Detachable combined display rack for new energy automobile battery replacement equipment salesman

By incorporating a combination of staggered partitions and anti-collision pads within the display stand, the problem of easily damaged batteries in traditional display stands is solved, thereby improving battery safety and transportation stability.

CN224206540UActive Publication Date: 2026-05-08SUQIAN XUANBO NEW ENERGY TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SUQIAN XUANBO NEW ENERGY TECHNOLOGY CO LTD
Filing Date
2025-05-28
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

Traditional display racks lack partitions in their battery placement slots, making batteries susceptible to impact, friction, and compression during transportation and display, thus affecting battery safety.

Method used

Design a detachable and modular display stand for salespersons of new energy vehicle battery swapping equipment. The stand has staggered first and second partitions, anti-collision pads and fixing rings, which are connected by slots to form a multi-layered protective structure that absorbs and dissipates impact and vibration energy, increasing stability and tightness.

Benefits of technology

It effectively prevents batteries from being damaged by impact, friction and squeezing during transportation, improves battery safety and transportation stability, reduces the risk of deformation or collapse of the display stand, and enhances compressive strength and durability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of combined display racks, and particularly relates to a detachable combined display rack for a new energy automobile battery replacement equipment salesman, which comprises a display rack main body, the display rack inner layer is arranged in the display rack main body; a first partition plate is mounted in the display rack inner layer; the multiple first partition plates are arranged in a staggered mode; the plurality of first partition plates are mutually clamped through clamping grooves; a plurality of second partition plates are arranged between the display rack main body and the display rack inner layer; the plurality of second partition plates are mutually clamped through clamping grooves; according to the step, a plurality of first partition plates and second partition plates which are clamped with each other are arranged in the inner layer of the display rack, so that the batteries placed in the battery placing grooves can be prevented from being influenced by external force such as impact, friction and extrusion; the first anti-collision pad, the second anti-collision pad and the third anti-collision pad are correspondingly inserted into the cavities respectively, so that impact and vibration energy borne by the batteries in the processes of transportation, storage and the like can be absorbed and dissipated, and the risk of battery damage is reduced.
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Description

Technical Field

[0001] This utility model belongs to the field of modular display stand technology, specifically a detachable modular display stand for salespersons of new energy vehicle battery swapping equipment. Background Technology

[0002] In the process of displaying and selling battery swapping equipment for new energy vehicles, display stands are playing an increasingly prominent role as a key tool for displaying and protecting important components such as batteries in the battery swapping equipment.

[0003] Traditional display rack battery placement slots are usually simple open designs without partitions or other separating components. This makes the batteries susceptible to external impacts, friction, and compression within the display rack. During transportation, handling, or customer viewing, the batteries frequently collide with the inner wall of the display rack or other batteries, which can scratch the battery surface and affect battery safety.

[0004] Therefore, this utility model provides a detachable and modular display stand for salespersons of new energy vehicle battery swapping equipment. Utility Model Content

[0005] To overcome the shortcomings of existing technologies and solve at least one of the problems mentioned in the background technology, a detachable and modular display stand for salespersons of new energy vehicle battery swapping equipment is proposed.

[0006] The technical solution adopted by this utility model to solve its technical problem is as follows: A detachable and modular display rack for salespersons of new energy vehicle battery swapping equipment, comprising a display rack body; an inner layer inside the display rack body; a first partition installed inside the inner layer; multiple first partitions arranged in an alternating manner; the multiple first partitions engaging with each other via slots; a battery placement slot between the multiple first partitions; multiple second partitions between the display rack body and the inner layer; the multiple second partitions engaging with each other via slots; a cavity between the multiple second partitions; a first anti-collision pad inside the cavity; the first anti-collision pad positioned between the display rack body and the inner layer; a second anti-collision pad inside the cavity; the second anti-collision pad being L-shaped; the second anti-collision pad positioned between the display rack body and the inner layer; a third anti-collision pad inside the cavity; the third... The anti-collision pads contact the bottom of the display stand body. This step, by setting multiple interlocking first partitions inside the inner layer of the display stand, can prevent the batteries placed in the battery placement slot from being affected by external forces such as impact, friction, and compression, thereby ensuring the safety of the batteries. Similarly, by setting multiple interlocking second partitions between the display stand body and the inner layer of the display stand, the impact of external forces on the inner layer of the display stand and the batteries inside the inner layer of the display stand can be further reduced. By inserting corresponding first, second, and third anti-collision pads into the cavity, the impact and vibration energy of the batteries during transportation and storage can be absorbed and dissipated, thereby reducing the risk of battery damage. At the same time, placing the first, second, and third anti-collision pads can fill the gap between the display stand body and the inner layer of the display stand, preventing the batteries from moving or colliding inside the box, which helps to improve the tightness and stability of the loading, ensuring that the batteries are not easily displaced or damaged during transportation.

