A bearing ring machining apparatus

CN224701714UActive Publication Date: 2026-09-01YUNHE JUNDA BEARING CO LTD
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Patent Information

Application Number
CN202522150731.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-11
Publication Date
2026-09-01
Estimated Expiration
2035-10-11

AI Technical Summary

Technical Problem

但是翻转平板仅通过翻转轴和耐冲击部分与L型支撑架和电机相连接,整个夹持部分和轴承套圈的重量都在翻转平板,翻转平板底部缺少有效支撑,容易受力发生弯曲变形和晃动,稳定性不高影响加工质量

Benefits of technology

通过将多个轴承套圈工件分别放置在多个第二夹块的第二弧槽内部,操作控制器开启多个第一气缸进行收缩运行,第一活塞杆拉动第一推杆和第一夹块,轴承套圈工件在第一弧槽和第二弧槽内部得到有效夹持固定,同时对多个轴承套圈工件进行加工,操作台始终提供有效支撑,整个过程同时进行多个轴承套圈的加工节约时间,操作简单提高作业效率,稳定性较强保障加工质量。

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Abstract

The utility model relates to a bearing ring machining equipment, including operation platform, first clamping block and second clamping block, the operation platform top is provided with the top groove, and the top groove top is fixedly connected with the stand, and the stand top is fixedly connected with the top cover, and the groove top is equipped with the first cylinder, and the first cylinder output is provided with the first piston rod, and the first piston rod side is fixedly connected with the first push rod, and the first clamping block side is connected with the first push rod, and the top groove top is equipped with the second cylinder, and the second cylinder output is provided with the second piston rod, and the second piston rod side is fixedly connected with the second push rod, and the second clamping block is connected with the second push rod, and the first clamping block inboard is provided with the first arc groove, and the second clamping block inboard is provided with the second arc groove, and the bearing ring is placed in the first arc groove and the second arc groove inside, and the top groove top is provided with the controller, and the processing of multiple bearing rings is saved time, and the operation is simple improves the operation efficiency, and the stability is stronger and guarantees the processing quality.
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Description

Technical Field

[0001] This utility model relates to the field of bearing ring production and processing technology, and in particular to a bearing ring processing equipment. Background Technology

[0002] Bearing rings are ring-shaped parts of radial rolling bearings with one or more raceways. Their main function is to ensure the stability and safety of the bearing during normal operation. Utility model patent application number CN202322404009.6 discloses an impact-resistant bearing ring processing equipment, including a flipping part, an impact-resistant part, a clamping part, and bearing rings; the impact-resistant part has four sets, and the four sets of impact-resistant parts are installed on the flipping part; the clamping part is installed on the top of the flipping part; there are three bearing rings, and the three bearing rings are set on the top of the flipping part; the flipping part includes: an L-shaped support frame, a flipping shaft, a limiting ring A, a flipping plate, and a motor; there are two L-shaped support frames, and each of the two L-shaped support frames has a mounting hole; the flipping shaft is rotatably installed on the two L-shaped support frames; there are two limiting rings A, and the two limiting rings A are welded to the outer wall of the flipping shaft; the flipping plate is welded to the outside of the flipping shaft, and the flipping plate has four impact-resistant grooves; the motor is fixedly connected to the L-shaped support frame on the left side, and the motor is also fixedly connected to the left end of the flipping shaft; the impact-resistant part includes: a mounting base and an impact-resistant insert; the mounting base is fixed. The system is mounted on an L-shaped support frame. The impact-resistant insert is slidably mounted inside the mounting base, with rounded corners at its inner end, and is inserted into an impact-resistant groove. The impact-resistant part also includes: a limiting ring B and a limiting ring C; limiting ring B is welded to the outside of the impact-resistant insert; limiting ring C is welded to the outside of the impact-resistant insert; the impact-resistant part also includes: a spring; the spring is mounted outside the impact-resistant insert and is located between the mounting base and the limiting ring C; the clamping part includes: clamping blocks A, clamping seats, and hydraulic cylinders; there are three clamping blocks A, and the three clamping blocks A are welded to the top of the flipping plate; the clamping seats are welded to the top of the flipping plate; there are two hydraulic cylinders, and the two hydraulic cylinders are fixedly mounted on the left side of the clamping seats; the clamping part also includes: clamping blocks B and integrated connecting rods; there are three clamping blocks B, and the right clamping block B is fixedly connected to the two hydraulic cylinders; there are two integrated connecting rods, and the two integrated connecting rods are fixedly mounted inside the three clamping blocks B. However, the flip plate is only connected to the L-shaped support frame and motor through the flipping shaft and the impact-resistant part. The weight of the entire clamping part and the bearing ring is on the flip plate. The bottom of the flip plate lacks effective support, making it easy to bend, deform and shake under stress. Its low stability affects the processing quality. Utility Model Content

