A modular energy storage container battery system

Through the protective and convenient assembly mechanism of the modular energy storage container battery system, the problems of cumbersome installation of modular power supply, ash accumulation of heat dissipation holes and lack of protection are solved, and efficient installation, dustproof and heat dissipation and multi-power fixation are achieved.

CN119297513BActive Publication Date: 2025-08-05SHENZHEN HAILEI ENERGY STORAGE CO LTD
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Patent Information

Application Number
CN202411654804.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-19
Publication Date
2025-08-05
Estimated Expiration
2044-11-19

AI Technical Summary

Technical Problem

During the installation and use of modular power supply, there are problems such as cumbersome installation, easy accumulation of dust on the heat dissipation holes, and lack of protection.

Method used

A modular energy storage container battery system is designed, and a protective and convenient assembly mechanism is adopted, including anti-external force sheath, rotary connecting plate, connection main plate, etc., to realize the automatic fixed connection of energy storage power supply and the sealing and opening control of heat dissipation holes.

Benefits of technology

It improves the installation efficiency of energy storage power supplies, avoids dust entering, provides effective protection, ensures heat dissipation needs, and simplifies the fixed operation of multiple power supplies.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of energy storage power supplies, and particularly to a modular energy storage container battery system, which includes an energy storage power supply body. A heat dissipation hole is provided at the upper end of the energy storage power supply body. Guide and bearing columns are respectively and fixedly arranged at the four corners on the upper side of the energy storage power supply body. And mounting bottom plates are symmetrically and fixedly arranged at the lower ends of both sides of the energy storage power supply body. A support and mounting strip is fixedly arranged at one end of the energy storage power supply body. When multiple energy storage power supplies are required to be used in cooperation, one energy storage power supply can be fixed at this time, and then other energy storage power supplies can be fixed through the fixed energy storage power supply. Just arrange the energy storage power supplies in sequence, and the automatic fixed connection of the energy storage power supplies can be realized without fixing each energy storage power supply one by one, which is very convenient, greatly improves the installation efficiency of multiple energy storage power supplies, and facilitates the work of the staff.
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Description

Technical Field

[0001] The present invention relates to the technical field of energy storage power supplies, and particularly to a modular energy storage container battery system. Background Art

[0002] Modular power supplies have high integration and excellent performance, and are widely used in various fields. During actual use, when multiple modular power supplies need to be used jointly, each power supply needs to be installed separately. The installation of modular power supplies is often fastened by multiple screws, which makes the installation of modular power supplies relatively troublesome and consumes a lot of time. In addition, in order to ensure good heat dissipation during the operation of the energy storage power supply, heat dissipation holes are provided on the outer shell of the energy storage power supply. During storage and transportation, the heat dissipation holes are also in an open state, making it easy for dust and impurities to accumulate inside the energy storage power supply before its initial use, and it is more troublesome for the staff to clean it during use. Moreover, during its use, due to the lack of a protection mechanism above it, it is prone to being damaged by external forces. Summary of the Invention

[0003] The purpose of the present invention is to provide a modular energy storage container battery system to solve the problems raised in the above background art.

[0004] To achieve the above purpose, the present invention provides the following technical solutions:

[0005] A modular energy storage container battery system includes an energy storage power supply body. Heat dissipation holes are provided at the upper end of the energy storage power supply body. Guide and bearing columns are respectively and fixedly provided at the four corners on the upper side of the energy storage power supply body. Installation bottom plates are symmetrically and fixedly provided at the lower ends of both sides of the energy storage power supply body. A support and installation strip is fixedly provided at one end of the energy storage power supply body. A protruding block is fixedly provided on the support and installation strip. A downward movement cooperation insertion hole is provided on the protruding block. Limit frames are symmetrically and fixedly provided at both sides of the lower end of the support and installation strip. Protruding bearing plates are symmetrically and fixedly provided at both sides of the end of the energy storage power supply body where the support and installation strip is provided. A limit guide insertion hole is provided at the upper side of the protruding bearing plate away from the energy storage power supply body, and a pushing insertion hole is provided at the lower end of the protruding bearing plate. Fixed push and rotation blocks are symmetrically and fixedly provided at both sides of the other end of the energy storage power supply body. A connection and fixing sleeve is fixedly provided on the energy storage power supply body below the fixed push and rotation block. A cooperation through hole is provided on the connection and fixing sleeve. A protection type and convenient assembly mechanism is provided on the energy storage power supply body.

