Adjusting device of battery liquid injection system

By combining the design of the support base, positioning components, support components, and liquid injection components, the problem of inaccurate positioning in the battery liquid injection system is solved, thereby improving the accuracy of battery liquid injection and production efficiency.

CN223622566UActive Publication Date: 2025-12-02XINXIANG NAITE POWER MATERIAL CO LTD
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Patent Information

Application Number
CN202423303674.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-12-02
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

Existing battery electrolyte filling systems lack flexible adjustment mechanisms, making it impossible to accurately position and adapt to batteries of different models and sizes. This results in inaccurate electrolyte filling, affecting battery performance and quality, reducing production efficiency, and increasing costs.

Method used

The design employs a combination of a support base, positioning components, support components, lifting components, and liquid injection components. Through components such as telescopic rods, rotating bases, and drive motors, it achieves precise positioning and flexible adjustment of the battery, ensuring the accuracy and stability of liquid injection.

Benefits of technology

It enables precise positioning and adaptation of batteries of different models and sizes, improves the accuracy of liquid injection, increases production efficiency, reduces production costs, and meets diverse production needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an adjusting device of a battery liquid injection system, and belongs to the technical field of batteries. Comprising a positioning assembly, the positioning assembly is arranged on the outer side of a supporting base, the positioning assembly comprises fixing blocks evenly fixed to the outer side of the supporting base, second telescopic rods are fixed to the tops of the fixing blocks, a driving power source is fixed to the tops of the second telescopic rods, and a third telescopic rod is arranged on one side of the driving power source; fixing blocks are evenly fixed to the outer side of the supporting base to play a foundation fixing role, a second telescopic rod at the top of the fixing blocks can be adjusted in a telescopic mode, a driving power source at the top of the second telescopic rod can provide power for follow-up operation, and the third telescopic rod on one side of the driving power source can stretch out and draw back. And a clamping plate at the tail end of the clamping device can clamp and position a target under the pushing of a third telescopic rod, so that the stability during operation is ensured.
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Description

Technical Field

[0001] This utility model relates to the field of battery technology, and in particular to an adjustment device for a battery electrolyte filling system. Background Technology

[0002] Most existing reflector lampshades are designed to be fixed, which limits their ability to control light.

[0003] Larger lampshades, while having a large reflective area, also have a wider reflection angle, resulting in more dispersed light and making them suitable for large-area lighting needs. Smaller lampshades, on the other hand, have a relatively smaller reflection angle, making them suitable for smaller-area lighting needs.

[0004] However, existing battery electrolyte filling systems lack flexible adjustment mechanisms. When faced with batteries of different models and sizes, they cannot accurately locate and adapt to the electrolyte filling position, nor can they make corresponding adjustments based on battery size. This not only easily leads to inaccurate electrolyte filling, affecting battery performance and quality, but also reduces production efficiency, increases production costs and defect rates, making it difficult to meet diverse production needs.

[0005] Therefore, this application provides an adjustment device for a battery electrolyte filling system to meet the requirements. Utility Model Content

[0006] The purpose of this invention is to address the shortcomings of existing technologies by proposing an adjustment device for a battery electrolyte injection system.

[0007] To achieve the above objectives, the present invention adopts the following technical solution: an adjustment device for a battery electrolyte filling system, comprising:

[0008] Support base;

[0009] A positioning component is placed on the outside of the support base. The positioning component includes fixing blocks that are evenly fixed on the outside of the support base. A second telescopic rod is fixed to the top of each fixing block. A driving power supply is fixed to the top of the second telescopic rod. A third telescopic rod is provided on one side of the driving power supply. A clamping plate is provided at the other end of the third telescopic rod.

[0010] A support assembly is placed on top of a support base. The support assembly includes a second rotating base rotatably connected to the top of the support base. A fixed outer ring is provided on the outer side of the support base away from the second rotating base. A fourth telescopic rod is provided on the top of each of the second rotating bases. A support plate is provided on the top of the fourth telescopic rod. A support soft ring is fixed on the top of the support plate.

[0011] Furthermore, the lifting assembly includes a first guide rod fixed to the top of the support base, a top plate being provided on the top of the first guide rod, a second guide rod being provided on the side of the support base away from the first guide rod, a lifting plate being provided on the first guide rod, a first telescopic rod being provided on the top of the lifting plate, and a liquid storage tank being provided on the side of the lifting plate away from the first telescopic rod.