[0007] Preferably, a first limiting plate is connected to the middle of the side wall of the first partition; the surface of the first limiting plate has multiple indentations; a second limiting plate is connected to the middle of the side wall of the first partition; the surface of the second limiting plate has multiple indentations; the first limiting plate and the second limiting plate are arranged parallel to each other; this step, by setting the first limiting plate and the second limiting plate, can buffer the battery from the beginning of battery placement until the battery falls to the bottom, because when the battery falls, the first and second limiting plates, which bend downwards, will generate friction with the battery, thereby reducing the falling speed of the battery and reducing the impact force on the battery caused by rapid falling. At the same time, the first and second limiting plates can fill the gap between the battery and the inner layer of the display stand, increasing the stability and tightness of the inner layer of the display stand, which helps to prevent the battery from shaking or collapsing during transportation and increases the impact resistance of the main body of the display stand.

[0008] Preferably, a fixing ring is fitted on the outer wall of the display stand body; there are multiple fixing rings and they are evenly arranged on the outer wall of the display stand body; this step can fix the display stand body from the outside by setting the fixing rings, reducing the possibility of deformation or collapse of the display stand body due to internal battery compression or collision. At the same time, setting the fixing rings can fix the shape of the display stand body, making it more stable and preventing battery damage or display stand body breakage due to shaking or vibration during transportation.

[0009] Preferably, a first fixing strip is provided in the middle of the outer wall of the fixing ring; a first slot is provided in the middle of the side wall of the first fixing strip; a second slot is provided in the middle of the side wall of the first fixing strip; a second fixing strip is provided in the middle of the side wall of the first fixing strip; a third slot is provided in the middle of the side wall of the second fixing strip; a fourth slot is provided in the middle of the side wall of the second fixing strip; the first fixing strip and the second fixing strip are engaged with each other through the second slot and the fourth slot; a fifth slot is provided in the middle of the side wall of the fixing ring; the first fixing strip and the fixing ring are engaged with each other through the first slot and the fifth slot; the second fixing strip... The fixing ring engages with the fixing ring through the third and fifth slots. This step, by setting the first fixing strip, first slot, second slot, second fixing strip, third slot, fourth slot, and fifth slot, further strengthens the fixing ring's fixation of the display stand body on top of the fixing ring securing the display stand body. This further increases the compressive strength of the display stand body and effectively reduces the deformation or damage to the display stand body during transportation and storage due to external forces such as impact, friction, and compression. At the same time, it also makes the display stand body more stable when stacked, preventing the display stand body from collapsing due to unstable center of gravity or external forces.

[0010] Preferably, the outer wall of the fixing ring is provided with multiple fixing brackets in the middle; the side wall of the fixing bracket is provided with a slot; the fixing bracket and the fixing ring are engaged with each other through the slot; this step, by setting the fixing brackets and the slot, can ensure that the main body of the display stand is more stable when placed, prevent tilting or collapse caused by unstable center of gravity or external force, and reduce the risk of battery damage or personal injury caused by the collapse of the main body of the display stand.

[0011] Preferably, the side wall of the display stand body is fitted with a protective layer; the protective layer is made of waterproof and dustproof material; this step, by wrapping the outer wall of the display stand body with a protective layer, can effectively prevent moisture from penetrating into the interior of the display stand body, thereby protecting the battery inside the display stand body from moisture damage. At the same time, during logistics storage and transportation, the protective layer can increase the wear resistance and durability of the display stand body, and reduce damage caused by friction, compression and other reasons.

