Shore battery storage device
By designing a shore battery storage device for multiple battery base components and roller sets, the problem of insufficient battery count during peak periods is solved, efficient storage and rapid battery swap of the battery box are achieved, and battery swap efficiency and equipment adaptability are improved.
Patent Information
- Application Number
- CN202421992147.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-16
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2034-08-16
AI Technical Summary
The problem of insufficient battery count during peak hours of existing battery storage and battery swap devices leads to low battery swap efficiency and affects the normal operation of electric vehicles.
A shore battery storage device is designed, and a plurality of battery base components are used, each group includes a first guide and a second guide, a roller set and a battery base support, and precise positioning and rapid battery replacement of the battery box are achieved through the roller set and the limit support.
It improves battery swap efficiency and operational convenience, can quickly provide backup batteries during peak hours, ensure the stability and continuity of power supply, and adapt to different models and sizes of battery boxes.
Smart Images

Figure CN222892357U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of energy storage and power replacement, and more specifically, relates to a shore battery storage device. Background Art
[0002] In the current field of energy storage and battery replacement technology, especially in the scenario of electric vehicle battery replacement, the demand for battery replacement during peak hours often leads to a shortage of batteries, which reduces the efficiency of battery replacement and even affects the normal operation of electric vehicles. Traditional battery storage and battery replacement equipment usually adopts fixed battery racks or simple stacking methods, which not only takes up a lot of space, but also requires manual handling and searching during battery replacement, which greatly reduces the efficiency of battery replacement. In addition, when dealing with peak battery replacement periods, these devices are often unable to meet demand due to insufficient number of batteries, thus affecting the overall operational efficiency. In order to solve this problem, it is particularly important to develop a battery storage device that can efficiently store, quickly replace batteries and adapt to peak hours.
[0003] In the prior art, there is a technology named "battery pack storage device and control method therefor" and publication number "WO2019085283A1", which includes: a battery compartment (1) for storing a battery pack (3); a fire extinguisher box (2) adjacent to the battery compartment (1), the fire extinguisher box (2) having an opening lower than the storage position of the battery pack (3); wherein the battery compartment (1) has a linkage mechanism (4), the linkage mechanism (4) is suitable for moving the battery pack (3) and causing it to fall from the opening into the fire extinguisher box (2), the fire extinguisher box (2) contains a fluid fire extinguishing agent, the amount of the fluid fire extinguishing agent is such that when the battery pack (3) falls into the fire extinguisher box (2), the battery pack (3) is immersed in the fluid fire extinguishing agent, and the fluid fire extinguishing agent does not overflow. However, this technology does not involve the technical problems and technical solutions of the present application. Utility Model Content
[0004] The technical problem to be solved by the utility model is: in view of the deficiencies in the prior art, to provide a shore battery storage device with a simple structure, which can realize efficient storage and rapid battery replacement in the battery box, solve the problem of insufficient battery quantity during peak battery replacement periods, and improve the battery replacement efficiency.
[0005] To solve the above-mentioned technical problems, the technical solution adopted by the utility model is:
[0006] The utility model discloses a shore battery storage device. A plurality of battery base assemblies are arranged on a device platform. Each battery base assembly comprises a first guide and a second guide. The first guide and the second guide are symmetrically arranged according to a gap. A plurality of first roller groups are arranged on the first guide. A plurality of second roller groups are arranged on the second guide. The first roller groups and the second roller groups are in a V-shaped structure. Each battery base assembly further comprises a battery bottom support. Each battery bottom support is arranged at a position between a corresponding group of the first guide and the second guide.
[0007] The multiple roller groups of the first roller group are arranged in parallel, and the multiple roller groups of the second roller group are arranged in parallel.
[0008] A plurality of platform support seats are arranged at the bottom of the device platform.
[0009] A plurality of pillars are arranged on the upper part of the device platform, an upper crossbeam and an upper longitudinal beam are arranged on the upper part of the plurality of pillars, a front door of the platform is arranged on the front upper crossbeam, a rear door of the platform is arranged on the rear upper crossbeam, and a cover plate is arranged on the upper crossbeam and the upper longitudinal beam.
[0010] A front limit support is arranged at the front of the battery base support of each battery base assembly, and a rear limit support is arranged at the rear of the battery base support of each battery base assembly.
[0011] The front inclined surface is arranged on the inner side surface of the upper part of the front limit support, and the rear inclined surface is arranged on the inner side surface of the upper part of the rear limit support.
