A household energy storage power supply module

Through the design of the load-bearing frame, the two-way threaded rod and worm mechanism driven by the servo motor are used to achieve stable support and safe power supply of the household energy storage power module, solving the problems of installation damage and inconvenience in movement, and improving the stability and safety during use.

CN116526622BActive Publication Date: 2025-08-05ZHEJIANG XUPU NEW ENERGY TECH CO LTD
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Patent Information

Application Number
CN202310497217.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-05-05
Publication Date
2025-08-05
Estimated Expiration
2043-05-05

AI Technical Summary

Technical Problem

The existing household energy storage power modules are prone to damage the walls or floors when installed, and are difficult to move and protect, which is dangerous, resulting in inconvenience in transportation and use.

Method used

It adopts a load-bearing frame design, including components such as moving guide wheels, guide slide rails, servo motors, drive worms and protective brackets. The two-way threaded rod drives the telescopic sleeve rod and lifting sleeves through the servo motor to achieve stable support, protection and disengagement of the power supply contact plate.

Benefits of technology

It improves the stability and safety of the power module during use, prevents falling off and power supply disconnection, and improves the convenience of transportation and use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a household energy storage power supply module, comprising a supporting frame, and movable guide wheels that are rotatably arranged on the left and right sides of the top surface of the supporting frame through bearings for pushing; a guide rail is fixedly installed at the center position of the bottom surface of the supporting frame; and further comprising: a servo motor is fixedly installed at the center position of the inner bottom surface of the supporting frame, and driving worms are rotatably arranged on the left and right sides of the inner lower part of the supporting frame through bearings, and the inner ends of the driving worms on the left and right sides are fixedly connected to the outer ends of the bidirectional threaded rods; wherein a supporting bracket is fixedly installed on the inner upper part of the supporting frame by bolts. The household energy storage power supply module is installed on the anti-slip platform inside the supporting frame, so that the power supply module is supplemented with electricity through the power supply touch panel when it is stored, and the stability and safety of the power supply module during use are improved by the supporting base and the protective bracket when the power supply module is in use.
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Description

Technical Field

[0001] The present invention relates to the technical field of household power supplies, and in particular to a household energy storage power supply module. Background Art

[0002] Energy storage power modules are a type of backup power source used in homes during emergencies. The battery packs in home energy storage systems can recharge themselves for use during peak hours or power outages. Besides being used as an emergency power source, home energy storage systems can also balance power loads, saving household electricity costs.

[0003] Publication No. CN212659615U discloses a household lithium battery module that is easy to install and fix. The lithium battery module body can be fixed to the top plate through a connector, and the entire device can be connected to the electric vehicle with screws, thereby facilitating the fixation of the device and making disassembly and installation relatively simple. At the same time, a telescopic rod and a telescopic spring are provided. The telescopic rod and the telescopic spring can reduce the impact of uneven road surface on the lithium battery module body when the electric vehicle is moving, thereby extending its service life.

[0004] Publication No. CN207705255U discloses a household energy storage battery module rack assembly, wherein an assembly hole is provided on a side surface of a side frame close to a first shelf and a second shelf and located in the L-shaped storage space; a mounting plate is located on a side of the first shelf away from the side frame and arranged opposite the side frame, and one end of the mounting plate is detachably connected to the first shelf, and the end of the mounting plate away from the first shelf is detachably connected to the side frame via a connecting plate; a port is reserved on the mounting plate, and an assembly hole is provided on the mounting plate and around the port;

[0005] However, the above-mentioned household energy storage power supply module still has the following problems during actual use: it is installed in the required place in the home through screws set on the left and right sides of the bottom of the protective cover. This installation method does not meet the requirements of non-destructive use and will inevitably cause damage to the home wall or floor during installation. At the same time, due to different power requirements in the home, the power supply module also needs to be moved, and it is impossible to protect power supply modules with certain risks, which brings many inconveniences to transportation, use and maintenance.

