Modular equipment case and lithium battery production equipment

The modular equipment chassis design solves the problem of difficult disassembly and assembly in confined spaces with integrated equipment chassis, enabling rapid disassembly and relocation, improving the efficiency of enterprise production line transformation and reducing costs.

CN223871478UActive Publication Date: 2026-02-03苏州凌云光工业智能技术有限公司
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Patent Information

Application Number
CN202423282880.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2026-02-03
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

The existing equipment chassis has an integrated design, which makes it difficult to quickly disassemble and relocate the machine in a small space, affecting the progress of the company's production line transformation.

Method used

The modular equipment enclosure, with its detachable rack modules and protective cover design, forms a load-bearing platform and protective space. The rack modules and protective cover can be disassembled to reduce space requirements, and the enclosure door can be folded for easy maintenance.

Benefits of technology

It enables rapid disassembly, assembly, and relocation of equipment in confined spaces, shortens equipment reset time, improves the efficiency of production line transformation, and reduces production costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of automation equipment, and discloses a modularized equipment case and lithium battery production equipment. The modularized equipment case comprises a plurality of rack modules and a protective cover, the rack modules are detachably spliced in the preset direction to form a rack body, and a bearing platform used for bearing internal equipment is jointly formed at the top of the rack body; the protective cover comprises a plurality of protective parts which are detachably connected in sequence at the top of the bearing platform along the edge of the bearing platform, and an annular protective space is defined by the protective parts; at least one protective part is provided with an access hole, and the access hole is closed or opened through a foldable box door. According to the modularized equipment case, the machine frame body and the protective cover are arranged in an up-down split mode, the machine frame body and the protective cover can be split when the modularized equipment case is moved, so that the space needed when the modularized equipment case is disassembled, assembled and moved is reduced, the time for resetting large-scale equipment in a narrow space is shortened, and the maintenance cost of the modularized equipment case is reduced. And the progress of enterprise production line reconstruction is accelerated.
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Description

Technical Field

[0001] This utility model relates to the field of automation equipment technology, and in particular to a modular equipment chassis and lithium battery production equipment. Background Technology

[0002] Equipment enclosures primarily serve to support and protect the equipment, shielding its internal precision components from external physical damage and contamination, while also providing a stable working environment. Taking the production equipment for lithium batteries in electric vehicles as an example, with increasingly robust market demand and ever-higher quality requirements for lithium batteries, many manufacturers need to upgrade and modify their existing production lines to improve production quality and safety. This necessitates either introducing new equipment into older workshops or relocating older equipment to newer ones.

[0003] Since most existing equipment chassis are integrated, and most workshops did not reserve space for the introduction of new equipment in the existing production line during the design phase, it is very difficult to re-operate large equipment in a small space, which greatly affects the progress of enterprise production line transformation. Utility Model Content

[0004] The purpose of this utility model is to provide a modular equipment chassis and lithium battery production equipment, so that the equipment can be quickly restarted in a confined space, thereby accelerating the progress of enterprise production line transformation and reducing enterprise production costs.

[0005] To achieve this objective, the present invention adopts the following technical solution:

[0006] Modular equipment chassis, the modular equipment chassis comprising:

[0007] Multiple rack modules are detachably assembled along a preset direction to form a rack body, and together on the top of the rack body, they form a support platform for supporting internal equipment; and,

[0008] The protective cover includes multiple protective components, which are detachably connected sequentially along the edge of the support platform on the top of the support platform and form an annular protective space; at least one of the protective components has an inspection port, which is closed or opened by a foldable door.

[0009] Preferably, the rack module includes:

[0010] Support members, wherein at least two support members are spaced apart;

[0011] Connectors, wherein multiple connectors are detachably connected between two adjacent support members; and

[0012] A carrier member is disposed on top of the support member.

[0013] Preferably, the support member has an opening, and a side guard plate is provided at the opening of the support member to close the opening of the support member.

[0014] Preferably, a connecting component is provided between two adjacent rack modules. The connecting component includes a first connecting seat and a second connecting seat, which are respectively connected to the two adjacent rack modules. The first connecting seat and the second connecting seat are detachably connected.

