Waterproof intelligent battery energy storage box
By designing an intelligent control unit and suspension components, the problems of low intelligence and inconvenient installation of battery energy storage boxes are solved, enabling real-time monitoring of battery status and efficient installation, thereby improving the equipment's protective performance and user experience.
Patent Information
- Application Number
- CN202511326090.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-17
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2045-09-17
AI Technical Summary
Existing battery energy storage boxes suffer from insufficient intelligence, lack of remote monitoring capabilities, inability to continuously correct data accuracy, inconvenient installation and use, laborious and unstable operation of fixed structures, and inadequate protection performance.
The system employs an intelligent control unit combined with a WIFI module for remote monitoring. The suspension component simplifies installation by hanging and locking first, while the dual locking structure enhances stability. It features a multi-dimensional waterproof and dustproof design, a self-resetting switch and circuit breaker protection cover to improve safety, and LED lights to display the status intuitively.
It enables real-time monitoring and remote data correction of battery status, makes installation and disassembly operations labor-saving and efficient, provides excellent multi-dimensional protection, and displays status intuitively, thereby improving user interaction experience and device stability.
Smart Images

Figure CN120824499A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of battery energy storage box equipment, and in particular to a waterproof intelligent battery energy storage box. Background Art
[0002] With the development of new energy technologies, battery energy storage boxes are increasingly used in distributed energy systems, emergency power supply and other fields. However, existing battery energy storage boxes still have shortcomings during use.
[0003] In terms of the intelligence level of battery energy storage boxes, most products lack remote monitoring capabilities, and battery status such as power and temperature need to be checked on site; although some have monitoring functions, they do not have a borderless cloud collaboration mechanism, and the data accuracy cannot be continuously corrected, making it difficult to ensure the long-term stable operation of the battery. Moreover, the battery usage status display is not intuitive, and the battery charging and discharging, fault alarm and other status need to be checked by opening the box lid, and real-time information cannot be obtained, resulting in a poor user interaction experience.
[0004] In terms of the installation and use of battery energy storage boxes, the energy storage boxes can be placed on the ground or hung for use. When hanging the energy storage box on the wall, the fixing structure is mostly bolt connection or hanging hook. When using bolts for hanging and fixing, it is necessary to manually lift the box throughout the process for alignment and fixation, and the operating space between the energy storage box and the wall is small, the operation is laborious and inefficient; when using hooks and hooks for hanging, the energy storage box needs to be manually lifted to the top of the hook and aligned with the hook before the hook can be hung, and there is no fixing step after hanging the hook. When the energy storage box is subjected to upward force, the energy storage box is easy to fall off the hook or hook. Summary of the Invention
[0005] In order to improve the convenience of a waterproof smart battery energy storage box during use, the present application provides a waterproof smart battery energy storage box.
[0006] This application provides a waterproof smart battery energy storage box, which adopts the following technical solutions: A waterproof intelligent battery energy storage box, comprising a box body, a box cover detachably mounted on the box body, a battery module and a control unit mounted in the box body, the control unit comprising a battery detection and management system, a WIFI module, an indicator light module and an air switch; a hanging assembly is mounted on the box body, the hanging assembly comprising a hanging bottom and a hanging seat, the hanging bottom comprising a base, a movable seat slidably mounted on the base, an ear piece for suspending the hanging seat mounted on the movable seat, and a bayonet opening provided on the movable seat; the hanging seat comprises a bottom plate mounted on the box body, a hanging plate and a hanging plate mounted on the bottom plate, a lock plate mounted on the hanging plate for locking into the bayonet opening; a fixing assembly for fixing the lock plate is mounted on the base, a hanging plate is mounted on the base, the hanging plate is arranged between the fixing assembly and the ear piece, and a support plate for protecting the lock plate is hinged on the hanging plate.
