Novel stacked energy storage power supply

By designing splicing components and auxiliary lifting components, the problem of needing to remove the cover plate when stacked energy storage power supplies are covered by dust has been solved, enabling rapid assembly and stacking, and improving the convenience and efficiency of operation.

CN223757620UActive Publication Date: 2026-01-02深圳市瓦石能源有限公司
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Patent Information

Application Number
CN202423270769.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2026-01-02
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

To prevent dust accumulation, existing stacked energy storage power supplies require a cover plate to be installed on the top power connection terminal, which necessitates removing the cover plate during stacking, making operation inconvenient.

Method used

The design incorporates a splicing assembly and an auxiliary lifting assembly. The splicing assembly uses a tilting cover plate and support springs for quick assembly, preventing dust accumulation. The auxiliary lifting assembly uses a limiting frame and telescopic push rods for quick stacking, eliminating the need for cover plate disassembly.

Benefits of technology

This technology enables stacking energy storage power sources without removing the cover plate, reducing operational complexity, keeping the power connection area clean, and improving stacking efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of energy storage, and discloses a novel stacked energy storage power supply, which comprises a plurality of groups of energy storage power supplies, splicing assemblies are embedded in the top and the bottom of the energy storage power supplies, and the splicing assemblies are used for realizing quick splicing to prevent dust from entering the inner side. According to the novel stacked energy storage power supply, the splicing assembly is installed, two sets of inclined sealing plates are arranged on the inner side, a closed state can be kept under pushing of a supporting spring, dust is prevented from covering a power connection area, and during stacking, an inclined side plate of the other set of energy storage power supply makes contact with the inclined sealing plates, so that the power connection area is prevented from being damaged. The same inclined plane extrudes the inclined sealing plate to compress the supporting spring, the middle power connection area can be opened in an extrusion mode, the splicing effect can be achieved by keeping the power connection end to be inserted into the inner side of the power connection groove after continuous downward pressing, dust coverage is effectively avoided, meanwhile, workers do not need to disassemble and install the cover plate during stacking, and the operation difficulty is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of energy storage, in particular to a novel stacked energy storage power supply. BACKGROUND

[0002] Energy storage power supply is usually used to store electric energy, and can ensure that the device or equipment can normally power on under the condition of power failure. In order to improve the power storage capacity and power supply efficiency of the power supply, a stackable power connection end is usually provided, so that the power supply efficiency of the energy storage power supply can be greatly improved after the energy storage power supply is spliced in a stacked manner.

[0003] In the prior art, the power connection end at the top of the existing stacked energy storage power supply needs to be installed with a cover plate to prevent dust from covering it. When stacking, the cover plate needs to be disassembled, which is not convenient to operate. UTILITY MODEL CONTENTS

[0004] The utility model aims at providing a novel stacked energy storage power supply to solve the problem that the power connection end at the top of the existing stacked energy storage power supply needs to be installed with a cover plate to prevent dust from covering it, and the cover plate needs to be disassembled when stacking, which is not convenient to operate.

[0005] In order to solve the above technical problems, the utility model provides the following technical scheme: a novel stacked energy storage power supply, comprising a plurality of groups of energy storage power supplies, the top and bottom of the energy storage power supply are embedded with a splicing assembly, and the splicing assembly is used to realize quick assembly to prevent dust from entering the inside, the outside of the lower end of the energy storage power supply is provided with an auxiliary lifting assembly, and the auxiliary lifting assembly is used to lift the power supply for stacking;

[0006] The splicing assembly comprises a combined frame, and the inside of the combined frame is provided with two groups of inclined sealing plates, the end of the inclined sealing plate is provided with a limiting guide rod, the outside of the limiting guide rod is provided with a supporting spring, the middle of the lower end of the combined frame is provided with a power connection seat, and the two sides of the power connection seat are provided with notches, the splicing assembly comprises a fixed plate, and the fixed plate is located at the bottom of the energy storage power supply, the two sides of the fixed plate are provided with inclined side plates, and the inclined side plates are located inside the notches;

[0007] The auxiliary lifting assembly comprises a limiting frame, and the bottom of the limiting frame is provided with a bearing frame, the inside of the four corners of the bearing frame is embedded with a telescopic push rod, the bottom of the output end of the telescopic push rod is provided with a universal wheel, the front and back of the limiting frame are provided with fixed sleeves, the outside of the fixed sleeves is provided with a rotating disc, one side of the rotating disc is provided with an adjusting screw, the outside of the adjusting screw is provided with a threaded sleeve, and the end of the threaded sleeve is provided with a positioning block.

