An assembly example using a full complement cylindrical roller
bearing is shown below. Both NSK bearings have a rotating outer ring; the outer ring is mounted into the housing with an interference fit, and the inner ring is mounted on the shaft with a small clearance. The inner ring is held in place by end plates. There is a lubrication hole on the shaft for regreasing with a grease gun. When installing the NSK bearing into the pulley, be sure to push the end face of the outer ring. When installing the full complement cylindrical roller bearing on the shaft, push in the end face of the inner ring. Full complement cylindrical roller bearings have the largest number of rollers and generally have a low cross-sectional height relative to their width. This results in extremely high load carrying capacity and enables a space-saving design; however, full complement cylindrical roller bearings cannot operate at the same high speeds as conventional cage-type cylindrical roller bearings. Some of these bearings are more suitable for axial loads than high radial loads. All components form a unit ready to be assembled. These bearings have two integral flanges on the inner ring and one integral flange on the outer ring so that the shaft can be restrained in one direction. The retaining rings on the opposite side hold the bearings together. Contrary to other full complement cylindrical roller bearings, full complement cylindrical roller bearings have one integral flange on the outer ring and two integral flanges on the outer ring with self-retaining rollers. Therefore, the outer ring with the roller complement can be withdrawn from the inner ring and does not need to provide any additional holding force for the rollers. The MCF 23 is suitable for applications with high loads and low base speeds. They can also be used in C2 to C4 radius clearing groups. They can also be manufactured with different tolerances and radius clearances according to customer requirements. Bearing units are subjected to particularly high radial loads. Bearing locations must not only withstand high radial forces, but also high axial loads from one direction (semi-locating bearing function). Bearing units operating under the above conditions must have high The rigidity of the shaft must compensate for the axial displacement of the shaft relative to the bearing seat without being limited by the bearing. The lower speed will generate a high radial load, and the rotational speed of the bearing does not need to reach the cylinder with the cage ➤ section and ➤ connecting rod The speed of the roller bearing, despite the high load, requires a particularly space-saving design The bearing should be separable (not self-retaining) for easy mounting
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