[0007] By adopting the above technical solution, the control unit controls and supervises the battery module, and the battery monitoring and management system can collect battery status data in real time, and cooperate with the WIFI module and the indicator light module to intelligently reflect the battery usage status; the hanging base cooperates with the mobile seat, and the box can be first hung on the ear piece of the mobile seat through the hanging piece of the hanging seat, and the initial positioning can be completed without manual lifting; the fixing component can quickly lock the lock plate, and use the lock plate to touch the support plate to make the support plate cooperate with the fixing component to avoid the lock plate from being deformed by force, realizing convenient installation of hanging first and then locking, which greatly reduces the operation intensity.
[0008] In a specific feasible implementation scheme, the fixing assembly includes a first telescopic sleeve, the first telescopic sleeve is installed on the base, the first telescopic sleeve is slidably installed on the first telescopic sleeve, the first movable platform is installed on the first telescopic rod, the first spring is sleeved on the first telescopic rod, one end of the first spring is connected to the first movable platform, and the other end is connected to the base, a buckle platform is installed on the first movable platform to resist the support plate, a locking rod is installed on the buckle platform, and a lock hole is provided on the lock plate; a second telescopic sleeve is installed on the base, a second telescopic rod is slidably installed on the second telescopic sleeve, one end of the second telescopic rod extends out of the base, a second movable platform is installed on the second telescopic rod, a pressure groove is provided on the second movable platform, a pressure rod is installed on the first movable platform, and the pressure rod passes through the pressure groove and is slidably connected to the second movable platform.
[0009] By adopting the above technical solution, pressing the second telescopic rod can drive the second movable platform to move, and through the linkage of the pressing groove and the pressing rod, the first movable platform is driven to slide along the first telescopic sleeve; the first spring can realize the reset of the first movable platform, so that the locking rod is automatically inserted into the locking hole of the lock plate to complete the locking; pressing again can unlock, realizing one-button locking and unlocking, simplifying the installation and disassembly steps, using the buckle platform to resist the support plate, and the support plate to support the buckle platform, avoiding the buckle platform directly resisting the lock plate, preventing the supporting force generated by the first spring from acting on the lock plate to cause the lock plate to bend and deform, which can protect the lock plate, enhance the service life of the lock plate, and avoid the lock plate being unable to slide into the bayonet due to bending.
[0010] In a specific possible implementation scheme, a guide platform is installed on the support plate, and the guide platform is an arc-shaped plate. A push block is installed on the second movable platform to push the support plate to rotate through the guide platform.
[0011] By adopting the above technical solution, the push block of the second movable platform can push the support plate to rotate along the arc-shaped guide platform, which not only prevents the support plate from hindering the return of the first movable platform, but also can push the movable seat to pop out through the support plate without the need to pull the box body additionally, further improving the convenience of disassembly.
[0012] In a specific possible implementation method, a card is installed on the movable seat, and the card is arranged on both sides of the bayonet. A card hole is opened on the card, and the locking rod fixes the card by being locked into the card hole.
[0013] By adopting the above technical solution, the locking rod is simultaneously inserted into the card hole and the lock hole of the lock plate, which can fix both the box body and the movable seat, forming a double locking structure, avoiding relative shaking between the movable seat and the hanging seat, and improving the connection stability.
[0014] In a specific embodiment, a positioning platform for positioning the hanging piece is installed on the ear piece.
[0015] By adopting the above technical solution, when the hanging piece abuts against the positioning platform, the installation position of the hanging seat can be quickly determined, and the lock hole and the card hole can be aligned without repeated adjustments, thereby improving installation efficiency.
[0016] In a specific feasible implementation scheme, the battery monitoring and management system is communicatively connected to the WIFI module, the indicator light module includes a light board, the light board is installed on the box cover, the light board is provided with an LED lamp, the light board is provided with a lampshade for collecting light, and the box cover is provided with a window for accommodating the lampshade; a light board control board is fixedly installed on the box body, and the light board control board is communicatively connected to the light board and the battery monitoring and management system respectively.
[0017] By adopting the above technical solution, the battery monitoring and management system can collect battery status data in real time, upload it to the cloud through the WIFI module to realize remote monitoring, and correct the data accuracy through edge-cloud collaboration; the light board control board receives the BMS signal and controls the LED light to display the charging, discharging, alarm and other status. After the lampshade collects the light, it can be viewed intuitively through the box cover window without opening the cover, which is conducive to enhancing the performance of the battery energy storage box.
