The disclosure of Japanese Patent Application No. 2012-156637 filed on Jul. 12, 2012 including the specification, drawings and abstract is incorporated herein by reference in its entirety.
1. Field of the Invention
The present invention relates to a jig for a split cage configured by annularly arranging a plurality of cage segments, and relates to a method of assembling a rolling bearing.
2. Description of Related Art
In conventional horizontal axis propeller type wind power generation apparatuses, rolling bearings are used to rotatably support a main shaft to which blades are attached. In recent years, since the sizes of the wind power generation apparatuses are increased, the diameter of the main shaft may exceed several meters. In order to support such a large-sized main shaft, the size of the rolling bearing is also increased. A cage formed of synthetic resin may be used for such a large-sized rolling bearing. The synthetic resin cage is advantageous over a metallic cage assembled by welding in that the synthetic resin cage is light in weight and a sufficient accuracy of the synthetic resin cage is easily achieved. However, it is difficult to integrally form a synthetic resin cage having a large diameter by injection molding. Thus, a split cage that is circumferentially split into a plurality of cage segments is used (e.g., see EP Patent No. 2264325 A1). The split cage is configured by annularly arranging the cage segments.
In
In order to provide the tapered roller bearing 110 in a housing of the wind power generation apparatus, the cage segments 100 are arranged annularly along the outer periphery of the inner ring 112. Then, in a state in which the tapered rollers 113 are provided in the pockets 104 of the cage segments 100, the inner ring 112 is fitted, together with the cage segments 100 and the tapered rollers 113, into the outer ring 111 fitted to the housing.
The cage segments 100 are annularly arranged along the outer periphery of the inner ring 112, and the inner ring 112 is fitted, together with the cage segments 100 and the tapered rollers 113, into the outer ring 111 fitted to the housing, in the state in which the tapered rollers 113 are retained by the cage segments 100. At this stage, since the cage segments 100 are separated from each other, it is necessary to prevent the cage segments 100 and the tapered rollers 113 from coming off from the inner ring 112. Thus, it is difficult to perform the above-described process, and as a result, it takes much man-hours to assemble the tapered roller bearing 110.
An object of the present invention is to provide a jig for a split cage, which facilitates the assembly of a rolling bearing including a split cage configured by annularly arranging a plurality of cage segments, and an assembling method that facilitates the assembly of a rolling bearing including such a split cage.
According to an aspect of the present invention, there is provided a jig for a split cage of external holding type that is configured by annularly arranging a plurality of cage segments in a circumferential direction, wherein each of the cage segments includes a pair of first and second rim portions spaced from each other by a predetermined interval and facing each other, and a plurality of bar portions extending from the first rim portion to the second rim portion, wherein spaces, each of which is surrounded by the bar portions adjacent to each other and the pair of first and second rim portions, are formed as pockets that house rolling elements, and wherein the split cage restricts radially outward movement of the rolling elements housed in the pockets. The jig includes a looped band wound on an outer peripheral side of the first rim portions or the second rim portions of the cage segments that are annularly arranged, wherein the band includes a lock portion that is able to adjust a loop length of the band with respect to an outer peripheral length of the first rim portions or the second rim portions, and that is able to fix the adjusted loop length.
The foregoing and further features and advantages of the invention will become apparent from the following description of example embodiments with reference to the accompanying drawings, wherein like numerals represent like elements, and wherein:
Hereinafter, embodiments of the present invention will be described.
Referring to FIG I, an outer raceway surface 2a on which the tapered rollers 4 roll is formed on the inner periphery of the outer ring 2. An inner raceway surface 3a on which the tapered rollers 4 roll is formed on the outer periphery of the inner ring 3, at a position facing the outer raceway surface 2a. On the outer peripheral portion of the inner ring 3, a large rib portion 3b and a small rib portion 3c are formed on respective opposite sides of the inner raceway surface 3a in the axial direction. The large rib portion 3b and the small rib portion 3c protrude radially outward. The small rib portion 3c and the large rib portion 3b contact axially opposite end faces 4a, 4b of each tapered roller 4, respectively.
Each of the cage segments 6 includes a first rim portion 21, a second rim portion 22, and a plurality of bar portions 23. The first rim portion 21 and the second rim portion 22 are spaced from each other by a predetermined interval in the axial direction, and face each other. The bar portions 23 are formed so as to extend from the first rim portion 21 to the second rim portion 22. Spaces, each of which is surrounded by the two bar portions 23 adjacent to each other and the first and second rim portions 21 and 22, are formed as pockets 24 that house the tapered rollers 4 (refer to
The split cage 5 is a cage of an external holding type. The tapered rollers 4 can be housed in the pockets 24 by inserting the tapered rollers 4 from the radial inside of the split cage 5 (cage segments 6), and the tapered rollers 4 cannot be inserted from the radial outside of the split cage 5. This is because lug portions, which can make contact with the tapered rollers 4 in the pockets 24, are formed on the outer peripheral side of the split cage 5 (cage segments 6), as shown in
Further, as shown in
When the tapered roller bearing 1 including the split cage 5 having the above-described configuration is assembled, there is a possibility that the cage segments 6 may be separated from each other. Thus, during assembling of the tapered roller bearing 1, a jig for the split cage 5 is used. As shown in
The band 10 will be described. The band 10 is formed of a belt-shaped member having a width that is equal to or slightly smaller than the width (axial dimension) of the first rim portions 21. In this embodiment, the band 10 is made of a metal, and is bent in a looped shape as a whole. The band 10 has a lock portion 11 that is able to adjust a loop length of the band 10 with respect to an outer peripheral length of the first rim portions 21 (rim 25), and that is able to fix the adjusted loop length.
