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| FAG QJ320 Bearing Details: |
| Bearing Name | QJ320 |
| New Model | QJ320 |
| Old Model | 176320 bearing |
| product Model | QJ320 |
| Category | Angular Contact Ball Bearings |
| Brand | FAG Bearing |
| Inner Diameter d ( mm ) | 100 |
| Outer Diameter D ( mm ) | 215 |
| Thickness B ( mm ) | 47 |
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| FAG QJ320 Bearing Bearing Size and Drawing: |
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FAG QJ320 Bearing With size alternative model
| Model | Inner Diameter d(mm) | Outer Diameter D(mm) | thickness B(mm) | Brand | Type |
| FAG 21320 EK.TVPB+H320 Bearing | 100 | 215 | 47 | FAG | Spherical Roller Bearings |
| STEYR N 320 Bearing | 100 | 215 | 47 | STEYR | Cylindrical Roller Bearings |
| STEYR NUP 320 Bearing | 100 | 215 | 47 | STEYR | Cylindrical Roller Bearings |
| STEYR 6320-2Z Bearing | 100 | 215 | 47 | STEYR | Deep Groove Ball Bearings |
| TBS 21320 E* Bearing | 100 | 215 | 47 | TBS | Spherical Roller Bearings |
| NSK 21320CC Bearing | 100 | 215 | 47 | NSK | Spherical Roller Bearings |
| RHP 6320 N Bearing | 100 | 215 | 47 | RHP | Deep Groove Ball Bearings |
| KOYO NJ 320 E Bearing | 100 | 215 | 47 | KOYO | Cylindrical Roller Bearings |
| TBS NUP320E Bearing | 100 | 215 | 47 | TBS | Cylindrical Roller Bearings |
| MRC NU 320 Bearing | 100 | 215 | 47 | MRC | Cylindrical Roller Bearings |
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What are the structural components and design advantages of angular contact ball bearings?
Angular contact ball bearings consist of an inner ring, outer ring, steel balls, and a cage. The raceways of the raceways are designed with a contact angle (typically 15°, 25°, or 40°) between the bearing rings and the steel balls. They offer advantages such as the ability to simultaneously withstand radial and unidirectional axial loads, high limiting speed, high precision, good rigidity, and the ability to withstand bidirectional axial loads when installed in pairs.
What are the advantages of angular contact ball bearings compared to other similar bearings?
Compared to deep groove ball bearings, angular contact ball bearings have a higher axial load capacity and higher rigidity, making them suitable for precision positioning applications. Compared to tapered roller bearings, they have a higher limiting speed and lower friction, making them more suitable for high-speed operation. Compared to thrust ball bearings, they can simultaneously withstand combined radial and axial loads, and when used in pairs, they maintain high rigidity under bidirectional axial loads without the need for additional radial bearings.
What are the applicable applications and typical uses of angular contact ball bearings?
These bearings are suitable for high-speed, high-rigidity mechanical applications requiring precise positioning and subjected to combined loads. Typical applications include machine tool spindles, automobile wheel hubs, centrifugal pumps, high-speed electric spindles, industrial robot joints, aero-engine spindles, and precision instrument turntables.