[0006] Preferably, the protective and convenient assembly mechanism includes an external force protection sheath, a closed cover plate, a rotary connection disk, a connecting main plate, a limiting spring, a movable rod frame, and a pushing and unlocking block. The external force protection sheath is provided with heat dissipation communication holes, and guiding installation holes are respectively provided at the four corners of the lower end of the external force protection sheath. Guiding bearing columns are inserted into the guiding installation holes.

[0007] Preferably, the external force protection sheath is sleeved on the upper side of the energy storage power supply body, and a protruding strip plate is fixedly arranged at one end of the external force protection sheath. A moving long hole is provided on the protruding strip plate. A closed cover plate covers the external force protection sheath. An aligned heat dissipation port is provided on the closed cover plate, and a plug-in moving column is fixedly arranged at the lower side of one end of the closed cover plate. The plug-in moving column is inserted into the moving long hole, and a lower convex hinge block is fixedly arranged at the lower end of the plug-in moving column. A rotary connection disk is hinged at the lower end of the lower convex hinge block.

[0008] Preferably, a rotary connection strip plate is fixedly arranged on the rotary connection disk. The upper end of the rotary connection strip plate is hinged with the lower convex hinge block. An articulated column is arranged on the rotary connection disk. The rotary connection disk is hinged on the support installation strip through the articulated column, and a matching rotary connecting plate is fixedly arranged on the articulated column.

[0009] Preferably, an adjustment insertion hole is provided at one end of the matching rotary connecting plate away from the articulated column. An adjustment insertion rod is inserted into the adjustment insertion hole. A rotating connection block is fixedly arranged on the adjustment insertion rod. The rotating connection block is hinged with the connecting main plate.

[0010] Preferably, a moving cooperation rod is fixedly arranged at the lower end of the connecting main plate. The moving cooperation rod is inserted into the downward movement cooperation insertion hole, and a limiting spring is sleeved on the moving cooperation rod. A cooperation bottom plate is fixedly arranged at the lower end of the moving cooperation rod. The cooperation bottom plate is located below the support installation strip.

[0011] Preferably, installation connection holes are symmetrically provided on both sides of the cooperation bottom plate. Installation movable rods are inserted into the installation connection holes. A limiting movable plate is fixedly arranged on the installation movable rod. An elastic connecting piece is welded between the limiting movable plate and the cooperation bottom plate. Before the connecting main plate moves downward, the limiting movable plate contacts the limiting frame body, and at this time, the elastic connecting piece is in a compressed state.

[0012] Preferably, a movable rod frame is installed on the protruding bearing plate. Guiding limiting rods are symmetrically and fixedly arranged at the lower sides of both ends of the movable rod frame. The guiding limiting rods are inserted into the limiting guiding insertion holes. Lower convex connecting plates are symmetrically and fixedly arranged at both ends of the movable rod frame. An articulated plate body is fixedly arranged at the lower end of the lower convex connecting plate.

[0013] Preferably, the hinged plate body is hinged with a driving hinge rod, the lower end of the driving hinge rod is hinged with a pushing hinge block, the pushing hinge block is fixedly provided with a pushing rod member, the pushing rod member is inserted into the pushing socket, and before the movable rod frame is not moved upward, the end of the pushing rod member away from the pushing hinge block is flush with the hole of the pushing socket.

[0014] Preferably, the push-up unlocking block is inserted in the connecting and fixing sleeve, and a connecting rod is fixedly provided on the push-up unlocking block, the connecting rod is inserted in the matching through hole, and a matching pushed column is fixedly provided on the connecting rod, and the matching pushed column is located on the outside of the connecting and fixing sleeve.