[0003] This invention aims to solve the problems existing in the prior art by providing a bearing ring processing equipment that can process multiple bearing rings simultaneously, saving time, simplifying operation and improving work efficiency, and ensuring processing quality through strong stability.

[0004] The technical solution adopted by this utility model to solve its technical problem is as follows: This bearing ring processing equipment includes an operating table, a first clamping block, and a second clamping block. A top groove is provided on the top of the operating table, a column is fixedly connected to the top of the top groove, and a top cover is fixedly connected to the top of the column. An inclined surface is provided on the side of the top cover, and the bottom of the top cover is connected to the top of the operating table. A first cylinder is installed on the top of the top groove, a first piston rod is provided at the output end of the first cylinder, and a first push rod is fixedly connected to the side of the first piston rod. A first movable hole is opened inside the top cover, and the first push rod is inside the first movable hole. The side of the first clamping block is connected to the first push rod. A second cylinder is installed on the top of the top groove, a second piston rod is provided at the output end of the second cylinder, and a second push rod is fixedly connected to the side of the second piston rod. A second movable hole is opened inside the top cover, and the second push rod is inside the second movable hole. The second clamping block is connected to the second push rod, and the side of the second clamping block is in close contact with the side of the top cover. The system comprises multiple first and second clamping blocks, with twice the number of first cylinders. Each second cylinder is positioned between two first cylinders. The side of the first clamping block is connected to two first push rods. The first clamping block has a first arc groove on its inner side, and the second clamping block has a second arc groove on its inner side. Bearing rings are placed inside the first and second arc grooves. A controller is located at the top of the top groove. Multiple bearing ring workpieces are placed inside the second arc grooves of the multiple second clamping blocks. The controller activates the multiple first cylinders to retract, and the first piston rod pulls the first push rod and the first clamping block. The bearing ring workpieces are effectively clamped and fixed inside the first and second arc grooves, allowing for simultaneous processing of multiple bearing ring workpieces. The operating table provides effective support throughout the process. The simultaneous processing of multiple bearing rings saves time, simplifies operation, improves work efficiency, and ensures high processing quality due to its strong stability.

[0005] To further improve the design, an adhesive layer is provided inside the first arc groove. The adhesive layer is made of silicone or rubber. An adhesive layer is also provided in the second arc groove. The adhesive layer provides effective protection, preventing the bearing ring workpiece from directly contacting the first and second clamping blocks. At the same time, it increases friction, further securing the bearing ring workpiece.

[0006] To further improve the system, a display screen is installed on the surface of the controller, along with multiple buttons. The display screen shows device operating information, and the multiple buttons facilitate command input.

[0007] Further improvements include the following: a drain hole is provided on the top of the operating table, which is close to the first clamping block. There are multiple drain holes. An inclined groove is provided on the side of the operating table, which is connected to the multiple drain holes. A placement groove is provided below the inclined groove, and a collection box is placed inside the placement groove. The bearing ring workpieces pass through the drain holes and the inclined groove to reach the collection box, which facilitates the unified collection and transfer of the bearing ring workpieces.

[0008] Further improvements include the following: the bottom of the collection box is equipped with multiple casters; the side of the collection box has a through hole; the side of the operating table has a first chamfer; the side of the placement slot has a second chamfer; and the side of the collection box has a third chamfer. The multiple casters facilitate the movement of the collection box and the transfer of bearing ring workpieces. The through hole provides a leverage point for operators to grasp and operate the workpieces. The first, second, and third chamfers reduce sharp edges and corners, improving both protection and passage efficiency.

[0009] To further improve the system, a first storage tank, a second storage tank, and a third storage tank are provided on the back of the operating table. Bearing ring workpieces that are to be processed or have already been processed can be conveniently stored in the first, second, and third storage tanks nearby, saving time and manpower.

