High-strength and high-toughness bearing ring
By setting a reinforcement mechanism and assembly mechanism on the outer wall of the bearing ring, the problem of the ferrule being prone to deformation or breaking under load and impact is solved, high strength and toughness and rapid disassembly and assembly are achieved, reducing downtime and economic losses.
Patent Information
- Application Number
- CN202422147249.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-03
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2034-09-03
AI Technical Summary
Existing bearing rings are prone to deform or break when subjected to large loads and impacts, resulting in frequent replacement, increasing downtime and affecting the normal operation of the factory.
The reinforcement mechanism is provided on the outer wall of the bearing ring body, including No. 1 reinforcement sleeve and No. 2 reinforcement sleeve. The combination structure of the stabilizer plate, reinforcement block and buffer block is welded to enhance the toughness of the ferrule, and the assembly mechanism is used to fix the reinforcement block, so as to achieve rapid disassembly and assembly.
Improves toughness and strength of bearing rings, reduces the need for frequent replacement, reduces downtime, ensures normal operation of the factory, and extends the service life of the reinforcement block.
Smart Images

Figure CN223164900U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of bearing rings, in particular to a high-strength and high-toughness bearing ring. Background Technique
[0002] A bearing ring is an annular part with one or several raceways and is the main component in a rolling bearing. After a rolling bearing is used for a period of time, the lubricating oil on its internal rolling elements will become less, and at the same time, a small amount of dust will be adsorbed. At this time, the entire rolling bearing runs unstably and smoothly, so it is necessary to replenish the lubricating oil regularly.
[0003] In the prior art, when the bearing ring bears a large load and impact, it is very easy to deform or even break, resulting in the failure of the bearing and the need to frequently replace the bearing ring. This not only increases the downtime but also affects the normal operation of the factory, thus causing economic losses. Therefore, a high-strength and high-toughness bearing ring is proposed. Summary of the Utility Model
[0004] The purpose of the utility model is to solve the problems existing in the prior art that not only increase the downtime but also affect the normal operation of the factory, thus causing economic losses, and to propose a high-strength and high-toughness bearing ring.
[0005] To achieve the above purpose, the utility model adopts the following technical scheme: A high-strength and high-toughness bearing ring, including a bearing ring body, a reinforcement mechanism is arranged on the outer wall of the bearing ring body, and an assembly mechanism is arranged on one side of the reinforcement mechanism;
[0006] The reinforcement mechanism includes a first reinforcing sleeve and a second reinforcing sleeve. A plurality of groups of stabilizing plates are welded on both sides of the first reinforcing sleeve and the second reinforcing sleeve. A first reinforcing block is welded on one side of each group of stabilizing plates and near the edge position of one end, and a second reinforcing block is welded on one side of each group of stabilizing plates and near the edge position of the other end.
[0007] Preferably, the assembly mechanism includes a plurality of hexagon bolts. Washers are sleeved on the outer walls of the plurality of hexagon bolts. Circular holes are penetrated and opened at one ends of each group of second reinforcing blocks, and a plurality of threaded grooves are opened on both sides of the bearing ring body.
[0008] Preferably, the first reinforcing sleeve is sleeved on the outer wall of the bearing ring body, the second reinforcing sleeve is sleeved on the outer wall of the bearing ring body, and the two end faces of the first reinforcing sleeve are respectively in contact with the two end faces of the second reinforcing sleeve.
[0009] Preferably, one ends of several groups of the stabilizing plates are respectively in contact with both sides of the bearing ring body, one ends of several groups of the first reinforcing blocks are welded with buffer blocks, and the other sides of several groups of the first reinforcing blocks are respectively in contact with the other ends of several groups of the stabilizing plates.
[0010] Preferably, the other ends of several groups of the buffer blocks are respectively in contact with one ends of several groups of the second reinforcing blocks, and the other sides of several groups of the second reinforcing blocks are respectively in contact with the other sides of several groups of the stabilizing plates.
[0011] Preferably, one sides of several washers are respectively in contact with one ends of several groups of the second reinforcing blocks, and several hexagon bolts respectively pass through the interiors of several round holes and are threadedly connected with several threaded grooves.