[0018] In a specific feasible implementation scheme, the circuit breaker switch is detachably mounted on the box body, the circuit breaker switch is connected to the battery module through a copper sheet, an circuit breaker protective cover is mounted on the box body, the circuit breaker protective cover includes a cover bottom, the cover bottom is mounted on the box body, a cover that can be opened and closed is hinged on the cover bottom, and a buckle for clamping the cover is provided on the cover bottom.
[0019] By adopting the above technical solution, the circuit breaker can automatically disconnect when the circuit is overloaded or short-circuited, achieving safety protection; the transparent cover can prevent accidental touch or rain intrusion, the buckle facilitates the opening and closing of the cover, and the circuit breaker status can be intuitively observed, taking into account both safety and convenience.
[0020] In a specific feasible implementation scheme, a positive socket and a negative socket are installed on the box body, and the positive socket and the negative socket are connected to the circuit breaker switch through copper sheets; a waterproof socket is fixedly installed on the box body, and the waterproof socket is connected to the inverter of the battery monitoring and management system through a communication cable.
[0021] By adopting the above technical solution, the positive and negative sockets are connected to the battery module through the circuit breaker to ensure the safety of the power supply circuit; the waterproof socket can ensure waterproof performance when communicating with the inverter or multiple boxes in parallel, and is suitable for complex environments such as outdoor.
[0022] In a specific possible implementation scheme, a sealing ring is installed on the box body and abuts against the box cover.
[0023] By adopting the above technical solution, the sealing ring can fill the gap between the box cover and the box body, making the entire box waterproof and dustproof, and improving the environmental adaptability of the equipment.
[0024] In summary, this application includes at least one of the following beneficial technical effects: 1. Intelligent monitoring is accurate and reliable: The BMS is combined with the WIFI module to realize remote monitoring of battery status and edge-cloud collaborative data correction; the self-reset switch automatically resets the circuit inspection, reducing manual intervention and ensuring long-term stable operation of the equipment; 2. Excellent waterproof and dustproof performance: The sealing ring, waterproof socket, light panel sealing gasket and IP65-level handle seal form multi-dimensional protection, effectively isolating rain and dust, and adapting to complex scenes such as outdoor.
[0025] 3. Comprehensive safety protection: The hot aerosol automatic fire extinguishing device quickly handles thermal runaway, the circuit breaker protective cover prevents accidental contact and moisture, the explosion-proof valve balances the pressure difference in the box to prevent seal failure, and the double locking structure prevents the box from falling, ensuring multi-dimensional safety in use; 4. Intuitive and clear status display: The programmable LED light is matched with the lampshade to display the charging, discharging and alarm status in real time through the upper cover glass. Users can obtain key information without opening the cover, providing a good interactive experience. 5. Efficient and convenient installation and disassembly: Through the coordination of hanging and fixing, the installation method of hanging first and then locking is realized, without the need for manual lifting; locking and unlocking can be completed by pressing the second telescopic rod. When disassembling, the support plate automatically pushes the box to pop out, which saves effort and is highly efficient. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 Schematic diagram of a battery energy storage box according to an embodiment of the present application.
[0027] Figure 2 It is an exploded view of the battery energy storage box of an embodiment of the present application.
[0028] Figure 3Schematic diagram of a control unit according to an embodiment of the present application.
[0029] Figure 4 Schematic diagram of the circuit breaker protection cover according to an embodiment of the present application.
[0030] Figure 5 Schematic diagram of a suspension assembly according to an embodiment of the present application.
[0031] Figure 6 It is a schematic diagram of the bottom hanging of an embodiment of the present application.
[0032] Figure 7 It is a cross-sectional view of the bottom hanging of an embodiment of the present application.
[0033] Figure 8 This is a schematic diagram of the installation position of the support plate of an embodiment of the present application.
[0034] Figure 9 It is a schematic diagram of the fixing component of an embodiment of the present application.