[0015] Preferably, a docking assembly is provided between two adjacent rack modules. The docking assembly includes a first docking member and a second docking member. The first docking member and the second docking member are detachably connected to the two adjacent rack modules. The first docking member has a docking groove, and the second docking member has a docking block. The docking block is inserted into the docking groove.

[0016] Preferably, the volume of the docking groove gradually increases from the first docking member to the second docking member.

[0017] Preferably, a support frame is connected between two protective components distributed perpendicular to the preset direction.

[0018] Preferably, the door includes a plurality of hinged door panels, and one of the door panels is hinged to the protective member.

[0019] Preferably, the top of the protective cover is provided with a top cover, which closes the opening at the top of the protective cover.

[0020] The lithium battery production equipment includes a main body and a modular equipment chassis, wherein the main body is disposed inside the modular equipment chassis.

[0021] The beneficial effects of this utility model are:

[0022] This utility model discloses a modular equipment chassis that separates the frame body and the protective cover into upper and lower sections. The frame body supports the equipment, while the protective cover protects it. Multiple detachable frame modules work together to form a support platform, allowing the frame body to be disassembled for relocation, thus reducing the space required for disassembly and movement. The protective cover can also be further disassembled to reduce the space required for disassembly and movement, and the equipment can be inspected through the chassis door. Ultimately, this significantly reduces the space required for disassembly and relocation of the modular equipment chassis, shortens the time required to reactivate large equipment in confined spaces, and accelerates the progress of production line transformation. Attached Figure Description

[0023] Figure 1This is a structural schematic diagram of the modular equipment chassis of this utility model;

[0024] Figure 2 This is a structural schematic diagram of the frame body of this utility model;

[0025] Figure 3 yes Figure 2 Enlarged view of point A in the middle;

[0026] Figure 4 This is a structural schematic diagram of the support component of this utility model;

[0027] Figure 5 This is a structural schematic diagram of the protective component of this utility model;

[0028] Figure 6 This is a structural schematic diagram of the box door of this utility model.

[0029] In the picture:

[0030] 1. Rack body; 11. Load-bearing platform;

[0031] 2. Rack module; 21. Support component; 211. Side guard plate; 22. Connector; 221. Connecting plate; 23. Load-bearing component; 24. Reinforcing support column;

[0032] 3. Protective cover; 31. Protective component; 311. Inspection port; 312. Connecting frame; 32. Box door; 321. Door panel; 33. Top cover; 34. Support frame;

[0033] 4. Connecting components; 41. First connecting base; 42. Second connecting base;

[0034] 5. Dating assembly; 51. First docking component; 511. Dating groove; 52. Second docking component; 521. Dating block;

[0035] 6. Stepping;

[0036] 7. Control panel. Detailed Implementation

[0037] The present invention will now be described in further detail with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present invention and not intended to limit it. Furthermore, it should be noted that, for ease of description, the accompanying drawings show only the parts relevant to the present invention, not the entire structure.

[0038] In the description of this utility model, unless otherwise explicitly specified and limited, the terms "connected," "linked," and "fixed" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0039] In this invention, unless otherwise explicitly specified and limited, "above" or "below" the second feature can include direct contact between the first and second features, or contact between the first and second features through another feature between them. Furthermore, "above," "over," and "on top" of the second feature includes the first feature directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature includes the first feature directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.

[0040] In the description of this embodiment, the terms "upper," "lower," "right," etc., refer to the orientation or positional relationship shown in the accompanying drawings. They are used only for ease of description and simplification of operation, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. In addition, the terms "first" and "second" are only used for distinction in description and have no special meaning.

[0041] The following reference Figures 1 to 5 The modular equipment chassis and lithium battery production equipment provided by this utility model are described.

[0042] The lithium battery production equipment includes a main body and a modular equipment chassis. The main body is housed inside the modular equipment chassis, which provides support and protection for the equipment. Exemplarily, in this embodiment, the main body is a lithium battery production device; in other embodiments, it may be other types of production equipment, and the specific design is not limited.