[0012] The beneficial effects of adopting the above-mentioned further solution are as follows: the first guide rod fixed on the top of the support base provides vertical guidance for lifting, the top plate on its top plays a supporting role, the second guide rod on one side of the support base assists in guidance and ensures stable lifting, the lifting plate on the first guide rod is the main load-bearing component, the first telescopic rod on the top of the lifting plate can extend and retract to push the lifting plate up and down, and the liquid storage tank on one side of the lifting plate can move with the lifting plate to facilitate liquid injection operation.

[0013] Furthermore, a fixing ring is provided at the bottom of the lifting plate, an infusion tube is provided inside the fixing ring, and an injection assembly is provided at the bottom of the fixing ring.

[0014] The beneficial effects of adopting the above-mentioned further solution are: the fixing ring at the bottom of the lifting plate plays a fixing role, which is used to securely place the infusion tube and ensure that the position of the infusion tube is stable during the lifting process. The infusion tube is the channel for liquid transmission and is responsible for transporting the liquid in the storage tank to the injection component.

[0015] Furthermore, the injection assembly includes a first rotating base, a sliding groove is provided at the bottom of the first rotating base, a drive motor is provided on one side of the sliding groove, a sliding block is slidably connected in the sliding groove, and an injection head is provided at the bottom of the sliding block.

[0016] The beneficial effects of adopting the above-mentioned further solution are: the first rotating base can rotate, which makes it easy to adjust the injection position. Its bottom sliding groove provides a sliding track for the sliding block. The drive motor provides power to drive the sliding block to slide in the sliding groove, thereby moving the bottom injection head, so that the injection head can be accurately aligned with the target for injection.

[0017] Compared with the prior art, the advantages and positive effects of this utility model are as follows:

[0018] 1. The fixing blocks are evenly fixed on the outside of the support base, which serves as the basic fixing function. The second telescopic rod at the top can be extended and adjusted. The drive power at the top of the second telescopic rod can provide power for subsequent operations. The third telescopic rod on the side of the drive power can be extended and retracted. The clamping plate at the end of the third telescopic rod can clamp and position the target under the push of the third telescopic rod, ensuring the stability during operation.

[0019] 2. The second rotating base is rotatably connected to the top of the support base, enabling rotation and easy adjustment of the orientation. The fixed outer ring on the outside of the support base provides stable support. The fourth telescopic rod on the second rotating base can extend and retract to adjust the height. The support plate at the top of the fourth telescopic rod is used for bearing, and the support soft ring on the support plate can provide soft support and protection for the placed object, ensuring the stability and safety of the placement. Attached Figure Description

[0020] Figure 1 This is a front view of the adjustment device of the battery electrolyte filling system of this utility model;

[0021] Figure 2 This is a structural diagram of the support component in the adjustment device of a battery electrolyte injection system according to this utility model;

[0022] Figure 3 This is a structural diagram of the lifting component in the adjusting device of a battery electrolyte filling system according to this utility model;

[0023] Figure 4 This is an enlarged view of the structure at point A in the adjusting device of the battery electrolyte injection system of this utility model.

[0024] Attached Figure

[0025] 1. Support base;

[0026] 2. Lifting assembly; 21. First guide rod; 22. Second guide rod; 23. First telescopic rod; 24. Lifting plate; 25. Liquid storage tank; 27. Fixing ring; 28. Infusion tube;

[0027] 3. Positioning component; 31. Fixing block; 32. Second telescopic rod; 33. Drive power supply; 34. Third telescopic rod; 35. Clamping plate;

[0028] 4. Top slab;

[0029] 5. Injection assembly; 51. First rotating base; 52. Sliding groove; 53. Injection head; 54. Sliding block; 55. Drive motor;

[0030] 6. Support assembly; 61. Second rotating base; 62. Fixed outer ring; 63. Fourth telescopic rod; 64. Support plate; 65. Supporting soft ring. Detailed Implementation

[0031] 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.

