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| FAG 21315CCK+H315 Bearing Details: |
| Bearing Name | 21315CCK+H315 |
| New Model | 21315CCK+H315 |
| Old Model | 253313 bearing |
| product Model | 21315CCK+H315 |
| Category | Spherical Roller Bearings |
| Brand | FAG Bearing |
| Inner Diameter d ( mm ) | 65 |
| Outer Diameter D ( mm ) | 160 |
| Thickness B ( mm ) | 37 |
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| FAG 21315CCK+H315 Bearing Bearing Size and Drawing: |
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FAG 21315CCK+H315 Bearing With size alternative model
| Model | Inner Diameter d(mm) | Outer Diameter D(mm) | thickness B(mm) | Brand | Type |
| TBS NJ413+HJ413 Bearing | 65 | 160 | 37 | TBS | Cylindrical Roller Bearings |
| FAG N 413 Bearing | 65 | 160 | 37 | FAG | Cylindrical Roller Bearings |
| TBS NJ 413 Bearing | 65 | 160 | 37 | TBS | Cylindrical Roller Bearings |
| TBS 7413 BG BM Bearing | 65 | 160 | 37 | TBS | Angular Contact Ball Bearings |
| KOYO 1315 K+H 315 Bearing | 65 | 160 | 37 | KOYO | Self-aligning Ball Bearings |
| TBS 6413 N Bearing | 65 | 160 | 37 | TBS | Deep Groove Ball Bearings |
| MRC NU 413 Bearing | 65 | 160 | 37 | MRC | Cylindrical Roller Bearings |
| STEYR N413 Bearing | 65 | 160 | 37 | STEYR | Cylindrical Roller Bearings |
| NACHI 6413 Bearing | 65 | 160 | 37 | NACHI | Deep Groove Ball Bearings |
| FAG 6413N Bearing | 65 | 160 | 37 | FAG | Deep Groove Ball Bearings |
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What are the structural components and design advantages of spherical roller bearings?
Spherical roller bearings consist of an inner ring, an outer ring, spherical rollers, and a cage. The inner ring has two raceways, and the outer ring has a spherical raceway. The rollers have a drum-shaped design, providing self-aligning capability, effectively compensating for misalignment between the shaft and the housing bore, as well as shaft deflection. They also offer extremely high load-bearing capacity, shock resistance, and vibration resistance.
What are the advantages compared to other similar bearings?
Compared to self-aligning ball bearings, spherical roller bearings have significantly higher radial and axial load-bearing capacity, making them suitable for heavy-duty applications. Compared to cylindrical roller bearings, they have self-aligning capabilities, accommodating installation errors and shaft deformation. Compared to tapered roller bearings, their self-aligning performance is superior, making them more suitable for long shafts or applications with high flexibility.
What are the applicable occasions and typical applications?
These bearings are suitable for heavy-duty machinery applications involving heavy loads, vibration, shock, or misalignment. Typical applications include mining conveying equipment, wind turbine main shafts, paper calenders, large speed reducers, vibrating screens, ship propulsion systems, and metallurgical rolling mills.