A battery cabinet and a mounting device for mounting a battery cabinet

By connecting the limiting groove, limiting protrusion, and pre-installed screw, combined with the positioning column and sliding seat, the battery cabinet can be installed quickly, solving the problems of low installation efficiency and high labor costs of existing battery cabinets, improving installation efficiency and ensuring stability.

CN115621647BActive Publication Date: 2026-05-29CHUNAN COUNTY POWER SUPPLY CO OF STATE GRID ZHEJIANG ELECTRIC POWER CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
CHUNAN COUNTY POWER SUPPLY CO OF STATE GRID ZHEJIANG ELECTRIC POWER CO LTD
Filing Date
2022-09-27
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

The existing battery cabinet installation is inefficient and labor-intensive, requiring a large number of screws to be tightened and additional personnel to position them.

Method used

A battery cabinet structure was designed, including a first cabinet and a second cabinet, which are connected by a limiting groove and a limiting protrusion, combined with fasteners and pre-installed screws to achieve rapid assembly; and the positioning column and sliding seat of the installation device are used to assist in positioning and fixing.

Benefits of technology

It improves installation efficiency, reduces the number of fasteners, saves labor, and ensures the stability and convenient transportation of the battery cabinet.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a battery cabinet and a mounting device for mounting the battery cabinet, the battery cabinet comprises a first cabinet body and a second cabinet body, the first cabinet body comprises a first cabinet plate and a plurality of first partition plates, the first cabinet plate comprises two first vertical columns, the second cabinet body comprises a second cabinet plate and a plurality of second partition plates, the second cabinet plate comprises two second vertical columns extending in the vertical direction, the first partition plate is provided with a first limiting groove, the first vertical column is fixedly connected with a first limiting protrusion, the second partition plate is provided with a second limiting groove, and the second vertical column is fixedly connected with a second limiting protrusion. The mounting device comprises a base, a sliding seat is slidably connected to the upper side of the base, a first positioning column is fixedly connected to the upper side of the sliding seat, and a second positioning column is fixedly connected to the upper side of the base. The application has high mounting efficiency and saves labor.
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Description

Technical Field

[0001] This invention relates to the field of battery cabinet technology, and more particularly to a battery cabinet and an installation device for installing the battery cabinet. Background Technology

[0002] To facilitate transportation, existing battery cabinets often require on-site installation. Specifically, electric screwdrivers and screws are needed to assemble components such as partitions and side panels into a battery cabinet. The number of screws that need to be tightened by the electric screwdriver is relatively large, resulting in low installation efficiency. On the other hand, during installation, another person is often needed to position the components to facilitate assembly, which is quite labor-intensive. Summary of the Invention

[0003] To address the shortcomings of existing battery cabinets, such as low installation efficiency and high labor costs, this invention proposes a battery cabinet and an installation device for installing the battery cabinet, which offers high installation efficiency and saves labor.

[0004] To achieve the above objectives, the present invention adopts the following technical solution:

[0005] A battery cabinet includes a first cabinet body and a second cabinet body. The first cabinet body includes a first cabinet panel and a plurality of first partitions. The first cabinet panel includes two first uprights extending vertically and fixedly connected to each other by a first connecting plate. The second cabinet body includes a second cabinet panel and a plurality of second partitions. The second cabinet panel includes two second uprights extending vertically and fixedly connected to each other by a second connecting plate. One end of each first partition is rotatably connected between the first uprights and is provided with a first limiting groove opening downwards. The other end of each first partition is disposed between the second uprights and detachably connected to the second uprights. A first limiting protrusion is fixedly connected to each first upright and abuts against the bottom of the first limiting groove. One end of each second partition is rotatably connected between the second uprights and is provided with a second limiting groove opening downwards. The other end of each second partition is disposed between the first uprights and detachably connected to the second upright. A second limiting protrusion is fixedly connected to each second upright and abuts against the bottom of the second limiting groove.

[0006] The above-described configuration facilitates installation and saves labor. Before installation, neither the first nor the second cabinet is unfolded; that is, the first partition and the first connecting plate are parallel, forming a first accommodating space between the first uprights. The uppermost portion of the first partition is outside the first accommodating space, while the remaining first partitions are inside, thus facilitating the transportation of the first cabinet. Similarly, the second partition and the second connecting plate are parallel, forming a second accommodating space between the second uprights. The uppermost portion of the second partition is outside the second accommodating space, while the remaining second partitions are inside, thus facilitating the transportation of the second cabinet.

