Self-adaptive constant-temperature energy storage battery cabinet
By installing upper and lower fans and tilting support components inside the energy storage battery cabinet, combined with the automatic control of temperature detectors, the problem of insufficient heat dissipation caused by multi-layer horizontal stacking is solved, and efficient heat dissipation and temperature management of the battery are achieved.
Patent Information
- Application Number
- CN202520400442.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-10
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2035-03-10
AI Technical Summary
Existing energy storage battery cabinets suffer from insufficient heat dissipation due to their multi-layer horizontal stacking method, resulting in ineffective cooling.
The battery cabinet adopts an adaptive constant temperature energy storage design. By installing upper and lower fans and inclined support components inside the cabinet, the heat dissipation efficiency is improved by utilizing airflow. The operation of the fans is automatically controlled by a temperature detector to achieve temperature management of the battery.
It effectively improves the heat dissipation efficiency of the battery, ensuring that the fan will automatically start to dissipate heat and cool down when the temperature exceeds the limit, thus improving the practicality and safety of the device.
Smart Images

Figure CN223757618U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to battery cabinet technical field, concretely is a kind of self-adapting constant-temperature energy storage battery cabinet. BACKGROUND
[0002] Battery cabinet is a kind of equipment specially used to store and manage battery pack, usually used in uninterrupted power supply (UPS) system, communication base station, data center and other places to ensure to provide backup power when main power is off.Battery cabinet not only can store battery, but also can charge, monitor, protect and maintain battery, is an important component to ensure the reliability and stability of power system.
[0003] At present, the existing energy storage battery cabinet, by installing fan on the top and bottom of cabinet, by fan operation, the heat source generated by storage battery in cabinet is transported outward, but due to the angle of storage battery is horizontal state, and adopts multilayer stacking mode, leading to the blocking of supported plate, cannot be blown to storage battery, leading to the heat dissipation treatment of storage battery cannot be fundamentally carried out, still can cause storage battery to continue to dissipate heat source, there is certain defect. UTILITY MODEL CONTENT
[0004] In view of the deficiencies of prior art, the utility model provides a kind of self-adapting constant-temperature energy storage battery cabinet, with the advantages that the temperature generated by storage battery can be effectively heat-dissipated and cooled down, solves the problem that the storage battery cannot be effectively heat-dissipated and cooled down by using multilayer horizontal stacking mode at present stage.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a kind of self-adapting constant-temperature energy storage battery cabinet, including cabinet, support assembly, supporting assembly and storage battery, cabinet is fixed with upper fan, and the bottom of cabinet is fixed with lower fan, upper fan is used to extract the airflow in cabinet outward, and lower fan is used to transport airflow into cabinet, improve the flow property of airflow in cabinet.
[0006] Four groups of support assemblies are installed in the cabinet, and the four groups of support assemblies are vertically installed at four direction angles in the cabinet.The support assembly includes a support rod movably connected to the cabinet, and the support assembly supports the supporting assembly, so that the height of the supporting assembly can be adjusted simultaneously when the height of the support assembly is adjusted, and the supporting assembly is inclined backward when the two support assemblies at the front end of the cabinet move upward, preventing the storage battery from falling and improving safety.
[0007] The cabinet body is provided with a plurality of groups of supporting assemblies arranged in a backward inclined manner from bottom to top, each supporting assembly is composed of a supporting plate, a side guard plate and a connecting edge plate, the side guard plate is fixed vertically upward at both ends of the supporting plate, the connecting edge plate is fixed at the opposite outer side of the side guard plate, the connecting edge plate is provided with a connecting groove in a vertical direction at both ends, a rotating roller is rotatably connected in the connecting groove, an installation hole is formed in the rotating roller, the installation hole is fixed to the side of the supporting rod, the rotating roller in the connecting edge plate is fixed to the side of the supporting rod through the installation hole, the rotating rollers in the plurality of groups of supporting assemblies are equidistantly arranged on the supporting rod, so that the spacing height between each layer of supporting plates is the same, and when the supporting rod moves up and down, the supporting plates can be in an inclined state, thereby facilitating the flow of gas.