The lock portion 11 is provided at one end portion 15a of a band body 15. A hole 11a is formed in the lock portion 11. The band body 15 is inserted through the hole 11a from the other end 15b. A lug (not shown) is formed in the hole 11a. Further, an engagement portion that is engaged with the lug is formed in the other end portion 15b-side of the band body 15. Thus, the band body 15 can be moved with respect to the lock portion 11 in one direction (direction indicated by an arrow P in
Thus, the band body 15 is disposed along the outer periphery of the rim 25 of the split cage 5 in a state in which the cage segments 6 are annularly arranged. By pulling the other end portion 15b of the band body 15 passed through the lock portion 11, the rim 25 of the split cage 5 can be fastened radially inward by the band 10.
As described above, the assembled state of the split cage 5, that is, the state of the split cage 5 assembled by annularly arranging the cage segments 6 is maintained, by winding the band 10 on the outer peripheral side of the first rim portions 21 of the cage segments 6 (the rim 25 of the split cage 5). Further, the split cage 5 is fastened with the band 10 by adjusting the loop length of the band 10 with the use of the lock portion 11 in accordance with the outer peripheral length of the first rim portions 21 (rim 25). Thus, it is possible to effectively prevent the cage segments 6 from being separated from each other, and therefore, it is possible to maintain the integrity of the split cage 5 including the cage segments 6.
Further, as shown in
Further, as shown in
In a state in which the connecting pin 18 is inserted in both of the holes 16b, 17b, the band segments 16, 17 are connected to each other. However, when the connecting pin 18 is removed from the holes 16b, 17b, the band segments 16, 17 are disconnected from each other. The connecting pin 18 is pulled from the holes 16b, 17b, in its longitudinal direction that coincides with the axial direction of the tapered rollers 4. The function of the connecting pin 18 will be explained later in the description of a method of assembling a tapered roller bearing.
Description will be hereinafter made as to the method of assembling the tapered roller bearing 1 including the split cage 5 formed of the cage segments 6, and configured as described above, with the use of the jig (band 10) according to this embodiment.
As shown in
In this first step, the band 10 is wound on the outer peripheral side of the first rim portions 21 (rim 25) of the cage segments 6 that are annularly arranged along the outer periphery of the inner ring 3, as shown in
Next, in a second step, the outer ring 2 is caused to externally contact the tapered rollers 4 retained by the split cage 5. Namely, the semi-finished product formed of the inner ring 3, the tapered rollers 4 and the split cage 5 is fitted in the outer ring 2. The process of fitting the inner ring 3, the tapered rollers 4 and the split cage 5 in the outer ring 2 can be easily performed, since the inner ring 3, the tapered rollers 4 and the split cage 5 have been integrated to form an integrated unit in the first step. Further, in the second step, after the outer ring 2 is caused to externally contact the tapered rollers 4, the connecting pin 18 (refer to
As described above, with the jig for the split cage 5 according to this embodiment, it is possible to prevent the cage segments 6 from being separated from each other, and accordingly, it is possible to ensure the integrity of the split cage 5 including the cage segments 6. According to the method of assembling the tapered roller bearing 1 by using the jig (band 10), it is possible to prevent the cage segments 6 from being separated from each other, and accordingly, it is possible to maintain the split cage 5 in the annular shape. Further, since the semi-finished product formed of the inner ring 3, the tapered rollers 4 and the split cage 5 is obtained as an integrated unit, the process of fitting the semi-finished product obtained as an integrated unit (the inner ring 3, the tapered rollers 4 and the split cage 5) in the outer ring 2 can be easily performed. Namely, a process of fitting the tapered roller bearing between a main shaft and a housing is performed as follows. The semi-finished product, in which the tapered rollers 4 are disposed in the pockets 24 of the cage segments 6 annularly arranged along the outer periphery of the inner ring 3, is obtained, and the inner ring 3 of the semi-finished product is fitted to an outer periphery of the main shaft, and then, the semi-finished product is fitted in the outer ring 2 that has been fitted in the housing. However, with the use of the jig according to the embodiments, it is possible to prevent the cage segments 6 and the like from being separated from each other, and thus, it is possible to obtain the semi-finished product as an integrated unit. Accordingly, the process of fitting the tapered roller bearing in a device including a main shaft and a housing can be easily performed.
The configuration of the jig for the split cage 5 according to the present invention is not limited to the configuration shown in the accompanying drawings, and the jig for the split cage 5 may have other configurations in the scope of the present invention. For example, the lock portion 11 of the band 10 may have a configuration other than the configuration shown in the accompanying drawings. Further, in the above-mentioned embodiment, explanation has been made as to the case where the tapered roller bearing is employed as a rolling bearing. However, the present invention may be also applied to the case where a cylindrical roller bearing is employed. In this case as well, the jig (band 10) as described above can be used.
With the use of the jig for the split cage according to the present invention, the cage segments and the rolling elements can be prevented from being separated from each other, and the inner ring, the split cage and the rolling elements can be integrated to form an integrated unit. Since this integrated unit is fitted in the outer ring, the assembly of a rolling bearing is facilitated. In the method of assembling the rolling bearing according to the present invention, the cage segments can be prevented from being separated from each other, and accordingly, the split cage can be maintained in the annular shape. Thus, the inner ring, the rolling elements and the split cage can be integrated to form an integrated unit. Thus, the process of fitting the inner ring, the rolling elements and the split cage, which have been integrated to form the integrated unit, in the outer ring can be easily performed.
Number | Date | Country | Kind |
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2012-156637 | Jul 2012 | JP | national |