[0012] The beneficial effects of this utility model are as follows:

[0013] 1. The new energy vehicle battery swapping equipment salesperson detachable and modular display rack of this utility model, by setting multiple interlocking first partitions inside the inner layer of the display rack, can prevent the battery placed in the battery placement slot from being affected by external forces such as impact, friction, and compression, thereby ensuring the safety of the battery. Similarly, by setting multiple interlocking second partitions between the main body of the display rack and the inner layer of the display rack, the impact of external forces on the inner layer of the display rack and the battery inside the inner layer of the display rack can be further reduced. By inserting corresponding first, second, and third anti-collision pads into the cavity, the impact and vibration energy of the battery during transportation and storage can be absorbed and dissipated, thereby reducing the risk of battery damage. At the same time, the placement of the first, second, and third anti-collision pads can fill the gap between the main body of the display rack and the inner layer of the display rack, preventing the battery from moving or colliding inside the box, which helps to improve the tightness and stability of the loading, and ensures that the battery is not easily displaced or damaged during transportation.

[0014] 2. The new energy vehicle battery swapping equipment salesperson detachable and modular display stand of this utility model, by setting a first fixing strip, a first slot, a second slot, a second fixing strip, a third slot, a fourth slot, and a fifth slot, can further strengthen the fixing of the display stand body on the basis of the fixing ring securing the display stand body, further increase the compressive strength of the display stand body, effectively reduce the deformation or damage of the display stand body due to external forces such as impact, friction, and compression during transportation and storage, and at the same time make the display stand body more stable when stacked, preventing the display stand body from collapsing due to unstable center of gravity or external forces. Attached Figure Description

[0015] The present invention will be further described below with reference to the accompanying drawings.

[0016] Figure 1 This is a perspective view of the present invention;

[0017] Figure 2 This is a sectional view of the present invention;

[0018] Figure 3 This is a schematic diagram of the cooperation structure between the inner layer of the display stand and the knife paper in this utility model;

[0019] Figure 4 This is a schematic diagram of the fit between the hollow cavity and the filling material in this utility model;

[0020] Figure 5 This is a schematic diagram of the cooperative structure of the first partition and the second partition in this utility model;

[0021] Figure 6 This is a schematic diagram of the cooperation structure between the fixing ring and the fixing strip in this utility model;

[0022] Legend:

[0023] 1. Display stand main body; 11. Display stand inner layer; 12. First partition; 13. Battery placement slot; 14. Second partition; 15. Cavity; 16. First anti-collision pad; 17. Second anti-collision pad; 18. Third anti-collision pad; 2. First limiting plate; 21. Second limiting plate; 3. Fixing ring; 4. First fixing strip; 41. First slot; 42. Second slot; 43. Second fixing strip; 44. Third slot; 45. Fourth slot; 46. Fifth slot; 5. Fixing bracket; 51. Slot opening; 6. Protective layer. Detailed Implementation

[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of the present utility model.

[0025] Specific implementation examples are given below.

[0026] like Figures 1 to 5As shown in the embodiment of this utility model, a detachable and modular display stand for salespersons of new energy vehicle battery swapping equipment includes a display stand body 1; an inner layer 11 is provided inside the display stand body 1; a first partition 12 is installed inside the inner layer 11; multiple first partitions 12 are arranged alternately; the multiple first partitions 12 are engaged with each other through slots; a battery placement slot 13 is provided between the multiple first partitions 12; multiple second partitions 14 are provided between the display stand body 1 and the inner layer 11; the multiple second partitions 14 are engaged with each other through slots; a cavity 15 is provided between the multiple second partitions 14; a first anti-collision pad 16 is provided inside the cavity 15; the... The first anti-collision pad 16 is disposed between the main body 1 of the display rack and the inner layer 11 of the display rack; the cavity 15 is provided with a second anti-collision pad 17; the second anti-collision pad 17 is L-shaped; the second anti-collision pad 17 is disposed between the main body 1 of the display rack and the inner layer 11 of the display rack; the cavity 15 is provided with a third anti-collision pad 18; the third anti-collision pad 18 contacts the bottom of the main body 1 of the display rack; during operation, the worker places the first partition 12 inside the inner layer 11 of the display rack, at which time the multiple first partitions 12 are interlocked with each other through slots, and similarly, the multiple second partitions 14 are placed between the main body 1 of the display rack and the side wall of the inner layer 11 of the display rack, at which time the multiple second partitions 14 are also interlocked with each other through slots, and then the multiple second partitions 16 are placed inside the inner layer 11 of the display rack. First anti-collision pad 16, second anti-collision pad 17, and third anti-collision pad 18 are respectively inserted into the corresponding cavities 15, so that the first anti-collision pad 16, second anti-collision pad 17, and third anti-collision pad 18 can fill each cavity 15 inside the main body of the display rack 1. Then, the staff puts the batteries that need to be placed inside the main body of the display rack 1 into the battery placement slots 13 in sequence. After the batteries are placed, the cover plate on the top of the main body of the display rack 1 is sealed. This step, by setting multiple interlocking first partitions 12 inside the inner layer 11 of the display rack, can prevent the batteries placed in the battery placement slots 13 from being affected by external forces such as impact, friction, and compression, thereby ensuring the safety of the batteries. Similarly, by setting multiple interlocking first partitions 12 inside the inner layer 11 of the display rack, the batteries placed in the battery placement slots 13 can be protected from the impact, friction, and compression of external forces, thereby ensuring the safety of the batteries. Multiple interlocking second partitions 14 are installed between the inner layers 11 of the display rack to further reduce the impact of external forces on the inner layers 11 and the batteries inside the inner layers 11. By inserting corresponding first anti-collision pads 16, second anti-collision pads 17 and third anti-collision pads 18 into the cavity 15, the impact and vibration energy of the batteries during transportation and storage can be absorbed and dissipated, thereby reducing the risk of battery damage. At the same time, the placement of the first anti-collision pads 16, second anti-collision pads 17 and third anti-collision pads 18 can fill the gap between the main body 1 of the display rack and the inner layer 11 of the display rack, preventing the batteries from moving or colliding inside the box, which helps to improve the tightness and stability of the loading and ensures that the batteries are not easily displaced or damaged during transportation.

