Deep groove ball bearing and differential
11614121 · 2023-03-28
Assignee
Inventors
Cpc classification
F16C19/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C33/3887
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C33/41
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2240/70
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2361/61
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C19/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C33/583
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
The present invention proposes a deep groove ball bearing, having an outer ring, an inner ring, spherical rollers located between the inner ring and outer ring, and a cage for holding the spherical rollers. In an axial direction, the inner ring has a first inner ring shoulder at a first side, and a second inner ring shoulder at a second side opposite the first side; and a first inner ring shoulder diameter of the first inner ring shoulder is configured to be larger than a second inner ring shoulder diameter of the second inner ring shoulder. The present invention further proposes a differential including the deep groove ball bearing.
Claims
1. A deep groove ball bearing, comprising: an outer ring, an inner ring, spherical rollers located between the inner ring and outer ring, and a cage for holding the spherical rollers, wherein in an axial direction, the inner ring has a first inner ring shoulder at a first side, and a second inner ring shoulder at a second side opposite the first side, and wherein a first inner ring shoulder diameter of the first inner ring shoulder is configured to be larger than a second inner ring shoulder diameter of the second inner ring shoulder, wherein the second inner ring shoulder diameter IRSD2, an inner ring raceway groove bottom diameter IRRD of the inner ring and the diameter RBD of the spherical rollers satisfy the following relation (1):
2. The deep groove ball bearing according to claim 1, wherein a transitional part between the inner ring raceway and the first inner ring shoulder is chamfered or rounded; and/or a transitional part between the inner ring raceway and the second inner ring shoulder is chamfered or rounded.
3. The deep groove ball bearing according to claim 1, further comprising a bearing sealing structure arranged between the outer ring and the inner ring, so that the interior of the deep groove ball bearing is sealed with respect to the outside.
4. A differential comprising: a differential shaft, and the deep groove ball bearing according to claim 1, wherein the deep groove ball bearing is mounted on the differential shaft.
5. A deep groove ball bearing, comprising: an outer ring, an inner ring, spherical rollers located between the inner ring and outer ring, and a cage for holding the spherical rollers, wherein in an axial direction, the inner ring has a first inner ring shoulder at a first side, and a second inner ring shoulder at a second side opposite the first side, and wherein a first inner ring shoulder diameter of the first inner ring shoulder is configured to be larger than a second inner ring shoulder diameter of the second inner ring shoulder, wherein the second inner ring shoulder diameter IRSD2, an inner ring raceway groove bottom diameter IRRD of the inner ring and the diameter RBD of the spherical rollers satisfy the following relation (1):
6. A deep groove ball bearing, comprising: an outer ring, an inner ring, spherical rollers located between the inner ring and outer ring, and a cage for holding the spherical rollers, wherein in an axial direction, the inner ring has a first inner ring shoulder at a first side, and a second inner ring shoulder at a second side opposite the first side, and wherein a first inner ring shoulder diameter of the first inner ring shoulder is configured to be larger than a second inner ring shoulder diameter of the second inner ring shoulder, wherein the second inner ring shoulder diameter IRSD2, an inner ring raceway groove bottom diameter IRRD of the inner ring and the diameter RBD of the spherical rollers satisfy the following relation (1):
7. A deep groove ball bearing, comprising: an outer ring, an inner ring, spherical rollers located between the inner ring and outer ring, and a cage for holding the spherical rollers, wherein in an axial direction, the inner ring has a first inner ring shoulder at a first side, and a second inner ring shoulder at a second side opposite the first side, and wherein a first inner ring shoulder diameter of the first inner ring shoulder is configured to be larger than a second inner ring shoulder diameter of the second inner ring shoulder, wherein the second inner ring shoulder diameter IRSD2, an inner ring raceway groove bottom diameter IRRD of the inner ring and the diameter RBD of the spherical rollers satisfy the following relation (1):
8. A deep groove ball bearing, comprising: an outer ring, an inner ring, spherical rollers located between the inner ring and outer ring, and a cage for holding the spherical rollers, wherein in an axial direction, the inner ring has a first inner ring shoulder at a first side, and a second inner ring shoulder at a second side opposite the first side, and wherein a first inner ring shoulder diameter of the first inner ring shoulder is configured to be larger than a second inner ring shoulder diameter of the second inner ring shoulder, wherein an inner ring width IRW of the inner ring in the axial direction and an outer ring width ORW of the outer ring in the axial direction satisfy the following relation:
IRW−ORW≥1 mm, or
ORW−IRW≥1 mm.
