Roller bracket anti-sticking mechanism for storage battery
By installing anti-jamming components on both sides of the roller support, the direction of the misaligned battery is corrected, solving the problem of battery jamming during transportation and achieving smooth transportation and improved efficiency.
Patent Information
- Application Number
- CN202311391252.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-10-25
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2043-10-25
AI Technical Summary
During the process of conveying batteries on a roller conveyor, the batteries are prone to deviating and getting stuck on both sides of the roller support, causing conveying blockages that require manual handling.
A battery roller bracket anti-jamming mechanism is designed. By installing anti-jamming components on both sides of the roller bracket, including a driven push rod and a deviation correction rod, the direction of the misaligned battery is corrected so that it does not approach the side wall of the bracket, thus avoiding friction and jamming.
This effectively prevents batteries from getting stuck during transport, ensuring smooth and efficient delivery.
Smart Images

Figure CN117465938B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of conveyors, in particular to a battery drum support anti-blocking mechanism. BACKGROUND
[0002] The drum conveyor has been widely used in various production, logistics, transportation and other industries. In actual use, in order to facilitate the adjustment and processing of the conveyed products and materials, and the mutual connection between conveyors, the drum conveyor has simple structure, high reliability, and is convenient to use and maintain. The drum conveyor is suitable for conveying articles with flat bottom and mainly composed of a driving drum, a frame, a support, a driving part and the like. It has the characteristics of large conveying capacity, high speed, light and fast operation, improved conveying efficiency, and can realize multi-variety collinear split conveying.
[0003] At present, during the conveying of the battery by the drum conveyor, the batteries on both sides may deviate, so that the batteries are blocked on both sides of the drum support, and then the conveying is blocked, and finally manual processing is required to discharge the blocking problem and restore normal conveying operation.
[0004] In view of the above-mentioned problem that the battery deviates and is blocked, the application designs a battery drum support anti-blocking mechanism. SUMMARY
[0005] The application aims to provide a battery drum support anti-blocking mechanism. Through the action of the drum support, the drum and the anti-blocking assembly, while conveying the battery, the batteries deviating on both sides are directionally corrected, so that the deviating batteries no longer gradually approach both sides of the drum support, and then the batteries will not rub against the side wall of the drum support and be blocked by the blocking column, thereby solving the problem that the battery deviates and is blocked.
[0006] To solve the above technical problems, the application is realized by the following technical scheme:
[0007] The application is a battery drum support anti-blocking mechanism, which comprises a drum support, a drum and an anti-blocking assembly. The drum support is uniformly arrayed with drums. The drum support is uniformly provided with anti-blocking assemblies on both sides of the drum for preventing the battery from deviating towards the side wall of the drum support and being blocked. The anti-blocking assembly directionally corrects the batteries deviating on both sides, so that the deviating batteries no longer gradually approach both sides of the drum support, and then the batteries will not rub against the side wall of the drum support and be blocked by the blocking column, thereby avoiding blocking during conveying and ensuring smooth conveying and improving conveying efficiency.
[0008] As a preferred technical scheme of the present application, the anti-blocking assembly comprises a driven push rod and a deviation correction rod; a connecting seat is fixed between the driven push rod and the deviation correction rod; and the connecting seat is hinged to the side wall of the roller support.
[0009] As a preferred technical scheme of the present application, a torsion spring is assembled between the connecting seat and the side wall of the roller support; when the batteries located at the two side edges and deviating gradually approach the two sides of the roller support, the batteries first contact the driven push rod, and the driven push rod is pushed forward in the process of battery conveying, so that the driven push rod and the deviation correction rod are both rotated under the rotation of the connecting seat; then the deviation correction rod rotates the side of the battery until it contacts the surface of the battery, and then applies a pushing force to the battery, so as to push the battery deviating to the two sides of the roller support to the middle, thereby correcting the direction and avoiding the battery from continuously deviating to the side wall of the roller support.
[0010] As a preferred technical scheme of the present application, a clearance groove for the movement of the anti-blocking assembly is formed in the side wall of the roller support; the clearance groove has the effects of embedding the anti-blocking assembly in the side wall of the roller support, reducing the protrusions on the side wall of the roller support, reducing the protruding obstacles encountered by the batteries in the conveying process, and making the driven push rod of the anti-blocking assembly exposed and the deviation correction rod exposed only in the correction process.