[0008] The battery is movably connected to the supporting plate, the size of the battery placed on each layer of supporting plates is consistent with the size of the corresponding supporting plate, thereby improving the stability of the battery placement.
[0009] When the self-adaptive constant-temperature energy storage battery cabinet is used for installing and temperature processing of the battery, the battery is placed on the supporting plate, the bottom of the battery is attached to the supporting pad, and the limiting sliding groove formed in the side of the battery is sleeved with the side of the limiting knob, so that the position of the battery on the supporting plate is limited, the temperature change of the battery during energy compensation is detected by the temperature detector on the corresponding layer of supporting plates, when the temperature reaches the upper limit of the detected temperature, the upper fan and the lower fan connected thereto are automatically started to operate, the lower fan sends the airflow upward from the bottom of the cabinet, the airflow passes through the gap of each inclined supporting plate, blows the heat source generated by the battery placed above upward, and the heat source in the cabinet is sent to the outside of the cabinet by the upper fan, at this time, the temperature detector continuously detects the temperature of the battery, and when the temperature is less than the set temperature, the upper fan and the lower fan are automatically turned off.
[0010] As a further improvement of the above scheme, the side of the cabinet body is fixed with a grille guard plate.
[0011] Through the above technical scheme, a plurality of holes are formed in the grille guard plate, which are communicated with the cabinet body, so that the gas flowability in the cabinet body can be maintained under the condition of low temperature in daily life.
[0012] As a further improvement of the above scheme, the temperature detector is fixed on the supporting plate, and the temperature detector is connected with the upper fan and the lower fan.
[0013] Through the above technical scheme, the temperature detector can detect the temperature of the battery above the corresponding supporting plate during energy compensation, and when the detected temperature exceeds the set upper limit, the upper fan and the lower fan are automatically started to operate.
[0014] As a further improvement of the above scheme, the screw rod is arranged at both ends of the supporting rod, and one end of the screw rod is threadedly connected to the corresponding position in the cabinet body.
[0015] Through the technical scheme, the screw rod at the top end of the support rod is threadedly connected to the corresponding position at the top of the cabinet, and the screw rod at the bottom end of the support rod is threadedly connected to the corresponding position at the bottom of the cabinet, so that the support rod is fixed in the cabinet in a vertical direction.
[0016] As a further improvement of the above scheme, the two ends of the support rod are threadedly connected with the control sleeves, and one end of the control sleeve is fixed on the screw rod.
[0017] Through the technical scheme, the depth of the screw rod threadedly connected to the corresponding surface in the cabinet is changed by rotating the corresponding control sleeve in the forward or reverse direction, so that the height of the support rod is adjusted.
[0018] As a further improvement of the above scheme, a through hole is formed in the supporting plate, and the through hole penetrates the bottom of the supporting plate.
[0019] Through the technical scheme, the through hole is used for the airflow to flow into the bottom of the battery placed on the supporting plate, improving the overall heat dissipation effect of the battery.
[0020] As a further improvement of the above scheme, a supporting pad is fixed on the supporting plate, and the supporting pad is attached to the bottom of the battery.
[0021] Through the technical scheme, the supporting pad is used to elevate the battery, so that a gap is left between the bottom of the battery and the top of the supporting plate, and the airflow can flow to the bottom of the battery, thereby cooling the battery.
[0022] As a further improvement of the above scheme, one end of the side guard plate opposite to each other is fixed with a limiting knob, and the side of the battery is fixed with a protective shell, and a limiting sliding groove is formed in one end of the protective shell on both sides, and the limiting knob is slidingly connected in the limiting sliding groove.
[0023] Through the technical scheme, the battery is installed on the supporting plate by plug-in connection, and the two sides of the battery are attached to the opposite surfaces of the side guard plate, and the depth of the limiting knob in the limiting sliding groove is changed as the battery is gradually pushed inwards, so that the position of the battery is limited, and the stability of the battery in an inclined state is ensured.
