Energy storage container fixing frame

By designing the energy storage container fixing frame, and using the clamping structure of the installation base plate, L-shaped baffle and limit plate, the stability of the energy storage container in extreme weather and uneven ground is solved, and the safe fixation of the energy storage container is achieved.

CN223086737UActive Publication Date: 2025-07-11ZHEJIANG YUDONG TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422206619.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-09
Publication Date
2025-07-11
Estimated Expiration
2034-09-09

AI Technical Summary

Technical Problem

When existing energy storage containers are placed outdoors, they are prone to dump or slip due to uneven ground or extreme weather such as strong winds or earthquakes, which poses safety hazards.

Method used

An energy storage container fixing frame is designed, including a mounting base plate, an L-shaped baffle and an L-shaped limiting plate. The four corners of the energy storage container are fixed through clamping and adjustment structures, and the combination of the L-shaped baffle and the limiting groove is used to ensure stability.

Benefits of technology

Effectively prevent energy storage containers from dumping or slipping under uneven ground or extreme weather conditions, improving the stability and safety of energy storage containers.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of energy storage containers, and provides an energy storage container fixing frame which comprises a mounting bottom plate, an L-shaped baffle and an L-shaped limiting plate. The mounting bottom plate is provided with two sub-plate bodies which are vertically connected with each other, and mounting hole positions are formed in the ends, away from each other, of the two sub-plate bodies respectively; the L-shaped baffles are arranged on the inner sides, perpendicular to each other, of the two sub-plate bodies in the installation bottom plate, and the inner sides of the L-shaped baffles are aligned with the inner sides of the sub-plate bodies. The L-shaped limiting plates are vertically arranged in the two sub-plate bodies in the thickness direction respectively; limiting grooves are formed in the inner sides of the two ends of the L-shaped baffle correspondingly. And the L-shaped limiting plates are respectively and correspondingly clamped and matched with the limiting grooves. According to the energy storage container fixing frame, installation limitation can be conducted on the four corners of the bottom of an energy storage container, and the problem that when the energy storage container is placed on the uneven ground or suffers from the action of strong wind earthquakes, the energy storage container deflects and slides is solved.
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Description

Technical Field

[0001] The present disclosure relates to the technical field of energy storage containers, and particularly to a fixing frame for an energy storage container. Background Art

[0002] An energy storage container is a container for storing energy storage media or devices. In the prior art, when an energy storage container is placed, it generally relies on its own weight to be fixed on the outdoor ground. However, when the outdoor ground cannot be ensured to be completely flat and extreme weather conditions such as strong outdoor winds and earthquakes occur, it is very likely that the energy storage container will tip over or slide and collide relative to the outdoor ground, which is extremely unfavorable for the safe and firm placement of the energy storage container, and there are certain safety hazards in the outdoor storage of the energy storage container.

[0003] Therefore, there is an urgent need in the market for a fixing device that can quickly and stably fix an energy storage container outdoors, so as to solve the problem that the energy storage container is prone to tipping over relative to the ground or sliding and colliding when encountering extreme strong winds and earthquakes during outdoor placement in the prior art. Utility Model Content

[0004] The embodiments of the present disclosure provide a fixing frame for an energy storage container to solve the problem that the energy storage container is prone to tipping over relative to the ground or sliding and colliding when encountering extreme strong winds and earthquakes during outdoor placement in the prior art.

[0005] The fixing frame for an energy storage container provided by the embodiments of the present disclosure includes a mounting bottom plate, an L-shaped baffle, and an L-shaped limiting plate;

[0006] The mounting bottom plate has two sub-plate bodies connected perpendicularly to each other, and mounting holes are respectively provided at the mutually remote ends of the two sub-plate bodies;

[0007] The L-shaped baffle is arranged on the inner sides of the two sub-plate bodies of the mounting bottom plate that are perpendicular to each other, and the inner side of the L-shaped baffle is aligned with the inner side of the sub-plate body;

[0008] The L-shaped limiting plates are respectively vertically arranged in the two sub-plate bodies along the thickness direction;

[0009] Wherein, limiting grooves are respectively provided at the inner sides of the two ends of the L-shaped baffle;

[0010] The L-shaped limiting plates are respectively in snap-fit connection with the limiting grooves.