[0011] As a preferred technical scheme of the present application, the driven push rod, the deviation correction rod and the connecting seat form an L-shaped structure; limiting plates for controlling the rotation angle are fixedly installed on the two sides of the clearance groove; the angle range of the anti-blocking assembly is not a circular rotation, and the maximum rotation angle of the whole anti-blocking assembly is not more than 90 degrees, and the optimal maximum rotation angle is about 60 degrees.
[0012] As a preferred technical scheme of the present application, an auxiliary side pushing column is rotatably matched with the outer end of the deviation correction rod; the auxiliary side pushing column has a regular hexagonal structure.
[0013] As a preferred technical scheme of the present application, a push plate assembly for vertical extension and retraction is matched with the outer end of the deviation correction rod; the correction push plate in the push plate assembly is always parallel to the side wall of the roller support, and the guide column in the push plate assembly is always perpendicular to the side wall of the roller support; therefore, when the correction push plate in the push plate assembly pushes the deviating battery, the direction of the battery tends to be corrected under the action of the correction push plate in the push plate assembly, and even the side of the battery is just attached to the correction push plate to achieve the correction effect.
[0014] As a preferred technical scheme of the present application, the push plate assembly comprises a correction push plate, a guide column and a return spring; a side wall of the roller support is provided with a clearance channel for movement of the push plate assembly; the guide column is fixedly installed on the inner wall of the clearance channel, the correction push plate is slidingly fitted on the guide column, and the correction push plate is fixedly connected with the return spring at the back thereof and the inner wall of the clearance channel; when the battery located at the two side edges and deviated gradually approaches the two sides of the roller support, the battery first contacts the driven push rod, and the driven push rod is pushed forward in the process of battery conveying, so that the driven push rod and the deviation correction rod are both rotated under the rotation of the connecting seat; then the deviation correction rod rotates the battery on one side, and the correction push plate is pushed to the middle under the pushing of the deviation correction rod and extends from the side wall of the roller support to contact and push the side wall of the battery; after the battery moves away from the driven push rod, the driven push rod and the correction push plate are reset under the action of the torsion spring and the return spring.
[0015] The present application has the following advantages:
[0016] 1. Through the action of the roller support, the roller assembly and the anti-blocking assembly, the battery located at the two side edges and deviated is directionally corrected during conveying, so that the deviated battery no longer gradually approaches the two sides of the roller support, and then will not be rubbed on the side wall and blocked by the column; the present application has the advantages of avoiding blocking during conveying, ensuring smooth conveying and improving conveying efficiency.
[0017] 2. Through the action of the deviation correction rod and the push plate assembly, the battery is pushed to the middle and its direction is also corrected, even to the correction effect.
[0018] Of course, any product implementing the present application does not necessarily need to achieve all the advantages described above. BRIEF DESCRIPTION OF DRAWINGS
[0019] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the description of the embodiments. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can also be obtained by those skilled in the art without creative labor.
[0020] Figure 1 It is a structure schematic view of the anti-blocking mechanism of the present application for the battery roller support before direction correction in the embodiment one.
[0021] Figure 2 It is a structure top view of the anti-blocking mechanism of the present application for the battery roller support before direction correction in the embodiment one.