[0024] Compared with the prior art, the self-adaptive constant-temperature energy storage battery cabinet has the following beneficial effects:
[0025] 1. The self-adaptive constant-temperature energy storage battery cabinet is provided with a plurality of supporting assemblies stacked from bottom to top in the cabinet body, and the control sleeves on the two support rods at the front end or the rear end are rotated, so that the support rods move up and down, and the rotating rollers on the support rods rotate in the corresponding connecting grooves, so that the tail end of the supporting plate is inclined downward, so that the airflow blown by the lower fan can contact the surface of the battery, thereby effectively improving the heat dissipation efficiency of the battery.
[0026] 2、The adaptive constant-temperature energy storage battery cabinet, through the support pad foot installed on the supporting plate, the support pad foot is attached to the bottom of the storage battery, so that there is a certain gap between the bottom of the storage battery and the top of the supporting plate, so that the airflow can be blown between the contact surface of the storage battery and the supporting plate, so that the storage battery can be fully cooled, and the cooling efficiency is further improved.
[0027] 3、The adaptive constant-temperature energy storage battery cabinet, through the temperature detector installed on the supporting plate, the temperature detector is connected with the upper fan and the lower fan, and the fan can be automatically started for heat dissipation and cooling treatment after the temperature detected by the temperature detector reaches the upper limit, and the practicability of the device is further improved. BRIEF DESCRIPTION OF DRAWINGS
[0028] Figure 1 It is an overall external structure diagram of the device of the utility model;
[0029] Figure 2 It is an overall external structure diagram of the device of the utility model;
[0030] Figure 3 It is an overall external structure diagram of the device of the utility model;
[0031] Figure 4 It is an overall external structure diagram of the device of the utility model;
[0032] Figure 5 It is an overall external structure diagram of the device of the utility model;
[0033] In the drawings, the component list represented by each sign is as follows:
[0034] 1, cabinet body; 101, upper fan; 102, lower fan; 103, grille guard plate;
[0035] 2, support assembly; 201, support rod; 202, control sleeve; 203, screw rod;
[0036] 3, supporting assembly; 301, supporting plate; 302, temperature detector; 303, through hole; 304, support pad foot; 305, side guard plate; 3051, limiting knob; 306, connecting edge plate; 307, connecting groove; 308, rotating roller; 309, mounting hole;
[0037] 4, storage battery; 401, protective shell. DETAILED DESCRIPTION
[0038] Clearly, the described embodiments are merely a part of the embodiments of the present application, but not all the embodiments. Based on the embodiments of the present application, all the other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application. Embodiment one
[0039] Please refer to Figures 1-5 The adaptive constant-temperature energy storage battery cabinet provided in the embodiment comprises a cabinet body 1, a supporting assembly 2, a supporting assembly 3 and a storage battery 4. The cabinet body 1 is fixed with an upper fan 101, and the bottom of the cabinet body 1 is fixed with a lower fan 102. The upper fan 101 is used for drawing the airflow in the cabinet body 1 outwards, and the lower fan 102 is used for conveying the airflow into the cabinet body 1, thereby improving the flow property of the airflow in the cabinet body 1.
[0040] Four groups of the supporting assembly 2 are installed in the cabinet body 1 in a vertical direction at four direction angle positions in the cabinet body 1. The supporting assembly 2 comprises a supporting rod 201 movably connected in the cabinet body 1. The supporting assembly 2 is used for supporting the supporting assembly 3, so that the height of the supporting assembly 3 is adjusted when the height of the supporting assembly 2 is adjusted. When the two groups of the supporting assembly 2 at the front end of the cabinet body 1 are moved upwards, the supporting assembly 2 is in a state of backward inclination, so that the storage battery 4 is prevented from falling and the safety is improved.
