| name | bearing-failure-analysis |
| description | Bearing failure analysis — fatigue spalling, wear, overheating, corrosion, misalignment, false brinelling, creep, root cause identification, corrective actions. |
| metadata | {"priority":7,"promptSignals":{"phrases":["bearing failure","bearing spalling","bearing damage","bearing wear","bearing overheating","false brinelling","fretting bearing"],"minScore":3}} |
Bearing Failure Analysis — Complete Skill
Failure Classification
~95% of bearings are replaced before failure; but when failure occurs:
| Category | Frequency | Examples |
|---|
| Lubrication | 36% | Starvation, wrong viscosity, contamination |
| Mounting | 16% | Over-force, wrong fit, misalignment |
| Contamination | 14% | Dirt, water, metallic particles |
| Overload | 11% | Shock, overload, vibration |
| Fatigue (design life) | 34% | Subsurface crack propagation to surface |
Failure Modes and Identification
1. Rolling Contact Fatigue (Spalling)
Appearance: flaked surface, pitting, rough raceway
Cause: subsurface shear stress cycle → crack nucleation → propagation → spall
L10 life exhausted or material defects, high load, poor lubrication (low κ)
Pattern: sub-surface origin → random pattern; surface origin → lines of pitting
2. Smearing/Scuffing
Appearance: directional tearing, metal transfer, shiny rough areas
Cause: insufficient EHD film → metal-to-metal contact under sliding
Low-speed high-load starts; inadequate viscosity κ < 0.5
Prevention: higher viscosity oil, EP additives, speed up slowly
3. Brinelling (True)
Appearance: indentations at ball pitch spacing on raceway
Cause: static overload (single event); load > static capacity C_0
Hertz contact stress > 4200 MPa creates plastic impression
Prevention: increase bearing size; add vibration dampening during transport
4. False Brinelling
Appearance: dull depressions at ball pitch spacing; red-brown debris (goethite)
Cause: oscillation at small angle under load (vibration) → fretting → wear
Occurs during: transport, vibration from adjacent machinery, idle equipment
Distinguish from true brinelling: false has flat depressions + rust debris; true has no debris initially
Prevention: EP grease, preload, periodic slow rotation during storage
5. Electrical Pitting (Fluting)
Appearance: washboard/corrugated pattern on raceways; regular channels parallel to rotation
Cause: stray electrical current flowing through bearing (VFD drives, welding)
Mechanism: arcing melts micro-spots of raceway → periodic pattern as bearing rotates
Prevention: insulated bearings (ceramic coating on OD/ID); hybrid bearings (ceramic balls); earthing brushes
6. Corrosion
Appearance: reddish-brown discoloration; pitting after moisture exposure
Types: fretting corrosion (relative motion + oxygen = goethite Fe₂O₃), moisture corrosion
Prevention: corrosion-resistant grease, sealed bearings, anti-corrosion coating
7. Overheating/Seizure
Appearance: blue/brown discoloration of steel; smeared or melted cage; welded surfaces
Cause: starvation, excessive preload, over-greasing (churning), bearing cage failure
Temperature indicator: steel turns blue >220°C; bronze cage softens ~250°C
Prevention: proper lubrication quantity, verify preload, temperature monitoring
8. Cage Failure
Appearance: fragments, cracked or broken cage
Cause: over-speed, shock loading, incorrect lubricant, cage-guided vs. race-guided selection
Polymer cages more vulnerable to: chemical attack, high temperature, impact
Prevention: correct cage material, speed verification, adequate lubrication
9. Misalignment Damage
Appearance: diagonal stress bands at approximately 45° across raceways
Cause: angular misalignment between inner/outer ring; shaft deflection
Pattern: in ball bearings — contact ellipses visible at angles
Prevention: self-aligning bearings, proper alignment procedures, reduce shaft deflection
10. Creep (Ring Fretting)
Appearance: fretting marks/scoring on bore or OD of bearing ring; loose fit
Cause: insufficient interference; rotating ring with loose fit → microslip → fretting wear
Prevention: correct interference fit; replace shaft/housing if out-of-tolerance
Root Cause Investigation Procedure
- Note operating history: load, speed, temperature, lubricant, interval
- Examine bearing visually: raceway pattern, cage condition, surface color
- Identify failure mode from classification above
- Check: Was life calculation adequate? Was installation correct?
- Measure fits: check shaft/housing diameters against specification
- Examine lubricant: viscosity, contamination level (ISO particle count), water content
- Review maintenance records: re-greasing schedule adherence
Corrective Actions
| Root Cause | Corrective Action |
|---|
| Low viscosity | Use higher VG oil or heavier grease; check temperature |
| Over-greasing | Reduce quantity; use correct NLGI grade; add relief fitting |
| Wrong fit | Re-machine shaft/housing; verify tolerances |
| Contamination | Better seals; filtration; more frequent change |
| Electrical fluting | Insulated bearing; hybrid; shaft earthing |
| False brinelling | Periodic rotation during storage; EP grease; preload |
| Misalignment | Realign; check bearing supports; reduce span |
| Overload | Larger bearing; load analysis; reduce external forces |
Output
Provide: failure mode classification, damage pattern description, probable root cause, supporting evidence from visual/measurement data, corrective action, prevention recommendation.