[0015] Compared with the prior art, the present invention has the following advantages:

[0016] 1. When multiple energy storage power supplies need to be used together, one energy storage power supply can be fixed at this time, and then the other energy storage power supplies can be fixed through the fixed energy storage power supply. The energy storage power supplies only need to be arranged in sequence to achieve automatic fixed connection of the energy storage power supplies. There is no need to fix the energy storage power supplies one by one, which is very convenient and greatly improves the installation efficiency of multiple energy storage power supplies and facilitates the work of the staff.

[0017] 2. When other energy storage power supplies are fixed through a fixed energy storage power supply, the rotating connecting disk can be pushed to rotate under the action of the fixed push-rotating block, and then the connecting main plate can be driven to move downward with the rotation of the rotating connecting disk, so that the limited movable plate moves downward across the limit frame and is inserted into the connecting fixing sleeve on the fixed energy storage power supply, thereby realizing the connection and fixation of the energy storage power supply, and the operation is simple, convenient and fast.

[0018] 3. Before the energy storage power supply is used, its heat dissipation holes are in a closed state under the action of the anti-external force sheath, so as to prevent external dust and impurities from entering the interior of the energy storage power supply. The inner top surface of the anti-external force sheath is in close contact with the upper end surface of the energy storage power supply body, so that the height of the entire energy storage power supply is relatively small, which is convenient for storage and transportation. When the energy storage power supply is installed together, the rotation of the rotating connecting disk can drive the anti-external force sheath to move upward so that its inner top surface does not contact the energy storage power supply body, thereby providing better protection for the energy storage power supply body and preventing external forces from acting on the energy storage power supply body through the anti-external force sheath. In addition, as the anti-external force sheath moves, the heat dissipation holes are no longer in a closed state, and effective heat dissipation can be achieved. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 A first-person perspective diagram of the energy storage power supply assembly.

[0020] Figure 2Second perspective schematic diagram of the energy storage power supply assembly.

[0021] Figure 3 It is Figure 1 Enlarged schematic diagram of the position A in

[0022] Figure 4 First perspective structural schematic diagram of the energy storage power supply body.

[0023] Figure 5 Second perspective structural schematic diagram of the energy storage power supply body.

[0024] Figure 6 Structural schematic diagram of the anti-external force sheath.

[0025] Figure 7 Structural schematic diagram of the closed cover plate.

[0026] Figure 8 Structural schematic diagram of the connecting main board.

[0027] Figure 9 Structural schematic diagram of the movable rod frame.

[0028] Figure 10 Structural schematic diagram of the push-top unlocking block.

[0029] In the figure: 1. Energy storage power supply body; 11. Heat dissipation holes; 12. Guide bearing columns; 13. Installation bottom plate; 14. Support installation strips; 15. Protruding block body; 151. Lower movement cooperation insertion holes; 16. Limit frame body; 17. Protruding bearing plate; 171. Limit guide insertion holes; 172. Push-top insertion holes; 18. Fixed push-rotation block; 19. Connecting fixed sleeve; 191. Cooperation through holes; 2. Anti-external force sheath; 21. Heat dissipation communication holes; 22. Guide installation holes; 23. Protruding strip plates; 24. Moving long strip holes; 3. Closed cover plate; 31. Aligned heat dissipation openings; 32. Plug-in moving columns; 33. Lower convex hinge blocks; 4. Rotary connection disc; 41. Rotary connection strip plates; 42. Hinge columns; 43. Cooperative rotary connection plates; 44. Adjustment insertion holes; 45. Adjustment plug-in rods; 46. Rotating connection blocks; 5. Connecting main board; 51. Moving cooperation rods; 52. Limiting springs; 53. Cooperation bottom plates; 54. Installation connection holes; 55. Installation movable rods; 56. Limiting movable plates; 57. Elastic connecting pieces; 6. Movable rod frame; 61. Guide limiting rods; 62. Lower convex connecting plates; 63. Hinge plate bodies; 64. Driving hinge rods; 65. Push-top hinge blocks; 66. Push-top rods; 7. Push-top unlocking block; 71. Connecting rods; 72. Cooperative being-topped columns. Specific implementation manners

