A bearing machining turn-over device

CN224739419UActive Publication Date: 2026-09-11XINCHANG PUYOU ELECTROMECHANICAL TECH CO LTD
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Patent Information

Application Number
CN202522288743.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-29
Publication Date
2026-09-11
Estimated Expiration
2035-10-29

AI Technical Summary

Technical Problem

[0004]本实用新型的目的在于提供一种轴承加工周转装置,以解决上述背景技术中提出现有的一些装置在运输过程中因限位功能不足导致轴承发生偏移、碰撞损伤及影响旋转精度的问题

Benefits of technology

在对轴承进行周转时,通过将轴承放置在第三限位组件上,然后利用第二限位组件对轴承在第三限位组件上的位置进行限定,防止其在转运过程中因振动和颠簸而发生移动、倾倒和相互碰撞,从而降低表面划伤、边缘崩缺,保障轴承的加工精度与表面质量,通过支撑组件和支撑盒的配合,能够对第二限位组件和第三限位组件的位置高度进行调整,然后能够让第三限位组件对不同尺寸的轴承进行支撑,能够提升装置的通用性和适用范围,然后利用第一限位组件和支撑组件的配合,能够对支撑组件在支撑盒内腔中的位置进行限定。

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Abstract

The utility model relates to processing turnover device technical field, specifically disclose a bearing processing turnover device, include: handrail, still include: a plurality of clamping components, clamping components set up in the inside of the box subassembly, clamping components are used for clamping bearing, clamping components include two support box, the inner chamber of two support box all slidingly connected with support components, two support box upper portion all are fixedly connected with first limiting component, wherein one support component upper portion fixedly connected with second limiting component, another support component upper portion all are fixedly connected with third limiting component. When the turnover to bearing, through the bearing is placed on the third limiting component, then utilizes second limiting component to limit the position of bearing on the third limiting component, prevents its movement, dumping and mutual collision because of vibration and jolt in the process of transfer, thereby reduces the surface scratch, edge collapse, guarantees the machining precision and surface quality of bearing.
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Description

Technical Field

[0001] This utility model relates to the field of processing and turnover devices, specifically a bearing processing and turnover device. Background Technology

[0002] Bearing processing turnover equipment refers to specialized tooling equipment used in the bearing manufacturing process to safely and orderly transport, store, and transfer bearing workpieces between various processes. It is widely used in production links such as turning, heat treatment, grinding, and assembly. Its main function is to protect bearings from bumps, scratches, and contamination, while improving logistics efficiency and on-site management. Common bearing processing turnover equipment includes material racks, material trays, turnover boxes, pallets, etc., which are usually made of metal or engineering plastics. They are designed with partition grooves or positioning structures according to the size and process requirements of the bearings to achieve neat placement and batch transfer of workpieces.

[0003] However, some existing bearing processing and turnover devices lack sufficient limiting functions in the transportation process. Many devices only use open pallets or simple support structures and do not design dedicated positioning mechanisms for the bearing's shape characteristics (such as rings and rolling elements). This causes the bearing to easily move axially or radially when the conveyor belt accelerates, decelerates, or turns. This unrestrained motion state not only causes the bearing surface to collide with the edge of the device or other workpieces, resulting in surface defects such as scratches and bumps, but may also cause internal structural damage due to inertial impact, seriously affecting the bearing's rotational accuracy and service life. Therefore, we propose a bearing processing and turnover device. Utility Model Content

[0004] The purpose of this utility model is to provide a bearing processing and turnover device to solve the problems mentioned in the background art, such as the bearing shifting, collision damage and reduced rotation accuracy caused by insufficient limiting function during transportation of some existing devices.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a bearing processing and turnover device, comprising: a handrail; It also includes: a turnover cart body, which is set on one side of the handrail and is used for turnover and transportation of bearings. Several first sliding grooves are opened in the middle of the turnover cart body. Several drawer assemblies are provided, which are disposed in the inner cavity of the first slide groove. The drawer assemblies are used to prevent external dust from falling onto the bearing. Several clamping components are disposed inside the drawer assembly. The clamping components are used to clamp the bearing. The clamping components include two support boxes. Support components are slidably connected to the inner cavity of each support box. A first limiting component is fixedly connected to the upper part of each support box. A second limiting component is fixedly connected to the upper part of one support component. A third limiting component is fixedly connected to the upper part of the other support component.