[0032] like Figure 1 - Figure 4 As shown, this utility model provides a technical solution: an adjustment device for a battery electrolyte filling system, comprising: a support base 1;

[0033] The positioning component 3 is located on the outside of the support base 1. The positioning component 3 includes fixing blocks 31 that are uniformly fixed on the outside of the support base 1. A second telescopic rod 32 is fixed to the top of each fixing block 31. A driving power supply 33 is fixed to the top of each second telescopic rod 32. A third telescopic rod 34 is provided on one side of the driving power supply 33. A clamping plate 35 is provided at the other end of the third telescopic rod 34. The fixing blocks 31 are uniformly fixed on the outside of the support base 1, which serves as a basic fixing function. The second telescopic rod 32 at its top can be extended and retracted. The driving power supply 33 at the top of the second telescopic rod 32 can provide power for subsequent operations. The third telescopic rod 34 on one side of the driving power supply 33 can be extended and retracted. The clamping plate 35 at its end can clamp and position the target under the push of the third telescopic rod 34, ensuring stability during operation.

[0034] A support assembly 6 is placed on top of a support base 1. The support assembly 6 includes a second rotating base 61 rotatably connected to the top of the support base 1. A fixed outer ring 62 is provided on the outer side of the support base 1 away from the second rotating base 61. A fourth telescopic rod 63 is provided on the top of each of the second rotating base 61. A support plate 64 is provided on the top of the fourth telescopic rod 63. A support soft ring 65 is fixed on the top of the support plate 64. The second rotating base 61 is rotatably connected to the top of the support base 1, enabling rotation and easy adjustment of orientation. The fixed outer ring 62 on the outer side of the support base 1 provides stable support. The fourth telescopic rod 63 on the second rotating base 61 can extend and retract to adjust its height. The support plate 64 on the top of the fourth telescopic rod 63 is used for bearing load. The support soft ring 65 on the support plate 64 provides soft support and protection for the placed object, ensuring the stability and safety of the placement.

[0035] Furthermore, such as Figure 1 - Figure 3As shown: The lifting assembly 2 includes a first guide rod 21 fixed to the top of the support base 1. A top plate 4 is provided on the top of the first guide rod 21. A second guide rod 22 is provided on the side of the support base 1 away from the first guide rod 21. A lifting plate 24 is provided on the first guide rod 21. A first telescopic rod 23 is provided on the top of the lifting plate 24. A liquid storage tank 25 is provided on the side of the lifting plate 24 away from the first telescopic rod 23. The first guide rod 21 fixed to the top of the support base 1 provides vertical guidance for lifting, and the top plate 4 at its top provides support. The second guide rod 22 on one side of the support base 1 provides auxiliary guidance to ensure stable lifting. The lifting plate 24 on the first guide rod 21 is the main load-bearing component. The first telescopic rod 23 at the top of the lifting plate 24 is telescopic, which pushes the lifting plate 24 to rise and fall. The liquid storage tank 25 on one side of the lifting plate 24 can move with the lifting plate 24 to facilitate liquid injection operation.

[0036] The above solutions also have the issue of fluid injection adjustment, such as... Figure 4 As shown: In this solution, the injection assembly 5 includes a first rotating base 51. The bottom of the first rotating base 51 is provided with a sliding groove 52. A drive motor 55 is provided on one side of the sliding groove 52. A sliding block 54 is slidably connected in the sliding groove 52. An injection head 53 is provided at the bottom of the sliding block 54. The first rotating base 51 can rotate to facilitate adjustment of the injection position. The bottom sliding groove 52 provides a sliding track for the sliding block 54. The drive motor 55 provides power to drive the sliding block 54 to slide in the sliding groove 52, thereby moving the bottom injection head 53, so that the injection head 53 can be accurately aligned with the target for injection.

[0037] Working principle: such as Figure 1 - Figure 4 As shown, the support base 1 serves as the foundation of the entire device, providing a stable installation platform for other components. In the positioning component 3, the fixing blocks 31 are evenly distributed on the outside of the support base 1, laying a solid foundation. The second telescopic rod 32 at its top can be flexibly extended and retracted, driving the drive power supply 33 to adjust the height. The drive power supply 33 supplies power to the third telescopic rod 34, causing the third telescopic rod 34 to extend and retract, thereby pushing the clamping plate 35 to accurately clamp and position the target, ensuring operational stability.