[0035] Figure numerals: 1, box body; 11, box cover; 12, upper cover glass; 13, sealing ring; 14, handle; 15, hot aerosol automatic fire extinguishing device; 2, battery module; 3, control unit; 31, battery monitoring and management system; 32, WIFI module; 33, indicator light module; 331, light board; 332, lampshade; 333, sealing gasket; 334, light board control panel; 34, circuit breaker; 35, circuit breaker protection cover; 351, cover bottom; 352, cover; 353, buckle; 361, positive socket; 362, negative socket; 363, waterproof socket; 37, self-resetting switch; 38, explosion-proof valve; 39, WIFI hidden antenna; 4, suspension assembly; 41, base; 411, storage 42. Fixing rod; 43. Moving seat; 431. Slide groove; 432. Ear piece; 4321. Positioning platform; 433. Bayonet; 434. Card; 435. Card hole; 441. Bottom plate; 442. Hanging plate; 443. Hanging piece; 444. Locking plate; 445. Locking hole; 45. Fixing assembly; 451. First telescopic sleeve; 452. First telescopic rod; 453. First movable platform; 454. First spring; 455. Buckling platform; 456. Locking rod; 457. Pressing rod; 461. Second telescopic sleeve; 462. Second telescopic rod; 463. Second movable platform; 4631. Pressing groove; 464. Second spring; 465. Hanging plate; 466. Support plate; 467. Guide platform; 468. Push block. DETAILED DESCRIPTION
[0036] The following is combined with Figure 1-9 This application is described in further detail.
[0037] The present application discloses a waterproof smart battery energy storage box. Figure 1 、 Figure 2 and Figure 3 The box body 1 includes a box cover 11 detachably mounted on the box body 1 via screws. A top glass cover 12 is fixedly mounted on the box cover 11. A sealing ring 13 is fixedly mounted on the box body 1. When the box cover 11 is mounted on the box body 1, the sealing ring 13 abuts against the box cover 11, providing a waterproof and dustproof seal. Handles 14 are hingedly mounted on the vertical side walls of the box body 1, and a sealing rubber gasket is installed between the handles 14 and the box body 1.
[0038] A hot aerosol automatic fire extinguishing device 15 is detachably installed in the box cover 11 by screws. The hot aerosol automatic fire extinguishing device 15 is a prior art. The embodiment of the present application does not describe the structure of the hot aerosol automatic fire extinguishing device 15. The hot aerosol automatic fire extinguishing device 15 can generate a large amount of aerosol fire extinguishing agent in a short time and emit it in the form of a spray. The sprayed gas extinguishes the fire through the dual effects of physical cooling and chemical inhibition, interrupting the combustion reaction, thereby achieving the effect of rapid fire extinguishing.
[0039] A battery module 2 and a control unit 3 are installed in the box 1. The battery module 2 is fixedly mounted on the box 1. The battery module 2 can be composed of a common lithium battery or a lithium iron phosphate battery module.
[0040] The control unit 3 includes a battery monitoring and management system 31, referred to as the BMS in English. It serves as the link between the battery and the user, performing rectification and inversion, stabilizing output, and signal conversion. It is primarily responsible for monitoring, controlling, and managing the various battery performance characteristics to ensure safe, stable, and long-life operation of the battery. The battery monitoring and management system 31 is communicatively connected to a WIFI module 32, which is used to intelligently monitor and optimize the battery system. The battery monitoring and management system 31 also performs edge-cloud collaboration, and the accuracy of the battery monitoring and management system 31 is continuously corrected using cloud data. In the embodiments of the present application, the battery monitoring and management system 31 and the WIFI module 32 are both prior art.
[0041] The housing 1 is mounted with a light module 33. This module comprises a light board 331, which is removably mounted to the housing lid 11 via screws. The light board 331 is equipped with an LED light and a lampshade 332 for focusing the light. A window is provided in the housing lid 11 to accommodate the lampshade 332, allowing the user to observe the LED light status through the upper cover glass 12. A sealing gasket 333 is installed between the light board 331 and the housing lid 11, providing a waterproof and dustproof seal. In this embodiment, the light board 331 is programmable, allowing the LED light display to be customized as needed. Charging, discharging, and alarm status can be displayed via the LED display, further enhancing the user experience. A light board control board 334 is fixedly mounted on the housing 1. This board communicates with the light board 331 and the battery monitoring and management system 31, converting signals and controlling the light status of the light board 331.
