Auxiliary device for mounting and dismounting energy storage battery of power storage container for photovoltaic power generation

By designing the installation and disassembly auxiliary devices of energy storage batteries for photovoltaic power generation, using components such as universal wheels, oil cylinders, chains and sliders, the problem of manual handling of energy storage batteries is solved, and convenient transportation and efficient installation is achieved.

CN223059019UActive Publication Date: 2025-07-04LAZI CGN SOLAR ENERGY CO LTD
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Patent Information

Application Number
CN202421862843.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-02
Publication Date
2025-07-04
Estimated Expiration
2034-08-02

AI Technical Summary

Technical Problem

The manual handling of energy storage batteries in photovoltaic energy storage containers is laborious and has safety risks, so it is impossible to use forklifts and other mechanical equipment for handling.

Method used

Design an auxiliary device for installation and disassembly of energy storage batteries for photovoltaic power generation. Using universal wheels, oil cylinders, chains and sliders, the stable transportation and lifting of energy storage batteries is achieved through support plates and support slide rollers, reducing labor intensity and improving safety.

Benefits of technology

It realizes convenient transportation and efficient installation of energy storage batteries, reduces the labor intensity of staff, and improves safety during the installation process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an auxiliary device for mounting and dismounting an energy storage battery of an electricity storage container for photovoltaic power generation, and belongs to the technical field of auxiliary devices. The device mainly comprises a base, universal wheels, a supporting frame, an oil cylinder, a sliding block, a chain, a connecting frame, rolling wheels, a supporting rod, a supporting plate, a material collecting frame and supporting sliding rollers. A worker moves an energy storage battery to a supporting plate and a supporting sliding roller, then local materials are used, sand is put into a material collecting frame, the stability of the device in the walking process is guaranteed, the situation that the device topples over due to the fact that the energy storage battery is too heavy is prevented, universal wheels drive the whole device and the energy storage battery to move, and transportation of the energy storage battery is achieved; the oil cylinder is started according to the installation height, the oil cylinder and the chain are matched to drive the connecting frame and the sliding block to slide in the sliding groove, then the supporting rod, the supporting plate and the energy storage battery at the top end are driven to move, the energy storage battery at the low position can be conveniently lifted to the high position to be installed, the labor intensity of workers is relieved, and the safety in the installation process is improved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of auxiliary devices, and particularly relates to an auxiliary device for installing and disassembling energy storage batteries of a power storage container for photovoltaic power generation. Background Technique

[0002] A photovoltaic energy storage container is a mobile container integrating solar photovoltaic power generation and energy storage devices. It can directly absorb solar energy through solar photovoltaic panels and convert it into electrical energy. At the same time, it can also store this electrical energy in devices such as energy storage batteries for power supply when needed.

[0003] For photovoltaic energy storage containers, it is often necessary to manually install multiple energy storage batteries in the container. However, due to the generally large weight of the energy storage batteries and the limited internal space of the container, traditional mechanical equipment such as forklifts cannot be used for handling. Currently, manual handling is usually adopted. The manual handling process is very laborious and there is a risk of bumping. It is not only easy to damage the batteries and the electrical equipment inside the container, but also more likely to cause danger to personnel. Summary of the Invention

[0004] In order to overcome the problems of large labor intensity and low safety in manually handling energy storage batteries, the utility model provides an auxiliary device for installing and disassembling energy storage batteries of a power storage container for photovoltaic power generation; the staff moves the energy storage battery to the support plate and the support roller, and then, taking materials locally, puts sand into the aggregate frame to ensure the stability of the device during walking and prevent the device from tipping due to the overweight of the energy storage battery. The universal wheels drive the whole device and the energy storage battery to move, realizing the transportation of the energy storage battery. When reaching the installation location of the container, the oil cylinder is started according to the installation height. The oil cylinder and the chain cooperate to drive the connecting frame and the slider to slide in the chute, and then drive the support rod, the support plate and the energy storage battery at the top to move, facilitating the lifting of the energy storage battery at a low position to a high position for installation, reducing the labor intensity of the staff and improving the safety during the installation process.

[0005] To achieve the above object, the utility model is realized through the following technical solutions: An auxiliary device for installing and disassembling energy storage batteries of a power storage container for photovoltaic power generation mainly includes a base, universal wheels, a support frame, an oil cylinder, a slider, a chain, a connecting frame, rollers, a support rod, a support plate, an aggregate frame, and support rollers. The universal wheels are installed at the bottom end of the base, the support frame is installed at the top end of the base, the bottom end of the oil cylinder is installed on the base, and the side is connected to the support frame. A chute is provided inside the support frame, the slider is slidably installed in the chute, the connecting frame is installed on the slider, one end of the chain is installed on the sleeve of the oil cylinder, and the other end is connected to the connecting frame. A roller is installed on the piston rod of the oil cylinder, and the chain is installed inside the roller. The support rod is installed on the connecting frame, the support plate is installed between the support rods, the aggregate frame is installed at the top end of the base, and the support rollers are rotatably installed on the support plate.

