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X&S NU332 NU310 NU2208 NJ2208 F-234879 Cylindrical Roller Bearing [WARN] draft identifier mismatch
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X&S NU332 NU310 NU2208 NJ2208 F-234879 Cylindrical Roller Bearing [WARN] draft identifier mismatch

X&S F-234879 NU332 NU310 NU2208 NJ2208 Cylindrical Roller Bearing — Single-row radial design with separable rings for simplified mounting.

  • NU and NJ configurations handle heavy radial loads in industrial gearboxes and electric motors
  • Available with steel or nylon cages and P0, P6, or P5 precision classes
  • Full batch traceability and material test reports accompany every shipment

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Product Details

Multi-brand authorized coverage — Consolidate mixed-brand requirements for the X&S NU332 NU310 NU2208 NJ2208 cylindrical roller bearing into a single traceable shipment without juggling multiple suppliers.

Technical Specifications

Parameter Value
Designation F-234879 NU332 NU310 NU2208 NJ2208
Bearing Type Cylindrical Roller Bearing
Number of Rows Single
Load Direction Radial
Separated Yes
Cage Material Steel Cage
Vibration Level V1, V2, V3
Noise Level Z1, Z2, Z3
Precision Class P0, P6, P5
Hardness 59-62 HRC [NEED_CITE: standard bearing steel hardness range]
Material Stainless Steel
Certification ISO, CE
Origin Shandong, China

Note: The F-234879 designation requires manufacturer catalog confirmation for exact internal geometry and application-specific limits.

Application Suitability

Industry Typical Applications
Automotive Transmission shafts, wheel hubs, and drivetrain components
Industrial Gearboxes High-speed reduction gears and heavy-duty power transmission shafts
Material Handling Conveyor drive rollers and crane hoist drum supports
Electric Motors High-speed rotor shafts requiring low noise and vibration
Machine Tool Spindles Precision rotary tables and spindle shafts requiring P5 accuracy

Why Base Number Matches Still Destroy Gearboxes

Matching the base designation is only the starting line; internal geometry and cage materials dictate survival.

I have seen too many automotive repair shops install a standard cylindrical roller bearing that matches the OEM base number, only to watch the cage disintegrate under high-speed thermal stress. When the cage material or clearance class is overlooked, the rolling elements skew, generating localized heat that leads to thermal binding and catastrophic gearbox failure [NEED_CITE: rolling bearing failure mode classification per ISO 15243]. Sourcing the exact X&S NU332 NU310 NU2208 NJ2208 cylindrical roller bearing requires verifying every suffix to ensure the internal design survives the specific operational environment.

X&S NU332 NU310 NU2208 NJ2208 cylindrical roller bearing internal structure and cage options

Aligning Bearing Geometry with Target Machinery

Selecting the correct configuration from this series ensures the equipment handles its specific radial loads without premature fatigue. The NU design, featuring two integral flanges on the inner ring and none on the outer ring, accommodates axial displacement in one direction, making it ideal for floating bearing positions in electric motors. Conversely, the NJ configuration provides two outer flanges and one inner flange, allowing it to locate the shaft axially in a single direction, which is critical for gearbox shafts. We cross-reference these exact structural requirements against OEM equipment numbers to prevent mismatched installations.

Navigating Thermal and Load Extremes in the Field

Industrial gearboxes and automotive transmissions subject bearings to intense radial loads combined with significant temperature fluctuations. At elevated temperatures, standard clearance bearings can experience thermal expansion that eliminates internal play, causing the rollers to bind against the raceways. Proper lubrication selection and ensuring the correct clearance class are mandatory to maintain a stable elastohydrodynamic film. Furthermore, in material handling applications exposed to heavy particulate contamination, the vibration and noise grades must be matched with appropriate external sealing solutions to prevent abrasive ingress [NEED_CITE: bearing life calculation principles per ISO 281].

Decoding the NU and NJ Structural Differences

The distinction between the NU332, NU310, NU2208, and NJ2208 models lies entirely in their flange arrangements, which dictates their role in a shaft system. The NU variants act as non-locating bearings, absorbing radial forces while allowing the shaft to expand or contract axially without inducing internal stress. The NJ2208 acts as a locating bearing, managing both radial loads and axial thrust in one direction. Furthermore, the availability of P0, P6, and P5 precision classes allows procurement engineers to match the rotational accuracy demands of machine tool spindles, while the choice between steel and nylon cages optimizes the bearing for either heavy-load durability or high-speed, low-friction performance.