[0008] Preferably, the right side of the energy storage power supply is provided with a display screen, and the front and back of the energy storage power supply are provided with positioning grooves, the top of the four corners of the energy storage power supply is provided with bolt grooves, and the inner side of the four corners of the energy storage power supply is provided with an adjusting knob, the bottom of the adjusting knob is provided with a fixed screw rod, and the top of the adjusting knob is provided with a movable groove.

[0009] Preferably, the top of the energy storage power supply is provided with a top cover, and the front of the top cover is provided with a socket, the bottom of the fixed plate is provided with two groups of power connection ends, and the power connection ends are connected with the inside of the energy storage power supply.

[0010] Preferably, the inner side of the four corners of the combined frame is provided with a mounting bolt, the top of the power connection seat is provided with two groups of power connection grooves, and the power connection grooves are located on the outer side of the power connection end.

[0011] Preferably, the end of the limiting guide rod is provided with a movable block, and the movable block is located in the inside of the combined frame.

[0012] Preferably, the right side of the limiting frame is provided with a touch screen, one side of the telescopic push rod is provided with two groups of fixed blocks, and the fixed blocks are located on the outer side of the limiting frame.

[0013] Preferably, the outer side is provided with a combined bearing, and the combined bearing is located on the inner side of the fixed sleeve.

[0014] Compared with the prior art, the utility model has the beneficial effects that:

[0015] First, the utility model is provided with a splicing assembly, which can provide an installation position for the structure on the inner side, and the two groups of inclined sealing plates on the inner side can maintain a closed state under the pushing of the supporting spring, so that dust is prevented from covering the power connection area, and when stacking, the inclined side plate of another energy storage power supply will contact the inclined sealing plate, the same inclined surface will extrude the inclined sealing plate to compress the supporting spring, so that the power connection area in the middle can be opened by extrusion, and the splicing effect can be achieved by keeping the power connection end inserted into the inside of the power connection groove, dust covering is effectively avoided, and the staff is not required to disassemble and install the cover plate when stacking, so that the operation difficulty is reduced.

[0016] Second, the utility model discloses a supplementary lifting assembly is installed, and the existing energy storage power supply is usually required to lift the battery by the staff when stacking, but because the battery is heavy, usually can increase the work pressure of staff, when using the limiting frame can provide the installation position for the structure of inside, four telescopic push rods can drive the reverse pushing bearing frame and the energy storage power supply lifting height of top, after lifting, directly place another group of energy storage power supply that needs to install under the energy storage power supply, then use telescopic push rod control limiting frame to descend, in the process of descending, keep the alignment of positioning block and positioning groove, then use the positioning block to limit the positioning groove to can realize the effect of quick stacking, after stacking, control screw rod structure and bolt groove combination to splice through adjusting knob. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is the main body structure schematic diagram of the utility model;

[0018] Figure 2 It is the energy storage power supply structure schematic diagram of the utility model;

[0019] Figure 3 It is the inclined sealing plate section schematic diagram of the utility model;

[0020] Figure 4 It is the limiting frame structure schematic diagram of the utility model;

[0021] Figure 5 It is the positioning block section schematic diagram of the utility model.

[0022] Among them: 1, energy storage power supply;101, display screen;102, positioning groove;103, bolt groove;104, adjusting knob;105, fixed plate;106, power connection end;107, inclined side plate;108, top cover;109, socket;2, combination frame;201, mounting bolt;202, power connection seat;203, power connection groove;3, inclined sealing plate;301, limiting guide rod;302, movable block;303, support spring;4, limiting frame;401, bearing frame;402, fixed block;403, telescopic push rod;404, universal wheel;406, touch screen;5, positioning block;501, fixed sleeve;502, combination bearing;503, rotary disc;504, adjusting screw;505, threaded sleeve. DETAILED DESCRIPTION

[0023] The technical scheme in the embodiments of the utility model will be described clearly and completely below in conjunction with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the utility model.

[0024] Please refer to Figures 1-5 The utility model provides a novel stacked energy storage power supply, including a plurality of groups of energy storage power supply 1, the top and bottom of energy storage power supply 1 are embedded with splicing assembly, and splicing assembly is used to realize quick assembly and avoid dust into the inside, and the outside of the lower end of energy storage power supply 1 is provided with auxiliary lifting assembly, and auxiliary lifting assembly is used to lift and carry out power supply stacking,

[0025] Splicing assembly includes combination frame 2, and the inside of combination frame 2 is provided with two groups of inclined sealing plate 3, the tail end of inclined sealing plate 3 is installed with limiting guide rod 301, and the outside of limiting guide rod 301 is provided with supporting spring 303, and the middle part of the lower end of combination frame 2 is installed with electrical connector 202, and the both sides of electrical connector 202 are provided with notches, and splicing assembly includes fixed plate 105, and fixed plate 105 is located at the bottom of energy storage power supply 1, and the both sides of fixed plate 105 are installed with inclined side plate 107, and inclined side plate 107 is located at the inside of notch,