[0030] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0031] Please refer to Figures 1 to 10 , the present invention provides a technical solution:

[0032] A modular energy storage container battery system includes an energy storage power supply body 1. A heat dissipation hole 11 is opened at the upper end of the energy storage power supply body 1. Guide and bearing columns 12 are respectively and fixedly arranged at the four corners on the upper side of the energy storage power supply body 1. And mounting bottom plates 13 are symmetrically and fixedly arranged at the lower ends on both sides of the energy storage power supply body 1. A support and installation strip 14 is fixedly arranged at one end of the energy storage power supply body 1. A protruding block 15 is fixedly arranged on the support and installation strip 14. A downward movement cooperation jack 151 is opened on the protruding block 15. And limiting frame bodies 16 are symmetrically and fixedly arranged at the lower ends on both sides of the support and installation strip 14. On the energy storage power supply body 1, protruding bearing plates 17 are symmetrically and fixedly arranged at both ends of the end where the support and installation strip 14 is located. A limiting and guiding jack 171 is opened at one end of the upper side of the protruding bearing plate 17 away from the energy storage power supply body 1. And a pushing jack 172 is opened at the lower end of the protruding bearing plate 17. Fixed push and rotation blocks 18 are symmetrically and fixedly arranged at both ends of the other end of the energy storage power supply body 1. A connection and fixing sleeve 19 is fixedly arranged on the energy storage power supply body 1 below the fixed push and rotation block 18. A cooperation through hole 191 is opened on the connection and fixing sleeve 19. A protective and convenient assembly mechanism is arranged on the energy storage power supply body 1.

[0033] The protective and convenient assembly mechanism includes an external force protection sheath 2, a closed cover plate 3, a rotary connection disk 4, a connection total plate 5, a limiting spring 52, a movable rod frame 6 and a pushing and unlocking block 7. A heat dissipation communication hole 21 is opened on the external force protection sheath 2. And guiding installation holes 22 are respectively opened at the four corners of the lower end of the external force protection sheath 2. The guiding bearing columns 12 are inserted into the guiding installation holes 22. In addition, the diameter of the guiding bearing column 12 is equal to the diameter of the guiding installation hole 22.

[0034] The external force protection sheath 2 is sleeved on the upper side of the energy storage power supply body 1, and a protruding strip plate 23 is fixedly arranged at one end of the external force protection sheath 2. A moving long hole 24 is formed in the protruding strip plate 23. A closed cover plate 3 is covered on the external force protection sheath 2. An aligned heat dissipation port 31 is formed in the closed cover plate 3. And a plug-in moving column 32 is fixedly arranged at the lower side of one end of the closed cover plate 3. The plug-in moving column 32 is plugged in the moving long hole 24. And a lower convex hinge block 33 is fixedly arranged at the lower end of the plug-in moving column 32. The diameter of the plug-in moving column 32 is equal to the width of the moving long hole 24. The lower end surface of the closed cover plate 3 contacts the upper end surface of the external force protection sheath 2. The lower end of the lower convex hinge block 33 is hinged with a rotating connection disc 4. And the upper end surface of the lower convex hinge block 33 contacts the lower end surface of the protruding strip plate 23. Before the external force protection sheath 2 moves upward, the inner top surface of the external force protection sheath 2 contacts the upper end surface of the energy storage power supply body 1, making the height of the whole energy storage power supply in the minimum state, which is convenient for the storage and transportation of the energy storage power supply. And at this time, the closed cover plate 3 covers the aligned heat dissipation port 31.

[0035] A rotating connection strip plate 41 is fixedly arranged on the rotating connection disc 4. The upper end of the rotating connection strip plate 41 is hinged with the lower convex hinge block 33. And a hinge column 42 is arranged on the rotating connection disc 4. The rotating connection disc 4 is hinged on the support installation strip 14 through the hinge column 42. And a matching rotating connecting plate 43 is fixedly arranged on the hinge column 42.