[0022] Figure 3 Figure 2 is a structure schematic view of the anti-blocking mechanism of the battery drum support according to the present application in the direction correction stage of Example 1;
[0023] Figure 4 Figure 3 is a structure top view of the anti-blocking mechanism of the battery drum support according to the present application in the direction correction stage of Example 1;
[0024] Figure 5 Figure 4 is a structure schematic view of the drum support and drum of Example 1;
[0025] Figure 6 Figure 5 is a structure schematic view of the anti-blocking assembly of Example 1; Figure 5 Figure 6 is a partial enlarged view of A in Figure 5;
[0026] Figure 7 Figure 7 is a structure schematic view of the anti-blocking assembly of Example 1;
[0027] Figure 8 Figure 8 is a structure schematic view of the anti-blocking mechanism of the battery drum support according to the present application in the direction correction stage of Example 2;
[0028] Figure 9 Figure 9 is a structure top view of the anti-blocking mechanism of the battery drum support according to the present application in the direction correction stage of Example 2;
[0029] Figure 10 Figure 10 is a structure schematic view of the anti-blocking mechanism of the battery drum support according to the present application in the direction correction stage of Example 2;
[0030] Figure 11 Figure 11 is a structure schematic view of the anti-blocking assembly of Example 2; Figure 10 Figure 12 is a partial enlarged view of B in Figure 11;
[0031] Figure 12 Figure 13 is a structure top view of the anti-blocking mechanism of the battery drum support according to the present application in the direction correction stage of Example 2;
[0032] Figure 13 Figure 14 is a structure schematic view of the push plate assembly of Example 2;
[0033] In the drawings, the components represented by the respective reference numerals are listed as follows:
[0034] 1 - drum support, 2 - drum, 3 - anti-blocking assembly, 4 - battery, 101 - clearance groove, 102 - limiting plate, 103 - clearance groove channel, 301 - driven push rod, 302 - deviation correction rod, 303 - connecting seat, 304 - auxiliary side push column, 305 - push plate assembly, 306 - correction push plate, 307 - guide column, 308 - return spring. DETAILED DESCRIPTION
[0035] Clearly, the described embodiments are merely a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all the other embodiments obtained by those of ordinary skill in the art without creative effort should belong to the protection scope of the present application.
[0036] Embodiment one
[0037] Please refer to Figures 1-7 As shown in the figure, the present application is a kind of battery drum support anti jamming mechanism, including drum support 1, drum 2 and anti jamming assembly 3;Drum support 1 is uniformly arrayed with drum 2;Drum support 1 is uniformly assembled with anti jamming assembly 3 on both sides of drum 2 for preventing battery 4 from deviating to the side wall of drum support 1 and scratching and jamming;Anti jamming assembly 3 includes driven push rod 301 and deviation correction rod 302;Driven push rod 301 and deviation correction rod 302 are fixed with connecting seat 303;Connecting seat 303 is hinged with the side wall of drum support 1;Torsion spring is assembled between connecting seat 303 and the side wall of drum support 1;Anti jamming assembly 3 corrects the direction of the battery 4 located at the edge of both sides and deviates, so that the deviated battery 4 no longer gradually approaches the two sides of drum support 1, and then will not rub on the side wall of drum support 1 and be jammed, thereby avoiding jamming in the conveying process, ensuring smooth conveying and improving conveying efficiency.
[0038] When the battery 4 located at the edge of both sides and deviated gradually approaches the two sides of drum support 1, the battery 4 will first contact the driven push rod 301, which will be pushed forward during the conveying of battery 4, so that the driven push rod 301 and the deviation correction rod 302 are both rotated under the rotation of the connecting seat 303;In turn, the deviation correction rod 302 will rotate one side of the battery 4 until it contacts the surface of the battery 4, and then apply a pushing force to the battery 4, so as to push the battery 4 deviated to the two sides of drum support 1 to the middle, thereby correcting the direction and avoiding the battery 4 from continuing to deviate to the side wall of drum support 1.
[0039] Preferably, a clearance groove 101 for the movement of anti jamming assembly 3 is formed on the side wall of drum support 1;The function of clearance groove 101 is to embed anti jamming assembly 3 in the side wall of drum support 1, reduce the protrusions on the side wall of drum support 1, reduce the protruding obstacles encountered by battery 4 during conveying;Also, only the driven push rod 301 of anti jamming assembly 3 is exposed, and the deviation correction rod 302 is exposed only during the correction process.
[0040] Preferably, the driven push rod 301 and the deviation correction rod 302, the connecting seat 303 form an L-shaped structure; both sides of the position slot 101 are fixedly provided with a limiting plate 102 for controlling the rotation angle; the angle range of the anti-blocking assembly 3 is not a circular rotation, and the overall rotation angle of the anti-blocking assembly 3 is not more than 90 degrees, and the maximum rotation angle is about 60 degrees.
[0041] Preferably, the outer end of the deviation correction rod 302 is rotationally fitted with an auxiliary side push column 304; the auxiliary side push column 304 is a regular hexagonal structure.
[0042] Embodiment two
[0043] On the basis of embodiment one, the more preferred technical scheme is: Figures 8-13 As shown in the figure, the outer end of the deviation correction rod 302 is fitted with a push plate assembly 305 for vertical extension and retraction; the correction push plate 306 in the push plate assembly 305 is always parallel to the side wall of the drum support 1, and the guide column 307 in the push plate assembly 305 is always perpendicular to the side wall of the drum support 1; therefore, when the correction push plate 306 in the push plate assembly 305 pushes the deviated storage battery 4, the direction of the storage battery 4 will tend to be corrected under the action of the correction push plate 306 in the push plate assembly 305, and even the side of the storage battery 4 will be exactly attached to the correction push plate 306 to achieve the correction effect.