[0006] A handle is provided on the described support frame.

[0007] A protective net is installed on the described support frame.

[0008] An anti-slip layer is provided on the described support plate and support rollers.

[0009] A movable door is provided on the described aggregate box, and the bottom surface of the aggregate box is set as an inclined structure.

[0010] Advantages of the present utility model:

[0011] The staff moves the energy storage battery to the support plate and support rollers, and then, using local materials, puts sand into the aggregate box to ensure the stability of the device during walking, prevent the device from tipping over due to the overweight of the energy storage battery, and the universal wheels drive the entire device and the energy storage battery to move, realizing the transportation of the energy storage battery. When reaching the installation location of the container, the oil cylinder is activated according to the installation height, and the cooperation of the oil cylinder and the chain drives the connecting frame and the slider to slide in the chute, thereby driving the support rod, the support plate and the energy storage battery at the top to move, facilitating the lifting of the energy storage battery at a low position to a high position for installation, reducing the labor intensity of the staff, and improving the safety during the installation process. Description of the Drawings

[0012] Figure 1 It is an isometric schematic diagram of the present utility model.

[0013] Figure 2 It is a three-dimensional schematic Figure 1 .

[0014] Figure 3 It is a three-dimensional schematic Figure 2 .

[0015] Figure 4 It is a three-dimensional schematic Figure 3 .

[0016] Figure 5 It is Figure 4 a partial enlarged view of part A in Detailed Embodiments

[0017] In order to make the purpose, technical solutions and advantages of the present utility model clearer, the preferred embodiments of the present utility model will be described in detail below with reference to the drawings to facilitate understanding by those skilled in the art.

[0018] The utility model discloses an auxiliary device for installing and disassembling energy storage batteries in a power storage container for photovoltaic power generation. The auxiliary device for installing and disassembling energy storage batteries in a power storage container for photovoltaic power generation mainly comprises a base 1, universal wheels 2, a support frame 3, an oil cylinder 4, a slider 5, a chain 6, a connecting frame 7, rollers 8, a support rod 9, a support plate 10, an aggregate box 11, and support sliding rollers 12. The universal wheels 2 are installed at the bottom end of the base 1, the support frame 3 is installed at the top end of the base 1, the bottom end of the oil cylinder 4 is installed on the base 1, and the side part is connected to the support frame 3. A chute 31 is provided inside the support frame 3, and the slider 5 is slidably installed in the chute 31. The connecting frame 7 is installed on the slider 5. One end of the chain 6 is installed on the sleeve of the oil cylinder 4, and the other end is connected to the connecting frame 7. A roller 8 is installed on the piston rod of the oil cylinder 4, and the chain 6 is installed inside the roller 8. The support rod 9 is installed on the connecting frame 7, the support plate 10 is installed between the support rods 9, the aggregate box 11 is installed at the top end of the base 1, and the support sliding rollers 12 are rotatably installed on the support plate 10.

[0019] First, the staff makes use of local materials and puts sand into the aggregate box 11 to ensure the stability of the device during walking and prevent the device from tipping over due to the excessive weight of the energy storage battery. Subsequently, the energy storage battery is moved onto the support plate 10 and the support sliding rollers 12. The arrangement of the support sliding rollers 12 facilitates the movement of the energy storage battery and shortens the movement time. The universal wheels 2 drive the entire device and the energy storage battery to move, increasing the flexibility and convenience of the device and realizing the transportation of the energy storage battery. When arriving at the container installation location, the oil cylinder 4 is started according to the installation height. The piston rod of the oil cylinder 4 extends out of the sleeve, and the movement of the piston rod drives the roller 8 to move upward, thereby realizing the movement of the chain 6 on the roller 8. The cooperation of the piston rod, the roller 8, and the chain 6 drives the connecting frame 7 and the slider 5 to slide in the chute 31, and then drives the support rod 9, the support plate 10, and the energy storage battery at the top to move, facilitating the lifting of the energy storage battery from a low position to a high position. After reaching the installation position, the device is pushed to install the energy storage battery inside the container, and the installation is convenient and fast.

[0020] As Figure 1 、 Figure 2 、 Figure 3 shown, a handle 32 is provided on the support frame 3; it is convenient for the staff to hold the handle 32 to move the device.

[0021] As Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 5 shown, a protective net 13 is installed on the support frame 3; it can prevent the device from colliding with other objects during movement, causing casualties, effectively protecting the staff and reducing the occurrence of accidents.