[0036] An adjusting jack 44 is formed at one end of the matching rotating connecting plate 43 far from the hinge column 42. An adjusting plug-in rod 45 is plugged in the adjusting jack 44. A rotating connection block 46 is fixedly arranged on the adjusting plug-in rod 45. The rotating connection block 46 is hinged with a connecting main plate 5. In addition, the diameter of the adjusting plug-in rod 45 is equal to the diameter of the adjusting jack 44. And the adjusting plug-in rod 45 can move in the adjusting jack 44.

[0037] A moving matching rod 51 is fixedly arranged at the lower end of the connecting main plate 5. The moving matching rod 51 is plugged in the downward moving matching jack 151. And a limiting spring 52 is sleeved on the moving matching rod 51. A matching bottom plate 53 is fixedly arranged at the lower end of the moving matching rod 51. The matching bottom plate 53 is located at the lower side of the support installation strip 14. The limiting spring 52 is located at the upper side of the support installation strip 14. And the two ends of the limiting spring 52 are respectively welded on the lower end surface of the connecting main plate 5 and the upper end surface of the support installation strip 14.

[0038] Installation connecting holes 54 are symmetrically formed on both sides of the matching bottom plate 53. Installation moving rods 55 are plugged in the installation connecting holes 54. A limiting moving plate 56 is fixedly arranged on the installation moving rod 55. An elastic connecting piece 57 is welded between the limiting moving plate 56 and the matching bottom plate 53. Before the connecting main plate 5 moves downward, the limiting moving plate 56 contacts the limiting frame body 16. At this time, the elastic connecting piece 57 is in a compressed state. The diameter of the installation connecting hole 54 is equal to the diameter of the installation moving rod 55.

[0039] A movable rod frame 6 is installed on the protruding supporting plate 17, and guide limiting rods 61 are symmetrically fixed on the lower sides of both ends of the movable rod frame 6. The guide limiting rods 61 are inserted into the limiting guide sockets 171, and the diameter of the guide limiting rods 61 is equal to the diameter of the limiting guide sockets 171. Lower convex connecting plates 62 are symmetrically fixed on both ends of the movable rod frame 6, and a hinged plate body 63 is fixed on the lower end of the lower convex connecting plate 62.

[0040] A driving hinge rod 64 is hinged on the hinged plate body 63, and a pushing hinge block 65 is hinged at the lower end of the driving hinge rod 64. A pushing rod 66 is fixedly provided on the pushing hinge block 65, and the pushing rod 66 is inserted into the pushing socket 172. Before the movable rod frame 6 is not moved upward, the end of the pushing rod 66 away from the pushing hinge block 65 is flush with the opening of the pushing socket 172. In addition, the diameter of the pushing rod 66 is equal to the diameter of the pushing socket 172.

[0041] The pushing and unlocking block 7 is inserted in the connecting and fixing sleeve 19, and a connecting rod 71 is fixedly provided on the pushing and unlocking block 7. The connecting rod 71 is inserted in the matching through hole 191, and a matching pushed column 72 is fixedly provided on the connecting rod 71. The matching pushed column 72 is located on the outside of the connecting and fixing sleeve 19. When the pushing and unlocking block 7 is flush with the sleeve opening of the connecting and fixing sleeve 19, the matching pushed column 72 is in contact with the connecting and fixing sleeve 19, and the diameter of the matching pushed column 72 is larger than the diameter of the matching through hole 191.