[0044] Preferably, the push plate assembly 305 includes the correction push plate 306, the guide column 307 and the return spring 308; the side wall of the drum support 1 is provided with a position slot 103 for the movement of the push plate assembly 305; the guide column 307 is fixedly installed in the inner wall of the position slot 103, the correction push plate 306 is slidingly fitted on the guide column 307, and the correction push plate 306 is fixedly connected with the return spring 308 on the inner wall of the position slot 103; when the storage battery 4 located at the two side edges and deviated gradually approaches the two sides of the drum support 1, the storage battery 4 will first contact the driven push rod 301, and the driven push rod 301 will be pushed forward in the process of conveying the storage battery 4, so that the driven push rod 301 and the deviation correction rod 302 are both rotated under the rotation of the connecting seat 303; then the deviation correction rod 302 will rotate one side of the storage battery 4, and the correction push plate 306 will be pushed to the middle under the pushing of the deviation correction rod 302, and will be extended from the side wall of the drum support 1 to contact and push the side wall of the storage battery 4; until the storage battery 4 moves away from the driven push rod 301, the driven push rod 301 and the correction push plate 306 are reset under the action of the torsional spring and the return spring 308.
[0045] The preferred embodiments of the application disclosed above are only to facilitate the elucidation of the application. The preferred embodiments do not describe all the details of the application and limit the application to the specific embodiments described. Obviously, many modifications and variations can be made in light of the teachings above. The description is chosen and described in order to best explain the principles of the application and its practical application to thereby enable others skilled in the art to best utilize the application and get the best results from the application. The application is only limited by the claims and their full scope and equivalents.
Claims
1. A battery drum support anti-sticking mechanism characterized by: Roller bracket (1), roller (2) and anti-blocking assembly (3) are included. The roller bracket (1) is uniformly arrayed with the roller (2). The roller bracket (1) is uniformly equipped with the anti-blocking assembly (3) on both sides of the roller (2) for preventing the battery (4) from being deviated to the side wall of the roller bracket (1) and being scratched and blocked. The anti-blocking assembly (3) comprises a driven push rod (301) and a deviation correction rod (302), a connecting seat (303) is fixed between the driven push rod (301) and the deviation correction rod (302), and the connecting seat (303) is hinged with the side wall of the roller bracket (1).
2. The anti-sticking mechanism for a roller bracket of a storage battery according to claim 1, characterized by A torsion spring is assembled between the connecting seat (303) and the side wall of the roller bracket (1).
3. The anti-jamming mechanism for a battery cartridge support according to claim 2, wherein A clearance slot (101) for the movement of the anti-blocking assembly (3) is formed in the side wall of the roller bracket (1).
4. The anti-jamming mechanism for a battery cartridge support according to claim 3, wherein The driven push rod (301) and the deviation correction rod (302) and the connecting seat (303) form an L-shaped structure, and a limiting plate (102) for controlling the rotation angle is fixedly installed on both sides of the clearance slot (101).
5. The anti-jamming mechanism for a battery cartridge support according to claim 4, wherein An auxiliary side push column (304) is rotatably matched with the outer end of the deviation correction rod (302), and the auxiliary side push column (304) is a regular hexagonal structure.
6. The anti-jamming mechanism for a battery cartridge support according to claim 4, wherein A push plate assembly (305) for vertical extension and retraction is matched with the outer end of the deviation correction rod (302).
7. The anti-jamming mechanism for a drum stand of a storage battery according to claim 6, characterized in that, The push plate assembly (305) comprises a correction push plate (306), a guide column (307) and a return spring (308), a clearance slot (103) for the movement of the push plate assembly (305) is formed in the side wall of the roller bracket (1), the guide column (307) is fixedly installed on the inner wall of the clearance slot (103), the correction push plate (306) is slidably matched with the guide column (307), and the return spring (308) is fixedly connected between the back of the correction push plate (306) and the inner wall of the clearance slot (103).
Citation Information
Patent Citations
Protection device for storage battery plate transportation
CN210392450U