[0012] A first side limit support is arranged on the battery base of each battery base assembly near the inner side of the first guide, and a second side limit support is arranged on the battery base of each battery base assembly near the inner side of the second guide.
[0013] The first side inclined surface is provided on the inner side surface of the upper part of the first side limiting support, and the second side inclined surface is provided on the inner side surface of the upper part of the second side limiting support.
[0014] The technical solution of the utility model is adopted, and the working principle and beneficial effects are as follows:
[0015] The shore battery storage device described in the utility model is a platform for placing and fixing the battery box. The surface of the device platform has been specially treated to have good conductivity and wear resistance. At the same time, it can adapt to battery boxes of different models and sizes by quickly adjusting the limiting components of the battery bottom support. The first guide and the second guide are symmetrically arranged according to the gap. The gap between the first guide and the second guide is used to guide the placed battery box once, thereby improving the efficiency and accuracy of the battery box entry. When placing the battery box, the battery box is placed from top to bottom. The first roller group of the first guide and the second roller group of the second guide clamp the battery box, so that the battery box can be conveniently and reliably placed on the battery support bottom of the corresponding battery base assembly. The battery support bottom limits and fixes the battery box to achieve reliable positioning of the battery box. The positioning of the battery box does not require bolts or other fixation, and it is also convenient and quick to remove the battery box. Battery box storage and battery replacement are extremely convenient, quick, and labor-saving. The battery base is an important component that bears the weight of the battery box. It is usually made of insulating and conductive materials. In addition to providing necessary support for the battery box, it can also arrange electrical circuits to ensure the electrical connection between the battery box and other parts of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] The following is a brief description of the contents and symbols in the drawings of this specification:
[0017] Figure 1 It is a structural schematic diagram of the shore battery storage device of the utility model;
[0018] Figure 2 It is a structural schematic diagram of the shore battery storage device of the utility model;
[0019] Figure 3 It is a partial structural schematic diagram of the shore battery storage device of the utility model;
[0020] The accompanying drawings are marked as follows: 1. device platform; 2. battery base assembly; 3. first guide; 4. second guide; 5. first roller group; 7. platform support seat; 8. pillar; 9. electric control box; 10. upper longitudinal beam; 11. platform front door; 12. platform rear door; 13. cover plate; 14. battery box; 15. front limit support; 16. rear limit support; 17. front inclined portion; 18. rear inclined portion; 19. first side limit support; 21. first side inclined portion; 22. battery base. DETAILED DESCRIPTION
[0021] The following is a detailed description of the embodiments of the present invention, such as the shapes, structures, positions and connection relationships of the components involved, the functions and working principles of the components, etc., by referring to the accompanying drawings:
[0022] As attached Figure 1 -Attached Figure 3 As shown, the utility model is a shore battery storage device, and a plurality of battery base assemblies 2 are arranged on the device platform 1, and each battery base assembly 2 includes a first guide 3 and a second guide 4, and the first guide 3 and the second guide 4 are arranged symmetrically according to the gap, and a plurality of first roller groups 5 are arranged on the first guide 3, and a plurality of second roller groups are arranged on the second guide 4, and the first roller group 5 and the second roller group are in a V-shaped structure. Each battery base assembly 2 also includes a battery base 22, and each battery base 22 is arranged between a corresponding group of first guides 3 and second guides 4. The above structure proposes an improved technical solution to address the deficiencies in the prior art. When the structure is set, a device platform 1 is set, and the device platform 1 is a platform for placing and fixing the battery box 14. The surface of the device platform 1 is specially treated, and has good conductivity and wear resistance. At the same time, the limiting component of the battery base 22 can be quickly adjusted to adapt to battery boxes 14 of different models and sizes. The first guide 3 and the second guide 4 are arranged symmetrically according to the gap, and the gap between the first guide 3 and the second guide 4 is used to guide the placed battery box once, thereby improving the efficiency and accuracy of the battery box entry. When placing the battery box, the battery box 14 is placed from top to bottom, and the first roller group 5 of the first guide 3 and the second roller group of the second guide 4 clamp the battery box 14, so that the battery box 14 can be conveniently and reliably placed on the battery support bottom 22 of the corresponding battery base assembly 2, and the battery support bottom 22 limits and fixes the battery box 14 to achieve reliable positioning of the battery box 14, and the positioning of the battery box does not require bolts or other fixation, and it is also convenient and quick to remove the battery box. Battery box storage and battery replacement are extremely convenient, fast and labor-saving. The battery base is an important component that bears the weight of the battery box, usually composed of insulating materials and conductive materials. In addition to providing necessary support for the battery box, electrical circuits can also be arranged to ensure the electrical connection between the battery box and other parts of the equipment. The shore battery storage device described in the utility model has a simple structure, can realize efficient storage and rapid battery replacement of the battery box, solves the problem of insufficient battery quantity during peak battery replacement period, and improves battery replacement efficiency.