[0010] Further improvements include the following: a horizontal plate is fixedly connected inside the first storage tank, and a vertical plate is fixedly connected inside the first storage tank. The second and third storage tanks are also equipped with horizontal and vertical plates. The horizontal and vertical plates effectively separate the internal spaces of the first, second, and third storage tanks, allowing bearing rings of different specifications to be placed in different subdivided spaces, facilitating management and reducing mutual interference.

[0011] To further improve the design, a sliding door is provided on the front side of the third storage tank. There are two sliding doors, and a push block is fixedly connected to the surface of the sliding door. By operating the push block, the sliding door can be moved, making it easy to open and close the third storage tank. The bearing ring workpiece is further protected in the third storage tank, reducing external influences.

[0012] The beneficial effects of this utility model are: By placing multiple bearing ring workpieces into the second arc grooves of multiple second clamping blocks, the operating controller activates multiple first cylinders to retract, and the first piston rod pulls the first push rod and the first clamping block. The bearing ring workpieces are effectively clamped and fixed in the first and second arc grooves, and multiple bearing ring workpieces are processed simultaneously. The operating table always provides effective support. The entire process allows for the simultaneous processing of multiple bearing rings, saving time. The operation is simple, improving work efficiency, and the strong stability ensures processing quality.

[0013] The bearing ring workpieces pass through the perforation and inclined groove to reach the collection box, facilitating unified collection and transfer of the bearing ring workpieces. Multiple casters make it easy to move the collection box and transfer the bearing ring workpieces. Through holes provide a gripping point for operators to grasp and operate. The first, second, and third chamfers reduce sharp edges and corners, improving both protection and passage efficiency.

[0014] The bearing ring workpieces, whether yet to be processed or already processed, can be conveniently stored in the first, second, and third storage tanks, saving time and manpower. Horizontal and vertical plates effectively separate the internal spaces of the first, second, and third storage tanks, allowing bearing ring workpieces of different specifications to be placed in different subdivided spaces for easy management and reduced mutual interference. The sliding door can be moved by an operating push block, making it easy to open and close the third storage tank. The bearing ring workpieces are further protected in the third storage tank, reducing external impact. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 For the present utility model Figure 1 Enlarged view of point A in the middle; Figure 3 This is a diagram illustrating the movable clamping block of this utility model. Figure 4 For the present utility model Figure 1 Enlarged view at point B in the middle; Figure 5 This is a right view of the structure of this utility model; Figure 6 For the present utility model Figure 5 Enlarged view at point C; Figure 7 This is a view of the back of the structure of this utility model; Figure 8 For the present utility model Figure 7 Enlarged view of point D in the middle.

[0016] Explanation of reference numerals in the attached drawings: 1. Operating table; 2. First clamping block; 3. Second clamping block; 4. Top groove; 5. Column; 6. Top cover; 7. First cylinder; 8. First piston rod; 9. First push rod; 10. First movable hole; 11. Second cylinder; 12. Second piston rod; 13. Second push rod; 14. Second movable hole; 15. First arc groove; 16. Second arc groove; 17. Controller; 18. Adhesive layer; 19. Leakage hole; 20. Inclined groove; 21. Placement groove; 22. Collection box; 23. Moving wheel; 24. Through hole; 25. First chamfer; 26. Second chamfer; 27. Third chamfer; 28. First storage slot; 29. ​​Second storage slot; 30. Third storage slot; 31. Horizontal plate; 32. Vertical plate; 33. Sliding door; 34. Push block. Detailed Implementation

