A battery turnover device
Patent Information
- Application Number
- CN202522408492.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-13
- Publication Date
- 2026-09-29
- Estimated Expiration
- 2035-11-13
AI Technical Summary
[0004]本实用新型在于提供一种蓄电池翻转装置,其目的是为了解决上述背景技术中所提出的现有技术存在蓄电池翻转时容易位移等技术问题
[0012]本实用新型通过旋转驱动组件将承载板转动至水平状态,并使夹持空间处于承载板的上方,接着将蓄电池放置于承载板上,且蓄电池处于夹持空间内,再通过夹持组件将蓄电池夹持在挡板与夹持组件之间,然后通过限位组件对蓄电池的底部进行限位,接着利用旋转驱动组件带动蓄电池翻转180°,促使蓄电池处于辊筒输送机与承载板之间,然后夹持组件松开蓄电池,蓄电池转移至辊筒输送机上,从而实现蓄电池的翻转操作,不仅有效地保证了蓄电池的翻转效率,而且还避免了蓄电池翻转时出现位移等问题。
Smart Images

Figure CN224811661U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of storage battery production technology, and in particular relates to a storage battery flipping device. Background Technology
[0002] After the battery is flipped and its cap closed, it remains in an inverted position. Therefore, it needs to be flipped again before proceeding to subsequent testing and packaging processes. Currently, when flipping the capped battery, a chain conveyor first transports the inverted battery to a transfer mechanism. The transfer mechanism then transfers the inverted battery to a flipping mechanism, which flips the battery again. Finally, the flipped battery is placed on a roller conveyor.
[0003] However, existing battery flipping mechanisms rely solely on their clamping cylinders to laterally restrain the batteries. This makes the batteries susceptible to displacement from the clamping cylinders due to centrifugal force during the flipping process, causing them to collide with the roller conveyor after flipping and affecting the production quality. Therefore, there is an urgent need to research a battery flipping device to solve the above problems. Utility Model Content
[0004] The present invention provides a battery flipping device, the purpose of which is to solve the technical problems mentioned in the background art, such as the battery being easily displaced when flipped.
[0005] To solve the above-mentioned technical problems, this utility model is achieved through the following technical solution:
[0006] This utility model is a battery flipping device, including a rotation drive assembly; a support plate is connected to the rotation drive assembly; a baffle and a clamping assembly are respectively connected to opposite sides of the support plate; a clamping space for the battery is formed between the baffle and the clamping assembly; a limiting assembly is installed on the support plate; when the battery is placed in the clamping space, the limiting assembly limits the bottom of the battery.
[0007] As a preferred embodiment of this utility model, the rotary drive assembly includes a first support and a second support arranged side by side; the top of the first support and the top of the second support are both horizontally rotatably connected to a rotating shaft; one end of the rotating shaft is coaxially fixed to the output shaft of a drive motor; the drive motor is fixed to the top of the first support; a positioning plate is fixed to the adjacent ends of the two rotating shafts; the two positioning plates are respectively fixed to the other opposite side of the bearing plate; the two positioning plates and the bearing plate form a "˽" shaped structure.
[0008] As a preferred embodiment of this utility model, the baffle and the bearing plate form an L-shaped structure; the opposite sides of the baffle are respectively fixed to one side of the two positioning plates; a foam pad is fixedly attached to the side of the baffle near the clamping assembly.
[0009] As a preferred embodiment of the present invention, the clamping assembly includes a mounting plate fixed to the edge of the bearing plate; a plurality of first cylinders are fixed side by side along the axial direction of the rotating shaft on one surface of the mounting plate; a clamping plate parallel to the baffle is fixed to the output end of each of the plurality of first cylinders; and an anti-slip plate is fixedly attached to the side of the clamping plate near the baffle.