[0023] The multiple roller groups of the first roller group 5 are arranged in parallel, and the multiple roller groups of the second roller group are arranged in parallel. In the above structure, a guide slope is set on each side of the bottom of the battery box, and the guide slopes on both sides are in a V-shaped structure. When the battery box needs to be placed on the battery base 22, it is convenient for the battery box 14 to slide downward along the roller group, which plays a precise guiding role.
[0024] A plurality of platform support seats 7 are arranged at the bottom of the device platform 1. In the above structure, the platform support seat is the supporting structure of the device platform, that is, the supporting structure of the entire storage equipment. The platform support seat is made of high-strength material to ensure that the device can reliably maintain stability and durability.
[0025] The device platform 1 is provided with a plurality of pillars 8 on the upper part, and an upper crossbeam and an upper longitudinal beam 10 are provided on the upper part of the plurality of pillars 8, a platform front door 11 is provided on the upper crossbeam at the front, a platform rear door 12 is provided on the upper crossbeam at the rear, and a cover plate 13 is provided on the upper crossbeam and the upper longitudinal beam 10. In the above structure, the cover plate plays a role of top shielding, and the platform front door and the platform rear door can be lowered downward, thereby playing a role of shielding on both sides, which can isolate the inside and the outside, and prevent rainwater from contacting the battery.
[0026] A front limit support 15 is provided at the front of the battery base support 22 of each battery base assembly 2, and a rear limit support 16 is provided at the rear of the battery base support 22 of each battery base assembly 2. A front inclined portion 17 is provided on the upper inner side surface of the front limit support 15, and a rear inclined portion 18 is provided on the upper inner side surface of the rear limit support 16. A first side limit support 19 is provided near the inner side of the first guide 3 of the battery base support 22 of each battery base assembly 2, and a second side limit support is provided near the inner side of the second guide 4 of the battery base support 22 of each battery base assembly 2. A first side inclined portion 21 is provided on the upper inner side surface of the first side limit support 19, and a second side inclined portion is provided on the upper inner side surface of the second side limit support. In the above structure, when the battery box is placed, the front inclined surface 17, the rear inclined surface 18, the first side inclined surface 21, and the second side inclined surface play a secondary guiding role for the battery box when the battery box continues to fall, ensuring that the battery box falls into place reliably, and the battery box 14 plays a limiting role after falling into place, and the battery box can be reliably positioned by its own weight.
[0027] The shore battery storage device described in the utility model has the following advantages: 1. Improve the efficiency of battery replacement and the convenience of operation. The battery replacement process is optimized, and the roller structure is used to guide the battery when it is placed, which significantly improves the efficiency of battery replacement. The battery box is accurately positioned to reduce manual operation and time waste. This design allows for quick provision of backup batteries during peak battery replacement periods, even if the number of batteries is insufficient, to ensure the stability and continuity of power supply. 2. Enhance the adaptability and flexibility of the equipment. The design of the device platform fully considers the compatibility of battery boxes of different models and sizes. Its special surface treatment has good conductivity and wear resistance, so that the equipment can adapt to battery boxes of different types and conditions, increasing the scope of application of the equipment. At the same time, the limiting components on the battery base can be adjusted quickly, further enhancing flexibility and adaptability. 3. Ensure electrical safety and reliability. As a key component for bearing the weight of the battery box, the battery base is designed with full consideration of electrical safety. The combination of insulating materials and conductive materials not only provides the necessary support for the battery box, but also ensures that the electrical connection between the battery box and other parts of the equipment is safe and reliable. It effectively avoids safety hazards caused by electrical connection problems and improves the reliability of the equipment. 4. Improve equipment stability and durability. As the supporting structure of the storage equipment, the limit support is made of high-strength material to ensure that the equipment can maintain stability in various environments. This design makes the equipment less likely to deform and damage during long-term use, thereby improving the durability of the equipment. At the same time, the stable structure also provides good protection for the battery box, further ensuring the safety and performance of the battery. 5. Reduce operation and maintenance costs and maintenance difficulty. The shore battery storage device fully considers the operation and maintenance costs and maintenance difficulty. Its modular and standardized design makes installation, commissioning and maintenance easier and faster. At the same time, the durability and stability of the device also reduce the operation and maintenance costs caused by equipment failure.