[0043] This modular equipment chassis is designed to be easily disassembled into smaller modules, enabling the assembly, disassembly, and relocation of lithium battery production equipment in confined spaces, thus significantly reducing the setup time for lithium battery production equipment. Please refer to the following for the specific structure of this modular equipment chassis.

[0044] Reference Figure 1 and Figure 2The modular equipment chassis includes a frame module 2 and a protective cover 3. Multiple frame modules 2 are arranged along a preset direction. Multiple frame modules 2 can be disassembled and assembled to form a frame body 1, and together they form a support platform 11 on the top of the frame body 1. The equipment body is placed on the support platform 11, and the protective cover 3 is set above the support platform 11 and covers the outside of the equipment body to protect the equipment body.

[0045] Specifically, in this embodiment, four rack modules 2 are used as an example. Each rack module 2 can be transported to the work site as an independent module and assembled into a whole rack body 1 on site along a preset direction using a detachable connection structure, thereby improving the convenience of disassembling, assembling, and transferring the rack body 1. It should be noted that the preset direction in this embodiment is horizontal. In some other embodiments, the rack body 1 can also be tilted to a certain extent, and the specific tilt angle is not limited. In this embodiment, the four rack modules 2 are of equal height, but the dimensions of the four rack modules 2 in the preset direction can be the same or different, and can be adapted to meet the specific needs of the equipment body.

[0046] Exemplarily, each rack module 2 includes a support member 21, a connector 22, and a load-bearing member 23. At least two support members 21 are spaced apart. Specifically, in this embodiment, the support members 21 are arranged in a rectangular shape, vertically, and two support members 21 are arranged parallel to each other along a horizontal direction perpendicular to a preset direction. The specific form of the rectangular shape can be selected as a square or a rectangular shape, etc., as needed. In this embodiment, the support members 21 are square-shaped. In other embodiments, the support member 21 can also be a support plate, and multiple support members 21 can be distributed along a preset direction, with the number of support members 21 being three, four, or more. Furthermore, a side guard plate 211 can be detachably connected to the opening of each support member 21. The side guard plate 211 seals the opening of the support member 21, thereby enclosing both sides of the rack body 1 to improve the protection effect on the equipment.

[0047] Multiple connectors 22 are detachably connected between two adjacent support members 21. Specifically, in this embodiment, the connector 22 is a connecting beam, which is horizontally arranged. Two connecting beams are arranged vertically in parallel, and both ends of the connecting beam are connected to connecting plates 221. The connecting plates 221 are detachably connected to the support members 21 by bolts. In some other embodiments, the connecting beams may also be inclined, and the number of connectors 22 may be three, four, or more. It should be noted that, unless otherwise specified, the detachable connection method in this embodiment is only based on bolt connection. In other embodiments, detachable connections can also be made using screws or other means.

[0048] Furthermore, the carrier 23 is disposed on the top of the support 21. In this embodiment, the carrier 23 is plate-shaped, horizontally positioned, and detachably connected to the support 21. Some carriers 23 have through holes as needed to accommodate the protruding parts of the bottom of the lithium battery production equipment. Multiple carriers 23 are spliced ​​together to form the support platform 11. It should be noted that one or more carriers 23 can be correspondingly disposed on the top of two support 21s in a single frame module 2. The specific number can be adjusted as needed. When multiple carriers 23 are disposed on the top of two support 21s, the multiple carriers 23 are distributed along a preset direction. Optionally, in some other embodiments, a rectangular frame can be used instead of the plate-shaped carrier 23 requiring holes.

[0049] Based on the above, a stable frame structure is formed by connecting the support member 21 and the connector 22 to provide stable support for the load-bearing member 23, enabling the load-bearing member 23 to support the equipment body. Simultaneously, the support member 21, connector 22, and load-bearing member 23 can all be disassembled during relocation, further reducing the volume of the frame body 1 during relocation, improving the adaptability of the frame body 1 in confined spaces, and shortening the refit time of the lithium battery production equipment. It should be noted that in this embodiment, the support member 21 is set as a square frame, roughly sheet-like. Compared to disassembling the support member 21 entirely into columnar components, the required relocation space is not significantly different, but the integrated square frame has higher strength and reduces the number of components during disassembly and assembly, further facilitating the relocation of the frame body 1.