[0017] The following is in conjunction with the appendix Figure 1-8 Further explanation of this embodiment: like Figure 1 , Figure 2 , Figure 3 , Figure 5 , Figure 6 and Figure 7 As shown: This embodiment of a bearing ring processing device includes an operating table 1, a first clamping block 2, and a second clamping block 3. The operating table 1 has a top groove 4, a column 5 fixedly connected to the top of the top groove 4, and a top cover 6 fixedly connected to the top of the column 5. The top cover 6 has inclined surfaces on its sides, and its bottom is connected to the top of the operating table 1. A first cylinder 7 is installed on the top of the top groove 4, and a first piston rod 8 is provided at the output end of the first cylinder 7. A first push rod 9 is fixedly connected to the side of the first piston rod 8. A first movable hole 10 is opened inside the top cover 6, and the first push rod 9 is inside the first movable hole 10. The side of the first clamping block 2 is connected to the first push rod 9. A second cylinder 11 is installed on the top of the top groove 4, and a second piston rod 12 is provided at the output end of the second cylinder 11. A second push rod 13 is fixedly connected to the side of the second piston rod 12. A second movable hole 14 is opened inside the top cover 6. The second push rod 13 is inside the second movable hole 14. The second clamping block 3 is connected to the second push rod 13. The side of the second clamping block 3 is close to the side of the top cover 6. There are multiple first clamping blocks 2, second clamping blocks 3, first cylinders 7 and second cylinders 11. The number of first cylinders 7 is twice that of second cylinders 11. Each second cylinder 11 is between two first cylinders 7. The side of the first clamping block 2 is connected to two first push rods 9 at the same time. The first clamping block 2 is provided with a first arc groove 15 on its inner side. The second clamping block 3 is provided with a second arc groove 16 on its inner side. The bearing ring is placed inside the first arc groove 15 and the second arc groove 16. The top of the top groove 4 is provided with a controller 17. The first arc groove 15 is provided with an adhesive layer 18. The adhesive layer 18 is made of silicone or rubber. The second arc groove 16 is also provided with an adhesive layer 18. The controller 17 is provided with a display screen on its surface. The controller 17 is provided with multiple buttons on its surface.

[0018] like Figure 1-5 As shown: The top of the operating table 1 has a drain hole 19, which is close to the first clamping block 2. There are multiple drain holes 19. The side of the operating table 1 has a sloping groove 20, which is connected to the multiple drain holes 19. Below the sloping groove 20, there is a placement groove 21, and a collection box 22 is placed inside the placement groove 21. The bottom of the collection box 22 is equipped with multiple moving wheels 23. The side of the collection box 22 has a through hole 24. The side of the operating table 1 has a first chamfer 25, the side of the placement groove 21 has a second chamfer 26, and the side of the collection box 22 has a third chamfer 27.

[0019] like Figure 7-8 As shown: A first storage slot 28 is provided on the back of the operating table 1, a second storage slot 29 is provided on the back of the operating table 1, and a third storage slot 30 is provided on the back of the operating table 1. A horizontal plate 31 is fixedly connected inside the first storage slot 28, and a vertical plate 32 is fixedly connected inside the first storage slot 28. The second storage slot 29 and the third storage slot 30 are also provided with a horizontal plate 31 and a vertical plate 32. A sliding door 33 is provided on the front side of the third storage slot 30. There are two sliding doors 33, and a push block 34 is fixedly connected to the surface of the sliding door 33.

[0020] In use, the bearing ring workpieces to be processed are placed in advance inside the first storage tank 28, the second storage tank 29, and the third storage tank 30. The horizontal plate 31 and the vertical plate 32 effectively separate the internal spaces of the first storage tank 28, the second storage tank 29, and the third storage tank 30. Bearing ring workpieces of different specifications and types are placed in different subdivided spaces, which facilitates management and reduces mutual interference. The push block 34 moves the sliding door 33, making it easy to open and close the third storage tank 30. The bearing ring workpieces are further protected in the third storage tank 30, reducing external influences. During processing, the bearing ring workpieces are taken out from the nearest location, and multiple bearing ring workpieces are placed in the second arc grooves 16 of multiple second clamping blocks 3. The controller 17 activates multiple first cylinders 7 to retract. The display screen shows the equipment operation information, and multiple buttons facilitate command input. The first piston rod 8 pulls the first push rod 9 and the first clamping block 2, and the bearing ring workpieces are effectively clamped and fixed in the first arc groove 15 and the second arc groove 16. The setting of the adhesive layer 18 improves the performance of the bearing ring workpieces. Highly effective protection prevents direct contact between the bearing ring workpiece and the first clamping block 2 and the second clamping block 3, while increasing friction to further fix the bearing ring workpiece. Multiple bearing ring workpieces can be processed simultaneously, with the operating table 1 providing effective support at all times. The entire process allows for simultaneous processing of multiple bearing rings, saving time. The operation is simple, improving work efficiency, and its strong stability ensures processing quality. After processing, the operating controller 17 activates multiple first cylinders 7 to extend, moving the first clamping block 2 away from the bearing ring workpiece and the drain hole 19. Multiple second cylinders 11 are then activated to extend, extending the second piston rod 12 and driving the second push rod 13 and the second clamping block 3. The bearing ring workpiece is pushed into the drain hole 19, passing through the drain hole 19 and the inclined groove 20 to reach the collection box 22, facilitating unified collection and transfer. Subsequently, the multiple second cylinders 11 retract, and the second piston rod 12, second push rod 13, and second clamping block 3 return to their original positions, allowing for the clamping, fixing, and processing of the next set of bearing ring workpieces.

