32008 30208 32208 30308 31308 32308 32009 33009 33109 30209 32209 33209 30309 31309 32309, Taper Roller Bearings
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Min.Order:1 Piece
Integration Trading (Xiamen) Co.,Ltd
32010 33010 33110 30210 32210 33210 30310 31310 32310, Taper Roller Bearings
32013 33013 33113 30213 32213 33213 30313 31313 32313, Taper Roller Bearings
32014 33014 33114 30214 32214 33214 30314 32314, Taper Roller Bearings
32015 33015 33115 30215 32215 33215 30315 31315 32315, Taper Roller Bearings
32016 33016 33116 30216 32216 33216 30316 31316 32316, Taper Roller Bearings
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Principal dimensions | Load ratings | Speed limits | Weight | Dimensions | Calculation factors | ||||||||||||
Part number | Bore | Outer | Width | Dynamic | Static | Grease | Oil | B | C | ||||||||
d | D | T | C | Co | rpm | Kg | r1/r2 | r3/r4 | r5 | a | e | Y | Yo | ||||
mm | kN | 1 min−1 | mm | mm | |||||||||||||
32008 A | 40 | 68 | 19 | 47 | 67,3 | 5300 | 7000 | 0,27 | 19 | 14,5 | 1 | 1 | 0,3 | 15 | 0,37 | 1,6 | 0,9 |
30208 A | 40 | 80 | 19,75 | 63 | 74 | 4800 | 6300 | 0,42 | 18 | 16 | 1,5 | 1,5 | 0,6 | 16 | 0,37 | 1,6 | 0,9 |
32208 A | 40 | 80 | 24,75 | 77,9 | 97,2 | 4800 | 6300 | 0,51 | 23 | 19 | 1,5 | 1,5 | 0,6 | 19 | 0,37 | 1,6 | 0,9 |
30308 A | 40 | 90 | 25,25 | 95,2 | 107,5 | 4500 | 6000 | 0,7 | 23 | 20 | 2 | 1,5 | 0,6 | 19 | 0,35 | 1,7 | 0,9 |
31308 A | 40 | 90 | 25,25 | 81,4 | 96,4 | 4000 | 5300 | 0,685 | 23 | 17 | 2 | 1,5 | 0,6 | 28 | 0,83 | 0,7 | 0,4 |
32308 A | 40 | 90 | 35,25 | 120,8 | 147,1 | 4000 | 5300 | 0,993 | 33 | 27 | 2 | 1,5 | 0,6 | 23 | 0,35 | 1,7 | 0,9 |
32009 A | 45 | 75 | 20 | 57 | 82,2 | 4800 | 6300 | 0,33 | 20 | 15,5 | 1 | 1 | 0,3 | 16 | 0,4 | 1,5 | 0,8 |
33009 A | 45 | 75 | 24 | ||||||||||||||
33109 A | 45 | 80 | 26 | 87,1 | 117,2 | 0,536 | 26 | 20,5 | 1,5 | 1,5 | |||||||
30209 A | 45 | 85 | 20,75 | 71,3 | 83,8 | 4500 | 6000 | 0,47 | 19 | 16 | 1,5 | 1,5 | 0,6 | 18 | 0,4 | 1,5 | 0,8 |
32209 A | 45 | 85 | 24,75 | 84,1 | 103 | 4500 | 6000 | 0,56 | 23 | 19 | 1,5 | 1,5 | 0,6 | 20 | 0,4 | 1,5 | 0,8 |
33209 A | 45 | 85 | 32 | 109,5 | 145,1 | 0,771 | 32 | 25 | 2 | 2 | |||||||
30309 A | 45 | 100 | 27,25 | 114,05 | 129,8 | 4000 | 5300 | 0,92 | 25 | 22 | 2 | 1,5 | 0,6 | 21 | 0,35 | 1,7 | 0,9 |
31309 A | 45 | 100 | 27,25 | 95,6 | 113,8 | 3400 | 4500 | 0,915 | 25 | 18 | 2 | 1,5 | 0,6 | 31 | 0,83 | 0,7 | 0,4 |
32309 A | 45 | 100 | 38,25 | 145,3 | 189,4 | 3600 | 4800 | 1,25 | 36 | 30 | 2 | 1,5 | 0,6 | 25 | 0,35 | 1,7 | 0,9 |
etails part number: |
- Suffix A: |
increased load capacity |
Single row tapered roller bearings can be supplied matched in “DB” or “DF” arrangement. These matched bearings are manufactured so that, when mounted opposite each other, the pair should have an established initial axial clearance and a uniform distribution of the loading. Matched bearings are used when the load carrying capacity of a single bearing is insufficient, or when the thrust loads have to be carried at a certain axial clearance in both directions. |
Dimensions in accordance with ISO 355-2007 |
Tapered roller bearings are designed to take radial and thrust loads from one direction.
They consist of the inner race (cone), with cage guided rollers, and the outer race (cup).
The track has the same profile as the tapered rollers. The extension of the contact lines
meet at a common point on the bearing axis of rotation. The cone and cup are
seperable. By using two bearings as opposed mountings, they can carry thrust loadings
in both directions.
Single row tapered roller bearings can be supplied matched in “DB” or “DF”
arrangement. These matched bearings are manufactured so that, when mounted
opposite each other, the pair should have an established initial axial clearance and a
uniform distribution of the loading. Matched bearings are used when the load carrying
capacity of a single bearing is insufficient, or when the thrust loads have to be carried at
a certain axial clearance in both directions.
Dimensions in accordance with ISO 355-2007
Axial clearance
The axial clearance of single tapered roller bearings is adjusted on assembly. With matched bearings, as with double and 4 row bearings,
axial clearance is achieved by the addition of spacer rings ground to give the required clearance. Radial clearances for double
and four row tapered roller bearings are shown in the technical section. The radial clearance is transformed into axial clearance by the
following relation:
Axial clearance = Radial clearance / 2 tan a
a = contact angle between rollers and the outer ring raceway