[0011] In an implementable manner, the L-shaped limiting plate has a protruding section extending towards the limiting groove and a butting section butting against the end face of the L-shaped baffle;

[0012] Wherein, the protruding section can be correspondingly snap-fitted and inserted into the limiting groove;

[0013] The abutting section is integrally connected with the protruding section to form an L shape, and one side is flush with and abuts against the end face of the L-shaped baffle.

[0014] In an implementable embodiment, an adjusting structure is further provided in the abutting section of the L-shaped limiting plate;

[0015] The adjusting structure is movably connected with a positioning plate;

[0016] Wherein, the positioning plate is movably abutted against the outside of the L-shaped baffle, and can move towards or away from the L-shaped baffle along the outside of the L-shaped baffle under the adjustment of the adjusting structure.

[0017] In an implementable embodiment, the adjusting structure includes:

[0018] A screw rod, one end of which is rotatably arranged on the outer wall of the abutting section of the L-shaped limiting plate through a rotating shaft;

[0019] A connecting block, which is threadedly sleeved on the screw rod;

[0020] A turning handle, which is fixedly arranged at the outer end of the screw rod;

[0021] Wherein, the connecting block is fixedly connected with one side of the positioning plate close to the outside of the L-shaped baffle;

[0022] The turning handle can drive the screw rod, so that the connecting block and the positioning plate move back and forth along the length direction of the screw rod.

[0023] In an implementable embodiment, two guiding blocks are symmetrically and fixedly arranged on one end side of the abutting section of the L-shaped limiting plate,

[0024] Two guiding grooves are symmetrically formed on the inner wall of the positioning plate;

[0025] The guiding blocks are in sliding fit with the guiding grooves.

[0026] In an implementable embodiment, two positioning blocks are symmetrically and fixedly arranged at the outer end of the L-shaped baffle;

[0027] The positioning blocks are in sliding fit with the guiding grooves.

[0028] In an implementable embodiment, holding structures are respectively detachably arranged on the top sides of the two sub-plate bodies of the L-shaped baffle and the mounting base plate;

[0029] The holding structure is used for a user to grasp and move the mounting base plate.

[0030] In an implementable embodiment, the holding structure includes a stud and a threaded sleeve column;

[0031] The stud is fixedly arranged on the top side of the sub-plate body in the mounting base plate;

[0032] The threaded port at the bottom of the threaded sleeve column is threadedly connected to the stud.

[0033] In one implementable manner, a resistance increasing and buffering structure is further arranged on the inner sides of the two sub-plate bodies in the installation base plate that are perpendicular to each other.

[0034] In one implementable manner, the resistance increasing and buffering structure includes a plurality of resistance increasing and buffering pads arranged at intervals;

[0035] Or the resistance increasing and buffering structure includes a plurality of resistance increasing lines arranged at intervals.

[0036] The technical solution provided by the embodiments of the present disclosure has the following advantages compared with the prior art:

[0037] When the energy storage container fixing frame provided by the embodiments of the present disclosure limits and fixes the energy storage container, first, according to the size of the energy storage container, four installation base plates and L-shaped baffles are installed on the ground where the energy storage container is placed in advance, so as to limit the four corners of the bottom of the energy storage container, maintaining the advantage of the stability of the energy storage container and solving the problem that the energy storage container has a risk of skewing and sliding when placed on an uneven ground or under the action of strong winds and earthquakes.

[0038] It should be understood that the content described in this part is not intended to identify the key or important features of the embodiments of the present disclosure, nor is it used to limit the scope of the present disclosure. Other features of the present disclosure will become easily understood through the following description. Description of the Drawings

[0039] By referring to the drawings and reading the following detailed description, the above and other purposes, features, and advantages of the exemplary embodiments of the present disclosure will become easily understood. In the drawings, several embodiments of the present disclosure are shown in an exemplary rather than restrictive manner, wherein:

[0040] In the drawings, the same or corresponding reference numerals represent the same or corresponding parts.

[0041] Figure 1 A perspective view of the energy storage container fixing frame provided by the embodiments of the present disclosure is shown;

[0042] Figure 2 A connection schematic diagram of the holding structure in the energy storage container fixing frame provided by the embodiments of the present disclosure is shown;

[0043] Figure 3 A schematic diagram of the L-shaped baffle structure in the energy storage container fixing frame provided by the embodiments of the present disclosure is shown;

[0044] Figure 4 A connection schematic diagram of the adjusting structure in the energy storage container fixing frame provided by the embodiments of the present disclosure is shown;

[0045] Figure 5 The schematic diagram of the connection structure between the L-shaped limiting plate and the positioning plate in the energy storage container fixing frame provided by the embodiment of the present disclosure is shown;

[0046] Figure 6 The schematic diagram of another connection structure between the L-shaped limiting plate and the positioning plate in the energy storage container fixing frame provided by the embodiment of the present disclosure is shown;

[0047] Figure 7 The schematic diagram of another structure of the energy storage container fixing frame provided by the embodiment of the present disclosure is shown.

