7000 ACEGA/P4A
Super-precision, high-speed, E design, universally matchable single row angular contact ball bearingThese super-precision, high-speed, E design, single row angular contact ball bearings accommodate radial and axial loads acting simultaneously, where the axial load acts in one direction only. They are designed for high-speed operation and, compared to SKF B design high-speed bearings, have a slightly higher speed capability and can accommodate heavier loads. Being universally matchable, they can be used together in arrangements to provide effective load sharing, within a predetermined preload range, without the use of shims or similar devices.
- Very high running accuracy
- Accommodate very high speeds
- Universally matchable
Description
Universal matching bearing(s) | Yes, back-to-back (<>), face-to-face (><) or tandem (>>) |
Dimensions
d | 10 mm | Bore diameter |
---|---|---|
D | 26 mm | Outside diameter |
B | 8 mm | Width |
d1 | 15.6 mm | Shoulder diameter of inner ring (large side face) |
d2 | 14.5 mm | Shoulder diameter of inner ring (small side face) |
D1 | 20.45 mm | Shoulder diameter of outer ring (large side face) |
r1,2 | min. 0.3 mm | Chamfer dimension |
r3,4 | min. 0.3 mm | Chamfer dimension |
a | 8.3 mm | Distance from side face to pressure point |
Abutment dimensions
da | min. 12 mm | Diameter of shaft abutment |
---|---|---|
db | min. 12 mm | Diameter of shaft abutment |
Da | max. 24 mm | Diameter of housing abutment |
Db | max. 23.6 mm | Diameter of housing abutment |
ra | max. 0.3 mm | Radius of fillet |
rb | max. 0.3 mm | Radius of fillet |
dn | 16.5 mm | Position of oil nozzle |
Calculation data
Basic dynamic load rating | C | 2.86 kN |
---|---|---|
Basic static load rating | C0 | 1.14 kN |
Fatigue load limit | Pu | 0.048 kN |
Contact angle | α | 25 ° |
Ball diameter | Dw | 3.969 mm |
Number of balls (per bearing) | z | 11 |
Reference grease quantity (per bearing) | Gref | 0.28 cm³ |
Preload class A | GA | 26 N |
---|---|---|
Axial stiffness for preload A (sets of two brgs back-to-back or face-to-face) | 31 N/µm |
Correction factor dependent on bearing series and size | f | 1.03 |
---|---|---|
Correction factor dependent on contact angle | f1 | 0.99 |
Correction factor, preload class A | f2A | 1 |
Correction factor for hybrid bearings | fHC | 1 |
Limiting value | e | 0.68 |
Axial load factor (single, tandem) | Y1 | 0 |
Axial load factor (single, tandem) | Y2 | 0.87 |
Axial load factor (single, tandem) | Y0 | 0.38 |
Radial load factor (single, tandem) | X1 | 1 |
Radial load factor (single, tandem) | X2 | 0.41 |
Radial load factor (single, tandem) | X0 | 0.5 |
Axial load factor (back-to-back, face-to-face) | Y1 | 0.92 |
Axial load factor (back-to-back, face-to-face) | Y2 | 1.41 |
Axial load factor (back-to-back, face-to-face) | Y0 | 0.76 |
Radial load factor (back-to-back, face-to-face) | X1 | 1 |
Radial load factor (back-to-back, face-to-face) | X2 | 0.67 |
Radial load factor (back-to-back, face-to-face) | X0 | 1 |
Mass
Mass | 0.019 kg |
Tolerances and clearances
Product details
- Tolerances: P4A, P4B, P4, PA9A, P2
- Clamping and fitting forces: D design, E design, B design
- Designation suffixes H, H1, L and L1 identify variants for direct oil-air lubrication.
Principles of bearing selection and application
- Chamfer dimensions
- Seat tolerances for standard conditions: shafts, housings
- Values for ISO tolerance classes: shafts, housings
- Speed dependent initial grease fill → Initial grease fill