[0042] The box 1 is detachably mounted with a circuit breaker 34 by screws. The circuit breaker 34 is an air switch, a type of circuit breaker, and is a prior art. The present embodiment will not describe the structure of the circuit breaker 34. When the current in the circuit exceeds the rated current, it will automatically disconnect, and can protect the circuit or electrical equipment from short circuits, severe overloads, etc. The circuit breaker 34 is connected to the battery module 2 through a copper sheet. Figure 2 、 Figure 3 and Figure 4 The box body 1 is provided with an air switch protection cover 35 which is detachably mounted thereon by screws. The air switch protection cover 35 includes a cover bottom 351 which is mounted on the box body 1. A cover cap 352 which can be opened and closed is hingedly mounted on the cover bottom 351. A buckle 353 for clamping the cover cap 352 is provided on the cover bottom 351. The cover cap 352 is a transparent cover, and the user can observe the status of the air switch 34 from the outside of the box body 1.
[0043] The box 1 is detachably mounted with screws on a positive socket 361 and a negative socket 362. The positive and negative sockets 361 and 362 are connected to the circuit breaker 34 via a copper sheet. A waterproof socket 363 is fixedly mounted on the box 1. In this embodiment of the present application, the battery monitoring and management system 31 includes an inverter. The waterproof socket 363 can be connected to the inverter of the battery monitoring and management system 31 via a communication cable, or to another battery box when the system is used in parallel.
[0044] A WIFI hidden antenna 39 is fixedly mounted on the box body 1 , and the WIFI hidden antenna 39 is communicatively connected to the WIFI module 32 of the battery monitoring and management system 31 .
[0045] The box 1 is fixedly mounted with a self-resetting switch 37, which is connected to the battery monitoring and management system 31 for communication, thus avoiding the administrator from spending too much time on manual reset and improving the reliability and stability of the equipment. The box 1 is fixedly mounted with an explosion-proof valve 38.
[0046] Reference Figure 5 、 Figure 6 and Figure 7 The box body 1 is detachably mounted with a hanging assembly 4 for hanging on the wall. The hanging assembly 4 includes a hanging base mounted on the wall and a hanging seat mounted on the box body 1. The hanging base includes a base 41 fixed to the wall. The base 41 is provided with a retracting groove 411. A fixing rod 42 is fixedly mounted on the base 41. The fixing rod 42 is arranged in the retracting groove 411. A movable seat 43 is slidably mounted on the base 41. The movable seat 43 is provided with a sliding groove 431. The fixing rod 42 passes through the sliding groove 431 on the movable seat 43 and the movable seat 43 can slide on the fixing rod 42. An ear piece 432 is fixedly mounted on the movable seat 43, and a positioning platform 4321 is fixedly mounted on the ear piece 432. A bayonet 433 is provided on the movable seat 43. A card 434 is fixedly mounted on the movable seat 43. Cards 434 are provided on the upper and lower sides of the bayonet 433. A card hole 435 is provided on the card 434.
[0047] The hanging seat includes a bottom plate 441, which is fixedly mounted on the box body 1. A hanging plate 442 and a hanging piece 443 are fixedly mounted on the bottom plate 441. There is a distance between the hanging piece 443 and the hanging plate 442. A locking plate 444 is fixedly mounted on the hanging plate 442, and a locking hole 445 is opened on the locking plate 444.
[0048] When hanging the battery energy storage box, first move the box body 1 from the side of the movable seat 43 so that the ear piece 432 slides between the hanging plate 442 and the hanging piece 443, so that the hanging seat and the box body 1 are hung on the movable seat 43. When the box body 1 is pushed onto the movable seat 43, the locking plate 444 will slide into the bayonet 433. When the hanging piece 443 and the positioning platform 4321 are against each other to determine the position of the hanging seat, the locking plate 444 moves between the cards 434 and the lock hole 445 is aligned with the card hole 435.