[0048] Explanation of the reference numerals in the figure: 1. Installation bottom plate; 2. Holding structure; 201. Stud; 202. Threaded sleeve column; 3. L-shaped baffle; 301. Limiting groove; 302. Positioning block; 31. Resistance increasing and buffering structure; 4. L-shaped limiting plate; 401. Guide block; 5. Positioning plate; 501. Guide groove; 6. Adjusting structure; 601. Screw rod; 602. Rotating handle; 603. Connecting block. Detailed implementation manners

[0049] To make the purpose, features, and advantages of the present disclosure more obvious and understandable, the technical solutions in the embodiments of the present disclosure will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present disclosure. Obviously, the described embodiments are only a part of the embodiments of the present disclosure, rather than all the embodiments. Based on the embodiments of the present disclosure, all other embodiments obtained by those skilled in the art without creative efforts belong to the scope of protection of the present disclosure.

[0050] The embodiments of the present disclosure will be described in detail below with reference to the drawings.

[0051] Combined with Figure 1 、 Figure 2 and Figure 3 As shown, the embodiment of the present disclosure provides an energy storage container fixing frame, including an installation bottom plate 1, an L-shaped baffle 3, and an L-shaped limiting plate 4; the installation bottom plate 1 has two sub-plate bodies connected perpendicularly to each other, and installation hole positions are respectively opened at the mutually remote ends of the two sub-plate bodies; the L-shaped baffle 3 is arranged on the inner sides of the two sub-plate bodies of the installation bottom plate 1 that are perpendicular to each other, and the inner side of the L-shaped baffle 3 is aligned with the inner side of the sub-plate body; the L-shaped limiting plates 4 are respectively vertically arranged in the two sub-plate bodies along the thickness direction; wherein, limiting grooves 301 are respectively opened at the inner sides of both ends of the L-shaped baffle 3; the L-shaped limiting plates 4 are respectively in snap-fit connection with the limiting grooves 301.

[0052] When the energy storage container fixing frame limits and fixes the energy storage container, first, four mounting bottom plates 1 and L-shaped baffles 3 are installed on the ground where the energy storage container is placed in advance according to the size of the energy storage container, so as to limit the four corners of the bottom of the energy storage container, maintaining the advantage of the stability of the energy storage container and solving the problem that the energy storage container has the risk of skewing and sliding when placed on uneven ground or under the action of strong wind and earthquake.

[0053] Moreover, limiting grooves 301 are respectively opened on the inner sides of both ends of the L-shaped baffle 3, and the L-shaped limiting plate 4 can further limit and fix the L-shaped baffle 3 to the mounting bottom plate 1 by means of snap-fit with the limiting grooves 301, fully ensuring the installation stability of the L-shaped baffle 3 and the clamping and limiting installation effect on the energy storage container.

[0054] The working principle of the energy storage container fixing frame: Using the energy storage container fixing frame provided in the embodiment of the present application, four mounting bottom plates 1 are installed on the ground where the energy storage container is placed in advance according to the size of the energy storage container. Bolts pass through the mounting holes at both ends of the mounting bottom plate 1 and are positioned on the ground. The four corners of the bottom of the energy storage container are respectively in contact with the inner sides of the four mounting bottom plates 1. Then, the L-shaped baffle 3 is pushed between the two L-shaped limiting plates 4. The protruding sections of the L-shaped limiting plates 4 are docked with the limiting grooves 301. Then, the turning handle 602 is rotated, the screw 601 rotates to drive the connecting block 603 to move inwards, so that the positioning plate 5 moves inwards. The guiding block 401 moves along the guiding groove 501. The positioning plate 5 moves inwards to block the end of the L-shaped baffle 3. After the L-shaped baffle 3 is fixed, the outer walls of the four corners of the bottom of the energy storage container are clamped and positioned.