[0027] Furthermore, such as Figure 2 , Figure 4 and Figure 5As shown, a first limiting plate 2 is connected to the middle of the side wall of the first partition 12; the surface of the first limiting plate 2 has multiple indentations; a second limiting plate 21 is connected to the middle of the side wall of the first partition 12; the surface of the second limiting plate 21 has multiple indentations; the first limiting plate 2 and the second limiting plate 21 are arranged parallel to each other; during operation, when the battery is placed in the battery placement slot 13, the battery will squeeze the first limiting plate 2 and the second limiting plate 21 in multiple directions. Because both the first limiting plate 2 and the second limiting plate 21 have indentations on their surfaces, under the squeezing action of the battery, the first limiting plate 2 and the second limiting plate 21 will bend downwards along the indentations. This step, by setting the first limiting plate 2 and the second limiting plate 21, can buffer the battery from the start of battery placement until the battery falls to the bottom. As the battery falls, the first limiting plate 2 and the second limiting plate 21, which bend downwards, will generate friction with the battery. This friction reduces the falling speed of the battery and reduces the impact force on the battery caused by rapid falling. At the same time, the first limiting plate 2 and the second limiting plate 21 can fill the gap between the battery and the inner layer 11 of the display stand, increasing the stability and tightness of the inner layer 11 of the display stand. This helps to prevent the battery from shaking or collapsing during transportation and increases the impact resistance of the main body 1 of the display stand.

[0028] Furthermore, such as Figure 1 , Figure 2 , Figure 3 and Figure 6 As shown, a fixing ring 3 is fitted on the outer wall of the main body 1 of the display stand; there are multiple fixing rings 3, which are evenly arranged on the outer wall of the main body 1 of the display stand; during operation, after the cover plate is closed on the main body 1 of the display stand, the staff puts multiple fixing rings 3 on the outside of the main body 1 of the display stand. At this time, the multiple fixing rings 3 tightly hold the main body 1 of the display stand. This step, by setting the fixing rings 3, can hold the main body 1 of the display stand from the outside, reducing the possibility of deformation or collapse of the main body 1 of the display stand due to internal battery compression or collision. At the same time, the fixing rings 3 can fix the shape of the main body 1 of the display stand, making it more stable and preventing battery damage or breakage of the main body 1 of the display stand due to shaking or vibration during transportation.