[0049] Reference Figure 7 、 Figure 8 and Figure 9A fixing assembly 45 for fixing the mounting bracket is mounted on the base 41. The fixing assembly 45 includes a first telescopic sleeve 451, which is fixedly mounted on the base 41. A first telescopic rod 452 is slidably mounted on the first telescopic sleeve 451. A first movable platform 453 is fixedly mounted on the first telescopic rod 452. A first spring 454 is sleeved on the first telescopic rod 452. One end of the first spring 454 is fixedly connected to the first movable platform 453, and the other end is fixedly connected to the base 41. A locking platform 455 is fixedly mounted on the first movable platform 453. A locking rod 456 is fixedly mounted on the locking platform 455. The end of the locking rod 456 away from the locking platform 455 is configured in a frustum shape.
[0050] A second telescopic sleeve 461 is fixedly mounted on the base 41, and a second telescopic rod 462 is slidably mounted on the second telescopic sleeve 461. The end of the second telescopic rod 462 away from the second telescopic sleeve 461 extends out of the retractable slot 411 and is slidably connected to the base 41. A second movable platform 463 is fixedly mounted on the second telescopic rod 462. A second spring 464 is sleeved on the second telescopic rod 462. One end of the second spring 464 is fixedly connected to the second movable platform 463, and the other end is fixedly connected to the base 41. The second spring 464 supports the second movable platform 463 so that the end of the second movable platform 463 away from the second telescopic sleeve 461 abuts against the base 41. A pressing groove 4631 is defined in the second movable platform 463. A pressing rod 457 is fixedly mounted on the first movable platform 453. The pressing rod 457 is disposed through the pressing groove 4631 and is slidably connected to the second movable platform 463 through the pressing groove 4631. A hanging plate 465 is fixedly installed on the base 41, and the hanging plate 465 is arranged in the folding groove 411. The hanging plate 465 is arranged between the buckle platform 455 and the ear piece 432. A support plate 466 is hinged on the hanging plate 465, and the bottom end of the support plate 466 is below the card 434. A guide platform 467 is fixedly installed on the side of the support plate 466 close to the second movable platform 463. The guide platform 467 is an arc-shaped plate, and a push block 468 is fixedly installed on the second movable platform 463.
[0051] Reference Figure 5 、 Figure 8 and Figure 9After the energy storage box is suspended on the movable seat 43, the second telescopic rod 462 is pressed into the base 41. The second telescopic rod 462 drives the second movable platform 463 downward, which in turn drives the pressure rod 457 downward. The pressure rod 457 drives the first movable platform 453 downward, ultimately moving the locking rod 456 below the support plate 466. In this embodiment, a scale is printed on the second telescopic rod 462 extending from the base 41. When the portion of the second telescopic rod 462 extending from the base 41 is halfway down, the locking rod 456 is fully moved below the support plate 466. Because the energy storage box is already suspended on the movable seat 43, the weight of the energy storage box is borne by the movable seat 43, eliminating the need for an operator to lift the box. The operator can press the second telescopic rod 462 while pushing the movable seat 43 into the retractable slot 411. Suspending the energy storage box on the movable seat 43 before securing it prevents the operator from having to lift the box for a long time, saving effort and facilitating quick installation.