[0042] When the energy storage power supply is used alone, it only needs to be fixedly installed at the working location through the mounting base plate 13. After installation, press down the connecting main plate 5 at this time. As the connecting main plate 5 moves downward, under the cooperation of the rotating connecting plate 43, it will drive the rotating connecting disk 4 to rotate, and then make the rotating connecting strip plate 41 rotate upward. In this way, under the action of the rotating connecting strip plate 41, it will push the anti-extrusion sheath 2 upward, making it move upward. In this way, the inner top surface of the anti-extrusion sheath 2 can be separated from the upper end surface of the energy storage power supply body 1. At this time, a better protection effect can be achieved on the energy storage power supply body 1. That is, when an external force acts on the anti-extrusion sheath 2 from above, since the upper end surface of the energy storage power supply body 1 and the inner top surface of the anti-extrusion sheath 2 are in a separated state, the external force will not cause damage to the energy storage power supply body 1, and the energy storage power supply body 1 can be fully protected. And as the rotating connecting disk 4 rotates, while driving the anti-extrusion sheath 2 to move upward, it will also drive the lower convex hinge block 33 to move. In this way, it can drive the closing cover plate 3 to move, making some heat dissipation communication holes 21 on the anti-extrusion sheath 2 appear. At the same time, some heat dissipation communication holes 21 are aligned with the aligned heat dissipation ports 31 on the closing cover plate 3, and the heat dissipation communication holes 21 are also in an open state. In this way, the heat dissipation holes 11 on the energy storage power supply body 1 can be connected to the outside, facilitating the heat dissipation of the energy storage power supply body 1. When the energy storage power supply body 1 is not installed and used, the closing cover plate 3 covers the heat dissipation communication holes 21, which can prevent dust from the outside from entering the inside of the energy storage power supply body 1. In addition, as the connecting main plate 5 moves downward, the limiting movable plate 56 will move downward to the lower side of the limiting frame body 16. In this way, the limiting movable plate 56 loses its limitation, and under the action of the elastic connecting piece 57, the limiting movable plate 56 moves away from the mating base plate 53, moving to the lower side of the limiting frame body 16. In this way, it can play a role in limiting the connecting main plate 5, making it unable to move upward, and thus ensuring the stability of the anti-extrusion sheath 2. When multiple energy storage power supplies need to be used in combination, after one energy storage power supply body 1 is fixedly installed, other energy storage power supply bodies 1 can be fixed through it. That is, place another energy storage power supply body 1 from the end with the fixed pushing and rotating block 18 of the fixed energy storage power supply body 1 from top to bottom, so that the protruding bearing plate 17 on the energy storage power supply body 1 to be fixed contacts the end face of the fixed energy storage power supply body 1, and the fixed pushing and rotating blocks 18 on the two fixed energy storage power supply bodies 1 are between the two protruding bearing plates 17 on the energy storage power supply body 1 to be installed. During the downward movement of the energy storage power supply body 1, the fixed pushing and rotating block 18 will contact the inner end face of the protruding bearing plate 17. In this way, it can play a role in limiting the energy storage power supply body 1 to be installed. During the downward movement, the fixed pushing and rotating block 18 on the fixed energy storage power supply body 1 will contact the rotating connecting strip plate 41 on the energy storage power supply body 1 to be installed. As the energy storage power supply body 1 moves downward,Under the action of the fixed pushing block 18, the rotating connecting strip plate 41 will be pushed to rotate upwards, thereby causing the anti-external force sheath 2 to move upwards and be in the correct working state. At the same time, the connecting main plate 5 will move downwards, driving the limiting movable plate 56 to move downwards. When the energy storage power supply body 1 moves downwards in place, at this time, the limiting movable plate 56 also moves downwards in place and is located below the limiting frame body 16. At this time, the limiting movable plate 56 faces the connecting and fixing sleeve 19 on the fixed energy storage power supply body 1. In this way, under the action of the elastic connecting piece 57, the limiting movable plate 56 is inserted into the connecting and fixing sleeve 19, and at the same time, the pushing and unlocking block 7 is pushed to move into the inside of the connecting and fixing sleeve 19. In this way, the energy storage power supply body 1 to be installed and the already installed energy storage power supply body 1 can be fixedly connected, thereby realizing the fixation of the energy storage power supply body 1. The operation is simple and fast. When more energy storage power supply bodies 1 are needed, just perform the same operation and use the already fixed energy storage power supply body 1 to fix the energy storage power supply body 1 to be installed, which is very convenient. When it is necessary to release the energy storage power supply body 1, pull the movable rod frame 6 upwards. Under the action of the hinge plate body 63, the pushing hinge block 65 is driven to move towards the protruding bearing plate 17. In this way, under the action of the pushing rod 66, the mating push pillar 72 will be pushed to move, and then the pushing and unlocking block 7 will push the limiting movable plate 56 to move, causing it to withdraw from the connecting and fixing sleeve 19, and the energy storage power supply body 1 can be released.,