[0026] Auxiliary lifting assembly includes limiting frame 4, and limiting frame 4 is installed with bearing frame 401 at the bottom, bearing frame 401 is installed with telescopic push rod 403 at the inside of four corners, and universal wheel 404 is arranged at the bottom of the output end of telescopic push rod 403, fixed sleeve 501 is installed at the front and back of limiting frame 4, and rotating disc 503 is arranged at the outside of fixed sleeve 501, adjusting screw 504 is installed on one side of rotating disc 503, and threaded sleeve 505 is arranged at the outside of adjusting screw 504, and positioning block 5 is installed at the tail end of threaded sleeve 505.

[0027] Through the above technical scheme, the inside structure can be provided with mounting position by combination frame 2, the inside is provided with two groups of inclined sealing plate 3, which can keep closed state under the pushing of supporting spring 303, to avoid dust covering on the electrical connection area, and when stacking, the inclined side plate 107 of another energy storage power supply 1 will contact inclined sealing plate 3, and the same inclined surface will extrude inclined sealing plate 3 and compress supporting spring 303, which can open the middle electrical connection area by extrusion, and the splicing effect can be achieved by keeping the electrical connection end 106 inserted into the inside of electrical connection groove 203, effectively avoiding dust covering, and the staff does not need to disassemble and install the cover plate when stacking, reducing the operation difficulty

[0028] By the above technical scheme, the limiting frame 4 can provide the installation position for the structure on the inner side, and the four groups of telescopic push rods 403 can drive the reverse pushing bearing frame 401 and the energy storage power supply 1 on the top to lift the height, and after lifting, the other group of energy storage power supplies 1 to be installed is directly placed below the energy storage power supply 1, then the telescopic push rod 403 is used to control the limiting frame 4 to move downward, and after the positioning block 5 is aligned with the positioning groove 102 in the process of moving downward, the positioning block 5 is used to limit the positioning groove 102, so that the effect of quick stacking is realized, and after stacking, the screw groove 103 is combined with the screw structure to splice by adjusting the knob 104.

[0029] Specifically, the right side of the energy storage power supply 1 is provided with a display screen 101, and the front and back of the energy storage power supply 1 is provided with a positioning groove 102, the top of the four corners of the energy storage power supply 1 is provided with a bolt groove 103, and the inner side of the four corners of the energy storage power supply 1 is provided with an adjusting knob 104, the bottom of the adjusting knob 104 is provided with a fixed screw rod, and the top of the adjusting knob 104 is provided with a movable groove.

[0030] By the above technical scheme, the display screen 101 can display specific data, the positioning groove 102 can be used for limiting and assisting in carrying the energy storage power supply 1, and the bolt groove 103 can be connected with the fixed screw rod structure, and the movable groove is used for assisting the activity of the adjusting knob 104, so that the problem of damage caused by uneven adjustment of the fixed screw rod during installation is avoided.

[0031] Specifically, the top of the energy storage power supply 1 is provided with a top cover 108, and the front of the top cover 108 is provided with a socket 109, the bottom of the fixed plate 105 is provided with two groups of power connection ends 106, and the power connection ends 106 are connected with the inside of the energy storage power supply 1.

[0032] By the above technical scheme, the top cover 108 and the socket 109 can provide the effect of installation connection and power supply for the external equipment, and the power connection ends 106 contact the inner side of the power connection groove 203 to maintain the stacking effect.

[0033] Specifically, the inner side of the four corners of the combined frame 2 is provided with a mounting bolt 201, the top of the power connection seat 202 is provided with two groups of power connection grooves 203, and the power connection grooves 203 are located on the outer side of the power connection ends 106.

[0034] By the above technical scheme, the mounting bolt 201 can connect the combined frame 2 with the energy storage power supply 1, and the power connection groove 203 can provide an installation position for the power connection end 106.

[0035] Specifically, the end of the limiting guide rod 301 is provided with a movable block 302, and the movable block 302 is located in the inside of the combined frame 2.

[0036] By the above technical scheme, the movable block 302 can increase the stability of the activity of the inclined sealing plate 3.

[0037] Specifically, the right side of the limiting frame 4 is provided with a touch screen 406, and one side of the telescopic push rod 403 is provided with two groups of fixed blocks 402, and the fixed blocks 402 are located outside the limiting frame 4.

[0038] Through the above technical scheme, the touch screen 406 can control four groups of telescopic push rods 403 to simultaneously adjust the height, and when adjusting, the piston rod of the output end is reversely pushed to lift the overall structure at the top, and the fixed block 402 is used to fix the telescopic push rod 403 and the limiting frame 4, so as to maintain stability.