[0041] A plurality of groups of the supporting assembly 3 are installed in the cabinet body 1 in a backward inclination from bottom to top. The supporting assembly 3 comprises a supporting plate 301, a side guard plate 305 and a connecting edge plate 306. The side guard plate 305 is fixed perpendicularly upwards at both ends of the supporting plate 301. The connecting edge plate 306 is fixed at the opposite outer side of the side guard plate 305. The connecting groove 307 is formed in a vertical direction at both ends of the connecting edge plate 306. The rotating roller 308 is rotatably connected in the connecting groove 307. The mounting hole 309 is formed in the rotating roller 308. The mounting hole 309 is fixed at the side of the supporting rod 201. The rotating roller 308 in the connecting edge plate 306 is fixed at the side of the supporting rod 201 through the mounting hole 309. The rotating rollers 308 in the plurality of groups of the supporting assembly 3 are equidistantly installed on the supporting rod 201, so that the distance between the supporting plates 301 at each layer is the same in height. When the supporting rod 201 moves up and down, the supporting plate 301 can be in an inclined state, thereby facilitating the flow property of the gas.
[0042] The storage battery 4 is movably connected to the supporting plate 301. The size of the storage battery 4 placed on each layer of the supporting plate 301 is consistent with the size of the corresponding supporting plate 301, thereby improving the stability of the placement of the storage battery 4.
[0043] The working principle of the adaptive constant-temperature energy storage battery cabinet provided in the embodiment is as follows: during use, the storage battery 4 is placed on the supporting plate 301, so that the bottom of the storage battery 4 is attached to the supporting pad foot 304, and the limiting sliding groove 402 provided on the side of the storage battery 4 is sleeved with the side of the limiting knob 3051, so as to limit the position of the storage battery 4 on the supporting plate 301. The temperature detector 302 on the corresponding layer of the supporting plate 301 detects the temperature change of the storage battery 4 during energy compensation. When the temperature reaches the upper limit of the detected temperature, the connected upper fan 101 and lower fan 102 are automatically started to operate simultaneously. The lower fan 102 sends air flow from the bottom of the cabinet 1 upwards, and the air flow passes through the gap of each inclined supporting plate 301 to blow the heat source generated by the storage battery placed above upwards, and the upper fan 101 sends the heat source in the cabinet 1 to the outside of the cabinet 1. At this time, the temperature detector 302 continuously detects the temperature of the storage battery 4. When the temperature is less than the set temperature detected, the upper fan 101 and the lower fan 102 are automatically turned off. Embodiment two
[0044] Please refer to Figures 1-5 As shown in the figure, the adaptive constant-temperature energy storage battery cabinet provided in the embodiment further includes that the side of the cabinet 1 is fixed with a grating guard plate 103, the supporting plate 301 is fixed with a temperature detector 302, the temperature detector 302 is connected with the upper fan 101 and the lower fan 102, the both ends of the supporting rod 201 are installed with a screw rod 203, one end of the screw rod 203 is threadedly connected with the corresponding position in the cabinet 1, the both ends of the supporting rod 201 are threadedly connected with a control sleeve 202, one end of the control sleeve 202 is fixed on the screw rod 203, the supporting plate 301 is provided with a through hole 303 penetrating through the bottom of the supporting plate 301, the supporting plate 301 is fixed with a supporting pad foot 304, the supporting pad foot 304 is attached to the bottom of the storage battery 4, the opposite end of the side guard plate 305 is fixed with a limiting knob 3051, and the side of the storage battery 4 is fixed with a protective shell 401, the limiting sliding groove 402 is provided on the both sides of the protective shell 401, and the limiting knob 3051 is slidingly connected in the limiting sliding groove 402.