[0055] In an implementable manner, the L-shaped limiting plate 4 has a protruding section extending towards the limiting groove 301 and an abutting section abutting against the end face of the L-shaped baffle 3; wherein, the protruding section can be correspondingly snap-fitted and inserted into the limiting groove 301; the abutting section is integrally connected with the protruding section in an L shape, and one side is flush with the end face of the L-shaped baffle 3 and abuts.

[0056] Specifically, in combination with Figure 1 and Figure 3 For further detailed description, limiting grooves 301 are respectively opened on the inner sides of both ends of the L-shaped baffle 3, and the protruding sections of the L-shaped limiting plates 4 are snap-fitted with the limiting grooves 301; the abutting sections of the L-shaped limiting plates 4 are used to abut flush with the end faces of the L-shaped baffles 3.

[0057] The utility model has the advantage of being able to install the L-shaped baffle 3 subsequently and quickly and accurately positioning the L-shaped baffle 3 during installation through the docking of the L-shaped limiting plate 4 and the limiting groove 301 by setting the L-shaped limiting plate 4 and the limiting groove 301.

[0058] In an implementable embodiment, an adjusting structure 6 is further provided in the abutting section of the L-shaped limiting plate 4; the adjusting structure 6 is movably connected with a positioning plate 5; wherein, the positioning plate 5 is movably abutted against the outer side of the L-shaped baffle 3 and can move along the outer side of the L-shaped baffle 3 towards or away from the L-shaped baffle 3 under the adjustment of the adjusting structure 6.

[0059] Specifically, in Figure 4 Further detailed description, the adjusting structure 6 correspondingly adjusts the positioning plate 5 to move towards or away from the L-shaped baffle 3, thereby changing the covering degree of the positioning plate 5 on the L-shaped baffle 3, so that the L-shaped limiting plate 4 and the positioning plate 5 can clamp and limit the L-shaped baffle 3 from the inner and outer sides thereof, further improving the installation limiting and fixing stability of the L-shaped baffle 3.

[0060] In an implementable embodiment, the adjusting structure 6 includes a screw rod 601, a connecting block 603 and a turning handle 602; one end of the screw rod 601 is rotatably arranged on the outer wall of the abutting section of the L-shaped limiting plate 4 through a rotating shaft; the connecting block 603 is threadedly sleeved on the screw rod 601; the turning handle 602 is fixedly arranged at the outer end of the screw rod 601; wherein, the connecting block 603 is fixedly connected with one side of the positioning plate 5 close to the outer side of the L-shaped baffle 3; the turning handle 602 can drive the screw rod 601 to make the connecting block 603 and the positioning plate 5 move back and forth along the length direction of the screw rod 601.

[0061] Specifically, in Figure 4 Further detailed description, the adjusting structure 6 is specifically set to include a screw rod 601, a connecting block 603 and a turning handle 602, and one end of the screw rod 601 is rotatably arranged on the outer wall of the abutting section of the L-shaped limiting plate 4 through a rotating shaft, the connecting block 603 is threadedly sleeved on the screw rod 601; the turning handle 602 is fixedly arranged at the outer end of the screw rod 601, and the connecting block 603 is fixedly connected with one side of the positioning plate 5, so that when the user rotates the turning handle 602 to drive the screw rod 601, the connecting block 603 and the positioning plate 5 can synchronously move back and forth along the length direction of the screw rod 601, having the functions of simple structure, convenient and fast fixing of the installed L-shaped baffle 3, and quickly realizing the full clamping and limiting of the positioning plate 5 on the outer side of the L-shaped baffle 3.

[0062] Of course, the above adjusting structure 6 can also be set to other submission methods, such as adopting an adjusting method of gear-rack transmission.

[0063] In an implementable embodiment, two guiding blocks 401 are symmetrically and fixedly arranged on one end side of the abutting section of the L-shaped limiting plate 4, and two guiding grooves 501 are symmetrically formed on the inner wall of the positioning plate 5; the guiding blocks 401 are in sliding fit with the guiding grooves 501.

[0064] Specifically, in Figure 5For further detailed description, by providing the above-mentioned guiding block 401 and guiding groove 501, when the inner wall of the positioning plate 5 moves relative to the end side of the abutting section of the L-shaped limiting plate 4, the guiding block 401 can slide and cooperate with the guiding groove 501 correspondingly, so that the positioning plate 5 can maintain stability when moving relative to the L-shaped limiting plate 4 due to the cooperation of the guiding block 401 and the guiding groove 501.