9. A deep groove ball bearing, comprising: an outer ring, an inner ring, spherical rollers located between the inner ring and outer ring, and a cage for holding the spherical rollers, wherein in an axial direction, the inner ring has a first inner ring shoulder at a first side, and a second inner ring shoulder at a second side opposite the first side, and wherein a first inner ring shoulder diameter of the first inner ring shoulder is configured to be larger than a second inner ring shoulder diameter of the second inner ring shoulder, wherein the first inner ring shoulder has a first inner ring shoulder end face at the first side, and the second inner ring shoulder has a second inner ring shoulder end face at the second side, wherein the distance from the centre of curvature of an inner ring raceway to the first inner ring shoulder end face and the distance from the centre of curvature of the inner ring raceway to the second inner ring shoulder end face are not equal, and the larger value IRSW of the two distances and an inner ring width IRW of the inner ring in the axial direction satisfy the following relation:
IRSW/IRW≥0.51.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
DETAILED DESCRIPTION OF THE INVENTION
(6) In view of the abovementioned problems in the prior art, the inventors have designed and modified component parts of a deep groove ball bearing after researching the structure of deep groove ball bearings and the forces sustained thereby, and propose an improved deep groove ball bearing after a series of experimental tests, to enable the bearing to be used in structures that sustain a higher axial load at one side in the axial direction (e.g. structures like differential shafts) while still benefiting from the advantages of deep groove ball bearings in being structurally simple and easy to install.
(7)
(8) The deep groove ball bearing 1 according to some embodiments comprises an outer ring 11, an inner ring 12, spherical rollers 13 arranged between the inner ring 12 and outer ring 11, and a cage 14 for holding the spherical rollers 13.
(9) As shown in
(10) As shown in
(11) As shown in
(12) As shown in
(13) As a result of this improvement, the first inner ring shoulder 121 is larger than the second inner ring shoulder 122, and is thus able to sustain a larger axial force, e.g. the axial component of force Fa shown in
(14) Further, in order to enable the deep groove ball bearing to be used more effectively in structures sustaining a larger axial force at one side, the deep groove ball bearing inner ring and outer ring, etc. have been further researched and optimized, and the relationship among the inner ring shoulders, outer ring shoulders and spherical rollers is also proposed.
(15) For example, the second inner ring shoulder diameter IRSD2, the inner ring raceway groove bottom diameter IRRD and the diameter RBD of the spherical rollers can satisfy the following relation (1):
(16)
(17) Furthermore, after in-depth research and design and experimental tests, the present invention proposes the concept of “shoulder difference/ball diameter ratio” for the first time; specifically, the first inner ring shoulder diameter IRSD1, the second inner ring shoulder diameter IRSD2 and the diameter RBD of the spherical rollers can satisfy the following relation (2):
(18)
(19) Through the relations (1) and (2) above, and especially because the “shoulder difference/ball diameter ratio” has been designed, it is possible to optimize the customized deep groove ball bearing; specifically, the first inner ring shoulder diameter IRSD1 is not simply configured to be larger than the second inner ring shoulder diameter IRSD2, but the relationship among the first and second inner ring shoulders, the inner ring raceway and the spherical rollers is also taken into account at the same time, to enable the modified deep groove ball bearing to reliably sustain a larger axial load at one side, while ensuring simplicity of the deep groove ball bearing manufacturing process and greater stability of operation of the structure in which it is installed.
(20) In addition, the shoulder difference/ball diameter ratio can also have different ranges, depending on the structure in which the deep groove ball bearing is used and the forces sustained thereby. For example, but without limitation:
(21)
(22) That is to say, the shoulder difference/ball diameter ratio may have a value greater than or equal to 0.05 or greater than or equal to 0.1 or greater than or equal to 0.125 or greater than or equal to 0.15, and may also be a value in any range formed by the four endpoint values 0.05, 0.1, 0.125 and 0.15, e.g. the range of 0.05-0.1 or 0.1-0.125 or 0.125-0.15, etc.