[0045] In the scheme, the grid guard 103 is provided with a plurality of holes communicating with the cabinet 1, so that the gas flowability in the cabinet 1 can be maintained under the daily low temperature state, and the temperature detector 302 can detect the temperature of the battery 4 when the battery 4 is charged above the support plate 301, and when the temperature exceeds the set upper limit, the upper fan 101 and the lower fan 102 are automatically started to operate, the temperature upper limit detected by the temperature detector 302 can be set according to the use requirement, the screw rod 203 at the top of the support rod 201 is threadedly connected to the corresponding position at the top of the cabinet 1, and the screw rod 203 at the bottom of the support rod 201 is threadedly connected to the corresponding position at the bottom of the cabinet 1, so as to ensure that the support rod 201 is fixed in the vertical direction in the cabinet 1, by rotating the corresponding control sleeve in the forward or reverse direction, the depth of the screw rod 203 threadedly connected to the corresponding surface of the cabinet 1 is changed, so as to adjust the height of the support rod 201, the through hole 303 is used for the airflow to flow into the bottom of the battery 4 placed on the support plate 301, improving the overall heat dissipation effect of the battery 4, the supporting pad 304 is used for elevating the battery 4, so that a gap is left between the bottom of the battery 4 and the top of the support plate 301, so that the airflow can flow to the bottom of the battery 4, and the battery is cooled and cooled, the battery 4 is installed on the support plate 301 by plug-in, and the two sides of the battery 4 are attached to the opposite surfaces of the side guard plate 305, and the depth of the limiting knob 3051 in the limiting sliding groove 402 is changed by gradually pushing inward, so as to limit the position of the battery 4, and ensure the stability of the battery 4 in the inclined state.
[0046] Although the embodiments of the present application have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and modifications can be made to the embodiments without departing from the principles and spirits of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. An adaptive constant-temperature energy storage battery cabinet, comprising a cabinet body (1), a support assembly (2), a supporting assembly (3) and a storage battery (4), wherein an upper fan (101) is fixed on the cabinet body (1), and a lower fan (102) is fixed on the bottom of the cabinet body (1). Four groups of support assemblies (2) are installed in the cabinet body (1), and the four groups of support assemblies (2) are installed in four direction angles in the vertical direction in the cabinet body (1), wherein the support assembly (2) comprises a support rod (201) movably connected in the cabinet body (1). A plurality of supporting assemblies (3) are installed in the cabinet body (1) from bottom to top in a backward inclined manner, wherein the supporting assembly (3) comprises a supporting plate (301), a side guard plate (305) and a connecting edge plate (306), the side guard plate (305) is vertically upwardly fixed at both ends of the supporting plate (301), the connecting edge plate (306) is fixed on the opposite outer side of the side guard plate (305), the connecting groove (307) is vertically formed at both ends of the connecting edge plate (306), the rotating roller (308) is rotatably connected in the connecting groove (307), the mounting hole (309) is formed in the rotating roller (308), and the mounting hole (309) is fixed on the side of the support rod (201). The storage battery (4) is movably connected to the supporting plate (301).
2. The self-adapting constant-temperature energy storage battery cabinet according to claim 1, characterized in that: The grille guard plate (103) is fixed on the side of the cabinet body (1).
3. The self-adapting constant temperature energy storage battery cabinet according to claim 1, characterized in that: The temperature detector (302) is fixed on the supporting plate (301), and the temperature detector (302) is connected with the upper fan (101) and the lower fan (102).
4. The self-adapting constant temperature energy storage battery cabinet according to claim 1, characterized in that: The screw rod (203) is installed at both ends of the support rod (201), and one end of the screw rod (203) is threadedly connected to the corresponding position in the cabinet body (1).
5. An adaptive thermostatic energy storage battery cabinet according to claim 4, characterized in that: The control sleeve (202) is threadedly connected at both ends of the support rod (201), and the control sleeve (202) is fixed on the screw rod (203) at one end.
6. The self-adapting constant temperature energy storage battery cabinet according to claim 3, characterized in that: The through hole (303) is formed in the supporting plate (301), and the through hole (303) penetrates the bottom of the supporting plate (301).
7. An adaptive thermostatic energy storage battery cabinet according to claim 6, characterized in that: The supporting pad (304) is fixed on the supporting plate (301), and the supporting pad (304) is attached to the bottom of the storage battery (4).
8. The self-adapting constant temperature energy storage battery cabinet according to claim 1, characterized in that: The limiting knob (3051) is fixed at the opposite end of the side guard plate (305), and the protective shell (401) is fixed on the side of the storage battery (4), the limiting sliding groove (402) is formed at one end of the two sides of the protective shell (401), and the limiting knob (3051) is slidably connected in the limiting sliding groove (402).