[0006] The support assembly includes a third slider that is slidably connected to the inner cavity of an adjacent support box. A first support block is fixedly connected to the upper part of the third slider, and several limiting holes are provided on the side of the third slider near the first limiting assembly.

[0007] The first limiting component includes a housing fixedly connected to an adjacent support box, with the inner cavity of the housing communicating with the inner cavity of the support box. A connecting shaft is slidably connected to the inner cavity of the housing, and a second slider is slidably connected to the inner cavity of the housing. The connecting shaft is fixedly connected to the second slider. A limiting rod is fixedly connected to the side of the second slider away from the connecting shaft. The limiting rod is slidably connected to the housing and to the inner cavity of an adjacent limiting hole. A connecting block is fixedly connected to the side of the connecting shaft away from the second slider. A first spring is wound around the outer surface of the connecting shaft. The two sides of the first spring are fixedly connected to the side of the second slider away from the limiting rod and the side of the inner wall of the housing away from the second slider, respectively.

[0008] The second limiting component includes a second support block fixedly connected to the upper end of the adjacent first support block. A slide rod is slidably connected to the middle of the second support block. A pressure plate is fixedly connected to the side of the slide rod near the third limiting component. The pressure plate is made of rubber material. A second spring is wound around the outer surface of the slide rod. The two sides of the second spring are fixedly connected to the side of the pressure plate away from the third limiting component and the side of the second support block near the third limiting component, respectively.

[0009] The third limiting component includes a third support block fixedly connected to the upper end of the adjacent first support block. A partition is fixedly connected to the side of the third support block near the second limiting component. A support shaft is fixedly connected to the middle of the side of the partition away from the third support block. A buffer block is fixedly connected to the side of the partition away from the third support block. The buffer block is made of rubber material.

[0010] The turnover cart body has symmetrically arranged universal wheels on one side of its lower end, and symmetrically arranged rollers on the side of its lower end away from the universal wheels. Several locking components are symmetrically fixedly connected on the side of the turnover cart body away from the handrail. The inner cavity of the first slide groove is symmetrically provided with a second slide groove, and the inner cavity of the second slide groove is connected to the inner cavity of the adjacent first slide groove.

[0011] The drawer assembly includes a drawer body that is slidably connected to the inner cavity of the adjacent first slide groove. The drawer body is symmetrically and fixedly connected to a first slider. The inner cavity of the second slide groove is slidably connected to the adjacent first slider. The drawer body is symmetrically and fixedly connected to a main locking component near the locking component.

[0012] This utility model has at least the following beneficial effects: When rotating bearings, the bearings are placed on the third limiting component, and then the second limiting component is used to limit the position of the bearings on the third limiting component. This prevents the bearings from moving, tipping over, or colliding with each other due to vibration and bumps during transportation, thereby reducing surface scratches and edge chipping, and ensuring the machining accuracy and surface quality of the bearings. Through the cooperation of the support component and the support box, the position and height of the second and third limiting components can be adjusted, allowing the third limiting component to support bearings of different sizes, which can improve the versatility and applicability of the device. Then, by using the cooperation of the first limiting component and the support component, the position of the support component in the inner cavity of the support box can be limited. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is a schematic diagram of the drawer assembly of this utility model; Figure 3 This is a schematic diagram of the clamping component of this utility model; Figure 4 This is a schematic diagram of the support component of this utility model; Figure 5 This is a schematic diagram of the first limiting component of this utility model; Figure 6 This is a schematic diagram of the second limiting component of this utility model; Figure 7 This is a schematic diagram of the third limiting component of this utility model; Figure 8 This is a schematic diagram of the main body of the turnover vehicle of this utility model.