[0010] As a preferred embodiment of this utility model, each of the opposite sides of the support plate is provided with a through groove, and the length direction of the through groove is parallel to the length direction of the opposite side of the support plate; the limiting component includes a pair of second cylinders respectively disposed on the opposite side of the support plate; the cylinder bodies of the two second cylinders are disposed on the side of the support plate away from the clamping space; the output ends of the two second cylinders are respectively inserted into the two through grooves with a gap, and the output ends of the two second cylinders can move in the two through grooves respectively; the output ends of the two second cylinders are coaxially fixed with a transmission column; the two transmission columns are connected by a limiting rod parallel to the rotating shaft; a pair of support plates parallel to the positioning plate are arranged side by side between the two second cylinders; the two support plates are fixed on a surface of the support plate away from the clamping space; a rotary cylinder is fixed on each of the two support plates; the output ends of the two rotary cylinders are fixed with a movable plate parallel to the support plate; the two second cylinders are respectively fixed on the opposite outer surfaces of the two movable plates.
[0011] This utility model has the following beneficial effects:
[0012] This invention uses a rotary drive assembly to rotate the support plate to a horizontal position and position the clamping space above the support plate. The battery is then placed on the support plate within the clamping space, and clamped between the baffle and the clamping assembly. A limiting assembly then limits the bottom of the battery. Next, the rotary drive assembly rotates the battery 180°, positioning it between the roller conveyor and the support plate. Finally, the clamping assembly releases the battery, transferring it to the roller conveyor. This process effectively ensures the battery's rotation efficiency and avoids displacement issues during rotation.
[0013] Of course, any product implementing this utility model does not necessarily need to achieve all of the advantages described above at the same time. Attached Figure Description
[0014] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0015] Figure 1 This is a schematic diagram of the structure of a battery reversing device according to the present invention.
[0016] Figure 2 for Figure 1 The main view of the structure.
[0017] Figure 3 for Figure 1 Top view of the structure.
[0018] Figure 4 This is a schematic diagram of the connection between the support plate, baffle and clamping assembly of this utility model.
[0019] Figure 5 This is a schematic diagram of the limiting component of this utility model.
[0020] The attached diagram lists the components represented by each number as follows:
[0021] 1-Rotary drive assembly, 2-Bearing plate, 3-Baffle, 4-Clamping assembly, 5-Limiting assembly, 6-Foam pad, 101-First support, 102-Second support, 103-Rotating shaft, 104-Drive motor, 105-Positioning plate, 201-Through groove, 401-Mounting plate, 402-First cylinder, 403-Clamping plate, 404-Anti-slip plate, 501-Second cylinder, 502-Transmission column, 503-Limiting rod, 504-Support plate, 505-Rotary cylinder, 506-Movable plate. Detailed Implementation
[0022] 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 skilled in the art without creative effort are within the protection scope of the present utility model.
[0023] Example 1:
[0024] Please see Figure 1-3As shown, this utility model is a battery flipping device, including a rotation drive assembly 1; a support plate 2 is connected to the rotation drive assembly 1; a baffle 3 and a clamping assembly 4 are respectively connected to opposite sides of the support plate 2; a clamping space for the battery is formed between the baffle 3 and the clamping assembly 4; a limiting assembly 5 is installed on the support plate 2; when the battery is placed in the clamping space, the limiting assembly 5 limits the bottom of the battery. In use, the rotating drive assembly 1 rotates the support plate 2 to a horizontal position, positioning the clamping space above the support plate 2. The battery is then placed on the support plate 2 within the clamping space. The clamping assembly 4 then clamps the battery between the baffle 3 and the clamping assembly 4. The bottom of the battery is then limited by the limiting assembly 5. Next, the rotating drive assembly 1 rotates the battery 180°, positioning it between the roller conveyor and the support plate 2. The clamping assembly 4 then releases the battery, transferring it to the roller conveyor. This process effectively ensures the battery's rotation efficiency and avoids displacement issues during rotation.
