KNOWLEDGE

What Is a Bearing Tolerance

what is a bearing tolearance

 

Bearing Tolerance Definition:

Bearing tolerance refers to the allowable limits of variation in the dimensions and geometry of a bearing. These tolerances are set by international standards and determine how much the actual size, shape, and fit of a bearing can differ from its specified measurements.

Tolerances are important because they affect how the bearing fits on the shaft and in the housing, as well as how it performs in terms of speed, load capacity, and lifespan. Bearings with tighter (more precise) tolerances are used in high-precision applications, such as machine tools or aerospace equipment, while standard tolerances are suitable for general industrial use.

Tolearance Tables:

Standard tolerances (P0) for radial bearings, excluding tapered roller bearings

Inner ring
dtΔdmp1)tVdsp1)tVdmptΔBstVBstKia
Diameter seriesAllNormalModified3)
>UL7, 8, 92)0, 12, 3, 4ULL
mmμmμmμmμmμmμm
2.50–8108660–401210
2.5100–8108660–120–2501510
10180–8108660–120–2502010
18300–101310880–120–2502013
30500–121512990–120–2502015
50800–15191911110–150–3802520
801200–20252515150–200–3802525
1201800–25313119190–250–5003030
1802500–30383823230–300–5003040
2503150–35444426260–350–5003550
3154000–40505030300–400–6304060
4005000–45565634340–4505065
5006300–50636338380–5006070
6308000–750–7507080
8001 0000–1000–1 0008090
1 0001 2500–1250–1 250100100
1 2501 6000–1600–1 600120120
1 6002 0000–2000–2 000140140

 

Outer ring
DtΔDmptVDsp4)tVDmp4)tΔCstKea
Open bearingsCapped bearings5)tVCs
Diameter series
>UL7, 8, 92)0, 12, 3, 42, 3, 4
mmμmμmμmμmμm
2.5180–81086106Identical to tΔBs and tVBs of an inner ring of the same bearing15
18300–9129712715
30500–111411816820
50800–13161310201025
801200–15191911261135
1201500–18232314301440
1501800–25313119381945
1802500–303838232350
2503150–354444262660
3154000–405050303070
4005000–455656343480
5006300–5063633838100
6308000–7594945555120
8001 0000–1001251257575140
1 0001 2500–125160
1 2501 6000–160190
1 6002 0000–200220
2 0002 5000–250250
Inner ring
dtΔdmp1)tVdsp1)tVdmptΔBstVBstKia
Diameter seriesAllNormalModified3)
>UL7, 8, 92)0, 12, 3, 4ULL
mmμmμmμmμmμmμm
2,50–797550–40125
2,5100–797550–120–250156
10180–797550–120–250207
18300–8108660–120–250208
30500–101310880–120–2502010
50800–121515990–150–3802510
801200–15191911110–200–3802513
1201800–18232314140–250–5003018
1802500–22282817170–300–5003020
2503150–25313119190–350–5003525
3154000–30383823230–400–6304030
4005000–35444426260–4504535
5006300–40505030300–5005040
6308000–500–7506045
8001 0000–600–1 0006050
1 0001 2500–750–1 2507060
1 2501 6000–900–1 6007070
1 6002 0000–1150–2 0008080

 

Outer ring
DtΔDmptVDsp4)tVDmp4)tΔCstKea
Open bearingsCapped bearings5)tVCs
Diameter series
>UL7, 8, 92)0, 12, 3, 40, 1, 2, 3, 4
mmμmμmμmμmμm
2,5180–797595Identical to8
18300–81086106tΔBs and tVBs9
30500–91197137of an inner ring10
of the same
50800–1114118168bearing13
801200–13161610201018
1201500–15191911251120
1501800–18232314301423
1802500–202525151525
2503150–253131191930
3154000–283535212135
4005000–334141252540
5006300–384848292950
6308000–455656343460
8001 0000–607575454575
1 0001 2500–7585
1 2501 6000–90100
1 6002 0000–115100
2 0002 5000–135
The Relationship Between Bearing Tolerance and Limit Dimensions:

As mentioned above, bearing dimensional tolerance refers to the permissible variation in the actual size of a bearing from its nominal (design) size. Limit dimensions, on the other hand, are the maximum and minimum allowable dimensions that a bearing can have according to specified standards.

The relationship between them is that the tolerance defines the range within which the actual bearing size must fall, while the limit dimensions specify the exact upper and lower boundaries of this range. In other words, the tolerance is the difference between the maximum and minimum limit dimensions. Adhering to these tolerances and limit dimensions ensures that bearings fit and function properly in their applications.

Why Bearing Dimensions Matter?

Bearings are high-precision components that require strict adherence to dimensional specifications. If the dimensions deviate beyond acceptable limits, several issues can arise:

Excessive Clearance: This can reduce operational accuracy and cause vibration.
Overly Tight Fit: This increases friction, which may lead to overheating or even bearing seizure.
Accelerated Wear: Dimensional inaccuracies can shorten the bearing’s service life.
Installation Challenges: Improper dimensions make assembly more difficult, impacting both efficiency and cost.

Therefore, understanding bearing dimensional tolerances and limit dimensions is crucial for both buyers and engineers.