[0006] Therefore, we propose a household energy storage power supply module to solve the above problems. Summary of the Invention

[0007] The purpose of the present invention is to provide a household energy storage power supply module to solve the problem proposed in the above-mentioned background technology that the power supply module is currently installed in the desired place in the home by screws set on the left and right sides of the bottom of the protective cover. This installation method does not meet the requirements of lossless use and will inevitably cause damage to the wall or floor of the home during installation. At the same time, due to different power requirements in the home, the power supply module also needs to be moved, and it is impossible to protect the power supply module with certain risks, which brings many inconveniences to transportation, use and maintenance.

[0008] To achieve the above-mentioned object, the present invention provides the following technical solution: a household energy storage power supply module, comprising a supporting frame, and movable guide wheels rotatably arranged on the left and right sides of the top surface of the supporting frame for pushing;

[0009] A guide rail is fixedly installed at the center of the bottom surface of the load-bearing frame, and guide sliders are slidably mounted on the left and right outer walls of the guide rail, and load-bearing feet are fixedly installed on the bottom surfaces of the left and right guide sliders;

[0010] Also includes:

[0011] A servo motor is fixedly installed at the center of the inner bottom surface of the supporting frame, and driving worms are rotatably provided on the left and right sides of the inner lower part of the supporting frame through bearings, and the inner ends of the driving worms on the left and right sides are fixedly connected to the outer ends of the bidirectional threaded rods;

[0012] Among them, a bearing bracket is fixedly installed on the upper inner part of the bearing frame by bolts, and the middle part of the bearing bracket is slidably connected to the left and right ends of the lifting frame.

[0013] Preferably, the overall supporting frame is arranged in a rectangular structure with an open upper end, and the left and right sides of the top of the supporting frame are rotatably connected to the bottom end of the protective bracket through bearings, and torsion springs are provided at the connection between the left and right protective brackets and the supporting frame, which drive the protective bracket to flip through the torsion springs.

[0014] Preferably, the servo motor at the lower interior of the supporting frame and the middle part of the bidirectional threaded rod are meshed and connected to each other through a sprocket mechanism, and the left and right sides of the bidirectional threaded rod are slidably connected to the top of the telescopic sleeve rod, and the bottom ends of the left and right telescopic sleeve rods are fixedly connected to the top surface of the guide slider on the outer wall of the guide rail, and the sliding direction of the guide slider is limited by the guide rail.

[0015] Preferably, lifting sleeves are rotatably provided on the left and right sides of the inner bottom surface of the supporting frame through bearings, and driving worm gears are fixedly provided on the top ends of the lifting sleeves on both sides, and the top ends of the lifting sleeves on both sides are threadedly connected to the bottom ends of the lifting threaded rods, and the driving worm gears on both sides are meshedly connected to the outer walls of the driving worm gear inside the supporting frame, and the driving worm gears are driven to rotate by the rotation of the driving worm gear.

[0016] Preferably, guide grooves are provided on the left and right sides of the interior of the supporting frame, and the interiors of the guide grooves on the left and right sides are slidably connected to the outer ends of the anti-slip sliders, and the bottom surfaces of the anti-slip sliders on the left and right sides are fixedly connected to the bottom surfaces of the lifting threaded rods, and the top ends of the anti-slip sliders on the left and right sides are fixedly connected to the bottom ends of the power supply touch plates, and the anti-slip sliders are used to prevent the power supply touch plates from being displaced when they are raised or lowered.

[0017] Preferably, the left and right sides of the bottom surface of the supporting bracket are rotatably connected to the top of the guide threaded rod through bearings, and the outer walls of the left and right guide threaded rods are threadedly connected to the left and right sides of the bottom surface of the lifting frame, and the bottom ends of the left and right guide threaded rods are fixedly installed with guide gears, and the lifting frame is driven to rise and fall by the rotation of the guide gears and the guide threaded rods.