[0043] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A modular energy storage container battery system, comprising an energy storage power supply body (1), wherein a heat dissipation hole (11) is provided at the upper end of the energy storage power supply body (1), characterized in that: Guide bearing columns (12) are fixedly provided at the four corners of the upper side of the energy storage power supply body (1), and mounting base plates (13) are symmetrically fixedly provided at the lower ends of both sides of the energy storage power supply body (1). A support mounting bar (14) is fixedly provided at one end of the energy storage power supply body (1), a protruding block (15) is fixedly provided on the support mounting bar (14), a downward-moving matching socket (151) is provided on the protruding block (15), and a limiting frame (16) is symmetrically fixedly provided on both sides of the lower end of the support mounting bar (14). A protruding bearing plate (17) is symmetrically fixedly provided on both sides of one end of the energy storage power supply body (1) provided with the support mounting bar (14), and the upper side of the protruding bearing plate (17) is away from one side of the energy storage power supply body (1). A limited guide socket (171) is provided at the end, and a push-up socket (172) is provided at the lower end of the protruding bearing plate (17), and fixed push-turn blocks (18) are symmetrically fixed on both sides of the other end of the energy storage power supply body (1), and a connecting fixing sleeve (19) is fixedly provided on the energy storage power supply body (1) below the fixed push-turn block (18), and a matching through hole (191) is provided on the connecting fixing sleeve (19), and a protective convenient assembly mechanism is provided on the energy storage power supply body (1), and the protective convenient assembly mechanism includes an anti-external force sleeve (2), a closed cover (3), a rotating connection disk (4), a connecting main plate (5), a limiting spring (52), a movable rod frame (6) and a push-up unlocking block (7), and the anti-external force sleeve (2) A heat dissipation connecting hole (21) is provided on the upper portion, and guide mounting holes (22) are provided at the four corners of the lower end of the anti-external force sheath (2), wherein a guide bearing column (12) is inserted into the guide mounting hole (22), a protruding strip (23) is fixedly provided at one end of the anti-external force sheath (2), a movable long hole (24) is provided on the protruding strip (23), the anti-external force sheath (2) is sleeved on the upper side of the energy storage power supply body (1), the anti-external force sheath (2) is covered with a closed cover (3), and a plug-in movable column (32) is fixedly provided on the lower side of one end of the closed cover (3), the plug-in movable column (32) is plugged into the movable long hole (24), and a lower convex hinge block (33) is fixedly provided at the lower end of the plug-in movable column (32), The lower end of the lower convex hinge block (33) is hinged to a rotary connecting disk (4), a rotary connecting strip (41) is fixedly provided on the rotary connecting disk (4), the upper end of the rotary connecting strip (41) is hinged to the lower convex hinge block (33), and a hinge column (42) is provided on the rotary connecting disk (4), the rotary connecting disk (4) is hinged to the support mounting bar (14) through the hinge column (42), and a matching rotary connecting plate (43) is fixedly provided on the hinge column (42), an adjustment socket (44) is provided on the matching rotary connecting plate (43) at one end away from the hinge column (42), an adjustment plug rod (45) is plugged into the adjustment socket (44), and a rotating connecting block (46) is fixedly provided on the adjustment plug rod (45).The rotating connecting block (46) is hinged with a connecting main plate (5), and a movable matching rod (51) is fixedly provided at the lower end of the connecting main plate (5), and the movable matching rod (51) is inserted into the downward matching socket (151). A limiting spring (52) is sleeved on the movable matching rod (51), and a matching base plate (53) is fixedly provided at the lower end of the movable matching rod (51), and the matching base plate (53) is located at the lower side of the supporting mounting strip (14), and mounting holes (54) are symmetrically opened on both sides of the matching base plate (53), and a mounting movable rod (55) is inserted into the mounting hole (54), and a limiting movable plate (56) is fixedly provided on the mounting movable rod (55). The limiting movable plate (56) ) and the matching bottom plate (53) are welded with an elastic connecting piece (57). Before the connecting main plate (5) is not moved downward, the limiting movable plate (56) is in contact with the limiting frame (16). At this time, the elastic connecting piece (57) is in a compressed state. The pushing and unlocking block (7) is inserted into the connecting fixed sleeve (19), and a connecting rod (71) is fixedly provided on the pushing and unlocking block (7). The connecting rod (71) is inserted into the matching through hole (191). Another energy storage power supply body (1) is placed from top to bottom from one end of the fixed energy storage power supply body (1) provided with the fixed pushing and turning block (18), so that the protruding bearing plate (17) on the energy storage power supply body (1) to be fixed is aligned with the fixed energy storage power supply body (1) and the fixed push-and-turn blocks (18) on the two fixed energy storage power supply bodies (1) are located between the two protruding supporting plates (17) on the energy storage power supply body (1) to be installed. During the downward movement of the energy storage power supply body (1), the fixed push-and-turn blocks (18) contact the inner end faces of the protruding supporting plates (17), thereby limiting the energy storage power supply body (1) to be installed. During the downward movement, the fixed push-and-turn blocks (18) on the fixed energy storage power supply body (1) contact the rotating connecting strip (41) on the energy storage power supply body (1) to be installed. As the energy storage power supply body (1) moves downward, the fixed push-and-turn blocks (18) push the rotating connecting strip (41) to rotate upward. The movement causes the anti-external force sheath (2) to move upward, and at the same time the connecting main plate (5) moves downward, driving the limiting movable plate (56) to move downward. When the energy storage power supply body (1) moves downward into position, the limiting movable plate (56) also moves downward into position and is located on the lower side of the limiting frame (16). At this time, the limiting movable plate (56) is opposite to the connection fixing sleeve (19) on the fixed energy storage power supply body (1). Under the action of the elastic connecting piece (57), the limiting movable plate (56) is inserted into the connection fixing sleeve (19), and at the same time, the push-up unlocking block (7) is pushed to move toward the inside of the connection fixing sleeve (19), so that the energy storage power supply body (1) to be installed and the installed energy storage power supply body (1) are fixedly connected.

