Integral tapered roller bearings Series JK0S Technical Product Information
Integral tapered roller bearings JK0S Features
Features
Operating temperature
FAG integral tapered roller bearings JK0S are ready-to-fit, easily mounted units.
Integral tapered roller bearings can be used at operating temperatures from -30 °C to +110 °C, limited by the grease and the seal material.
bearing ring and the roller and cage assembly together. After the bearing is fitted, there is no longer any contact between the cage and outer ring, so there is no wear of the cage during operation.
Cage
Suffixes
When the bearing is assembled with an annular ring, the profiled plastic cage snaps into a slot in the extended outer ring and holds the
A Modified internal construction J14 Greasing to higher degree of filling, variant available by agreement for JK0S040
The single row bearings are sealed on one side and lubricated for life with a high quality grease. The selfretaining bearings are installed in pairs to give a bearing arrangement that is sealed on both sides. Due to their large support base, the bearing arrangement can support all load combinations comprising radial forces, axial forces and tilting forces. The support base is significantly larger than in double row cylindrical roller bearings.
In designs with very high loads and not particularly high speeds, such as pulleys, crane wheels, cable rollers, integral tapered roller bearings can be used to achieve particularly economical bearing arrangements.
Snap ring BR
Plastic cage Seal
Advantages • Easy mounting: ready-to-fit unit (self-retaining) comprising inner ring, outer ring, cage with roller set and seal • No setting of internal clearance: when fitted in pairs in an O arrangement, the correct clearance is achieved automatically • Maintenance-free bearing arrangement: lifetime greasing of bearings; double lip seals with low friction on both sides of the bearing pair
Shaft end cover
Support base
Integral tapered roller bearings fitted in pair in O arrangement. The correct axial clearance is achieved when the inner rings are located, for example by means of a shaft end cover.
Integral tapered roller bearings JK0S Design and safety guidelines
Design and safety guidelines
A
In order to calculate the equivalent bearing load, the internal axial force must be determined. The axial force is calculated using the formulae in the adjacent table. The following preconditions apply: • The radial forces act at the central pressure points and are positive. • Bearing A is subjected to a radial load F rA , bearing B to F rB . • F is an external axial force acting on bearing A. If no formula is given, the axial force is not taken into consideration.
F FrA
Equivalent dynamic load for the individual bearing
FrB
Load conditions
Axial force Fa, to be used in calculation of the equivalent dynamic load
Y⫽Y A ⫽Y B
Bearing A
F rA ⬉ F rB
F a ⫽F ⫹ 0,5 ·
F rB Y
–
F a ⫽F ⫹ 0,5 ·
F rB Y
–
F rA ⬎ F rB In the calculation of integral tapered roller bearings arranged in pairs, each individual bearing is considered individually. Accordingly, the dimension table gives the basic load ratings (C r , C 0r ), the e value and the axial factors (Y, Y 0 ) for the individual bearing.
B
F ⬎ 0,5 ·
(
F rA – F rB Y
(
F rA – F rB Y
)
Bearing B
F rA ⬎ F rB F ⬉ 0,5 ·
–
)
Equivalent static load for the individual bearing
P⫽Fr
for
Fa ⬉e Fr
P0⫽F0r
for
F0a 1 ⬉ F0r 2 · Y0
P⫽0,4 · Fr ⫹ Y · Fa
for
Fa ⬎e Fr
P0⫽0,5 · F0r ⫹ Y0 · F0a for
F0a 1 . F0r 2 · Y0
P N Equivalent dynamic bearing load for combined load Fa N Axial dynamic bearing load Fr N
P0 N Equivalent static bearing load for combined load F0a N Axial static bearing load F0r N
Radial dynamic bearing load e, Y – Factors from dimension tables
Radial static bearing load Y0 – Factors from dimension tables
F a ⫽0,5 ·
F rA –F Y
Minimum radial load In continuous operation, a minimum radial load of P/C r ⬎ 0,02 is necessary.
Speeds The limiting speeds n G given in the dimension table must not be exceeded. The actual speed can reach the values given if the less favourable thermal balance of the bearing pair is taken into consideration in the operating conditions.