[0014] In the diagram: 1. Handrail; 2. Turnover cart body; 21. Casters; 22. Rollers; 23. Locking fastener; 24. First slide rail; 25. Second slide rail; 3. Drawer assembly; 31. Drawer body; 32. First slider; 33. Locking fastener; 4. Clamping assembly; 41. Support box; 42. First limiting assembly; 421. Outer shell; 422. Connecting shaft; 423. First spring; 424. Connecting block; 425. Second slider; 426. Limiting rod; 43. Support assembly; 431. First support block; 432. Third slider; 433. Limiting hole; 44. Second limiting assembly; 441. Second support block; 442. Slide rod; 443. Second spring; 444. Pressure plate; 45. Third limiting assembly; 451. Third support block; 452. Partition; 453. Buffer block; 454. Support shaft. Detailed Implementation

[0015] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0016] Example 1 Please see Figures 1 to 8 This utility model provides a technical solution: a bearing processing and turnover device, including: a handrail 1; It also includes: a turnover cart body 2, which is located on one side of the handrail 1. The turnover cart body 2 is used for turnover and transportation of bearings. Several first sliding grooves 24 are provided in the middle of the turnover cart body 2. Several drawer assemblies 3 are disposed in the inner cavity of the first slide groove 24. The drawer assemblies 3 are used to prevent external dust from falling onto the bearing. Several clamping components 4 are disposed inside the drawer assembly 3. The clamping components 4 are used to clamp the bearing. The clamping components 4 include two support boxes 41. Support components 43 are slidably connected to the inner cavity of the two support boxes 41. A first limiting component 42 is fixedly connected to the upper part of the two support boxes 41. A second limiting component 44 is fixedly connected to the upper part of one of the support components 43. A third limiting component 45 is fixedly connected to the upper part of the other support component 43.

[0017] When the bearing is rotated, the bearing is placed on the third limiting component 45, and then the position of the bearing on the third limiting component 45 is limited by the second limiting component 44. This prevents the bearing from moving, tipping over, or colliding with each other due to vibration and bumps during transportation, thereby reducing surface scratches and edge chipping, and ensuring the machining accuracy and surface quality of the bearing. Through the cooperation of the support component 43 and the support box 41, the position and height of the second limiting component 44 and the third limiting component 45 can be adjusted, and the third limiting component 45 can support bearings of different sizes, which can improve the versatility and applicability of the device. Then, through the cooperation of the first limiting component 42 and the support component 43, the position of the support component 43 in the inner cavity of the support box 41 can be limited. In addition, the clamping component 4 is located inside the drawer assembly 3, which facilitates the removal and placement of the bearing and forms a closed space when the drawer is closed. Combined with the first slide groove 24 opened on the turnover cart body 2 to stably guide the drawer assembly 3, the stability and dustproof effect of the transportation process are further improved.

[0018] The second limiting component 44 includes a second support block 441 fixedly connected to the upper end of the adjacent first support block 431. A slide rod 442 is slidably connected to the middle of the second support block 441. A pressure plate 444 is fixedly connected to the side of the slide rod 442 near the third limiting component 45. The pressure plate 444 is made of rubber material. A second spring 443 is wound around the outer surface of the slide rod 442. The two sides of the second spring 443 are fixedly connected to the side of the pressure plate 444 away from the third limiting component 45 and the side of the second support block 441 near the third limiting component 45, respectively. The third limiting component 45 includes a third support block 451 fixedly connected to the upper end of the adjacent first support block 431. A partition 452 is fixedly connected to the side of the third support block 451 near the second limiting component 44. A support shaft 454 is fixedly connected to the middle of the side of the partition 452 away from the third support block 451. A buffer block 453 is fixedly connected to the side of the partition 452 away from the third support block 451. The buffer block 453 is made of rubber material. The turnover cart body 2 has symmetrically arranged universal wheels 21 on one side of its lower end, and symmetrically arranged rollers 22 on the side of its lower end away from the universal wheels 21. Several locking sub-parts 23 are symmetrically fixedly connected to the side of the turnover cart body 2 away from the handrail 1. The inner cavity of the first slide groove 24 is symmetrically provided with second slide grooves 25, and the inner cavity of the second slide groove 25 is connected to the inner cavity of the adjacent first slide groove 24. The drawer assembly 3 includes a drawer body 31 that is slidably connected to the inner cavity of the adjacent first slide groove 24. The drawer body 31 is symmetrically fixedly connected with a first slider 32. The inner cavity of the second slide groove 25 is slidably connected to the adjacent first slider 32. The drawer body 31 is symmetrically fixedly connected with a locking main part 33 near the locking sub-parts 23.