[0012] Compared with the prior art, the advantages and positive effects of the present utility model are as follows:
[0013] 1. In the present utility model, by providing a reinforcement mechanism, both sides of the bearing ring body can be reinforced, thereby improving the toughness of the bearing ring body and preventing the bearing ring body from deforming or cracking, ensuring that the bearing ring body can continue to be used without frequent replacement of the bearing ring body, not only reducing the downtime but also preventing the normal operation of the factory from being affected. Coupled with several groups of the first reinforcing blocks and several groups of the second reinforcing blocks, the several groups of the stabilizing plates can be supported, improving the firmness between the several groups of the stabilizing plates, further enhancing the high-strength toughness of the bearing ring body. Secondly, by providing several groups of buffer blocks, the gaps between several groups of the first reinforcing blocks and several groups of the second reinforcing blocks can be supported, and at the same time, a part of the impact force from several groups of the first reinforcing blocks and several groups of the second reinforcing blocks can be offset, improving the service life of several groups of the first reinforcing blocks and several groups of the second reinforcing blocks.
[0014] 2. In the present utility model, by providing an assembly mechanism, several groups of the second reinforcing blocks can be fixed on both sides of the bearing ring body, thereby fixing the first reinforcing sleeve and the second reinforcing sleeve on the outer wall of the bearing ring body. Conversely, the fixing of several groups of the second reinforcing blocks can be released, and it is convenient to remove the first reinforcing sleeve and the second reinforcing sleeve from the outer wall of the bearing ring body, so that the first reinforcing sleeve and the second reinforcing sleeve can be quickly disassembled. In summary, it is convenient to disassemble and assemble the first reinforcing sleeve and the second reinforcing sleeve. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 is a three-dimensional structural schematic diagram of a high-strength and high-toughness bearing ring proposed by the present utility model;
[0016] Figure 2 is a partial exploded structural schematic diagram of the reinforcement mechanism in a high-strength and high-toughness bearing ring proposed by the present utility model;
[0017] Figure 3 This is a partial exploded structural schematic diagram of an assembly mechanism for a high-strength and high-toughness bearing ring proposed by the present utility model;
[0018] Figure 4 This is a structural schematic diagram of a bearing ring body, a first reinforcing sleeve, and a second reinforcing sleeve of a high-strength and high-toughness bearing ring proposed by the present utility model.
[0019] Legend: 1. Bearing ring body; 2. Reinforcement mechanism; 21. First reinforcing sleeve; 22. Second reinforcing sleeve; 23. Stabilizing plate; 24. First reinforcing block; 25. Buffer block; 26. Second reinforcing block; 3. Assembly mechanism; 31. Hexagonal bolt; 32. Washer; 33. Round hole; 34. Thread groove. Specific implementation mode
[0020] In order to more clearly understand the above objects, features, and advantages of the present utility model, the present utility model will be further described below with reference to the drawings and embodiments. It should be noted that, without conflict, the embodiments of the present application and the features in the embodiments may be combined with each other.
[0021] In the following description, many specific details are set forth in order to fully understand the present utility model. However, the present utility model may be implemented in other ways different from those described herein. Therefore, the present utility model is not limited by the specific embodiments disclosed in the following specification.
[0022] Embodiment 1: As Figure 1 - Figure 4 shown, the present utility model provides a high-strength and high-toughness bearing ring, including a bearing ring body 1. A reinforcement mechanism 2 is arranged on the outer wall of the bearing ring body 1, and an assembly mechanism 3 is arranged on one side of the reinforcement mechanism 2;
[0023] The reinforcement mechanism 2 includes a first reinforcing sleeve 21 and a second reinforcing sleeve 22. A number of groups of stabilizing plates 23 are welded to both sides of the first reinforcing sleeve 21 and the second reinforcing sleeve 22. A first reinforcing block 24 is welded to one side of each group of stabilizing plates 23 near the edge position of one end. A second reinforcing block 26 is welded to one side of each group of stabilizing plates 23 near the edge position of the other end. The first reinforcing sleeve 21 is sleeved on the outer wall of the bearing race body 1, and the second reinforcing sleeve 22 is sleeved on the outer wall of the bearing race body 1. The two end faces of the first reinforcing sleeve 21 are respectively in contact with the two end faces of the second reinforcing sleeve 22. One end of each group of stabilizing plates 23 is respectively in contact with both sides of the bearing race body 1. A buffer block 25 is welded to one end of each group of first reinforcing blocks 24. The other side of each group of first reinforcing blocks 24 is respectively in contact with the other end of each group of stabilizing plates 23. The other end of each group of buffer blocks 25 is respectively in contact with one end of each group of second reinforcing blocks 26. The other side of each group of second reinforcing blocks 26 is respectively in contact with the other side of each group of stabilizing plates 23.