[0018] Preferably, the top surfaces of the symmetrically installed telescopic sleeve rods are fixedly mounted with guide racks, and the guide racks on the left and right sides are meshed with the guide gears at the bottom ends of the guide threaded rods, and the lengths of the guide racks on the left and right sides are greater than the lengths of the guide threaded rods on the left and right sides.

[0019] Preferably, an anti-slip platform is fixedly installed on the top surface of the lifting frame, and a pressure cross plate is slidably provided on the top surface of the anti-slip platform, and locking slides are slidably provided on the left and right sides of the top surface of the anti-slip platform, and the left and right locking slides are connected to the anti-slip platform by a limit spring, and the locking slides are reset by the limit spring.

[0020] Preferably, traction sliders are slidably provided on the left and right sides of the interior of the anti-slip platform, and the top surfaces of the traction sliders on the left and right sides and the bottom surface of the pressure cross plate are connected to each other with an inclined structure, and the outer walls of the traction sliders on the left and right sides are fixedly connected to the inner ends of the traction ropes, and the outer ends of the traction ropes on the left and right sides are fixedly connected to the inner outer walls of the locking slide, and the locking slide is driven to move by the traction ropes.

[0021] Preferably, the bottom surfaces of the symmetrically installed protective brackets are fixedly connected to the top ends of the reset ropes, and the bottom ends of the left and right reset ropes are fixedly connected to the outer sides of the top surfaces of the power supply touch plates inside the supporting frame, and the maximum lifting distance of the left and right power supply touch plates is greater than the maximum flipping distance of the protective bracket. At the same time, the left and right power supply touch plates are connected to an external power source to charge the battery module.

[0022] Compared with the prior art, the present invention has the following advantages: the household energy storage power supply module is installed via an anti-drop platform inside a load-bearing frame, so that the power supply module is replenished through the power supply contact plate when it is stored, and the stability and safety of the power supply module during use are improved by the load-bearing base and the protective bracket. The specific contents are as follows:

[0023] 1. The weight of the power module drives the pressure horizontal plate to move downward, thereby driving the traction slider connected to the inclined ground to slide inward, and driving the locking slide connected to the traction rope to move inward, so that the inner side of the locking slide is in contact with the outer wall of the bottom surface of the power module, thereby preventing it from moving or falling off during use and movement;

[0024] 2. The servo motor rotates the bidirectional threaded rod through the sprocket mechanism, driving the threaded telescopic sleeve to slide outward. The telescopic sleeve drives the guide slider fixed at the bottom to move downward on the outer wall of the guide rail. At the same time, the guide slider drives the bearing foot fixed at the bottom to support and lift the bearing frame, so that the movable guide wheel is out of contact with the ground.

[0025] 3. The driving worm rotates the meshed driving worm wheel and the lifting sleeve. The lifting threaded rod, which is threadedly connected to the lifting sleeve, slides inside the guide slot via the anti-slip slider fixed to the top surface. This causes the lifting threaded rod to drive the power contact plate fixed to the top to move downward, thereby disconnecting from the power module.

[0026] 4. The rotating guide threaded rod drives the threaded support frame to slide upward inside the load-bearing bracket, so that the support frame and the anti-slip platform on the top surface drive the power module to lift up. At the same time, when the power contact plate descends, the protective bracket that is not pulled by the reset rope is driven by the torsion spring to flip inward, thereby protecting the top surface of the power module. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] Figure 1 This is a schematic diagram of the front cross-sectional structure of the present invention;

[0028] Figure 2 For the present invention Figure 1 A in the middle is an enlarged structural diagram;

[0029] Figure 3 This is a schematic diagram of the mounting structure of the load-bearing foot of the present invention;

[0030] Figure 4 This is a schematic diagram of the guide rack installation structure of the present invention;

[0031] Figure 5 This is a schematic diagram of the guide gear installation structure of the present invention;

[0032] Figure 6 This is a schematic diagram of the installation structure of the driving worm gear of the present invention;

[0033] Figure 7 This is a schematic diagram of the installation structure of the driving worm of the present invention;

[0034] Figure 8 This is a schematic diagram of the protective bracket installation structure of the present invention.