[0038] In the support assembly 6, the second rotating base 61 is rotatably connected to the support base 1, which allows for convenient and flexible rotation and adjustment of the orientation. The fixed outer ring 62 enhances the overall stability. The fourth telescopic rod 63 on the second rotating base 61 extends and retracts to adjust the height of the support plate 64. The support plate 64 carries the object, while the support soft ring 65 provides soft support and protection for the placed object, ensuring safe and stable placement.

[0039] In the lifting assembly 2, the first guide rod 21 at the top of the support base 1 provides vertical guidance for the lifting plate 24, the top plate 4 provides auxiliary support, the second guide rod 22 further ensures the stability of the lifting, the first telescopic rod 23 at the top of the lifting plate 24 extends and retracts to push it up and down, so that the liquid storage tank 25 on one side moves accordingly, which facilitates the liquid injection operation. The fixing ring 27 at the bottom of the lifting plate 24 fixes the infusion tube 28 to ensure that the position of the infusion tube 28 is stable during the lifting. It serves as a liquid transmission channel to transport the liquid in the liquid storage tank 25 to the liquid injection assembly 5.

[0040] Inside the liquid injection assembly 5, the first rotating base 51 rotates to adjust the liquid injection position, the bottom sliding groove 52 provides a sliding path for the sliding block 54, the drive motor 55 drives the sliding block 54 to slide, and drives the liquid injection head 53 to move, so that the liquid injection head 53 can be accurately aligned with the target liquid injection, ensuring the smooth progress of battery production and the stability of product performance.

[0041] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any other way. Any person skilled in the art may make changes or modifications to the above-disclosed technical content to create equivalent embodiments for application in other fields. However, any simple modifications, equivalent changes, and modifications made to the above embodiments based on the technical essence of the present utility model without departing from the technical solution of the present utility model shall still fall within the protection scope of the technical solution of the present utility model.

Claims

1. An adjustment device for a battery electrolyte filling system, characterized in that, include: Support base (1); Positioning component (3), the positioning component (3) is placed on the outside of the support base (1), the positioning component (3) includes fixing blocks (31) evenly fixed on the outside of the support base (1), the top of the fixing blocks (31) is fixed with a second telescopic rod (32), the top of the second telescopic rod (32) is fixed with a driving power supply (33), a third telescopic rod (34) is provided on one side of the driving power supply (33), and a clamping plate (35) is provided at the other end of the third telescopic rod (34). Support assembly (6) is placed on top of support base (1). The support assembly (6) includes a second rotating base (61) rotatably connected to the top of support base (1). A fixed outer ring (62) is provided on the outer side of support base (1) away from the second rotating base (61). A fourth telescopic rod (63) is provided on the top of the second rotating base (61). A support plate (64) is provided on the top of the fourth telescopic rod (63). A support soft ring (65) is fixed on the top of the support plate (64).

2. The adjusting device for a battery electrolyte filling system according to claim 1, characterized in that, A lifting assembly (2) is provided on the outside of the support base (1).

3. The adjusting device for a battery electrolyte injection system according to claim 2, characterized in that, The lifting assembly (2) includes a first guide rod (21) fixed to the top of the support base (1), a top plate (4) is provided on the top of the first guide rod (21), a second guide rod (22) is provided on the side of the support base (1) away from the first guide rod (21), a lifting plate (24) is provided on the first guide rod (21), a first telescopic rod (23) is provided on the top of the lifting plate (24), and a liquid storage tank (25) is provided on the side of the lifting plate (24) away from the first telescopic rod (23).

4. The adjusting device for a battery electrolyte filling system according to claim 3, characterized in that, The other end of the first telescopic rod (23) is connected to the top plate (4).

5. The adjusting device for a battery electrolyte filling system according to claim 3, characterized in that, The bottom of the lifting plate (24) is provided with a fixing ring (27), an infusion tube (28) is provided inside the fixing ring (27), and an injection assembly (5) is provided at the bottom of the fixing ring (27).

6. The adjusting device for a battery electrolyte filling system according to claim 5, characterized in that, The liquid injection assembly (5) includes a first rotating base (51), a sliding groove (52) is provided at the bottom of the first rotating base (51), a drive motor (55) is provided on one side of the sliding groove (52), a sliding block (54) is slidably connected in the sliding groove (52), and a liquid injection head (53) is provided at the bottom of the sliding block (54).