Pole structure of intelligent battery
By designing the sampling mechanism and sealing protection structure in the smart battery, the problem of easy corrosion of large and extreme columns in the existing technology installation is solved, real-time monitoring and optimization control of the battery status is achieved, and battery performance and service life are improved.
Patent Information
- Application Number
- CN202421562632.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-03
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-07-03
AI Technical Summary
The installation of existing smart battery acquisition modules has greatly changed the internal structure, which is not conducive to installation and subsequent production. At the same time, the extreme columns are easily corroded by crawling acid, resulting in the module being useless.
A pole structure of a smart battery is designed. By setting a sampling mechanism on the top side of the gate plate of the lower case of the battery, data sampling is performed using the sampling pole head, and connected to the smart module through a lead cast connecting block and the main pole head for data transmission and optimization control. At the same time, the main pole sealing component and the sampling pole sealing component are used to seal and protect the pole head.
When the internal structure of the battery is small, real-time monitoring and optimization control of the battery status can be achieved, battery performance and service life can be improved, and the pole corrosion can be avoided through sealing protection, thereby improving the safety and service life of the use environment.
Smart Images

Figure CN222867864U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of smart batteries, and in particular to a pole structure of a smart battery. Background Art
[0002] With the rapid development of science and technology, lead-acid batteries, as an important way of energy storage, are welcoming unprecedented development opportunities. Intelligent data acquisition modules are installed in them, which can monitor the working status, power, temperature and other parameters of the battery in real time, and optimize and control them through intelligent algorithms to improve the performance and service life of the battery. However, the installation of existing intelligent data acquisition modules usually causes significant changes to the internal structure, which is not conducive to the installation and subsequent production of the battery. At the same time, the internal poles are easily corroded by creeping acid, which makes the intelligent data acquisition modules useless. Utility Model Content
[0003] The purpose of the present utility model is to provide a smart battery pole structure in order to solve the above-mentioned problem, so as to add a sampling mechanism inside the battery with relatively minor changes to the inside of the battery, and cooperate with a smart module data collector to monitor the state of the battery and optimize and control it through an intelligent algorithm, thereby improving the performance and service life of the battery.
[0004] The utility model achieves the above-mentioned purpose through the following technical solutions: a pole structure of a smart battery, comprising: a battery lower shell, a battery upper shell and a smart module upper shell, wherein the battery upper shell is detachably arranged on the top side of the battery lower shell;
[0005] A grid plate is arranged on the inner side of the lower shell of the battery, and sampling mechanisms are arranged on both sides of the top side of the grid plate. The sampling mechanism includes a lead-cast connecting block, a lead-cast base is arranged on the lower side of one side of the lead-cast connecting block, a main pole head is arranged on the side of the lead-cast connecting block away from the lead-cast base, and a sampling pole head is arranged on the top side of the lead-cast connecting block close to the lead-cast base.
[0006] Furthermore, two sampling pole sealing components are arranged at the front end of the battery upper shell, and main pole sealing components are arranged on both sides of the front end of the battery upper shell away from the sampling pole sealing components.
[0007] Furthermore, the top side of the main pole head is arranged on the inner side of the main pole sealing component, and the top side of the sampling pole head is arranged on the inner side of the sampling pole sealing component.
[0008] Furthermore, the main pole head is arranged on one side of the lead-cast connecting block, the sampling pole head is arranged on the top side of the lead-cast connecting block and close to the lead-cast base, and the lead-cast base is arranged on the side of the lead-cast connecting block away from the main pole head.
[0009] Furthermore, the lead-cast connecting block and the lead-cast base are integrally arranged, and the bottom side of the lead-cast base is connected to the grid plate in the lower shell of the battery.
[0010] Furthermore, a smart module data collector is arranged on the bottom side of the smart module upper shell, and the smart module data collector is arranged on the top side of the battery upper shell and can be detachably arranged on the bottom side of the smart module upper shell.
[0011] Furthermore, the height of the main pole head is higher than that of the sampling pole head, and the sampling pole head is connected to the smart module data collector.
[0012] Furthermore, the main pole head and the sampling pole head are cylindrical in appearance.
[0013] By adopting the above structure, a sampling mechanism is arranged on the top side of the grid plate in the lower shell of the battery, and data is sampled by the sampling pole head in the sampling mechanism, and then connected to the upper shell of the smart module through the lead cast connecting block and the main pole head, and then the data is transmitted to the smart module data collector on the bottom side of the upper shell of the smart module to monitor the status of the battery at all times. Then, the main pole head is sealed by the main pole sealing component to avoid damage caused by erosion by the electrolyte, and the sampling pole head is also sealed and protected by the sampling pole sealing component.