[0035] In the figure: 1. Load-bearing frame; 2. Moving guide wheel; 3. Guide slide rail; 4. Guide slider; 5. Load-bearing base; 6. Servo motor; 7. Driving worm; 8. Bidirectional threaded rod; 9. Load-bearing bracket; 10. Lifting frame; 11. Protective bracket; 12. Torsion spring; 13. Sprocket mechanism; 14. Telescopic sleeve; 15. Lifting sleeve; 16. Driving worm gear; 17. Lifting threaded rod; 18. Guide slide; 19. Anti-slip slider; 20. Power supply touch panel; 21. Guide threaded rod; 22. Guide gear; 23. Guide rack; 24. Anti-slip platform; 25. Pressure cross plate; 26. Locking slide; 27. Limiting spring; 28. Traction slider; 29. Traction rope; 30. Reset rope. DETAILED DESCRIPTION

[0036] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the implementation regulations described are only part of the embodiments of the present invention, not all of the embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.

[0037] See also Figure 1-8The present invention provides a technical solution: a household energy storage power supply module, comprising a carrying frame 1, and a movable guide wheel 2 that is rotatably arranged on the left and right sides of the top surface of the carrying frame 1 for pushing through a bearing; a guide slide rail 3 is fixedly installed at the center position of the bottom surface of the carrying frame 1, and the left and right outer walls of the guide slide rail 3 are sleeved with guide sliders 4 for sliding, and the bottom surfaces of the left and right guide sliders 4 are fixedly installed with carrying feet 5; a servo motor 6 is fixedly installed at the center position of the inner bottom surface of the carrying frame 1, and driving worms 7 are rotatably arranged on the left and right sides of the inner lower part of the carrying frame 1 through bearings, and the inner ends of the driving worms 7 on the left and right sides are fixedly connected to the outer ends of the two-way threaded rod 8; the servo motor 6 at the lower inner part of the carrying frame 1 and the middle part of the two-way threaded rod 8 are meshed and connected to each other through a sprocket mechanism 13, and the left and right sides of the two-way threaded rod 8 are slidably connected to the top of the telescopic sleeve rod 14, and the bottom ends of the telescopic sleeve rods 14 on the left and right sides are fixedly connected to the top surface of the guide slider 4 on the outer wall of the guide slide rail 3; Figure 1 、 3 As shown, the servo motor 6 drives the bidirectional threaded rod 8 to rotate through the sprocket mechanism 13, and drives the threaded telescopic sleeve 14 to slide outward, and the telescopic sleeve 14 drives the guide slider 4 fixed at the bottom end to move downward on the outer wall of the guide rail 3. At the same time, the guide slider 4 drives the bearing foot 5 fixed at the bottom surface to support and lift the bearing frame 1, so that the movable guide wheel 2 is separated from the ground.

[0038] Among them, a bearing bracket 9 is fixedly installed on the upper part of the inner part of the bearing frame 1 by bolts, and the middle part of the bearing bracket 9 is slidably connected to the left and right ends of the lifting frame 10; the left and right sides of the bottom surface of the bearing bracket 9 are rotatably connected to the top of the guide threaded rod 21 through bearings, and the outer walls of the left and right guide threaded rods 21 are threadedly connected to the left and right sides of the bottom surface of the lifting frame 10, and the bottom ends of the left and right guide threaded rods 21 are fixedly installed with guide gears 22; the top surfaces of the symmetrically installed telescopic sleeve rods 14 are fixedly installed with guide racks 23, and the guide racks 23 on the left and right sides are meshed with the guide gears 22 at the bottom ends of the guide threaded rods 21; Figure 1 、 4 As shown in FIG-5 , when the telescopic sleeve 14 drives the guide rack 23 at the top to move outward, the meshing guide gear 22 and the guide threaded rod 21 are driven to rotate, so that the rotating guide threaded rod 21 drives the threaded lifting frame 10 to slide upward inside the supporting bracket 9;

