Bearing cover mounting and snap spring mounting machine

By designing a bearing cover and circlip installation machine, the problem that existing equipment can only install covers on one side is solved. Automatic installation of covers and circlips on both sides of the bearing is realized, which improves assembly efficiency.

CN223483195UActive Publication Date: 2025-10-28JIANGSU KUNZHOU PRECISION ELECTROMECHANICAL CO LTD
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Patent Information

Application Number
CN202423124921.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-18
Publication Date
2025-10-28
Estimated Expiration
2034-12-18

AI Technical Summary

Technical Problem

Existing bearing cover installation equipment can only install the cover on one side and requires manual turning, resulting in low efficiency.

Method used

A bearing cover and circlip installation machine is designed, which includes a flexibility detection device, a grease injection device, a loading assembly, a cover feeding assembly, a cover detection device, a circlip feeding assembly, a circlip detection device and a unloading assembly to realize automatic cover installation and circlip assembly on both sides of the bearing.

Benefits of technology

Automatic installation of covers and retaining rings on both sides of the bearing is achieved, which improves assembly efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

A bearing cover mounting and snap spring mounting machine comprises a first workbench, a first feeding disc, a bearing flexibility detection device and a grease injection device are sequentially mounted on the first workbench, a second workbench and a third workbench are sequentially arranged on the upper side face of the first workbench, and a rotary disc is connected to the second workbench and the third workbench. A feeding assembly, a cover conveying assembly, a cover detecting device, a snap spring conveying assembly, a snap spring detecting device and a discharging assembly are sequentially arranged on the periphery of the rotating disc, a second feeding disc is installed on the second workbench, a grease injection device feeds materials into the second feeding disc through a first feeding groove, a third feeding disc is installed on the third workbench, and a second feeding disc is installed on the third workbench. The discharging assembly feeds materials to the third feeding disc through the second feeding groove, a discharging plate is arranged on the discharging assembly of the third workbench, and a receiving plate is arranged at the end of the discharging plate. According to the utility model, two surfaces of the bearing are covered with snap springs, and the bearing assembling efficiency is improved.
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Description

Technical Field

[0001] This utility model relates to the field of bearing technology, specifically to a bearing cover and snap ring mounting machine. Background Technology

[0002] A bearing consists of an outer ring and an inner ring, with rolling elements evenly distributed between them. Lubricating grease is applied to reduce the frictional resistance of the rolling elements. A dust cover is then installed between the outer and inner rings to prevent dust and impurities from entering the bearing and to prevent grease from leaking out. For miniature bearings, dust covers need to be installed using specialized equipment. Since dust covers need to be installed on both sides of the bearing, existing equipment can only install them on one side, requiring manual flipping, which is inefficient. Utility Model Content

[0003] The technical problem to be solved by this utility model is to provide a bearing cover and snap ring mounting machine to address the shortcomings of the prior art.

[0004] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is as follows:

[0005] A bearing cap and snap ring installation machine includes a first worktable, on which a first feeding tray, a bearing flexibility testing device, and a grease injection device are sequentially mounted. A second worktable and a third worktable are sequentially arranged on the side of the first worktable, and a turntable is connected to the second and third worktables. A feeding assembly, a cap feeding assembly, a cap testing device, a snap ring feeding assembly, a snap ring testing device, and a discharging assembly are sequentially arranged around the turntable. A first connecting block is provided on the side of the grease injection device. A second feeding tray is mounted on the second worktable, and a first feeding device is mounted on the side of the second feeding tray. A material tray connecting block one is attached to a first connecting block, and a material feeding groove one is provided between the material tray connecting block one and the first connecting block. A discharge plate one is provided on the unloading assembly of the second workbench. A third material tray is installed on the third workbench. A material tray connecting block two is installed on the side of the third material tray. The material tray connecting block two is attached to the discharge plate one, and a material feeding groove two is provided between the material tray connecting block two and the discharge plate one. A discharge plate two is provided on the unloading assembly of the third workbench, and a receiving plate is provided at the end of the discharge plate two.

[0006] Furthermore, the first connecting block is mounted on the first worktable via a first connecting block support.

[0007] Furthermore, the receiving plate is mounted on the third workbench via a receiving plate support.

[0008] Furthermore, positioning notches are machined between the first connecting block and the first connecting block, as well as between the second connecting block and the first discharge plate.

[0009] Furthermore, a cover is provided on the outside of the second and third workbenches, and a control panel is provided on the cover.

[0010] Compared with the prior art, the bearing cover and snap ring installation machine of this utility model completes grease injection by setting up a flexibility detection device and a grease injection device, and then the loading assembly, cover feeding assembly, cover detection device, snap ring feeding assembly, snap ring detection device and unloading assembly on the second and third worktables realize the installation of cover and snap ring on both sides of the bearing, thereby improving the assembly efficiency of the bearing. Attached Figure Description

[0011] Figure 1 This is a schematic diagram of the structure of this utility model;

[0012] Figure 2 This is a schematic diagram of the external structure of this utility model;

[0013] The components are as follows: 1. First workbench; 2. First feeding tray; 3. Bearing flexibility testing device; 4. Grease injection device; 5. Second workbench; 6. Third workbench; 7. Feeding assembly; 8. Cover feeding assembly; 9. Cover testing device; 10. Snap ring feeding assembly; 11. Snap ring testing device; 12. Unloading assembly; 13. First connecting block; 14. First connecting block support; 15. Second feeding tray; 16. Feeding tray connecting block one; 17. Feeding trough one; 18. Discharge plate one; 19. Third feeding tray; 20. Feeding tray connecting block two; 21. Feeding trough two; 22. Discharge plate two; 23. Receiving plate; 24. Cover; 25. Control panel. Detailed Implementation

[0014] The technical solutions in the embodiments of this utility model will be clearly and completely described below.