[0014] In summary, the beneficial effects of the utility model are: when the internal structure of the battery is slightly changed, the sampling mechanism is installed inside the battery, which plays a role in real-time monitoring of the working state, power, temperature and other parameters of the battery, and optimizes and controls the battery through intelligent algorithms, thereby improving the performance and service life of the battery, and the internal structure of the battery is slightly changed, which is beneficial to subsequent production;
[0015] The main pole sealing component and the sampling pole sealing component are used to seal and protect the main pole head and the sampling pole head in the sampling mechanism to avoid acid creeping and corrosion of the pole, thereby improving the safety of the use environment and the service life. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] In order to more clearly illustrate the embodiments of the utility model or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the utility model. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.
[0017] Figure 1 It is a front view of the utility model;
[0018] Figure 2 It is an axonometric view of the utility model;
[0019] Figure 3 This is an axial side view of the utility model close to the upper shell of the battery;
[0020] Figure 4 This is an axial side view of the utility model close to the lower shell of the battery;
[0021] Figure 5 It is an axial view of the sampling mechanism of the utility model close to the lead casting base;
[0022] Figure 6 It is an axial view of the sampling mechanism of the utility model close to the main pole head.
[0023] The following are the descriptions of the reference numerals:
[0024] 1. Battery lower shell; 2. Battery upper shell; 3. Main pole sealing component; 4. Sampling pole sealing component; 5. Grid plate; 6. Sampling mechanism; 601. Lead cast connecting block; 602. Lead cast base; 603. Main pole head; 604. Sampling pole head; 7. Smart module upper shell; 8. Smart module data collector. DETAILED DESCRIPTION
[0025] In order to make the purpose, technical solution and advantages of the utility model clearer, the technical solution of the utility model will be described in detail below. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments of the utility model, all other implementation methods obtained by ordinary technicians in this field without creative work belong to the scope of protection of the utility model.
[0026] See also Figure 1 - Figure 6 As shown, the utility model provides the utility model to achieve the above-mentioned purpose through the following technical solutions: a pole structure of a smart battery, comprising: a battery lower shell 1, a battery upper shell 2 and a smart module upper shell 7, wherein the battery upper shell 2 is detachably arranged on the top side of the battery lower shell 1, and the battery upper shell 2 can be directly snapped and removed from the battery lower shell 1, so as to facilitate observation and operation of the internal battery;
[0027] A grid plate 5 is arranged on the inner side of the lower shell 1 of the battery, and sampling mechanisms 6 are arranged on both sides of the top side of the grid plate 5. The sampling mechanism 6 includes a lead-cast connecting block 601, and a lead-cast base 602 is arranged on the lower side of one side of the lead-cast connecting block 601. The lead-cast base 602 and the lead-cast connecting block 601 connect the main pole head 603 and the sampling pole head 604 together to form an integrated structure. The main pole head 603 is arranged on the side of the lead-cast connecting block 601 away from the lead-cast base 602, and the sampling pole head 604 is arranged on the top side of the lead-cast connecting block 601 close to the lead-cast base 602, wherein the main pole head 603 and the sampling pole head 604 are both circular, which is convenient for sealing the pole heads, and the height of the sampling pole head 604 is lower than the main pole head 603, which is convenient for subsequent hiding of the sampling pole head 604, wherein the number of sampling pole heads 604 can be changed according to the usage scenario.
[0028] Furthermore, two sampling pole sealing components 4 are provided at the front end of the battery upper shell 2, and main pole sealing components 3 are provided on both sides of the front end of the battery upper shell 2 away from the sampling pole sealing components 4, the two sampling pole sealing components 4 are arranged between the two main pole sealing components 3, and a groove is opened on the front side of the top side of the battery upper shell 2, wherein the main pole sealing component 3 is arranged on the top side of the battery upper shell 2, and the sampling pole sealing component 4 is arranged in the groove of the groove of the battery upper shell 2.
[0029] Furthermore, the top side of the main pole head 603 is arranged on the inner side of the main pole sealing component 3, and the top side of the sampling pole head 604 is arranged on the inner side of the sampling pole sealing component 4. The main pole sealing component 3 and the sampling pole sealing component 4 seal and protect the main pole head 603 and the sampling pole head 604 to avoid corrosion by creeping acid, which may cause damage to the pole head and make it impossible to accurately transmit the battery status to the smart module data collector 8.
[0030] Furthermore, the main pole head 603 is arranged on one side of the lead-cast connecting block 601, the sampling pole head 604 is arranged on the top side of the lead-cast connecting block 601 and close to the lead-cast base 602, and the lead-cast base 602 is arranged on the side of the lead-cast connecting block 601 away from the main pole head 603. The sampling pole head 604 and the lead-cast base 602 are close to each other, so that the sampling pole head 604 can quickly obtain the data of the gate plate 5 through the lead-cast base 602, and connect to the smart module data collector 8 to feedback the data.