[0039] Lifting sleeves 15 are rotatably provided on the left and right sides of the inner bottom surface of the carrying frame 1 through bearings, and driving worm gears 16 are fixedly provided on the top ends of the lifting sleeves 15 on both sides, and the top ends of the lifting sleeves 15 on both sides are threadedly connected to the bottom ends of the lifting threaded rods 17, and the driving worm gears 16 on both sides are meshedly connected to the outer walls of the driving worm 7 inside the carrying frame 1; guide grooves 18 are provided on the left and right sides of the inner part of the carrying frame 1, and the inner parts of the guide grooves 18 on both sides are slidably connected to the outer ends of the anti-slip sliders 19, and the bottom surfaces of the anti-slip sliders 19 on both sides are fixedly connected to the bottom surfaces of the lifting threaded rods 17, and the top ends of the anti-slip sliders 19 on both sides are fixedly connected to the bottom ends of the power supply touch panels 20; as shown Figure 1 、 6 As shown in FIG-7 , the driving worm 7 drives the meshing driving worm wheel 16 and the lifting sleeve 15 to rotate, and the lifting threaded rod 17 threadedly connected to the lifting sleeve 15 slides inside the guide slot 18 via the anti-slip slider 19 fixedly connected to the top surface, thereby causing the lifting threaded rod 17 to drive the power supply contact plate 20 fixedly connected to the top to move downward, thereby disconnecting from the power module;

[0040] An anti-slip platform 24 is fixedly installed on the top surface of the lifting frame 10, and a pressure cross plate 25 is slidably provided on the top surface of the anti-slip platform 24, and locking slides 26 are slidably provided on the left and right sides of the top surface of the anti-slip platform 24, and the locking slides 26 on the left and right sides are connected to the anti-slip platform 24 by limit springs 27; traction sliders 28 are slidably provided on the left and right sides of the interior of the anti-slip platform 24, and the outer walls of the traction sliders 28 on the left and right sides are fixedly connected to the inner ends of the traction ropes 29, and the outer ends of the traction ropes 29 on the left and right sides are fixedly connected to the inner and outer walls of the locking slides 26; Figure 1-2 As shown, the weight of the power module drives the pressure horizontal plate 25 to move downward, thereby driving the traction slider 28 connected to the ground in an inclined manner to slide inward, and driving the locking slide plate 26 connected to the traction rope 29 to move inward, so that the inner side of the locking slide plate 26 is in contact with the outer wall of the bottom surface of the power module;

[0041] The left and right sides of the top of the carrying frame 1 are rotatably connected to the bottom of the protective bracket 11 through bearings, and a torsion spring 12 is provided at the connection between the left and right protective brackets 11 and the carrying frame 1; the bottom surfaces of the symmetrically installed protective brackets 11 are fixedly connected to the top of the reset pull rope 30, and the bottom ends of the left and right reset pull ropes 30 are fixedly connected to the outer side of the top surface of the power supply contact plate 20 inside the carrying frame 1; Figure 1 、 8As shown, when the power contact plate 20 descends, the reset rope 30 is loosened, so that the protection bracket 11 not pulled by the reset rope 30 is turned inward by the torsion spring 12, thereby protecting the top surface of the power module.

[0042] Working principle: Before using this household energy storage power module, you need to check the overall condition of the device to make sure it can work normally. Figure 1 - Figure 8 As shown, the weight of the power module drives the pressure horizontal plate 25 to move downward, thereby driving the traction slider 28 connected to the ground in an inclined manner to slide inward, and driving the locking slide plate 26 connected to the traction rope 29 to move inward, so that the inner side of the locking slide plate 26 is connected to the outer wall of the bottom surface of the power module to prevent it from moving and falling off during use and movement;

[0043] The servo motor 6 inside the carrying frame 1 drives the bidirectional threaded rod 8 to rotate through the sprocket mechanism 13, and drives the threaded telescopic sleeve 14 to slide outward. The telescopic sleeve 14 drives the guide slider 4 fixed at the bottom to move downward on the outer wall of the guide rail 3. At the same time, the guide slider 4 drives the supporting foot 5 fixed at the bottom to support and lift the carrying frame 1, so that the movable guide wheel 2 is separated from the ground, thereby improving the stability of the power module during use.