[0019] When the bearing needs to be transported, a force is applied to the drawer body 31, causing it to slide within the adjacent first slide groove 24. This, in turn, causes the first slider 32 to slide within the adjacent second slide groove 25, facilitating the placement of the bearing on the third limiting assembly 45. The second limiting assembly 44 then limits the bearing's position on the third limiting assembly 45. A force is applied to the pressure plate 444, causing it to slide towards one side of the second support block 441. This, in turn, causes the slide rod 442 to slide within the second support block 441, which in turn causes the second spring 443 to retract, thus closing the inner cavity of the pressure plate 444 and the slide rod. The inner cavity of 442 is separated from the support shaft 454. Then, the user places the bearing on the support shaft 454 and releases the force applied to the pressure plate 444. Under the elastic force of the pressure plate 444, the pressure plate 444 can be extended and pushed to slide away from the second support block 441. Then, the slide rod 442 can be moved together. Through the cooperation of the pressure plate 444 and the buffer block 453, the bearing placed on the support shaft 454 can be clamped to prevent the bearing from moving, tilting and colliding with each other due to vibration and bumps during transportation, thereby reducing surface scratches and edge chipping, and ensuring the machining accuracy and surface quality of the bearing. During the turnover process, the body 31 carrying several drawers can be pushed into the inner cavity of the first slide 24. Then, through the cooperation of the locking sub-part 23 and the locking main part 33, the position of the drawer body 31 in the inner cavity of the first slide 24 can be limited. By providing casters 21 and rollers 22, it is convenient for users to push the turnover cart body 2 to move, which can improve the flexibility during the turnover process.

[0020] Example 2 Support assembly 43 includes a third slider 432 slidably connected to the inner cavity of an adjacent support box 41. A first support block 431 is fixedly connected to the upper part of the third slider 432. The third slider 432 has several limiting holes 433 on the side near the first limiting assembly 42. The first limiting assembly 42 includes a housing 421 fixedly connected to the adjacent support box 41, and the inner cavity of the housing 421 communicates with the inner cavity of the support box 41. A connecting shaft 422 is slidably connected to the inner cavity of the housing 421, and a second slider 425 is slidably connected to the inner cavity of the housing 421. The connecting shaft 422 and the second slider 425 are connected to each other. 25. A limiting rod 426 is fixedly connected to the side of the second slider 425 away from the connecting shaft 422. The limiting rod 426 is slidably connected to the outer shell 421 and slidably connected to the inner cavity of the adjacent limiting hole 433. A connecting block 424 is fixedly connected to the side of the connecting shaft 422 away from the second slider 425. A first spring 423 is wound around the outer surface of the connecting shaft 422. The two sides of the first spring 423 are fixedly connected to the side of the second slider 425 away from the limiting rod 426 and the inner wall of the outer shell 421 away from the second slider 425, respectively.

[0021] When the position and height of the third limiting component 45 and the second limiting component 44 need to be adjusted according to the bearing size, by applying a force to the connecting block 424, the connecting block 424 is driven to slide away from the third slider 432. This causes the connecting shaft 422 and the second slider 425 to slide within the inner cavity of the housing 421, which in turn causes the first spring 423 to retract. When the second slider 425 moves, the limiting rod 426 is driven to slide away from the third slider 432, allowing the limiting rod 426 to slide out of the limiting hole 433, thus releasing the position restriction of the third slider 432 within the support box 41. Then, by applying a force to the support component 43, the first spring 422 is driven to slide away from the third slider 432. After adjusting the position of the support block 431 in the inner cavity of the support box 41 and determining the position of the third slider 432 in the inner cavity of the support box 41, the force applied to the connecting block 424 is released. Then, under the elastic force of the first spring 423, the first spring 423 can be extended, which can push the second slider 425 and the limiting rod 426 to slide towards one side of the third slider 432. Then, the limiting rod 426 can be pushed into the inner cavity of the adjacent limiting hole 433. Then, through the cooperation of the limiting rod 426 and the limiting hole 433, the position of the third slider 432 in the inner cavity of the support box 41 can be limited, thereby completing the position and height adjustment of the second limiting component 44 and the third limiting component 45.