[0031] Furthermore, the lead-cast connecting block 601 and the lead-cast base 602 are integrally arranged, and the bottom side of the lead-cast base 602 is connected to the gate plate 5 in the lower shell 1 of the battery. The lead-cast base 602 is connected to the gate plate 5, which is convenient for the sampling pole head 604 to obtain the data in the gate plate 5 through the lead-cast base 602 at all times, so as to facilitate subsequent optimization control through the smart module data collector 8.
[0032] Furthermore, a smart module data collector 8 is provided on the bottom side of the smart module upper shell 7. The smart module data collector 8 is arranged on the top side of the battery upper shell 2 and is detachably arranged on the bottom side of the smart module upper shell 7. The smart module data collector 8 is arranged on the top side of the groove of the battery upper shell 2 and is detachably connected to the smart module upper shell 7 to facilitate inspection of the interior of the smart module data collector 8.
[0033] Furthermore, the height of the main pole head 603 is higher than the sampling pole head 604, so that the sampling pole head 604 is more convenient to hide. At the same time, the sampling pole head 604 is connected to the smart module data collector 8, and the sampling pole head 604 is connected to the smart module data collector 8.
[0034] Furthermore, the main pole head 603 and the sampling pole head 604 are cylindrical in appearance.
[0035] With the above structure, data is sampled by the sampling mechanism 6 provided on the top side of the grid plate 5 in the lower shell 1 of the battery, and then the sampling pole head 604 in the sampling mechanism 6 is connected to the upper shell of the smart module through the lead cast connecting block 601 and the main pole head 603, and then the data is transmitted to the smart module data collector 8 on the bottom side of the upper shell 7 of the smart module to monitor the status of the battery at all times, and then the main pole head 603 is sealed by the main pole sealing component 3 to avoid damage caused by erosion by the electrolyte, and the sampling pole head 604 is also sealed and protected by the sampling pole sealing component 4.
[0036] The above is only a specific implementation of the utility model, but the protection scope of the utility model is not limited thereto. Any technician familiar with the technical field can easily think of changes or substitutions within the technical scope disclosed by the utility model, which should be included in the protection scope of the utility model. Therefore, the protection scope of the utility model should be based on the protection scope of the claims.
Claims
1. A pole structure of a smart battery, characterized in that: include: A battery lower shell (1), a battery upper shell (2) and a smart module upper shell (7), wherein the battery upper shell (2) is detachably arranged on the top side of the battery lower shell (1); A grid plate (5) is arranged on the inner side of the lower shell (1) of the battery, and sampling mechanisms (6) are arranged on both sides of the top side of the grid plate (5). The sampling mechanism (6) comprises a lead-cast connecting block (601), a lead-cast base (602) is arranged at the bottom of one side of the lead-cast connecting block (601), a main pole head (603) is arranged on the side of the lead-cast connecting block (601) away from the lead-cast base (602), and a sampling pole head (604) is arranged on the top side of the lead-cast connecting block (601) close to the lead-cast base (602).
2. The pole structure of a smart battery according to claim 1, characterized in that: Two sampling pole sealing components (4) are arranged at the front end of the battery upper shell (2), and main pole sealing components (3) are arranged on both sides of the front end of the battery upper shell (2) away from the sampling pole sealing components (4).
3. The pole structure of a smart battery according to claim 2, characterized in that: The top side of the main pole head (603) is arranged inside the main pole sealing component (3), and the top side of the sampling pole head (604) is arranged inside the sampling pole sealing component (4).
4. The pole structure of a smart battery according to claim 1, characterized in that: The main pole head (603) is arranged on one side of the lead-cast connecting block (601), the sampling pole head (604) is arranged on the top side of the lead-cast connecting block (601) and close to the lead-cast base (602), and the lead-cast base (602) is arranged on the side of the lead-cast connecting block (601) away from the main pole head (603).
5. The pole structure of a smart battery according to claim 1, characterized in that: The lead-cast connecting block (601) and the lead-cast base (602) are integrally arranged, and the bottom side of the lead-cast base (602) is connected to the grid plate (5) in the lower shell (1) of the storage battery.
6. The pole structure of a smart battery according to claim 1, characterized in that: A smart module data collector (8) is arranged on the bottom side of the smart module upper shell (7); the smart module data collector (8) is arranged on the top side of the battery upper shell (2) and is detachably arranged on the bottom side of the smart module upper shell (7).
7. The pole structure of a smart battery according to claim 6, characterized in that: The main pole head (603) is higher than the sampling pole head (604), and the sampling pole head (604) is connected to the smart module data collector (8).
8. The pole structure of a smart battery according to claim 1, characterized in that: The main pole head (603) and the sampling pole head (604) are cylindrical in appearance.