(23) In addition, in order to better adapt to the installation and force-bearing needs of different structures, the present invention also proposes improvements in other respects. The outer ring width and inner ring width of the bearing can be set differently according to the needs of the structure in which the deep groove ball bearing in some embodiments of the present invention is used. For example, in the exemplary differential application shown in
IRW−ORW≥1 mm
(24) That is to say, the width IRW of the inner ring 12 is greater than the width ORW of the outer ring 11, thus the inner ring 12 protrudes slightly relative to the outer ring 11.
(25) It can thus be understood that the inner ring width IRW and outer ring width ORW can also be configured to satisfy the following relation, according to the actual needs of other structures:
ORW−IRW≥1 mm
(26) That is to say, the width IRW of the inner ring 12 is smaller than the width ORW of the outer ring 11, thus the inner ring 12 is recessed slightly relative to the outer ring 11.
(27) In addition, the first inner ring shoulder 121 has a first inner ring shoulder end face at the first side, and the second inner ring shoulder 122 has a second inner ring shoulder end face at the second side. As in a conventional deep groove ball bearing, the distance from the centre of curvature of the inner ring raceway to the first inner ring shoulder end face and the distance from the centre of curvature of the inner ring raceway to the second inner ring shoulder end face can be equal. However, according to some improved embodiments of the present invention, the distance from the centre of curvature of the inner ring raceway to the first inner ring shoulder end face and the distance from the centre of curvature of the inner ring raceway to the second inner ring shoulder end face are not equal, and the relationship between the larger value IRSW of the two distances and the inner ring width IRW is preferably configured to satisfy the following relation:
(28)
(29) Further, according to a preferred form as shown in
(30) In this way, the first inner ring shoulder 121 not only has a larger diameter at the first side (i.e. there is a difference in diameter between the first and second inner ring shoulders) but also has a larger width, enabling the first inner ring shoulder 121 to sustain a higher axial load from the first side more effectively.
(31) According to a further improvement, a transitional part between the inner ring raceway and the first inner ring shoulder 121 (e.g. the region indicated by the dotted-line circle in
(32) In addition, depending on application demands, the deep groove ball bearing 1 may also comprise a bearing sealing structure (not shown) arranged between the outer ring 11 and inner ring 12, so that the interior of the deep groove ball bearing (including the spherical rollers, the cage and the raceways, etc.) is sealed with respect to the outside. This sealing structure is for example a dust-proof sealing cap, a non-contact rubber sealing ring, a contact rubber sealing ring, etc.
(33) The deep groove ball bearing according to some embodiments of the present invention can be used for deep groove ball bearings of different dimensional specifications very effectively, enabling such bearings to be used very effectively in structures that need to sustain a higher axial load at one side.
(34) For this purpose, the inventor of the present invention has carried out tests for several application scenarios. The objects of testing were a deep groove ball bearing having conventional external dimensions and the improved deep groove ball bearing according to some embodiments of the present invention.
(35) For example, one of the tests was carried out on bearings having the same external dimensions, specifically an inner ring inner diameter of 45 mm, an outer ring outer diameter of 85 mm and a width of 20 mm, and the test was carried out in extreme operating conditions of a radial force of 27934 N and an axial force of 22196 N.
(36) The test results show that in the conventional deep groove ball bearing, the maximum contact pressure between the spherical roller and the inner ring raceway can reach about 5100 MPa. In the deep groove ball bearing according to some embodiments, the contact pressure between the spherical roller and the inner ring raceway can be reduced to about 4100 MPa.
(37) The results of a large amount of experimentation and research show that compared with the conventional deep groove ball bearing, the improved deep groove ball bearing according to some embodiments has significantly reduced contact pressure, thus avoiding early bearing failure due to excessive contact pressure.
(38) This improved deep groove ball bearing can be used in a variety of scenarios, e.g. in a differential. Thus, the present invention also proposes a differential, comprising deep groove ball bearings according to the embodiments described above, mounted on a differential shaft. As shown in
(39) Forms of implementation of the solution proposed in the present disclosure have been described in detail above with reference to preferred embodiments; however, those skilled in the art will understand that various alterations and changes could be made to the particular embodiments above without deviating from the concept of the present disclosure, and the various technical features and structures proposed in the present disclosure could be combined in various ways without exceeding the scope of protection of the present disclosure, which is determined by the attached claims.