Integral tapered roller bearings JK0S
C
m 2
r1 r2
D D1
d d1
a B
u
Dimension table · Dimensions in mm Designation
Mass
Bearing
m1) Bearing d
Snap ring
Dimensions
D
B
C
r1,r2
D1
m 2
a
u
Du
d1
Deviation ¯kg JK0S030 JK0S0403) JK0S050 JK0S060 JK0S070-A JK0S080-A
BR55 BR68 BR80 BR95 BR110 BR125
0,19 0,3 0,41 0,67 0,93 1,32
min. 30 40 50 60 70 80
55 68 80 95 110 125
19 21 22 26 27 30
18,5 20,5 21,5 25 26,5 29,5
1 1 1 1,5 1,5 1,5
¯ 51,4 64,4 75,7 89,3 104,8 119,8
0,75 0,75 1 1,25 1,25 1,25
14,9 15,9 18,8 22,9 25,1 28,3
¯ 0,02 0,03 0,02 0,03 0,03 0,03
+0,05 +0,05 +0,05 +0,05 +0,05 +0,05
1)
Ungreased For abutment with sharp edge 3) Also available with 95 % grease filling; designation: JK0S040-J14 2)
Ordering note FAG integral tapered roller bearings are interchangeable with each other. When ordering, please always state the number of individual bearings, not the number of bearing pairs. The snap ring must be ordered separately, for example 2 tapered roller bearings JK0S080-A 1 snap ring BR125
43,6 53,8 66,4 79,5 91,5 104,2
ra
ra da
db Dn
Mounting dimensions Shaft da db
ra
Slot Dn
DDn
Basic load ratings
Calculation factors
dyn.
stat.
e
Cr N
C0r
Nominal Deviation max. min. max. dimension N 35 46 56 67 78 89
36 46 56 67 77 87
1 1 1 1,5 1,5 1,5
56,5 69,5 81,8 97 112,3 127,3
+0,19 +0,19 +0,22 +0,22 +0,22 +0,25
db Dn
38 500 46 500 0,43 53 000 71 000 0,37 64 000 93 000 0,42 82 000 123 000 0,43 104 000 159 000 0,43 137 000 211 000 0,42
Other sizes and variants are also available; please ask us for details.
Y
1,4 1,6 1,43 1,4 1,38 1,42
Load carrying Max. axial capacity of snap clamping ring connection force nG grease FBR2) Bearing pair
Fatigue Limiting limit load speed Y0
0,77 0,88 0,79 0,77 0,76 0,78
Cur
N
min-1
N
N
5 300 8 300 11 200 15 200 20 100 26 000
5 600 4 500 3 600 3 000 2 600 2 200
15 700 12 900 31 400 59 300 49 000 40 200
7 700 10 600 12 800 16 400 20 800 27 400
Integral tapered roller bearings JK0S Fitting · Dismantling · Accuracy
Fitting
Dismantling
Accuracy
When integral tapered roller bearings are fitted in pairs in an O arrangement, the correct axial internal clearance is set automatically. It is sufficient if the following fits are observed: • with circumferential load for inner rings: shaft tolerance m6, housing tolerance H7 • with circumferential load for outer rings: shaft tolerance g6, housing tolerance M7. The inner rings are axially clamped together, for example using a shaft nut or shaft end cover. The maximum clamping force for the bearing pair is given in the dimension table. The outer rings are axially located in the housing using a snap ring (for the load carrying capacity of the snap ring connection, see the dimension table). If several bearing pairs are arranged adjacent to each other on one shaft, different speeds of the outer rings are nevertheless possible since the inner rings of integral tapered roller bearings are wider than the outer rings. This is particularly advantageous in the case of cable rollers.
With loose fit outer rings, dismantling the bearings does not generally present any difficulties. After withdrawal of the shaft, the complete bearings can be dismantled. Even with a tight outer ring fit, dismantling is still possible. After dismantling of the shaft, a sufficiently large gap is created between the inner rings that the inner rings can be pressed out using a flat tool. The elastic annular ring of the cage snaps out of the slot in the outer ring and pushes the seal outwards. During fitting and transport, the annular ring holds the inner ring and outer ring together. After the inner rings have been dismantled, a snap ring is inserted as an aid into the inner recesses of the outer rings. This snap ring forms the abutment surface for the extraction tool, see figure.
The bore and outside diameter of integral tapered roller bearings JK0S match those of tapered roller bearings of series 320. The dimensional and geometrical tolerances correspond to tolerance class PN in accordance with DIN 620-2. For table values, see Catalogue HR 1, Rolling Bearings.
Snap ring
Axial internal clearance When fitting integral tapered roller bearings in an O arrangement, no adjustment is necessary. The overhang of the inner ring compared to the outer ring is maintained so precisely that the correct axial internal clearance is achieved when the two inner rings are located.
Integral tapered roller bearings JK0S Application examples
Agricultural machinery: e. g. wheel bearings
Fork lift trucks: support rollers in the lift mast profile
Cranes: cable sheaves or return pulleys
Cable cars: cable sheaves or return pulleys
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