[0015] like Figure 1 and Figure 2As shown, a bearing cover and snap ring mounting machine includes a first worktable 1. A first feeding tray 2, a bearing flexibility testing device 3, and a grease injection device 4 are sequentially mounted on the first worktable 1. The bearing flexibility testing device 3 detects the flexibility of the bearing rotation, and the grease injection device 4 injects lubricating grease into the bearing. For details, please refer to Chinese Patent Publication No. CN220893775U, entitled "A Bearing Flexibility Testing and Grease Injection Device." A second worktable 5 and a third worktable 6 are sequentially arranged on the upper side of the first worktable 1. A turntable is connected to the second worktable 5 and the third worktable 6. The turntable... The assembly is sequentially equipped with a feeding component 7, a cover feeding component 8, a cover detection device 9, a snap ring feeding component 10, a snap ring detection device 11, and a discharging component 12. The feeding component 7 clamps the bearing and places it on the fixture of the turntable. The cover feeding component 8 places the dust cover on the bearing workpiece. The cover detection device 9 detects whether the dust cover is installed in place. The snap ring feeding component 10 presses the dust cover into the bearing workpiece to fix it. The snap ring detection device 11 detects whether the snap ring is installed in place. The discharging component 12 picks up the bearing workpiece. For details, please refer to the Chinese patent with publication number CN215747684U, entitled "Automatic Cover and Snap Ring Pressing Machine".

[0016] The grease injection device 4 has a first connecting block 13 on its side. The first connecting block 13 is mounted on the first workbench 1 via a first connecting block support 14. A second feeding tray 15 is mounted on the second workbench 5. A feeding tray connecting block 16 is mounted on the side of the second feeding tray 15. The feeding tray connecting block 16 overlaps the first connecting block 13. A feeding groove 17 is provided between the feeding tray connecting block 16 and the first connecting block 13, and the grease-injected bearing workpiece is fed into the second feeding tray 15 through the feeding groove 17. A discharge plate 18 is provided on the unloading assembly 12 of the second workbench 5. The third... A third feeding tray 19 is installed on the workbench 6. A second feeding tray connecting block 20 is installed on the side of the third feeding tray 19. The second feeding tray connecting block 20 overlaps on the first discharge plate 18. In this embodiment, the first feeding tray connecting block 16 and the first connecting block 13, as well as the second feeding tray connecting block 20 and the first discharge plate 18, are all machined with "L"-shaped positioning notches. They are connected to each other through the "L"-shaped positioning notches and then locked with screws. A feeding groove 21 is opened between the second feeding tray connecting block 20 and the first discharge plate 18. After the bearing is installed with a dust cover and a retaining spring, it is fed into the third feeding tray 19 through the feeding groove 21.

[0017] The unloading assembly 12 of the third workbench 6 is provided with a discharge plate 22, and a receiving plate 23 is provided at the end of the discharge plate 22. The receiving plate 23 is installed on the third workbench 6 through the receiving plate support 24. The bearing with dust cover and snap ring installed is fed into the receiving plate 2.

[0018] The second workbench 5 and the third workbench 6 are provided with a cover 24 on their outer sides. The cover 24 is provided with a control panel 25, which is used to control the operation of the equipment.

[0019] This utility model is not limited to the embodiments described. Those skilled in the art can still make some modifications or changes without departing from the spirit and scope of this utility model. Therefore, the scope of protection of this utility model shall be determined by the scope defined in the claims.

Claims

1. A bearing cover and snap ring mounting machine, characterized in that: The system includes a first workbench, on which a first feeding tray, a bearing flexibility testing device, and a grease injection device are sequentially mounted. A second and third workbench are sequentially arranged on the side of the first workbench, and a turntable is connected to the second and third workbench. A feeding assembly, a cover feeding assembly, a cover detection device, a snap ring feeding assembly, a snap ring detection device, and a discharging assembly are sequentially arranged around the turntable. A first connecting block is provided on the side of the grease injection device. A second feeding tray is mounted on the second workbench, and a feeding tray connecting block is mounted on the side of the second feeding tray. The first feeding tray connecting block overlaps with the first connecting block, and a feeding groove 1 that is mutually connected is provided between the first feeding tray connecting block and the first connecting block. The second workbench unloading assembly is provided with a discharge plate 1. The third workbench is equipped with a third feeding tray, and a second feeding tray connecting block is installed on the side of the third feeding tray. The second feeding tray connecting block overlaps with the discharge plate 1, and a feeding groove 2 that is mutually connected is provided between the second feeding tray connecting block and the discharge plate 1. The third workbench unloading assembly is provided with a discharge plate 2, and a receiving plate is provided at the end of the discharge plate 2.

2. The bearing cover and snap ring mounting machine according to claim 1, characterized in that: The first connecting block is mounted on the first workbench via a first connecting block support.

3. A bearing cover and snap ring mounting machine according to claim 1, characterized in that: The receiving plate is mounted on the third workbench via a receiving plate support.

4. A bearing cover and snap ring mounting machine according to claim 1, characterized in that: The feeding tray connecting block one and the first connecting block, as well as the feeding tray connecting block two and the discharge plate one, are machined with positioning notches.

5. A bearing cover and snap ring mounting machine according to claim 4, characterized in that: The second and third workbenches are equipped with covers on their outer sides, and control panels are mounted on the covers.

Citation Information

Patent Citations

  • Bearing flexibility detection and grease injection device

    CN220893775U