[0065] Of course, the above-mentioned guiding block 401 and guiding groove 501 can also be set in other shapes, such as dovetail-shaped, U-shaped, etc. that cooperate with each other.

[0066] In an implementable embodiment, two positioning blocks 302 are symmetrically fixed on the outer side end of the L-shaped baffle 3; the positioning blocks 302 are slidably engaged with the guiding groove 501.

[0067] Specifically, in combination with Figure 6 For further detailed description, two positioning blocks 302 are symmetrically fixed on the outer side end of the L-shaped baffle 3, and the positioning blocks 302 can also be slidably engaged with the guiding groove 501. When the inner wall of the positioning plate 5 moves relative to the end side of the abutting section of the L-shaped limiting plate 4, the positioning blocks 302 on the outer side end of the L-shaped baffle 3 can correspondingly slide into the guiding groove 501. After the positioning plate 5 is completely moved in place, the positioning blocks 302 will be completely slidably clamped in the guiding groove 501, thereby further improving the installation and limiting firmness of the L-shaped baffle 3.

[0068] In an implementable embodiment, holding structures 2 are detachably provided on the top sides of the two sub-plate bodies of the mounting base plate 1; the holding structures 2 are used for a user to grip and move the mounting base plate 1.

[0069] Specifically, in combination with Figure 1 and Figure 2 For further detailed description, the above-mentioned holding structure 2 can be columnar or handle-shaped. In this way, the holding structure 2 is detachably installed on the top sides of the two sub-plate bodies of the mounting base plate 1. When it is necessary to move the mounting base plate 1, the user can move the mounting base plate 1 by gripping the holding structure 2, making the moving process of the mounting base plate 1 more convenient and labor-saving.

[0070] In an implementable embodiment, the holding structure 2 includes a stud 201 and a threaded sleeve column 202; the stud 201 is fixed on the top side of the sub-plate body of the mounting base plate 1; the bottom threaded port of the threaded sleeve column 202 is threadedly connected to the stud 201.

[0071] Specifically, in combination with Figure 2For further detailed description, the gripping structure 2 is specifically arranged to include a stud 201 and a threaded sleeve column 202; the stud 201 is fixedly arranged on the top side of the extension section of the mounting base plate 1; the threaded port at the bottom of the threaded sleeve column 202 is threadedly connected to the stud 201. In this way, by arranging the stud 201 and the threaded sleeve column 202, it has the advantages that the threaded sleeve column 202 can be held to push the mounting base plate 1, which is convenient for connecting to the mounting base plate 1, and the threaded sleeve column 202 can be quickly disassembled and assembled.

[0072] In an implementable embodiment, a resistance increasing and buffering structure 31 is further arranged in the inner sides of the two sub-plate bodies of the L-shaped baffle 3 and the mounting base plate 1 that are perpendicular to each other.

[0073] Specifically, in combination with Figure 7 For further detailed description, by further arranging the resistance increasing and buffering structure 31 in the inner side of the L-shaped baffle 3, the resistance increasing and buffering structure 31 can be made of an elastic material, such as but not limited to a rubber pad, a silica gel pad, a sponge pad, etc. In this way, on the one hand, it can increase the abutting stability between the L-shaped baffle 3 and the energy storage container, and on the other hand, the resistance increasing and buffering structure 31 can also absorb the kinetic energy when the energy storage container is displaced slightly under an external force, avoiding the problem of collision and wear between the container and the L-shaped baffle 3.

[0074] In an implementable embodiment, the resistance increasing and buffering structure 31 includes a plurality of resistance increasing and buffering pads arranged at intervals; or the resistance increasing and buffering structure 31 includes a plurality of resistance increasing lines arranged at intervals.

[0075] Specifically, in combination with Figure 7 For further detailed description, when the resistance increasing and buffering structure 31 is specifically arranged as a resistance increasing and buffering pad, materials such as rubber, silica gel, composite sponge, etc. can be specifically used to ensure the resistance increasing and buffering performance of the resistance increasing and buffering pad; when the resistance increasing and buffering structure 31 is specifically arranged as a resistance increasing line, the resistance increasing line can be specifically arranged as a concave wavy line, and a buffering material can also be correspondingly sprayed or filled in the resistance increasing line.