2. A modular energy storage container battery system according to claim 1, characterized in that: The closed cover plate (3) is provided with an aligned heat dissipation opening (31).

3. A modular energy storage container battery system according to claim 2, characterized in that: A movable rod frame (6) is mounted on the protruding bearing plate (17), and guide limiting rods (61) are symmetrically fixedly provided at the lower sides of both ends of the movable rod frame (6), and the guide limiting rods (61) are inserted into the limiting guide sockets (171). Lower protruding connecting plates (62) are symmetrically fixedly provided at both ends of the movable rod frame (6), and a hinged plate body (63) is fixedly provided at the lower end of the lower protruding connecting plate (62).

4. A modular energy storage container battery system according to claim 3, characterized in that: A driving hinge rod (64) is hinged on the hinge plate body (63), and a push-out hinge block (65) is hinged on the lower end of the driving hinge rod (64). A push-out rod (66) is fixedly provided on the push-out hinge block (65), and the push-out rod (66) is inserted into the push-out socket (172). Before the movable rod frame (6) moves upward, the end of the push-out rod (66) away from the push-out hinge block (65) is flush with the hole of the push-out socket (172).

5. The modular energy storage container battery system according to claim 4, characterized in that: A matching push column (72) is fixedly provided on the connecting rod (71), and the matching push column (72) is located outside the connecting fixing sleeve (19).

Citation Information

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