[0025] Among them, such as Figure 2-4As shown, the rotary drive assembly 1 includes a first support 101 and a second support 102 arranged side by side; the top of the first support 101 and the top of the second support 102 are both horizontally rotatably connected to a rotating shaft 103; one end of the rotating shaft 103 is coaxially fixed to the output shaft of a drive motor 104; the drive motor 104 is bolted to the top of the first support 101; the drive motor 104 is composed of a servo motor and a reducer; positioning plates 105 are bolted to the near ends of the two rotating shafts 103; the two positioning plates 105 are respectively bolted to the other opposite side of the bearing plate 2; the two positioning plates 105 and the bearing plate 2 form a "˽" shaped structure; a baffle 3 is bolted to the bearing plate 2. An L-shaped structure is formed between the baffle 3 and the support plate 2; the opposite sides of the baffle 3 are bolted to one side of the two positioning plates 105 respectively; a rubber foam pad 6 is pasted on the side of the baffle 3 near the clamping assembly 4; the foam pad 6 has elastic properties; the clamping assembly 4 includes a mounting plate 401 bolted to the edge of the support plate 2; a plurality of first cylinders 402 are bolted side by side along the axial direction of the rotating shaft 103 on one surface of the mounting plate 401; the output ends of the plurality of first cylinders 402 are all bolted to clamping plates 403 parallel to the baffle 3; a rubber anti-slip plate 404 is bolted to the side of the clamping plate 403 near the baffle 3; the anti-slip plate 404 has elastic properties. In use, the drive motor 104 drives the bearing plate 2 to rotate to a horizontal position via the rotating shaft 103 and the positioning plate 105. Then, the battery is placed on the bearing plate 2 and positioned between the baffle 3 and the clamping plate 403. The first cylinder 402 then drives the clamping plate 403 to move closer to the baffle 3, thereby clamping the battery between the foam pad 6 and the anti-slip plate 404. Both the foam pad 6 and the anti-slip plate 404 have elastic properties, which can ensure the clamping effect of the battery and further avoid displacement problems when the battery is flipped.
[0026] Example 2:
[0027] Based on Example 1, as follows Figure 2-5As shown, each of the opposite sides of the support plate 2 has a through groove 201, and the length direction of the through groove 201 is parallel to the length direction of the opposite side of the support plate 2; the limiting component 5 includes a pair of second cylinders 501 respectively disposed on the opposite side of the support plate 2; the cylinder bodies of the two second cylinders 501 are disposed on the side of the support plate 2 away from the clamping space; the output ends of the two second cylinders 501 are respectively inserted into the two through grooves 201 with a gap, and the output ends of the two second cylinders 501 can move in the two through grooves 201 respectively; the output ends of the two second cylinders 501 are coaxially fixed with transmission columns 502; the two transmission columns 502 are coaxially fixed with transmission columns 502. The moving columns 502 are connected by a limiting rod 503 parallel to the rotating shaft 103; the limiting rod 503 is rotatably connected to the two transmission columns 502; a pair of support plates 504 parallel to the positioning plate 105 are arranged side by side between the two second cylinders 501; both support plates 504 are bolted to a surface of the bearing plate 2 away from the clamping space; a rotary cylinder 505 is bolted to both support plates 504; the output end of both rotary cylinders 505 is bolted to a movable plate 506 parallel to the support plate 504; the two second cylinders 501 are respectively bolted to the opposite outer surfaces of the two movable plates 506. In use, with the support plate 2 in a horizontal position and the battery not yet placed on it, the rotary cylinder 505 drives the second cylinder 501 to rotate via the movable plate 506, causing the limiting rod 503 to shift towards the first cylinder 403, thus positioning the limiting rod 503 to the upper side of the clamping space. Next, the battery is placed in the clamping space, and then the rotary cylinder 505 drives the second cylinder 501 to rotate to a vertical position, positioning the limiting rod 503 directly above the clamping space. Then, the second cylinder 501, via the transmission column 502, drives the limiting rod 503 closer to the support plate 2, causing the outer circumference of the limiting rod 503 to abut against the bottom of the battery, thereby achieving the desired position for the battery. The battery's limiting position effectively prevents displacement during battery flipping. After the battery flips, the second cylinder 501 moves the limiting rod 503 away from the support plate 2, positioning it between two adjacent rollers on the roller conveyor. Then, the clamping assembly 4 releases the battery. After the battery is transferred to the roller conveyor, the second cylinder 501 resets the limiting rod 503, and the rotation drive assembly 1 rotates the support plate 2 back to its original position. This not only effectively ensures the battery transfer but also prevents the limiting rod 503 from interfering with the battery transfer when it is moved from the clamping space to the roller conveyor, thus guaranteeing battery production efficiency.