[0022] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A bearing machining carousel, comprising: armrest; Its features include: a turnover cart body, which is disposed on one side of the handrail and is used for turnover transportation of bearings; the turnover cart body has a plurality of first sliding grooves in the middle. A plurality of drawer assemblies are provided, wherein the drawer assemblies are disposed in the inner cavity of the first slide groove, and the drawer assemblies are used to prevent external dust from falling onto the bearing; A plurality of clamping components are disposed inside a drawer assembly. The clamping components are used to clamp the bearing. Each clamping component includes two support boxes. Supporting components are slidably connected to the inner cavities of the two support boxes. A first limiting component is fixedly connected to the upper part of each of the two support boxes. A second limiting component is fixedly connected to the upper part of one of the support components. A third limiting component is fixedly connected to the upper part of the other support component.

2. The bearing machining carousel according to claim 1, characterized in that: The support assembly includes a third slider that is slidably connected to the inner cavity of an adjacent support box. A first support block is fixedly connected to the upper part of the third slider, and a plurality of limiting holes are provided on the side of the third slider near the first limiting assembly.

3. The bearing machining carousel according to claim 1, characterized in that: The first limiting component includes a housing fixedly connected to an adjacent support box, with the inner cavity of the housing communicating with the inner cavity of the support box. A connecting shaft is slidably connected to the inner cavity of the housing, and a second slider is slidably connected to the inner cavity of the housing. The connecting shaft is fixedly connected to the second slider. A limiting rod is fixedly connected to the side of the second slider away from the connecting shaft. The limiting rod is slidably connected to the housing and to the inner cavity of an adjacent limiting hole. A connecting block is fixedly connected to the side of the connecting shaft away from the second slider. A first spring is wound around the outer surface of the connecting shaft. The two sides of the first spring are fixedly connected to the side of the second slider away from the limiting rod and the side of the inner wall of the housing away from the second slider, respectively.

4. The bearing machining carousel according to claim 1, characterized in that: The second limiting component includes a second support block fixedly connected to the upper end of the adjacent first support block. A slide rod is slidably connected to the middle of the second support block. A pressure plate is fixedly connected to the side of the slide rod near the third limiting component. The pressure plate is made of rubber material. A second spring is wound around the outer surface of the slide rod. The two sides of the second spring are fixedly connected to the side of the pressure plate away from the third limiting component and the side of the second support block near the third limiting component, respectively.

5. The bearing machining carousel according to claim 1, characterized in that: The third limiting component includes a third support block fixedly connected to the upper end of the adjacent first support block. A partition is fixedly connected to the side of the third support block near the second limiting component. A support shaft is fixedly connected to the middle of the side of the partition away from the third support block. A buffer block is fixedly connected to the side of the partition away from the third support block. The buffer block is made of rubber material.

6. The bearing machining carousel apparatus of claim 1, wherein: The turnover cart body is symmetrically provided with universal wheels on one side of its lower end, and rollers are symmetrically provided on the side of its lower end away from the universal wheels. Several locking components are symmetrically fixedly connected to the side of the turnover cart body away from the handrail. The inner cavity of the first slide groove is symmetrically provided with a second slide groove, and the inner cavity of the second slide groove is connected to the inner cavity of the adjacent first slide groove.

7. The bearing machining carousel according to claim 6, characterized in that: The drawer assembly includes a drawer body that is slidably connected to the inner cavity of an adjacent first slide groove. The drawer body is symmetrically and fixedly connected to a first slider. The inner cavity of the second slide groove is slidably connected to the adjacent first slider. The drawer body is symmetrically and fixedly connected to a main locking component near the locking component.