[0039] Specifically, the outer side of the adjusting screw 504 is provided with a combined bearing 502, and the combined bearing 502 is located inside the fixed sleeve 501.

[0040] Through the above technical scheme, the combined bearing 502 can assist the adjusting screw 504 to rotate.

[0041] In use, first, the energy storage power supply 1 is moved to the bottom of the bearing frame 401, and then the touch screen 406 is used to control each group of telescopic push rods 403 to shrink, and the shrinkage controls the bearing frame 401 to move downward, and in the moving process, the inclined side plate 107 extrudes the inclined sealing plate 3 to expand outward, after expansion, the inclined sealing plate 3 is inserted into the inner side of the gap for splicing, then the four groups of adjusting knobs 104 are rotated to drive the fixed screw and the bolt groove 103, then the rotating disc 503 is gripped to control the adjusting screw 504 to rotate, and the rotation drives the threaded sleeve 505 and the positioning block 5 to expand and insert into the inner side of the positioning groove 102, after insertion, the limiting can be performed, and the height of the bearing frame 401 can be lifted according to the requirement.

[0042] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits, and the scope of the utility model is defined by the appended claims and their equivalents.

Claims

1. A novel stacked energy storage power supply comprising several groups of energy storage power supplies (1), characterized in that: The top and bottom of the energy storage power supply (1) are embedded with splicing assemblies, which are used to realize quick assembly and prevent dust from entering the inside, and the outside of the lower end of the energy storage power supply (1) is provided with an auxiliary lifting assembly, which is used to lift the power supply stack; The splicing assembly comprises a combined frame (2), and the inside of the combined frame (2) is provided with two groups of inclined sealing plates (3); the end of the inclined sealing plate (3) is provided with a limiting guide rod (301), and the outside of the limiting guide rod (301) is provided with a supporting spring (303); the middle of the lower end of the combined frame (2) is provided with an electric connector (202), and the two sides of the electric connector (202) are provided with notches; the splicing assembly comprises a fixed plate (105), and the fixed plate (105) is located at the bottom of the energy storage power supply (1); the two sides of the fixed plate (105) are provided with inclined side plates (107), and the inclined side plates (107) are located inside the notches. The auxiliary lifting assembly comprises a limiting frame (4), and the bottom of the limiting frame (4) is provided with a bearing frame (401); the inside of the four corners of the bearing frame (401) is embedded with telescopic push rods (403), and the bottom of the output end of the telescopic push rod (403) is provided with universal wheels (404); the front and back of the limiting frame (4) are provided with fixed sleeves (501), and the outside of the fixed sleeve (501) is provided with a rotating disc (503); one side of the rotating disc (503) is provided with an adjusting screw (504), and the outside of the adjusting screw (504) is provided with a threaded sleeve (505); the end of the threaded sleeve (505) is provided with a positioning block (5).

2. A novel stacked energy storage power supply according to claim 1 characterized by: The right side of the energy storage power supply (1) is provided with a display screen (101), and the front and back of the energy storage power supply (1) are provided with positioning grooves (102); the top of the four corners of the energy storage power supply (1) is provided with bolt grooves (103), and the inside of the four corners of the energy storage power supply (1) is provided with adjusting knobs (104); the bottom of the adjusting knob (104) is provided with a fixed screw, and the top of the adjusting knob (104) is provided with a movable groove.

3. A novel stacked energy storage power supply according to claim 1 characterized by: The top of the energy storage power supply (1) is provided with a top cover (108), and the front of the top cover (108) is provided with a socket (109); the bottom of the fixed plate (105) is provided with two groups of electric connectors (106), and the electric connectors (106) are connected with the inside of the energy storage power supply (1).

4. A novel stacked energy storage power supply of claim 1 characterized by: The inside of the four corners of the combined frame (2) is provided with mounting bolts (201), and the top of the electric connector (202) is provided with two groups of electric connector grooves (203), and the electric connector grooves (203) are located outside the electric connectors (106).

5. A novel stacked energy storage power supply according to claim 1, characterized in that: The end of the limiting guide rod (301) is provided with a movable block (302), and the movable block (302) is located inside the combined frame (2).

6. A novel stacked energy storage power supply of claim 1 characterized by: The right side of the limiting frame (4) is provided with a touch screen (406), and one side of the telescopic push rod (403) is provided with two groups of fixed blocks (402), and the fixed blocks (402) are located outside the limiting frame (4).

7. A novel stacked energy storage power supply as claimed in claim 1, wherein: The outer side of the adjusting screw (504) is provided with a combined bearing (502), and the combined bearing (502) is located at the inner side of the fixed sleeve (501).