[0050] In addition, to enhance the load-bearing capacity of the rack module 2, multiple reinforcing supports 24 are provided between two adjacent support members 21 in a single rack module 2 along a preset direction. In this embodiment, three supports are used as an example. Connectors 22 connect the reinforcing supports 24 and the support members 21, and connectors 22 can also be detachably connected between two adjacent reinforcing supports 24. Through the above settings, the load-bearing capacity of the rack module 2 is further enhanced.

[0051] Reference Figure 3 and Figure 4Each pair of adjacent rack modules 2 is provided with a connecting component 4. Multiple connecting components 4 are arranged in parallel; this embodiment uses four as an example to improve the stability of the connection between adjacent rack modules 2. Two connecting components 4 are located on the support member 21, and the other two are located on the carrier member 23. Taking the connecting components 4 located on the carrier member 23 as an example, each connecting component 4 includes a first connecting seat 41 and a second connecting seat 42. The first connecting seat 41 and the second connecting seat 42 are detachably connected to the carrier member 23 of the two adjacent rack modules 2. In this embodiment, both the first connecting seat 41 and the second connecting seat 42 are L-shaped, and they are also detachably connected to each other. Thus, the two rack modules 2 are detachably connected together through the first connecting seat 41 and the second connecting seat 42.

[0052] Furthermore, a docking component 5 is provided between each of the two adjacent rack modules 2, and one docking component 5 is provided for each connecting component 4. Taking the docking component 5 provided on the support member 23 as an example, each docking component 5 includes a first docking member 51 and a second docking member 52. The first docking member 51 and the second docking member 52 are detachably connected to two adjacent support members 23. In this embodiment, the first docking member 51 and the second docking member 52 are both plate-shaped. A docking groove 511 is opened on the first docking member 51, and a docking block 521 is connected on the second docking member 52. The docking block 521 is inserted into the docking groove 511, and the volume of the docking groove 511 gradually increases from the first docking member 51 to the second docking member 52.

[0053] Based on the above, by inserting the docking block 521 into the docking slot 511, adjacent rack modules 2 can be quickly positioned, and the first connecting seat 41 and the second connecting seat 42 can be aligned, improving the convenience of connecting adjacent rack modules 2. Furthermore, the first docking member 51 extends to the support member 23 on which the second docking member 52 is located, and the two are connected by bolts, further improving the stability of the connection between adjacent rack modules 2. It should be noted that if a single rack module 2 has two support members 23, the two support members 23 are also connected by the connecting component 4 and the docking component 5.

[0054] Reference Figure 5For example, the protective cover 3 includes multiple protective components 31. Multiple protective components 31 are sequentially connected along the edge of the support platform 11 at the top, forming a ring-shaped protective space, with the equipment body located inside the protective space. At least one protective component 31 has an inspection port 311, which is closed or opened via a foldable door 32. Specifically, in this embodiment, the protective component 31 is a vertical square frame. The specific form of the square frame can be selected as a square, a rectangular shape, or a grid shape, etc. In this embodiment, part of the protective component 31 is square-shaped, and part is rectangular. The bottom of the protective component 31 is detachably connected to the support component 23. In some other embodiments, the protective component 31 can also be a vertical protective plate, with holes formed on the protective plate to create the inspection port 311. Furthermore, a top cover 33 is detachably connected to the top of the protective cover 3. The top cover 33 closes the opening at the top of the protective cover 3, thereby sealing the top of the protective space and improving the protective effect of the protective cover 3 on the equipment body.

[0055] Furthermore, a support frame 34 is connected between the two protective members 31 perpendicular to the preset direction, and a connecting frame 312 is detachably connected between the support frame 34 and the protective member 31, thereby improving the strength of the protective member 31.