[0007] When installing the battery cabinet, rotate the first partition, and the first limiting protrusion enters the first limiting groove and abuts against the bottom of the groove. At this time, the first partition and the first connecting plate are perpendicular. Rotate the second partition, and the second limiting protrusion enters the second limiting groove and abuts against the bottom of the groove. At this time, the second partition and the second connecting plate are perpendicular. Then, the first and second cabinet panels move closer together, and the end of the first partition moves between the second and third uprights and is connected to the second uprights through fasteners. The end of the second partition moves between the first and third uprights and is connected to the first uprights through fasteners. The battery cabinet installation is now complete. The first and second partitions are arranged alternately from top to bottom, forming an installation space for batteries. This application requires only the fasteners at one end of the first partition and one end of the second partition to be installed, reducing the number of fasteners and improving installation efficiency.

[0008] After installation, the first limiting protrusion prevents the first partition from rotating downwards, thereby preventing the second cabinet panel connected to the first partition from moving downwards relative to the first cabinet panel. The second limiting protrusion prevents the second partition from rotating downwards, thereby preventing the second cabinet panel from moving upwards relative to the first cabinet panel. In summary, the second cabinet panel is basically fixed to one side of the first cabinet panel under the action of the first and second limiting protrusions, that is, the present application has good stability after installation.

[0009] Furthermore, the first partition plate has first rotating grooves on its opposite sides, a first column passes through a first screw, the first screw and the first column are threaded together, the end of the first screw is located in the first rotating groove, and the first partition plate is rotatably connected between the first columns through the first screw. The second partition plate has second rotating grooves on its opposite sides, a second column passes through a second screw, the second screw and the second column are threaded together, the end of the second screw is located in the second rotating groove, and the second partition plate is rotatably connected between the second columns through the second screw.

[0010] With the above configuration, the first partition can rotate around the axis of the first screw, and the second partition can rotate around the axis of the second screw. The first and second screws are pre-installed at the factory and do not require on-site installation.

[0011] Furthermore, the second column passes through a third screw, and the third screw is threadedly connected to the end of the first partition away from the first screw. The first column passes through a fourth screw, and the fourth screw is threadedly connected to the end of the second partition away from the second screw.

[0012] The above configuration enables a detachable connection between the first column and the second partition, and vice versa.

[0013] Furthermore, both the first and second columns are made of square tubing.

[0014] An installation device for mounting a battery cabinet includes a base, a sliding seat slidably connected to the upper side of the base, a first positioning post fixedly connected to the upper side of the sliding seat, and a second positioning post fixedly connected to the upper side of the base. Both the first and second positioning posts extend vertically. There are two first positioning posts and two second positioning posts. The spacing between the first positioning posts matches the spacing between the first upright posts, and the spacing between the second positioning posts matches the spacing between the second upright posts.

[0015] With the above setup, when installing the battery cabinet, the first column of the first cabinet is fitted downwards onto the first positioning column, thus keeping the first column vertical. Rotating the first partition causes the first limiting protrusion to enter the first limiting groove and abut against the bottom of the groove. At this time, the first partition is horizontal. Under the weight of the first partition, it remains horizontal. The second column of the second cabinet is then fitted downwards onto the second positioning column, thus keeping the second column vertical. Rotating the second partition causes the second limiting protrusion to enter the second limiting groove and abut against the bottom of the groove. At this time, the second partition is horizontal. Under the weight of the second partition, it remains horizontal. The sliding seat moves along the base towards the second positioning column. The end of the first partition moves between the second and third positioning columns. Finally, the second column and the first partition are connected using a third screw, and the first column and the second partition are connected using a fourth screw. Attached Figure Description

[0016] Figure 1 This is a side view of the battery cabinet.

[0017] Figure 2 This is a top view of the battery cabinet.

[0018] Figure 3 This is an exploded view of the battery cabinet.

[0019] Figure 4 for Figure 3 Enlarged view of point A.

[0020] Figure 5 for Figure 3 Enlarged view of point B.

[0021] Figure 6 This is a cross-sectional view of the battery cabinet.

[0022] Figure 7 This is a schematic diagram of the first and second cabinets before they are unfolded.

[0023] Figure 8 This is a schematic diagram of the installation device.

[0024] Figure 9 This is a top view of the installation device.

[0025] Figure 10A schematic diagram showing the unfolded first and second cabinets.

[0026] Figure 11 A schematic diagram of the battery cabinet installed for the mounting device. Detailed Implementation

[0027] The technical solution of the present invention will be further described in detail below through embodiments and in conjunction with the accompanying drawings.

[0028] See Figures 1 to 7 A battery cabinet includes a first cabinet body 11 and a second cabinet body 12. The first cabinet body 11 includes a first cabinet panel 111 and a plurality of first partitions 112. The first cabinet panel 111 includes two vertically extending first columns 1111, which are fixedly connected by a first connecting plate 1112. The second cabinet body 12 includes a second cabinet panel 121 and a plurality of second partitions 122. The second cabinet panel 121 includes two vertically extending second columns 1211, which are fixedly connected by a second connecting plate 1212. One end of each first partition 112 is rotatably connected between the first columns 1111 and is provided with a downward-opening first limiting groove 1121. The other end of the first partition 112 is disposed between the second columns 1211 and is detachably connected to the second columns 1211. The first column 1111 is fixedly connected to a first limiting protrusion 1113, which abuts against the bottom of the first limiting groove 1121. One end of the second partition 122 is rotatably connected between the second columns 1211 and is provided with a second limiting groove 1221 with an opening facing downward. The other end of the second partition 122 is disposed between the first columns 1111 and is detachably connected to the second columns 1211. The second column 1211 is fixedly connected to a second limiting protrusion 1213, which abuts against the bottom of the second limiting groove 1221.