[0028] The preferred embodiments of this utility model disclosed above are merely illustrative of the present utility model. These preferred embodiments do not exhaustively describe all details, nor do they limit the utility model to the specific implementations described. Clearly, many modifications and variations can be made based on the content of this specification. This specification selects and specifically describes these embodiments to better explain the principles and practical applications of this utility model, thereby enabling those skilled in the art to better understand and utilize it. This utility model is limited only by the claims and their full scope and equivalents.
Claims
1. A battery reversing device, characterized in that, Includes a rotary drive assembly (1); The rotary drive assembly (1) is connected to a support plate (2); a baffle (3) and a clamping assembly (4) are respectively connected to opposite sides of the support plate (2); a clamping space for the battery is formed between the baffle (3) and the clamping assembly (4); a limiting assembly (5) is installed on the support plate (2); when the battery is placed in the clamping space, the limiting assembly (5) limits the bottom of the battery.
2. The battery reversing device according to claim 1, characterized in that, The rotary drive assembly (1) includes a first support (101) and a second support (102) arranged side by side; the top of the first support (101) and the top of the second support (102) are both horizontally rotatably connected to a rotating shaft (103); one end of the rotating shaft (103) is coaxially fixed to the output shaft of a drive motor (104); the drive motor (104) is fixed to the top of the first support (101); a positioning plate (105) is fixed to the adjacent ends of the two rotating shafts (103); the two positioning plates (105) are respectively fixed to the other opposite side of the bearing plate (2); the two positioning plates (105) and the bearing plate (2) form a "˽" shaped structure.
3. A battery reversing device according to claim 2, characterized in that, The baffle (3) and the bearing plate (2) form an L-shaped structure; the opposite sides of the baffle (3) are respectively fixed on one side of the two positioning plates (105); a foam pad (6) is fixedly attached to one side of the baffle (3) near the clamping assembly (4).
4. A battery reversing device according to claim 2 or 3, characterized in that, The clamping assembly (4) includes a mounting plate (401) fixed to the edge of the bearing plate (2); a plurality of first cylinders (402) are fixed side by side along the axial direction of the rotating shaft (103) on one surface of the mounting plate (401); the output ends of the plurality of first cylinders (402) are all fixed with clamping plates (403) parallel to the baffle (3); and anti-slip plates (404) are fixedly attached to one side of the clamping plate (403) near the baffle (3).
5. A battery reversing device according to claim 4, characterized in that, The other opposite side of the support plate (2) is provided with a through groove (201), and the length direction of the through groove (201) is parallel to the length direction of the other opposite side of the support plate (2); the limiting component (5) includes a pair of second cylinders (501) respectively disposed on the other opposite side of the support plate (2); the cylinder bodies of the two second cylinders (501) are disposed on the side of the support plate (2) away from the clamping space; the output ends of the two second cylinders (501) are respectively inserted into the two through grooves (201) with a gap, and the output ends of the two second cylinders (501) can move in the two through grooves (201) respectively; the output ends of the two second cylinders (501) are coaxially fixed with a transmission column (502); the two transmission columns (502) are connected by a limiting rod (503) parallel to the rotating shaft (103).
6. A battery reversing device according to claim 5, characterized in that, A pair of support plates (504) parallel to the positioning plate (105) are arranged side by side between the two second cylinders (501); both support plates (504) are fixed on a surface of the bearing plate (2) away from the clamping space; a rotary cylinder (505) is fixed on each of the two support plates (504); a movable plate (506) parallel to the support plate (504) is fixed at the output end of each of the two rotary cylinders (505); the two second cylinders (501) are respectively fixed on the opposite outer surfaces of the two movable plates (506).