Claims
- 1. A radial roller bearing comprising:
an outer race having a cylindrical portion and first and second flanges extending radially inward from opposite axial ends of the cylindrical portion, respectively, hardness or strength of the cylindrical portion in a vicinity of the first flange being different from that in a vicinity of the second flange, and rollers arranged circumferentially inside the cylindrical portion so as to come in slidable contact therewith, wherein a shape of the first flange is different from that of the second flange for identifying an axial side of the outer race on which either the first flange or the second flange is positioned.
- 2. A radial roller bearing according to claim 1, wherein an inner diameter of the first flange is different from that of the second flange.
- 3. A radial roller bearing according to claim 2, wherein the hardness or strength of the cylindrical portion in a vicinity of the second flange is lower than that in a vicinity of the first flange and the inner diameter of the second flange is larger than that of the first flange.
- 4. A radial roller bearing according to claim 1, wherein one of the first and second flanges is provided with a notch.
- 5. A radial roller bearing according to claim 1, wherein one of the first and second flanges is provided with a projection.
- 6. A radial roller bearing comprising:
an outer race having a cylindrical portion and first and second flanges extending radially inward from opposite axial ends of the cylindrical portion, respectively, hardness or strength of the cylindrical portion in a vicinity of the first flange being different from that in a vicinity of the second flange, and rollers arranged circumferentially inside the cylindrical portion so as to come in slidable contact therewith, wherein one of the first and second flanges is provided with a mark for identifying an axial side of the outer race on which either the first flange or the second flange is positioned.
- 7. A radial roller bearing according to claim 6, wherein the mark is a notch provided in the one of the first and second flanges.
- 8. A radial roller bearing according to claim 6, wherein the mark is a projection provided in the one of the first and second flanges.
- 9. A rotating apparatus having a rotating shaft and a pair of radial roller bearings for rotatably holding the rotating shaft, radial load acting on the rotating shaft between the pair of radial roller bearings, each of the radial roller bearings comprising:
an outer race having a cylindrical portion and first and second flanges extending radially inward from opposite axial ends of the cylindrical portion, respectively, hardness or strength of the cylindrical portion in a vicinity of the first flange being higher than that in a vicinity of the second flange; and rollers arranged circumferentially inside the cylindrical portion so as to come in slidable contact therewith, wherein a shape of the first flange is different from that of the second flange for identifying an axial side of the outer race on which either the first flange or the second flange is positioned and, further, wherein the radial roller bearing is assembled so as to orient the first and second flanges in an axial direction of the rotating shaft so that the radial load causes bearing pressure intensively applied to the cylindrical portion in the vicinity of the first flange rather than the cylindrical portion in the vicinity of the second flange.
- 10. A rotating apparatus according to claim 9, wherein an inner diameter of the first flange is different from that of the second flange.
- 11. A rotating apparatus according to claim 9, wherein the inner diameter of the first flange is smaller than that of the second flange.
- 12. A rotating apparatus according to claim 9, wherein one of the first and second flanges is provided with a notch.
- 13. A rotating apparatus according to claim 9, wherein one of the first and second flanges is provided with a projection.
- 14. A rotating apparatus having a rotating shaft and a pair of radial roller bearings for rotatably holding the rotating shaft, radial load acting on the rotating shaft between the pair of radial roller bearings, each of the radial roller bearings comprising:
an outer race having a cylindrical portion and first and second flanges extending radially inward from opposite axial ends of the cylindrical portion, respectively, hardness or strength of the cylindrical portion in a vicinity of the first flange being higher than that in a vicinity of the second flange; and rollers arranged circumferentially inside the cylindrical portion so as to come in slidable contact therewith, wherein, one of the first and second flanges is provided with a mark for identifying an axial side of the outer race on which either the first flange or the second flange is positioned, and, further, wherein the radial roller bearing is assembled so as to orient the first and second flanges in an axial direction of the rotating shaft so that the radial load causes bearing pressure intensively applied to the cylindrical portion in the vicinity of the first flange rather than the cylindrical portion in the vicinity of the second flange.
- 15. A rotating apparatus according to claim 14, wherein the mark is a notch provided in the one of the first and second flanges.
- 16. A rotating apparatus according to claim 14, wherein the mark is a projection provided in the one of the first and second flanges.
- 17. A rotating apparatus according to claim 9 or 14, further comprising:
A pump installed on the rotating shaft for sucking and discharging fluid according to rotation of the rotating shaft, the pump generating the radial load, wherein the first flange is positioned nearer to the pump in an axial direction of the rotating shaft, compared to the second flange.
- 18. A method of manufacturing a rotating apparatus having a rotating shaft and a pair of radial roller bearings for rotatably holding the rotating shaft, radial load acting on the rotating shaft between the pair of radial roller bearings, each of the radial roller bearings comprising
an outer race having a cylindrical portion and first and second flanges extending radially inward from opposite axial ends of the cylindrical portion, respectively, hardness or strength of the cylindrical portion in a vicinity of the first flange being higher than that in a vicinity of the second flange, and rollers arranged circumferentially inside the cylindrical portion so as to come in slidable contact therewith, comprising steps of:
identifying an axial side of the outer ring of each of the radial roller bearings on which either the first flange or the second flange is positioned; and assembling the each of the radial roller bearings so as to orient the first and second flanges in an axial direction of the rotating shaft so that the radial load causes bearing pressure intensively applied to the cylindrical portion in the vicinity of the first flange rather than the cylindrical portion in the vicinity of the second flange.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2000-339061 |
Nov 2000 |
JP |
|
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application is based upon and claims the benefit of priority of Japanese Patent Application No. 2000-339061 filed on Nov. 7, 2000, the content of which is incorporated herein by reference.