Cage material options and separable design features for cylindrical roller bearings

The Hidden Financial Drain of Incorrect Suffix Selection

Installing a bearing with an incorrect clearance or cage material results in unplanned downtime that far exceeds the cost of the component itself. A nylon cage subjected to temperatures beyond its thermal limit will soften and collapse, while a steel cage operating at excessive speeds without adequate lubrication will fracture. These failures often void equipment warranties and cause secondary damage to adjacent gears and shafts, leading to catastrophic damage that halts entire production lines. Adhering strictly to ISO 15243 failure analysis frameworks reveals that a significant share of premature failures stems directly from specification mismatches during procurement [NEED_CITE: economic impact of unplanned industrial downtime].

Why Procurement Engineers Trust Our Technical Review

Our technical team reviews every inquiry to ensure the requested X&S NU332 NU310 NU2208 NJ2208 cylindrical roller bearing matches the application’s exact load and speed profile. We prevent the common error of substituting an NU design where an NJ is required for axial location, which would cause the shaft to drift and destroy the seals. Every shipment includes complete batch traceability, allowing buyers to verify the manufacturing origin and material certifications. We also provide precise cross-reference alignment for mixed-brand machinery, ensuring that clearance and precision suffixes are perfectly translated across different manufacturer catalogs.

Documentation & Authenticity

  • Certificate of Conformity verifying the specific P5 or P6 precision grade for machine tool applications.
  • Batch and lot traceability linking the steel cage components directly to the manufacturing heat number.
  • Official app QR verification confirming the authenticity of the NU332 and NJ2208 packaging.
  • Material test report validating the 59-62 HRC hardness of the rings and rolling elements.
  • Dimensional and running accuracy inspection report confirming V2/Z2 vibration limits before dispatch.

Storage, Handling & Mounting

  • Store the separated inner and outer rings in their original VCI packaging to prevent micro-corrosion on the P5 precision raceways.
  • Use induction heating strictly for the NJ2208 inner ring mounting, avoiding open flames that compromise the 59-62 HRC hardness.
  • Apply clean cotton gloves when handling the P6 grade components to prevent acidic skin oils from etching the stainless steel variants.
  • Align the NU310 inner ring flanges carefully during assembly to avoid chipping the integral edges against the steel cage.
  • Maintain original factory grease on the V1/Z1 low-noise variants until final installation in electric motor housings.

Engineering Support for Exact Specification Matching

To guarantee optimal performance and longevity, we require detailed operational parameters before finalizing the selection. Please provide the exact radial and axial load figures, operating speed ranges, and ambient temperature profiles so our engineers can calculate the required clearance class and verify the L10 life. If you are replacing an existing component, share the OEM equipment number or the exact suffix string from the original nameplate to ensure a flawless cross-reference match. This technical review guarantees the selected configuration will withstand your specific operational demands without thermal binding or premature cage fatigue.

Frequently Asked Questions

Q: Why is matching the clearance and cage suffix just as critical as the base NU or NJ designation?
A: The base designation only defines the outer dimensions and basic flange layout. The clearance class dictates how the bearing handles thermal expansion, while the cage material determines its maximum speed and temperature limits. Installing a standard clearance bearing in a high-heat gearbox causes thermal binding, and using a nylon cage beyond its thermal limit leads to structural collapse, both resulting in rapid, catastrophic equipment failure.

Q: What are the boundary conditions for choosing between steel and nylon cages in this series?
A: Steel cages are preferred for applications involving heavy radial loads, high operating temperatures, or environments where chemical degradation of polymers is a risk. Nylon cages are selected for high-speed applications where low friction, reduced noise, and lighter weight are prioritized, provided the operating temperature remains within the polymer’s thermal limits and the environment is free from aggressive solvents.

Q: How do the P0, P6, and P5 precision classes affect the operational performance of these bearings?
A: P0 is the standard precision suitable for general industrial gearboxes and material handling where extreme rotational accuracy is not critical. P6 offers tighter dimensional tolerances for electric motors requiring smoother operation and lower vibration. P5 provides the strictest running accuracy, essential for machine tool spindles and precision rotary tables where minimal radial runout and high-speed stability are mandatory.

Q: What is the recommended mounting practice for the separable inner and outer rings of these cylindrical roller bearings?
A: The separable design allows the inner ring to be mounted independently of the outer ring. For interference fits, the inner ring should be heated using an induction heater to a controlled temperature before sliding it onto the shaft. The outer ring can then be pressed into the housing. This prevents damage to the rolling elements and cage during assembly and ensures the correct internal clearance is maintained.

Product Summary
Product Name
X&S NU332 NU310 NU2208 NJ2208 F-234879 Cylindrical Roller Bearing [WARN] draft identifier mismatch
Category
INA Bearing
Brand
SKF
Certification
ISO 9001 · TS 16949
Lead Time
7 Working Days
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