[0052] Push the movable seat 43 and the box body 1 into the retracting groove 411, and the movable seat 43 and the box body 1 will move into the retracting groove 411 at the same time. When the movable seat 43 and the box body 1 move, the card 434 and the lock plate 444 will approach the support plate 466, and the card 434 will push the support plate 466 to rotate. When the positioning platform 4321 on the movable seat 43 is against the base 41, the card hole 435 on the card 434 is just moved to the top of the locking rod 456. At this time, the second telescopic rod 462 is released to release the second movable platform 463. The first spring 454 will support the first movable platform 453 to move the first movable platform 453 upward, so that the buckle platform 455 is against the support plate 466, and the locking rod 45 6 is inserted into the card hole 435 and the lock hole 445 to achieve the rapid fixation of the movable seat 43 and the hanging seat, and prevent the hanging seat and the box body 1 from falling from the movable seat 43; at the same time, the buckle platform 455 is used to abut against the support plate 466, and the support plate 466 supports the buckle platform 455 to avoid the buckle platform 455 directly abutting against the card 434 and the lock plate 444, and prevent the supporting force generated by the first spring 454 from acting on the card 434 and the lock plate 444 to cause the card 434 and the lock plate 444 to bend and deform, which can protect the card 434 and the lock plate 444, extend the service life of the card 434 and the lock plate 444, and avoid the lock plate 444 from being unable to slide into the card slot 433 due to bending.
[0053] When the battery storage box needs to be removed, the second telescopic rod 462 is pressed downward, and the second telescopic rod 462 will drive the second movable platform 463 to press the pressure rod 457 downward first. The pressure rod 457 drives the first movable platform 453 to move downward so that the locking rod 456 leaves the locking plate 444 and the card 434. When the locking rod 456 and the buckle platform 455 move to the bottom of the support plate 466, continue to press the second telescopic rod 462 downward, and the push block 468 on the second movable platform 463 will engage with the guide block 468 on the support plate 466. When the support plate 466 contacts the locking platform 455, the push block 468, through the action of the curved surface of the guide platform 467, pushes the support plate 466 to rotate toward the outside of the base 41. The support plate 466 pushes the card 434 and the lock plate 444, causing the movable seat 43 and the box body 1 to move toward the outside of the folding groove 411, thereby facilitating the removal of the box body 1. At the same time, the push block 468 pushes the support plate 466 away from the locking platform 455, allowing the locking platform 455 and the lock rod 456 to slide smoothly to the side of the support plate 466 away from the movable seat 43. The second telescopic rod 462 is used to complete the fixing and unlocking of the energy storage box, without the user having to lift the energy storage box, which is convenient and quick, and helps to enhance the performance of the battery energy storage box.
[0054] In the embodiment of the present application, after the energy storage box is removed, there is no need to hang the energy storage box. The movable seat 43 can be pushed into the base 41, and the locking rod 456 is used to lock the card 434, thereby reducing the space occupied by the hanging bottom and preventing the movable seat 43 from sliding out of the base 41 to cause bumps and damage, thereby enhancing the practicality of the hanging bottom.
[0055] The implementation principle of the embodiment of the present application is as follows: the movable seat 43 and the fixed assembly 45 facilitate the installation and removal of the energy storage box, allowing positioning and locking without lifting; the battery status is remotely monitored and data corrected through the battery monitoring and management system 31 and the WIFI module 32, and the indicator light module 33 intuitively displays the device status; the sealing ring 13, the waterproof socket 363, etc. achieve multi-dimensional waterproof and dustproofing, and cooperate with the fire extinguishing device, the explosion-proof valve 38, and the circuit breaker protective cover 35 to form a comprehensive safety protection. The various components work together to solve the problems of existing products such as cumbersome installation, low intelligence, and insufficient protection. The built-in hidden WIFI and active fire protection improve space utilization and reduce costs while ensuring performance and safe use; the addition of a glass translucent panel on the front cover of the box makes the overall appearance more beautiful and improves convenience and safety.
[0056] The above are all preferred embodiments of the present application, and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.
Claims
1. A waterproof intelligent battery energy storage box, characterized by: The invention comprises a box body (1), a box cover (11) is detachably mounted on the box body (1), a battery module (2) and a control unit (3) are mounted in the box body (1), and the control unit (3) comprises a battery monitoring and management system (31), a WIFI module (32) and a light module (33); a suspension assembly (4) is mounted on the box body (1), and the suspension assembly (4) comprises a suspension base and a suspension seat, and the suspension base comprises a base (41), a movable seat (43) is slidably mounted on the base (41), and a movable seat (43) is mounted on the movable seat (43) for the suspension seat to be suspended. The hanging ear piece (432) is provided; the hanging seat comprises a bottom plate (441) mounted on the box body (1); a hanging plate (442) and a hanging piece (443) are mounted on the bottom plate (441); a locking plate (444) is mounted on the hanging plate (442); a fixing assembly (45) for fixing the locking plate (444) is mounted on the base (41); a support plate (466) for protecting the locking plate (444) is hingedly connected to the base (41); the support plate (466) is arranged between the fixing assembly (45) and the ear piece (432).