[0022] The described support plate 10 and support rollers 12 are provided with anti-slip layers; the anti-slip layers can reduce the sliding and tilting of the energy storage battery during transportation, thereby ensuring the stability and integrity of the energy storage battery.

[0023] As Figure 2 , Figure 3 shown, the aggregate box 11 is provided with a movable door 111, and the bottom surface of the aggregate box 11 is set as an inclined structure; the setting of the aggregate box 11 is convenient for local material collection, facilitating the staff to put sand into the aggregate box 11, ensuring the stability of the device during walking, preventing the device from tipping over due to the overweight of the energy storage battery. After use, the staff opens the movable door 111 to facilitate the discharge of the sand inside the aggregate box 11, and the inclined structure prevents the sand from accumulating inside the aggregate box 11.

[0024] Working process:

[0025] The staff first collects local materials and puts sand into the aggregate box 11 to ensure the stability of the device during walking and prevent the device from tipping over due to the overweight of the energy storage battery. Subsequently, the energy storage battery is moved onto the support plate 10 and the support rollers 12. The setting of the support rollers 12 facilitates the movement of the energy storage battery and shortens the movement time. The universal wheels 2 drive the entire device and the energy storage battery to move, increasing the flexibility and convenience of the device and realizing the transportation of the energy storage battery. When reaching the container installation location, the oil cylinder 4 is started according to the installation height. The piston rod of the oil cylinder 4 extends out of the sleeve, and the movement of the piston rod drives the roller 8 to move upward, thereby realizing the movement of the chain 6 on the roller 8. The piston rod, the roller 8 and the chain 6 cooperate to drive the connecting frame 7 and the slider 5 to slide in the chute 31, and then drive the support rod 9, the support plate 10 and the energy storage battery at the top to move, facilitating the lifting of the energy storage battery at a low position to a high position. After reaching the installation position, the device is pushed to install the energy storage battery inside the container. The installation is convenient and fast. After the installation is completed, the device is removed from the container. The staff opens the movable door 111 to discharge the sand inside the aggregate box 11. The inclined structure prevents the sand from accumulating inside the aggregate box 11, reducing the labor intensity of the staff and improving the safety during the installation and disassembly process.

[0026] Finally, it should be noted that the above preferred embodiments are only used to illustrate the technical solutions of the present invention and are not restrictive. Although the present invention has been described in detail through the above preferred embodiments, those skilled in the art should understand that various changes can be made in form and details without departing from the scope defined by the claims of the present invention.

Claims

1. An auxiliary device for the installation and disassembly of energy storage batteries in a power storage container for photovoltaic power generation, characterized in that: The auxiliary device for installing and disassembling energy storage batteries of a power storage container for photovoltaic power generation includes a base (1), universal wheels (2), a support frame (3), an oil cylinder (4), a slider (5), a chain (6), a connecting frame (7), rollers (8), a support rod (9), a support plate (10), an aggregate frame (11), and support sliding rollers (12). The universal wheels (2) are installed at the bottom end of the base (1), the support frame (3) is installed at the top end of the base (1), the bottom end of the oil cylinder (4) is installed on the base (1), and the side is connected to the support frame (3). A chute (31) is provided inside the support frame (3), and the slider (5) is slidably installed in the chute (31). The connecting frame (7) is installed on the slider (5). One end of the chain (6) is installed on the sleeve of the oil cylinder (4), and the other end is connected to the connecting frame (7). A roller (8) is installed on the piston rod of the oil cylinder (4), and the chain (6) is installed inside the roller (8). The support rod (9) is installed on the connecting frame (7), the support plate (10) is installed between the support rods (9), the aggregate frame (11) is installed at the top end of the base (1), and the support sliding rollers (12) are rotatably installed on the support plate (10).

2. The auxiliary device for installing and disassembling the energy storage battery of the electricity storage container for photovoltaic power generation according to claim 1, wherein: A handle (32) is provided on the support frame (3).

3. An auxiliary device for installing and disassembling energy storage batteries of a power storage container for photovoltaic power generation according to claim 1 or 2, characterized in that: A protective net (13) is installed on the support frame (3).

4. An auxiliary device for installing and disassembling energy storage batteries of a power storage container for photovoltaic power generation according to claim 1 or 2, characterized in that: Anti-slip layers are provided on the support plate (10) and the support sliding rollers (12).

5. An auxiliary device for installing and disassembling energy storage batteries of a power storage container for photovoltaic power generation according to claim 1 or 2, characterized in that: An activity door (111) is provided on the aggregate frame (11), and the bottom surface of the aggregate frame (11) is set as an inclined structure.