internal clearance class for your application.
Q: Why does the base UCPA206 number match, but the unit still fails in our conveyor application?
A: Base number equivalence only confirms external housing dimensions and basic bore size. It ignores critical internal variables like radial internal clearance and seal friction characteristics. If your conveyor operates at elevated temperatures, a standard clearance insert will thermally bind, while an incorrect seal type will either overheat from friction or allow abrasive dust ingress, leading to rapid raceway degradation.
Q: How do we select the correct seal type for high-dust agricultural environments?
A: In high-dust conditions like harvesting or planting, triple-lip contact seals or heavy-duty flinger seals are typically required to physically block particulate ingress. Standard single-lip seals lack the exclusion capability for fine silica. However, contact seals generate friction heat, so the selection must balance contamination exclusion with the rotational speed limits of the specific Ucpa206-17 application to prevent grease purging.
Q: What is the difference between standard CN clearance and C3 clearance for this pillow block?
A: Standard CN clearance is suitable for ambient temperature applications with normal shaft fits. C3 clearance provides greater internal space between the rolling elements and raceways, accommodating thermal expansion of the shaft and housing during operation. Installing a CN clearance unit in an application requiring C3 will result in internal preload, excessive friction, and premature failure as the operating temperature rises.
Q: Can we use a metric UCP206 series bearing instead of the imperial Ucpa206-17?
A: While the external housing dimensions and mounting footprint of the metric UCP206 and imperial Ucpa206-17 series are often identical, the inner bore diameters differ significantly. The Ucpa206-17 is specifically machined for a 1-1/16" imperial shaft. Attempting to force a metric insert onto an imperial shaft, or using adapter sleeves to bridge the gap, compromises the locking mechanism and introduces severe vibration and misalignment issues.
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Technical needs assessment
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