7202 BECBP
7202 BECBP Bearings
2023-01-03
7202 ACCBM
7202 ACCBM Bearings
2023-01-03

7202 BE-2RZP Bearings

7202 BE-2RZP
7202 BE-2RZP Bearings

7202 BE-2RZP Single row angular contact ball bearings

Technical Specification of 7202 BE-2RZP Bearings

Dimensions of 7202 BE-2RZP Bearings

d
15 mm
Bore diameter
D
35 mm
Outside diameter
B
11 mm
Width
d1
23 mm
Shoulder diameter of inner ring (large side face)
d2
18.93 mm
Shoulder diameter of inner ring (small side face)
D2
28.5 mm
Recess diameter of outer ring (large side face)
a
16 mm
Distance side face to pressure point
r1,2
min.0.6 mm
Chamfer dimension
r3,4
min.0.3 mm
Chamfer dimension

Abutment Dimensions of 7202 BE-2RZP Bearings

da
min.19.2 mm
Diameter of shaft abutment
da
max.22.5 mm
Diameter of shaft abutment
Da
max.30.8 mm
Abutment diameter housing
Db
max.32.6 mm
Diameter of housing abutment
ra
max.0.6 mm
Radius of fillet
rb
max.0.3 mm
Radius of fillet

Caliculation Data of 7202 BE-2RZP Bearings

Basic dynamic load ratingC
8.32 kN
Basic static load ratingC0
4.4 kN
Fatigue load limitPu
0.183 kN
Reference speed 
24 000 r/min
Limiting speed 
20 000 r/min
Minimum axial load factorA
0.000383
Minimum radial load factorkr
0.095
Limiting valuee
1.14

Single Bearing Or Bearing Pair Arranged In Tandem

Basic dynamic load ratingC
8.32 kN
Basic static load ratingC0
4.4 kN
Fatigue load limitPu
0.183 kN
Reference speed 
24 000 r/min
Limiting speed 
20 000 r/min
Minimum axial load factorA
0.000383
Minimum radial load factorkr
0.095
Limiting valuee
1.14

Bearing Pair Arranged Back-To-Back Or Face-To-Face

Calculation factor (back-to-back, face-to-face)X
0.57
Calculation factor (back-to-back, face-to-face)Y0
0.52
Calculation factor (back-to-back, face-to-face)Y1
0.55
Calculation factor (back-to-back, face-to-face)Y2
0.93

Mass of 7202 BE-2RZP Bearings

Mass
0.045 kg

Product Features of 7202 BE-2RZP Bearings

  1. high carrying capacity
    The low shoulder allows a large number of balls to be incorporated into the bearing, giving it a relatively high load carrying capacity.
  2. Good running performance
    Rapid acceleration and deceleration are possible.
  3. Easy to install universally compatible bearings
    No adjustments are required for correct internal clearance or preload.

Applications of 7202 BE-2RZP Bearings

Here are examples of applications in which angular contact ball bearings might be used:​
  • Industrial pumps
  • Industrial gearboxes
  • Renewable energy
  • Compressors
  • Industrial electric motors & generators
  • Trucks, trailers and buses
  • Metals
Applications of W 618/0.6 Bearings
Cement
Applications of Bearings
Wind Turbines
Applications of Bearings
Steel Industry
Applications of Bearings
Railways
Applications of Bearings
Food Processing Machinery
Applications of Bearings
Motorcycles
Applications of Bearings
Mining & Construction
Applications of Bearings
Electric motors and generators

Product classification of Angular contact ball bearings

FAQ of 7202 BE-2RZP Bearings

  • Angular contact ball bearings have different outer ring thicknesses on the marked and unmarked surfaces. This is due to the contact angle between the outer ring and the ball. Deep groove ball bearings have the same thickness on both sides of the outer ring. In addition, the ACBB has the designation 7xxx and the DGBB has the designation 6xxx.
  • Double-row ACBBs can withstand axial loads in both directions, but they have a limited contact angle. The ACBB arrangement or multiple single-row ACBBs can only carry axial loads in one direction, depending on how they are combined. However, these options do not limit the contact angle, allowing customised selection to best match the ratio of radial load to axial load. In addition, the clearance and accuracy of the ACBB arrangement is controlled as a group, resulting in a consistent level of vibration/noise and rotational accuracy. However, the use of two individually controlled single rows of ACBBs may lead to significant changes in their resultant characteristics when combined.
  • As the name suggests, the ball and the outer ring in the ACBB are in diagonal contact depending on the contact angle. A larger contact angle increases the inclined contact between the ball and the outer ring, which affects the ultimate speed and load carrying capacity.

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