[0044] The driving worm 7 drives the meshing driving worm wheel 16 and the lifting sleeve 15 to rotate, and the lifting threaded rod 17 threadedly connected to the lifting sleeve 15 slides inside the guide slide groove 18 through the anti-slip slider 19 fixedly connected to the top surface, thereby causing the lifting threaded rod 17 to drive the power supply contact plate 20 fixedly connected to the top to move downward, thereby disconnecting from the power module, so that the power module is disconnected from the power supply when in use to improve safety performance;

[0045] The guide gear 22 and the guide threaded rod 21 inside the supporting frame 1 are driven to rotate, so that the rotating guide threaded rod 21 drives the threadedly connected lifting frame 10 to slide upward inside the supporting bracket 9, and then the lifting frame 10 and the anti-slip platform 24 on the top surface drive the power module to the outside of the supporting frame 1. At the same time, when the power supply touch plate 20 descends, the reset rope 30 is driven to relax, so that the protective bracket 11 that is not pulled by the reset rope 30 is flipped inward under the drive of the torsion spring 12, thereby protecting the top surface of the power module.

[0046] In the description of the present invention, unless otherwise specified, "plurality" means two or more; terms such as "upper," "lower," "left," "right," "inner," "outer," "front end," "rear end," "head," and "tail" indicate positions or relationships based on those shown in the accompanying drawings. These terms are intended solely to facilitate the description of the present invention and simplify the description. They do not indicate or imply that the devices or components referred to must have a specific orientation, be constructed, or operate in a specific orientation. Therefore, they should not be construed as limiting the present invention. Furthermore, terms such as "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0047] In the description of the present invention, it should be noted that, unless otherwise expressly specified or limited, the terms "connected" and "connection" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integral connections; mechanical connections, electrical connections; and direct connections or indirect connections through an intermediary. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on the specific circumstances.

[0048] Although the present invention has been described in detail with reference to the aforementioned embodiments, it is still possible for those skilled in the art to modify the technical solutions described in the aforementioned embodiments, or to make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A household energy storage power supply module, comprising a supporting frame (1), and movable guide wheels (2) rotatably arranged on the left and right sides of the top surface of the supporting frame (1) for pushing; A guide rail (3) is fixedly installed at the center position of the bottom surface of the load-bearing frame (1), and guide sliders (4) are slidably sleeved on the left and right outer walls of the guide rail (3), and load-bearing feet (5) are fixedly installed on the bottom surfaces of the left and right guide sliders (4); It is characterized in that Also includes: A servo motor (6) is fixedly installed at the center of the inner bottom surface of the supporting frame (1), and driving worms (7) are rotatably provided on the left and right sides of the inner bottom of the supporting frame (1) through bearings, and the inner ends of the driving worms (7) on the left and right sides are fixedly connected to the outer ends of the bidirectional threaded rods (8); A load-bearing bracket (9) is fixedly installed on the upper part of the inner portion of the load-bearing frame (1) by means of bolts, and the middle portion of the load-bearing bracket (9) is slidably connected to the left and right ends of the lifting frame (10); The supporting frame (1) is provided with guide grooves (18) on both the left and right sides, and the insides of the guide grooves (18) on both the left and right sides are slidably connected to the outer ends of the anti-slip sliders (19), and the bottom surfaces of the anti-slip sliders (19) on both the left and right sides are fixedly connected to the bottom surface of the lifting threaded rod (17), and the top ends of the anti-slip sliders (19) on both the left and right sides are fixedly connected to the bottom end of the power supply touch plate (20).