[0024] Next, specifically describe the specific settings and functions of this embodiment. Pick up the first reinforcing sleeve 21 and sleeve it on the outer wall of the bearing race body 1. Then pick up the second reinforcing sleeve 22 and sleeve it on the outer wall of the bearing race body 1. The two end faces of the first reinforcing sleeve 21 are in contact with the two end faces of the second reinforcing sleeve 22. Then, through the assembly mechanism 3, the first reinforcing sleeve 21 and the second reinforcing sleeve 22 are fixed on the outer wall of the bearing race body 1. Through the cooperation of the first reinforcing sleeve 21 and the second reinforcing sleeve 22, the outer wall of the bearing race body 1 can be reinforced. Through the limitation of a number of groups of stabilizing plates 23 on both sides of the first reinforcing sleeve 21 and the second reinforcing sleeve 22, the two sides of the bearing race body 1 can be further reinforced, thereby improving the toughness of the bearing race body 1 and preventing the bearing race body 1 from deforming or cracking, ensuring that the bearing race body 1 can continue to be used without frequent replacement of the bearing race body 1, which not only reduces the downtime but also prevents affecting the normal operation of the factory. With the cooperation of a number of groups of first reinforcing blocks 24 and a number of groups of second reinforcing blocks 26, a number of groups of stabilizing plates 23 can be supported, improving the firmness between a number of groups of stabilizing plates 23 and further improving the high-strength toughness of the bearing race body 1. Secondly, by setting a number of groups of buffer blocks 25, the gaps between a number of groups of first reinforcing blocks 24 and a number of groups of second reinforcing blocks 26 can be supported, and at the same time, a part of the impact force from a number of groups of first reinforcing blocks 24 and a number of groups of second reinforcing blocks 26 can be offset, improving the service life of a number of groups of first reinforcing blocks 24 and a number of groups of second reinforcing blocks 26.
[0025] Embodiment 2: As Figure 1 - Figure 4As shown in the figure, the assembly mechanism 3 includes a number of hexagon head bolts 31. Washers 32 are sleeved on the outer walls of the number of hexagon head bolts 31. A number of round holes 33 are respectively formed through one ends of a number of groups of second reinforcing blocks 26. A number of threaded grooves 34 are respectively formed on both sides of the bearing ring body 1. One sides of the number of washers 32 are respectively in contact with one ends of the number of groups of second reinforcing blocks 26. The number of hexagon head bolts 31 respectively pass through the interiors of the number of round holes 33 and are in threaded connection with the number of threaded grooves 34.
[0026] The overall effect achieved by the entire embodiment is that by operating on the number of hexagon head bolts 31 and the number of washers 32 one by one, first pick up one of the washers 32 and sleeved it on the outer wall of one of the hexagon head bolts 31, then insert the hexagon head bolt 31 into one of the round holes 33, and make one end of the hexagon head bolt 31 in contact with one of the threaded grooves 34. At this time, turn the hexagon head bolt 31 to make it threadedly rotate inside the threaded groove 34, and one end of one of the hexagon head bolts 31 can be threaded inside one of the threaded grooves 34, and one of the groups of second reinforcing blocks 26 can be fixed on one side of the bearing ring body 1. Then, perform the above operations on the other number of hexagon head bolts 31 and the number of washers 32 one by one. Furthermore, a number of groups of second reinforcing blocks 26 can be fixed on both sides of the bearing ring body 1, so that the first reinforcing sleeve 21 and the second reinforcing sleeve 22 can be fixed on the outer wall of the bearing ring body 1. On the contrary, by turning the number of hexagon head bolts 31 one by one to make one ends of the hexagon head bolts 31 screw out inside the threaded grooves 34, then take away the hexagon head bolts 31 and the washers 32 on one side, and perform the above operations to screw out the remaining number of hexagon head bolts 31. Furthermore, the fixing of a number of groups of second reinforcing blocks 26 can be released, and it is convenient to remove the first reinforcing sleeve 21 and the second reinforcing sleeve 22 from the outer wall of the bearing ring body 1, so that the first reinforcing sleeve 21 and the second reinforcing sleeve 22 can be quickly disassembled. In summary, it is convenient to disassemble and assemble the first reinforcing sleeve 21 and the second reinforcing sleeve 22.
