FAG Bearing NU304-E-XL-TVP2

Cylindrical roller bearing NU..-E-XL-TVP2, with cage, single row, non-locating bearing, 2 ribs on outer ring, 0 ribs on inner ring (smooth), type NU, Running accuracy in P6
d=20mm, D=52mm, B=15mm, Mass bearing=0.147kg
Material: Bearing steels
In Stock:
Photo may not represent actual item. See the technical specification for details.

Specifications of FAG Bearing NU304-E-XL-TVP2

FAG Bearing NU304-E-XL-TVP2
FAG Bearing NU304-E-XL-TVP2
FAG Bearing NU304-E-XL-TVP2

Dimensions

s 1 mm Axial displacement
D1 min 42.4 mm Minimum rib diameter outer ring
r1 min 0.6 mm Minimum chamfer dimension
rmin 1.1 mm Minimum chamfer dimension
F 27.5 mm Raceway diameter inner ring
E 45.5 mm Raceway diameter outer ring

Main Dimensions & Performance Data

Cr 37500 N Basic dynamic load rating, radial
C0r 27000 N Basic static load rating, radial
d 20 mm Bore diameter
Cur 3150 N Fatigue load limit, radial
nG 17200 1/min Limiting speed
D 52 mm Outside diameter
nδr 11900 1/min Reference speed
B 15 mm Width

Mounting dimensions

Da max 45 mm Maximum diameter of housing shoulder
da max 27 mm Maximum diameter of shaft shoulder
ra max 1 mm Maximum recess radius
ra1 max 0.6 mm Maximum recess radius
da min 24 mm Minimum diameter shaft shoulder
db min 30 mm Minimum shaft shoulder

Temperature range

Tmax 120 ℃ Operating temperature max.
Tmin -30 ℃ Operating temperature min.

Product description of FAG Bearing NU304-E-XL-TVP2

Cylindrical roller bearings have a single or multiple row rolling element set based on cylindrical rollers. In contrast to the ball, the roller has a larger contact area perpendicular to the roller axis. As a result, it can transmit higher forces, has greater rigidity and allows smaller rolling element diameters under the same load.

Depending on the design of the ribs on the bearing rings: axial forces can be supported in one or both directions axial displacements of the shaft relative to the housing are compensated without constraint in the bearing (in bearings with a semi-locating or non-locating bearing function) the bearings can be separated for easier mounting.

FAG Bearing NU304-E-XL-TVP2, Cylindrical roller bearings are available in various designs, the characteristics of which are optimized for different applications depending on the structure of the bearings: The bearings are available in a single or double row design, with different combinations of ribs on the inner and outer ring, a full complement cylindrical roller set and with various cage designs.

FAG Bearing NU304-E-XL-TVP2, ,Single row cylindrical roller bearings with cage are suitable where: • Bearing arrangements are subjected to very high radial loads • Not only high radial forces but also axial loads from one or both directions must be supported by the bearing position (semi-locating or locating bearing function) • Bearing arrangements must have very high rigidity • Axial displacements of the shaft relative to the housing must be compensated without constraint in the bearing (in the case of bearings with a non-locating or semi-locating bearing function) • High radial loads and very high speeds occur but the very high radial load carrying capacity of full complement cylindrical roller bearings is not required • The bearings should be separable (one bearing ring can be removed for easier mounting) • Cylindrical roller bearing with cage/full complement bearing, comparison of speed and load carrying capacity nG = limiting speed Cr = basic dynamic load rating SL1923 = full complement cylindrical roller bearing NJ23 = cylindrical roller bearing with cage

Cylindrical roller bearings with disc cage/with spacers are suitable where: • Bearing arrangements are subjected to very high radial loads and higher speeds occur • High dynamic inertia forces are present • Not only high radial forces but also axial loads from one direction must be supported by the bearing position (semi-locating bearing function) • High shock loads occur • Thermally stable conditions are required in the bearing even at higher speeds • The cages are subjected to high dynamic inertia forces; e. g. in vibratory machinery • Axial displacements of the shaft relative to the housing must be compensated without constraint in the bearing • The bearings should be separable for easier mounting; in vibratory machinery, for example, the bearing ring with circumferential load as well as the ring with point load should have a tight fit Cylindrical roller bearing with full complement bearing/standard cage/disc cage, comparison of speed and load carrying capacity nG = limiting speed Cr = basic dynamic load rating SL1923 = full complement cylindrical roller bearing NJ23 = cylindrical roller bearing with standard cage LSL1923 = cylindrical roller bearing with disc cage

FAG Bearing NU304-E-XL-TVP2, Single row full complement cylindrical roller bearings are suitable where: • Bearing arrangements are subjected to particularly high radial loads • Not only very high radial forces but also high axial loads from one direction must be supported by the bearing position (semi locating bearing function) • Bearing arrangements operating under the conditions described above must have very high rigidity • Axial displacements of the shaft relative to the housing must be compensated without constraint in the bearing • Very high radial loads occur at lower speeds, i. e. the bearings do not need to achieve speeds as high as those of cylindrical roller bearings with cage • Particularly space-saving designs are required despite very high load • The bearings should be separable (not self-retaining) for easier mounting Cylindrical roller bearing with cage/full complement bearing, comparison of speed and load carrying capacity Cr = basic dynamic load rating nG = limiting speed

FAG Bearing NU304-E-XL-TVP2,Double row full complement cylindrical roller bearings are suitable where: • Bearing arrangements are subjected to particularly high radial loads • Not only particularly high radial forces but also axial loads from one or both directions must be supported by the bearing position (semi-locating or locating bearing function) • Bearing arrangements must have very high rigidity • Axial displacements of the shaft relative to the housing must be compensated without constraint in the bearing (in the case of bearings with a non-locating or semi-locating bearing function) • Very high radial loads occur at lower speeds, i. e., the bearings do not need to achieve speeds as high as those of cylindrical roller bearings with cage • Space-saving designs are required despite very high load • The bearings should be separable for easier mounting (bearings with non-locating bearing function) bearing with cage/single row full complement bearing, double row full complement bearing, comparison of speed and load carrying capacity Cr = basic dynamic load rating nG = limiting speed

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