[0076] In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include at least one of such features. In the description of the present disclosure, the meaning of "a plurality" is two or more, unless otherwise specifically and clearly defined.

[0077] The above is only the specific implementation manner of the present disclosure, but the protection scope of the present disclosure is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present disclosure can easily think of changes or substitutions, which should all be covered within the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure should be subject to the protection scope of the claimed rights.

Claims

1. A fixed frame for an energy storage container, characterized in that, Comprising: An installation base plate (1), the installation base plate (1) having two sub-plate bodies connected perpendicularly to each other, and installation holes being respectively provided at the mutually remote ends of the two sub-plate bodies; An L-shaped baffle (3), arranged on the inner sides of the two sub-plate bodies of the installation base plate (1) that are perpendicular to each other, and the inner side of the L-shaped baffle (3) being aligned with the inner sides of the sub-plate bodies; L-shaped limit plates (4), respectively perpendicularly arranged in the two sub-plate bodies along the thickness direction; Wherein, limiting grooves (301) are respectively provided on the inner sides of the two ends of the L-shaped baffle (3); The L-shaped limit plates (4) are respectively in snap-fit connection with the limiting grooves (301).

2. The fixed frame of the energy storage container according to claim 1, wherein The L-shaped limit plate (4) has a protruding section extending towards the limiting groove (301) in a protruding manner, and an abutting section abutting against the end face of the L-shaped baffle (3); Wherein, the protruding section can be correspondingly snap-fitted and inserted into the limiting groove (301); The abutting section is integrally connected with the protruding section to form an L shape, and one side is flush and abuts against the end face of the L-shaped baffle (3).

3. The fixed frame of the energy storage container according to claim 2, characterized in that An adjusting structure (6) is further provided in the abutting section of the L-shaped limit plate (4); The adjusting structure (6) is movably connected with a positioning plate (5); Wherein, the positioning plate (5) movably abuts against the outer side of the L-shaped baffle (3), and can move towards or away from the L-shaped baffle (3) along the outer side of the L-shaped baffle (3) under the adjustment of the adjusting structure (6).

4. The fixed frame of the energy storage container according to claim 3, wherein, The adjusting structure (6) includes: A screw rod (601), one end of which is rotatably arranged on the outer wall of the abutting section of the L-shaped limit plate (4) through a rotating shaft; A connecting block (603), threadedly sleeved on the screw rod (601); A turning handle (602), fixedly arranged at the outer end of the screw rod (601); Wherein, the connecting block (603) is fixedly connected with one side of the positioning plate (5) close to the outer side of the L-shaped baffle (3); The turning handle (602) can drive the screw rod (601) so that the connecting block (603) and the positioning plate (5) move back and forth along the length direction of the screw rod (601).

5. The fixed frame of the energy storage container according to claim 3, characterized in that Two guiding blocks (401) are symmetrically and fixedly arranged on one end side of the abutting section of the L-shaped limit plate (4), Two guiding grooves (501) are symmetrically provided on the inner wall of the positioning plate (5); The guiding blocks (401) are in sliding fit with the guiding grooves (501).

6. The fixed frame of the energy storage container according to claim 5, characterized in that, Two positioning blocks (302) are symmetrically and fixedly arranged in the outer end part of the outer side of the L-shaped baffle (3); The positioning blocks (302) are in sliding fit with the guiding grooves (501).

7. The fixed frame of the energy storage container according to claim 1, characterized in that Grip structures (2) are respectively detachably arranged on the top sides of the two sub-plate bodies of the installation base plate (1); The grip structures (2) are used for a user to grasp and move the installation base plate (1).

8. The fixed frame of the energy storage container according to claim 7, characterized in that, The grip structures (2) include a stud (201) and a threaded sleeve column (202); The stud (201) is fixedly arranged on the top side of the sub-plate body in the installation base plate (1); The bottom threaded port of the threaded sleeve column (202) is in threaded connection with the stud (201).

9. The fixed frame of the energy storage container according to claim 1, characterized in that An anti-slip and buffering structure (31) is further provided in the inner sides of the L-shaped baffle (3) that are perpendicular to the two sub-plate bodies of the installation base plate (1).

10. The fixed frame of the energy storage container according to claim 9, characterized in that, The resistance increasing and buffering structure (31) includes a plurality of resistance increasing and buffering pads arranged at intervals; Or the resistance increasing and buffering structure (31) includes a plurality of resistance increasing stripes arranged at intervals.