[0029] The above-described configuration facilitates installation and saves labor. Before installation, neither the first cabinet 11 nor the second cabinet 12 is unfolded; that is, the first partition 112 and the first connecting plate 1112 are parallel, forming a first accommodating space between the first uprights 1111. Part of the uppermost first partition 112 is outside the first accommodating space, while the remaining first partitions 112 are inside, thus facilitating the transportation of the first cabinet 11. The second partition 122 and the second connecting plate 1212 are parallel, forming a second accommodating space between the second uprights 1211. Part of the uppermost second partition 122 is outside the second accommodating space, while the remaining second partitions 122 are inside, thus facilitating the transportation of the second cabinet 12. See [link to relevant documentation]. Figure 7 .

[0030] See Figure 3When installing the battery cabinet, rotate the first partition 112, and the first limiting protrusion 1113 enters the first limiting groove 1121 and abuts against the bottom of the first limiting groove 1121. At this time, the first partition 112 and the first connecting plate 1112 are perpendicular. Rotate the second partition 122, and the second limiting protrusion 1213 enters the second limiting groove 1221 and abuts against the bottom of the second limiting groove 1221. At this time, the second partition 122 and the second connecting plate 1212 are perpendicular. Then, the first cabinet plate 111 and the second cabinet plate 121 approach each other. The end of the first partition 112 moves between the second column 1211 and is connected to the second column 1211 through fasteners. The end of the second partition 122 moves between the first column 1111 and is connected to the first column 1111 through fasteners. The battery cabinet installation is now complete. See [link to documentation]. Figure 6 The first partition 112 and the second partition 122 are arranged at intervals from top to bottom, forming an installation space for installing the battery between the first partition 112 and the second partition 122. In this application, only fasteners at one end of the first partition 112 and one end of the second partition 122 need to be installed during installation, reducing the number of fasteners required and thus improving installation efficiency.

[0031] After installation, the first limiting protrusion 1113 prevents the first partition 112 from rotating downward, thereby preventing the second cabinet panel 121 connected to the first partition 112 from moving downward relative to the first cabinet panel 111. The second limiting protrusion 1213 prevents the second partition 122 from rotating downward, thereby preventing the second cabinet panel 121 from moving upward relative to the first cabinet panel 111. In summary, the second cabinet panel 121 is basically fixed to one side of the first cabinet panel 111 under the action of the first limiting protrusion 1113 and the second limiting protrusion 1213. That is, this application has good stability after installation.

[0032] In one implementation, the first partition 112 has first rotating grooves 1122 on its opposite sides, the first column 1111 passes through the first screw 1114, the first screw 1114 and the first column 1111 are threaded together, the end of the first screw 1114 is located in the first rotating groove 1122, and the first partition 112 is rotatably connected between the first columns 1111 through the first screw 1114. The second partition 122 has second rotating grooves 1222 on its opposite sides, the second column 1211 passes through the second screw 1214, the second screw 1214 and the second column 1211 are threaded together, the end of the second screw 1214 is located in the second rotating groove 1222, and the second partition 122 is rotatably connected between the second columns 1211 through the second screw 1214.

[0033] With the above configuration, the first partition 112 can rotate around the axis of the first screw 1114, and the second partition 122 can rotate around the axis of the second screw 1214. The first screw 1114 and the second screw 1214 are pre-installed in the factory and do not require on-site installation by personnel.

[0034] In one implementation, the second column 1211 passes through the third screw 1215, and the third screw 1215 is threadedly connected to the end of the first partition 112 away from the first screw 1114. The first column 1111 passes through the fourth screw 1115, and the fourth screw 1115 is threadedly connected to the end of the second partition 122 away from the second screw 1214.

[0035] Through the above settings, the first column 1111 and the second partition 122 are detachably connected, and the second column 1211 and the first partition 112 are detachably connected.

[0036] As one implementation method, both the first column 1111 and the second column 1211 are made of square tubing.

[0037] See Figures 8 to 11 An installation device for mounting a battery cabinet includes a base 21, a sliding seat 22 slidably connected to the upper side of the base 21, a first positioning post 221 fixedly connected to the upper side of the sliding seat 22, and a second positioning post 211 fixedly connected to the upper side of the base 21. Both the first positioning post 221 and the second positioning post 211 extend vertically. There are two first positioning posts 221 and two second positioning posts 211. The spacing between the first positioning posts 221 matches the spacing between the first upright posts 1111, and the spacing between the second positioning posts 211 matches the spacing between the second upright posts 1211.