[0056] With the above-mentioned design, the protective cover 3 can be disassembled while protecting the equipment body, thereby reducing the size of the protective cover 3 during the relocation process, improving the adaptability of the protective cover 3 in narrow spaces, and further shortening the restart time of lithium battery production equipment.

[0057] In addition, in this embodiment, the door 32 includes a plurality of door panels 321 that are hinged to each other, and one of the door panels 321 is hinged to the protective member 31. Thus, when the door 32 is at the same opening angle, the rotation radius of the door 32 when it is opened is greatly reduced, further improving its adaptability to narrow spaces.

[0058] Furthermore, since the cabinet door 32 in this embodiment is relatively high, a step 6 is placed on one side of the frame body 1 to allow personnel to open the cabinet door 32 for maintenance of the equipment body. An operation panel 7 and other auxiliary components of the equipment body are also connected to the outside of the protective cover 3 to facilitate operation of the equipment body.

[0059] Obviously, the above embodiments of this utility model are merely examples for clearly illustrating the present utility model, and are not intended to limit the implementation of the present utility model. Those skilled in the art can make various obvious changes, readjustments, and substitutions without departing from the protection scope of this utility model. It is neither necessary nor possible to exhaustively describe all embodiments here. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this utility model should be included within the protection scope of the claims of this utility model.

Claims

1. A modular equipment chassis, characterized in that, The modular equipment chassis includes: Multiple rack modules (2) are detachably assembled along a preset direction to form a rack body (1), and together form a support platform (11) on the top of the rack body (1) for supporting internal equipment; and, The protective cover (3) includes multiple protective components (31), which are detachably connected sequentially along the edge of the support platform (11) on the top of the support platform (11) and form an annular protective space; at least one of the protective components (31) has an inspection port (311), which is closed or opened by a foldable box door (32).

2. The modular equipment chassis according to claim 1, characterized in that, The rack module (2) includes: Support members (21), wherein at least two support members (21) are provided at intervals; Connectors (22), wherein multiple connectors (22) are detachably connected between two adjacent supports (21); and The carrier (23) is disposed on the top of the support (21).

3. The modular equipment chassis according to claim 2, characterized in that, The support member (21) has an opening, and a side guard plate (211) is provided at the opening of the support member (21), and the side guard plate (211) closes the opening of the support member (21).

4. The modular equipment chassis according to claim 1, characterized in that, A connecting component (4) is provided between two adjacent rack modules (2). The connecting component (4) includes a first connecting seat (41) and a second connecting seat (42). The first connecting seat (41) and the second connecting seat (42) are respectively connected to two adjacent rack modules (2). The first connecting seat (41) and the second connecting seat (42) are detachably connected.

5. The modular equipment chassis according to claim 1, characterized in that, A docking assembly (5) is provided between two adjacent rack modules (2). The docking assembly (5) includes a first docking part (51) and a second docking part (52). The first docking part (51) and the second docking part (52) are detachably connected to two adjacent rack modules (2). A docking groove (511) is provided on the first docking part (51), and a docking block (521) is provided on the second docking part (52). The docking block (521) is inserted into the docking groove (511).

6. The modular equipment chassis according to claim 5, characterized in that, The volume of the docking groove (511) gradually increases from the first docking member (51) to the second docking member (52).

7. The modular equipment chassis according to any one of claims 1-6, characterized in that, A support frame (34) is connected between two protective components (31) distributed perpendicular to the preset direction.

8. The modular equipment chassis according to any one of claims 1-6, characterized in that, The door (32) includes a plurality of hinged door panels (321), and one of the door panels (321) is hinged to the protective member (31).

9. The modular equipment chassis according to any one of claims 1-6, characterized in that, The top of the cover (3) is provided with a top cover (33), which closes the opening at the top of the cover (3).

10. Lithium battery production equipment, including the equipment body, characterized in that, It also includes a modular equipment chassis as described in any one of claims 1-9, wherein the equipment body is disposed inside the modular equipment chassis.