2. A waterproof smart battery energy storage box according to claim 1, characterized in that: The fixing assembly (45) includes a first telescopic sleeve (451), the first telescopic sleeve (451) is mounted on the base (41), a first telescopic rod (452) is slidably mounted on the first telescopic sleeve (451), a first movable platform (453) is mounted on the first telescopic rod (452), a first spring (454) is sleeved on the first telescopic rod (452), one end of the first spring (454) is connected to the first movable platform (453), and the other end is connected to the base (41), a buckle platform (455) for resisting the support plate (466) is mounted on the first movable platform (453), and a buckle platform (455) is mounted on the buckle platform (455). A locking rod (456) is provided on the locking plate (444); a second telescopic sleeve (461) is installed on the base (41); a second telescopic rod (462) is slidably installed on the second telescopic sleeve (461); one end of the second telescopic rod (462) extends out of the base (41); a second movable platform (463) is installed on the second telescopic rod (462); a pressing groove (4631) is provided on the second movable platform (463); a pressing rod (457) is installed on the first movable platform (453); the pressing rod (457) passes through the pressing groove (4631) and is slidably connected to the second movable platform (463).
3. A waterproof smart battery energy storage box according to claim 2, characterized in that: A guide platform (467) is installed on the support plate (466), and the guide platform (467) is an arc-shaped plate. A push block (468) is installed on the second movable platform (463) for pushing the support plate (466) to rotate through the guide platform (467).
4. The waterproof intelligent battery energy storage box according to claim 2, characterized in that: The movable seat (43) is provided with a bayonet (433), the locking plate (444) is engaged with the bayonet (433), a card (434) is installed on the movable seat (43), the card (434) is arranged on both sides of the bayonet (433), a card hole (435) is provided on the card (434), and the locking rod (456) fixes the card (434) by engaging with the card hole (435).
5. The waterproof intelligent battery energy storage box according to claim 1, characterized in that: A positioning platform (4321) for positioning the hanging piece (443) is installed on the ear piece (432).
6. The waterproof intelligent battery energy storage box according to claim 1, characterized in that: The battery monitoring and management system (31) is communicatively connected to the WIFI module (32); the indicator light module (33) comprises a light board (331); the light board (331) is mounted on the box cover (11); an LED light is provided on the light board (331); a lampshade (332) for collecting light is provided on the light board (331); a window for accommodating the lampshade (332) is provided on the box cover (11); a light board control board (334) is fixedly mounted on the box body (1); the light board control board (334) is communicatively connected to the light board (331) and the battery monitoring and management system (31), respectively.
7. The waterproof intelligent battery energy storage box according to claim 1, characterized in that: The battery monitoring and management system (31) further comprises an air switch (34), the air switch (34) being detachably mounted on the box (1), the air switch (34) being connected to the battery module (2), an air switch protection cover (35) being mounted on the box (1), the air switch protection cover (35) comprising a cover bottom (351), the cover bottom (351) being mounted on the box (1), a cover (352) being hingedly connected to the cover bottom (351), and a buckle (353) for clamping the cover (352) is provided on the cover bottom (351).
8. The waterproof intelligent battery energy storage box according to claim 7, characterized in that: The box (1) is provided with a positive socket (361) and a negative socket (362), and the positive socket (361) and the negative socket (362) are connected to the circuit breaker (34); the box (1) is provided with a waterproof socket (363), and the waterproof socket (363) is connected to the inverter of the battery monitoring and management system (31) via a communication cable.
9. The waterproof intelligent battery energy storage box according to claim 1, characterized in that: A sealing ring (13) is mounted on the box body (1) and abuts against the box cover (11).
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