[0021] Although the present invention has been illustrated and described with reference to preferred embodiments, those skilled in the art should understand that various changes in form and detail are possible within the scope of the claims.

Claims

1. A bearing ring processing device, comprising an operating table (1), a first clamping block (2), and a second clamping block (3), characterized in that: The top of the operating table (1) is provided with a top groove (4), and a column (5) is fixedly connected to the top of the top groove (4). A top cover (6) is fixedly connected to the top of the column (5). The top cover (6) has a sloping side. The bottom of the top cover (6) is connected to the top of the operating table (1). A first cylinder (7) is installed on the top of the top groove (4). A first piston rod (8) is provided at the output end of the first cylinder (7). A first push rod (9) is fixedly connected to the side of the first piston rod (8). A first movable hole (10) is opened inside the top cover (6). The first push rod (9) is inside the first movable hole (10). The side of the first clamping block (2) is connected to the first push rod (9). A second cylinder (11) is installed on the top of the top groove (4). A second piston rod (12) is provided at the output end of the second cylinder (11). A second push rod (12) is fixedly connected to the side of the second piston rod (12). 3) The top cover (6) has a second movable hole (14) inside. The second push rod (13) is inside the second movable hole (14). The second clamping block (3) is connected to the second push rod (13). The side of the second clamping block (3) is close to the side of the top cover (6). There are multiple first clamping blocks (2), second clamping blocks (3), first cylinders (7) and second cylinders (11). The number of first cylinders (7) is twice that of second cylinders (11). Each second cylinder (11) is between two first cylinders (7). The side of the first clamping block (2) is connected to two first push rods (9) at the same time. The first clamping block (2) has a first arc groove (15) inside. The second clamping block (3) has a second arc groove (16) inside. The bearing ring is placed inside the first arc groove (15) and the second arc groove (16). The top of the top groove (4) has a controller (17).

2. The bearing ring processing equipment according to claim 1, characterized in that: The first arc groove (15) is provided with an adhesive layer (18), which is made of silicone or rubber. The second arc groove (16) is also provided with an adhesive layer (18).

3. The bearing ring processing equipment according to claim 1, characterized in that: The controller (17) has a display screen on its surface and multiple buttons on its surface.

4. The bearing ring processing equipment according to claim 1, characterized in that: The top of the operating table (1) is provided with a drain hole (19), which is close to the first clamping block (2). There are multiple drain holes (19). The side of the operating table (1) is provided with a sloping groove (20), which is connected to multiple drain holes (19). A placement groove (21) is provided below the sloping groove (20), and a collection box (22) is placed inside the placement groove (21).

5. The bearing ring processing equipment according to claim 4, characterized in that: The bottom of the collection box (22) is provided with a moving wheel (23), and there are multiple moving wheels (23). The side of the collection box (22) is provided with a through hole (24), the side of the operating table (1) is provided with a first chamfer (25), the side of the placement slot (21) is provided with a second chamfer (26), and the side of the collection box (22) is provided with a third chamfer (27).

6. The bearing ring processing equipment according to claim 1, characterized in that: The back of the operating table (1) is provided with a first storage slot (28), a second storage slot (29), and a third storage slot (30).

7. The bearing ring processing equipment according to claim 6, characterized in that: The first storage tank (28) is fixedly connected with a horizontal plate (31) and a vertical plate (32). The second storage tank (29) and the third storage tank (30) are also provided with a horizontal plate (31) and a vertical plate (32).

8. A bearing ring processing equipment according to claim 6, characterized in that: The third storage tank (30) is provided with a sliding door (33) on the front side. There are two sliding doors (33), and a push block (34) is fixedly connected to the surface of the sliding door (33).

Citation Information

Patent Citations

  • Impact-resistant bearing ring machining equipment

    CN220680236U