2. A household energy storage power supply module according to claim 1, characterized in that: The overall supporting frame (1) is arranged in a rectangular structure with an open top, and the left and right sides of the top of the supporting frame (1) are rotatably connected to the bottom of the protective bracket (11) through bearings, and torsion springs (12) are arranged at the connection points between the left and right protective brackets (11) and the supporting frame (1).

3. The household energy storage power supply module according to claim 1, characterized in that: The servo motor (6) at the lower interior of the carrying frame (1) and the middle portion of the bidirectional threaded rod (8) are meshed and connected to each other via a sprocket mechanism (13), and the left and right sides of the bidirectional threaded rod (8) are both slidably connected to the top end of the telescopic sleeve rod (14), and the bottom ends of the left and right telescopic sleeve rods (14) are both fixedly connected to the top surface of the guide slider (4) on the outer wall of the guide rail (3).

4. The household energy storage power supply module according to claim 1, characterized in that: The inner bottom surface of the supporting frame (1) is provided with lifting sleeves (15) on both sides thereof for rotation via bearings, and the top ends of the lifting sleeves (15) on both sides thereof are fixedly provided with driving worm gears (16), and the top ends of the lifting sleeves (15) on both sides thereof are threadedly connected to the bottom ends of the lifting threaded rods (17), and the driving worm gears (16) on both sides thereof are meshedly connected to the outer wall of the driving worm (7) inside the supporting frame (1).

5. The household energy storage power supply module according to claim 1, characterized in that: The left and right sides of the bottom surface of the supporting bracket (9) are rotatably connected to the top of the guide threaded rod (21) through bearings, and the outer walls of the left and right guide threaded rods (21) are threadedly connected to the left and right sides of the bottom surface of the lifting frame (10), and the bottom ends of the left and right guide threaded rods (21) are fixedly mounted with guide gears (22).

6. The household energy storage power supply module according to claim 3, characterized in that: The top surfaces of the symmetrically mounted telescopic sleeve rods (14) are both fixedly mounted with guide racks (23), and the guide racks (23) on the left and right sides are meshed with the guide gears (22) at the bottom ends of the guide threaded rods (21), and the lengths of the guide racks (23) on the left and right sides are greater than the lengths of the guide threaded rods (21) on the left and right sides.

7. The household energy storage power supply module according to claim 1, characterized in that: The top surface of the lifting frame (10) is fixedly installed with an anti-slip platform (24), and the top surface of the anti-slip platform (24) is slidably provided with a pressure cross plate (25), and the left and right sides of the top surface of the anti-slip platform (24) are slidably provided with locking slides (26), and the left and right locking slides (26) and the anti-slip platform (24) are connected to each other through a limit spring (27).

8. The household energy storage power supply module according to claim 7, characterized in that: Traction sliders (28) are slidably provided on both left and right sides of the interior of the anti-slip platform (24), and the top surfaces of the left and right traction sliders (28) and the bottom surface of the pressure horizontal plate (25) are connected to each other in an inclined structure, and the outer walls of the left and right traction sliders (28) are fixedly connected to the inner ends of the traction ropes (29), and the outer ends of the left and right traction ropes (29) are fixedly connected to the inner outer walls of the locking slide plate (26).

9. The household energy storage power supply module according to claim 2, characterized in that: The bottom surfaces of the symmetrically installed protective brackets (11) are fixedly connected to the top ends of the reset pull ropes (30), and the bottom ends of the reset pull ropes (30) on the left and right sides are fixedly connected to the outer sides of the top surfaces of the power supply touch panels (20) inside the supporting frame (1), and the maximum lifting distances of the power supply touch panels (20) on the left and right sides are greater than the maximum flipping distance of the protective bracket (11), and at the same time, the power supply touch panels (20) on the left and right sides are connected to an external power source to charge the battery module.

Citation Information

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