[0028] The shore battery storage device described in the utility model is provided with a device platform 1 when the structure is set. The device platform 1 is a platform for placing and fixing the battery box 14. The surface of the device platform 1 is specially treated to have good conductivity and wear resistance. At the same time, the limiting component of the battery bottom support 22 can be quickly adjusted to adapt to battery boxes 14 of different models and sizes. The first guide 3 and the second guide 4 are arranged symmetrically according to the gap. The gap between the first guide 3 and the second guide 4 is used to guide the placed battery box once, thereby improving the efficiency and accuracy of the battery box entry. When placing the battery box, the battery box 14 is placed from top to bottom. The first roller group 5 of the first guide 3 and the second roller group of the second guide 4 clamp the battery box 14, so that the battery box 14 is conveniently and reliably placed on the battery bottom support 22 of the corresponding battery base assembly 2, and the battery bottom support 22 limits and fixes the battery box 14, so that the battery box 14 is reliably positioned. The positioning of the battery box does not require bolts or the like to be fixed, and it is also convenient and quick to remove the battery box. Battery box storage and battery replacement are extremely convenient, fast and labor-saving. The battery base is an important component that bears the weight of the battery box. It is usually made of insulating and conductive materials. In addition to providing necessary support for the battery box, it can also arrange electrical circuits to ensure the electrical connection between the battery box and other parts of the equipment.
[0029] The above is an exemplary description of the utility model in conjunction with the accompanying drawings. It is obvious that the specific implementation of the utility model is not limited to the above-mentioned method. As long as various improvements are made using the method concept and technical solution of the utility model, or the concept and technical solution of the utility model are directly applied to other occasions without improvement, they are all within the protection scope of the utility model.
Claims
1. A shore battery storage device, characterized in that: A plurality of battery base assemblies (2) are arranged on the device platform (1), each battery base assembly (2) comprising a first guide (3) and a second guide (4), the first guide (3) and the second guide (4) being symmetrically arranged with a gap, a plurality of first roller assemblies (5) being arranged on the first guide (3), a plurality of second roller assemblies (4) being arranged on the second guide (4), the first roller assemblies (5) and the second roller assemblies being in a V-shaped structure, and each battery base assembly (2) further comprising a battery base support (22), each battery base support (22) being arranged between a corresponding first guide (3) and a second guide (4).
2. The shore battery storage device according to claim 1, characterized in that: The multiple roller groups of the first roller group (5) are arranged in parallel, and the multiple roller groups of the second roller group are arranged in parallel.
3. The shore battery storage device according to claim 1 or 2, characterized in that: A plurality of platform support seats (7) are arranged at the bottom of the device platform (1).
4. The shore battery storage device according to claim 1 or 2, characterized in that: A plurality of pillars (8) are arranged on the upper part of the device platform (1), an upper crossbeam and an upper longitudinal beam (10) are arranged on the upper part of the plurality of pillars (8), a platform front door (11) is arranged on the front upper crossbeam, a platform rear door (12) is arranged on the rear upper crossbeam, and a cover plate (13) is arranged on the upper crossbeam and the upper longitudinal beam (10).
5. The shore battery storage device according to claim 1 or 2, characterized in that: A front limit support (15) is arranged at the front of the battery base support (22) of each battery base assembly (2), and a rear limit support (16) is arranged at the rear of the battery base support (22) of each battery base assembly (2).
6. The shore battery storage device according to claim 5, characterized in that: A front inclined surface (17) is arranged on the upper inner side surface of the front position limiting support (15), and a rear inclined surface (18) is arranged on the upper inner side surface of the rear position limiting support (16).
7. The shore battery storage device according to claim 6, characterized in that: A first side limit support (19) is arranged on the inner side of the battery base support (22) of each battery base assembly (2) close to the first guide (3), and a second side limit support is arranged on the inner side of the battery base support (22) of each battery base assembly (2) close to the second guide (4).
8. The shore battery storage device according to claim 7, characterized in that: A first side inclined surface (21) is arranged on the inner side surface of the upper part of the first side limiting support (19), and a second side inclined surface is arranged on the inner side surface of the upper part of the second side limiting support.
Citation Information
Patent Citations
Battery pack storage device and control method therefor
WO2019085283A1