[0027] Usage method and working principle of the present device: First, when using the bearing ring body 1, pick up the first reinforcing sleeve 21 and put it on the outer wall of the bearing ring body 1, then pick up the second reinforcing sleeve 22 and put it on the outer wall of the bearing ring body 1, and the end faces of the first reinforcing sleeve 21 and the second reinforcing sleeve 22 are in contact with each other. Then, fix the first reinforcing sleeve 21 and the second reinforcing sleeve 22 on the outer wall of the bearing ring body 1 through the assembling mechanism 3. Through the cooperation of the first reinforcing sleeve 21 and the second reinforcing sleeve 22, the outer wall of the bearing ring body 1 can be strengthened. Finally, by operating on a number of hexagon bolts 31 and a number of washers 32 one by one, first pick up one of the washers 32 and put it on the outer wall of one of the hexagon bolts 31, then insert the hexagon bolt 31 into one of the round holes 33, and make one end of the hexagon bolt 31 contact with one of the thread grooves 34. At this time, turn the hexagon bolt 31 so that its internal thread rotates in the thread groove 34, and one end of the hexagon bolt 31 can be threaded into one of the thread grooves 34, and one group of second reinforcing blocks 26 can be fixed on one side of the bearing ring body 1. Then, perform the above operations on the other several hexagon bolts 31 and several washers 32 one by one, and thus several groups of second reinforcing blocks 26 can be fixed on both sides of the bearing ring body 1, and the first reinforcing sleeve 21 and the second reinforcing sleeve 22 can be fixed on the outer wall of the bearing ring body 1.
[0028] The above is only the preferred embodiment of the present invention, and it is not a limitation to the present invention in other forms. Any person skilled in the art may use the disclosed technical content to make changes or modifications into equivalent embodiments with equivalent changes and apply them to other fields. However, as long as it does not depart from the technical solution content of the present invention, any simple modification, equivalent change and modification made to the above embodiments according to the technical essence of the present invention still belong to the protection scope of the technical solution of the present invention.
Claims
1. A high-strength and high-toughness bearing ring, comprising a bearing ring body (1), characterized in that: The outer wall of the bearing ring body (1) is provided with a reinforcement mechanism (2), and an assembly mechanism (3) is arranged on one side of the reinforcement mechanism (2); The reinforcement mechanism (2) includes a first reinforcement sleeve (21) and a second reinforcement sleeve (22). A plurality of groups of stabilizing plates (23) are welded on both sides of the first reinforcement sleeve (21) and the second reinforcement sleeve (22). One end of each of the plurality of groups of stabilizing plates (23) and near the edge position of one end is welded with a first reinforcement block (24). A second reinforcement block (26) is welded on one side of the plurality of groups of stabilizing plates (23) and near the edge position of the other end.
2. The high-strength and high-toughness bearing ring according to claim 1, wherein: The assembly mechanism (3) includes a plurality of hexagon head bolts (31). Washers (32) are sleeved on the outer walls of the plurality of hexagon head bolts (31). A circular hole (33) is penetrated and opened at one end of each of the plurality of groups of second reinforcement blocks (26). A plurality of threaded grooves (34) are opened on both sides of the bearing ring body (1).
3. The high-strength and high-toughness bearing raceway according to claim 1, wherein: The first reinforcement sleeve (21) is sleeved on the outer wall of the bearing ring body (1), and the second reinforcement sleeve (22) is sleeved on the outer wall of the bearing ring body (1), and the end faces of both ends of the first reinforcement sleeve (21) are in contact with the end faces of both ends of the second reinforcement sleeve (22).
4. A high-strength and high-toughness bearing raceway according to claim 3, characterized in that: One end of each of the plurality of groups of stabilizing plates (23) is in contact with both sides of the bearing ring body (1). A buffer block (25) is welded to one end of each of the plurality of groups of first reinforcement blocks (24). The other side of each of the plurality of groups of first reinforcement blocks (24) is in contact with the other end of each of the plurality of groups of stabilizing plates (23).
5. The high-strength and high-toughness bearing raceway according to claim 4, characterized in that: The other end of each of the plurality of groups of buffer blocks (25) is in contact with one end of each of the plurality of groups of second reinforcement blocks (26). The other side of each of the plurality of groups of second reinforcement blocks (26) is in contact with the other side of each of the plurality of groups of stabilizing plates (23).
6. The high-strength and high-toughness bearing raceway according to claim 2, characterized in that: One side of each of the plurality of washers (32) is in contact with one end of each of the plurality of groups of second reinforcement blocks (26). The plurality of hexagon head bolts (31) respectively pass through the interiors of the plurality of circular holes (33) and are threadedly connected to the plurality of threaded grooves (34).