[0038] With the above configuration, when installing the battery cabinet, the first upright 1111 of the first cabinet 11 is fitted downwards onto the first positioning post 221, thus keeping the first upright 1111 vertical. Rotating the first partition 112 causes the first limiting protrusion 1113 to enter the first limiting groove 1121 and abut against the bottom of the groove. At this time, the first partition 112 is horizontal and remains horizontal under its own weight. The second upright 1211 of the second cabinet 12 is then fitted downwards onto the second positioning post 211, keeping the second upright 1211 vertical. Rotating the second partition 122 causes the second limiting protrusion 1213 to enter the second limiting groove 1221 and abut against the bottom of the groove. At this time, the second partition 122 is horizontal and remains horizontal under its own weight. (See also...) Figure 10The sliding seat 22 moves along the base 21 towards the second positioning post 211. The end of the first partition 112 moves between the second positioning posts 211, and the end of the second partition 122 moves between the first positioning posts 221. Finally, the second post 1211 and the first partition 112 are connected by the third screw 1215, and the first post 1111 and the second partition 122 are connected by the fourth screw 1115. (See also...) Figure 11 .

[0039] It should be understood that those skilled in the art can make improvements or modifications based on the above description, and all such improvements and modifications should fall within the protection scope of the appended claims.

Claims

1. A battery cabinet, characterized in that, The system includes a first cabinet and a second cabinet. The first cabinet includes a first cabinet panel and several first partitions. The first cabinet panel includes two vertically extending first columns, which are fixedly connected by a first connecting plate. The second cabinet includes a second cabinet panel and several second partitions. The second cabinet panel includes two vertically extending second columns, which are fixedly connected by a second connecting plate. One end of each first partition is rotatably connected between the first columns and has a downward-opening first limiting groove. The other end of each first partition is located between the second columns and is detachably connected to them. Each first column is fixedly connected with a first limiting protrusion, which abuts against the bottom of the first limiting groove. One end of each second partition... The first partition plate is rotatably connected between the first and second columns and has a downward-facing second limiting groove. The other end of the second partition plate is located between the first and second columns and is detachably connected to the second columns. The second column is fixedly connected to a second limiting protrusion, which abuts against the bottom of the second limiting groove. The first limiting groove is located on the lower side of the first partition plate near its rotatable connection end. When the first partition plate is rotated to a horizontal position, the first limiting protrusion is embedded in the first limiting groove and abuts against the bottom of the first limiting groove. The second limiting groove is located on the lower side of the second partition plate near its rotatable connection end. When the second partition plate is rotated to a horizontal position, the second limiting protrusion is embedded in the second limiting groove and abuts against the bottom of the second limiting groove.

2. The battery cabinet according to claim 1, characterized in that, The first partition has a first rotating groove on each of its opposite sides. A first screw passes through the first column and is threadedly connected to the first column. The end of the first screw is located in the first rotating groove. The first partition is rotatably connected between the first columns via the first screw. The second partition has a second rotating groove on each of its opposite sides. A second screw passes through the second column and is threadedly connected to the second column. The end of the second screw is located in the second rotating groove. The second partition is rotatably connected between the second columns via the second screw.

3. A battery cabinet according to claim 2, characterized in that, The second column passes through a third screw, which is threaded to the end of the first partition away from the first screw. The first column passes through a fourth screw, which is threaded to the end of the second partition away from the second screw.

4. A battery cabinet according to claim 3, characterized in that, Both the first and second columns are made of square tubing.

5. An installation device for installing the battery cabinet as described in claim 4, characterized in that, Includes a base, a sliding seat is slidably connected to the upper side of the base, a first positioning post is fixedly connected to the upper side of the sliding seat, and a second positioning post is fixedly connected to the upper side of the base; When installing the battery cabinet, the first upright of the first cabinet is placed downwards onto the first positioning post, thus keeping the first upright vertical. The first partition is rotated, and the first limiting protrusion enters the first limiting groove and abuts against the bottom of the groove. At this point, the first partition is horizontal. Under the weight of the first partition, it remains horizontal. The second upright of the second cabinet is then placed downwards onto the second positioning post, thus keeping the second upright vertical. The second partition is rotated, and the second limiting protrusion enters the second limiting groove and abuts against the bottom of the groove. At this point, the second partition is horizontal. Under the weight of the second partition, it remains horizontal. The sliding seat moves along the base towards the second positioning post. The end of the first partition moves between the second and first positioning posts. Finally, the second upright and the first partition are connected using the third screw, and the first upright and the second partition are connected using the fourth screw.