[0029] Furthermore, such as Figure 1 , Figure 2 , Figure 3 and Figure 6As shown, the fixing ring 3 has a first fixing strip 4 in the middle of its outer wall; a first slot 41 is formed in the middle of the side wall of the first fixing strip 4; a second slot 42 is formed in the middle of the side wall of the first fixing strip 4; a second fixing strip 43 is formed in the middle of the side wall of the first fixing strip 4; a third slot 44 is formed in the middle of the side wall of the second fixing strip 43; a fourth slot 45 is formed in the middle of the side wall of the second fixing strip 43; the first fixing strip 4 and the second fixing strip 43 are engaged with each other through the second slot 42 and the fourth slot 45; the fixing ring 3 has a fifth slot 46 in the middle of its side wall; the first fixing strip 4 and the fixing ring 3 are engaged with each other through the first slot 41 and the fifth slot 46; the second fixing strip 43 and the fixing ring 3 are engaged with each other through the third slot 44 and the fifth slot 46; during operation, the operator fastens the third slot 44 and the fifth slot 46 together, so that the second fixing strip 43 fixes the fixing ring 3 from the outside, and then fastens the second slot 42 and the fourth slot 45. Together, the second fixing strip 43 is fixed by the first fixing strip 4. At this time, the multiple first slots 41 on the surface of the first fixing strip 4 are also snapped into the fifth slot 46, so that the fixing ring 3 is also fixed from the outside by the first fixing strip 4. At this time, the fixing ring 3, the first fixing strip 4, and the second fixing strip 43 are mutually fixed to the outside of the display frame body 1, thereby fixing the display frame body 1. This step, by setting the first fixing strip 4, the first slot 41, the second slot 42, the second fixing strip 43, the third slot 44, the fourth slot 45, and the fifth slot 46, can further strengthen the fixing of the display frame body 1 by the fixing ring 3 on the basis of the fixing ring 3 holding the display frame body 1, further increasing the compressive strength of the display frame body 1, effectively reducing the deformation or damage of the display frame body 1 due to external forces such as impact, friction, and squeezing during transportation and storage. At the same time, it can also make the display frame body 1 more stable when stacked, preventing the display frame body 1 from collapsing due to unstable center of gravity or external forces.

[0030] Furthermore, such as Figure 1 , Figure 2 , Figure 3 and Figure 6 As shown, the outer wall of the fixing ring 3 is provided with multiple fixing brackets 5 in the middle; the side wall of the fixing bracket 5 is provided with a slot 51; the fixing bracket 5 and the fixing ring 3 are engaged with each other through the slot 51; during operation, the workers fasten the multiple fixing brackets 5 to the side wall of the fixing ring 3 through the slot 51. This step, by setting the fixing brackets 5 and the slot 51, can ensure that the main body of the display stand 1 is more stable when placed, prevent tilting or collapse caused by unstable center of gravity or external force, and reduce the risk of battery damage or personal injury caused by the collapse of the main body of the display stand 1.

[0031] Furthermore, such as Figures 1 to 3As shown, the side wall of the display stand body 1 is fitted with a protective layer 6; the protective layer 6 is made of waterproof and dustproof material; this step, by wrapping the outer wall of the display stand body 1 with the protective layer 6, can effectively prevent moisture from penetrating into the interior of the display stand body 1, thereby protecting the battery inside the display stand body 1 from moisture damage. At the same time, during logistics storage and transportation, the protective layer 6 can increase the wear resistance and durability of the display stand body 1, and reduce damage caused by friction, compression and other reasons.

[0032] Working principle: The operator places the first partition 12 inside the inner layer 11 of the display rack. At this time, the multiple first partitions 12 are interlocked with each other through slots. Similarly, multiple second partitions 14 are placed between the main body 1 of the display rack and the side wall of the inner layer 11 of the display rack. At this time, the multiple second partitions 14 are also interlocked with each other through slots. Then, multiple first anti-collision pads 16, second anti-collision pads 17 and third anti-collision pads 18 are inserted into the corresponding cavities 15, so that the first anti-collision pads 16, second anti-collision pads 17 and third anti-collision pads are respectively inserted into the cavities 15. 18 can fill each cavity 15 inside the main body 1 of the display stand. Then, the staff puts the batteries that need to be placed inside the main body 1 of the display stand into the battery placement slot 13 in sequence. After the batteries are placed, the cover plate on the top of the main body 1 of the display stand is sealed. When the batteries are placed in the battery placement slot 13, the batteries will squeeze the first limiting plate 2 and the second limiting plate 21 in multiple directions. Because the surfaces of the first limiting plate 2 and the second limiting plate 21 are indented, the first limiting plate 2 and the second limiting plate 21 are squeezed by the batteries. The plate 21 will bend downwards along the indentation. After the cover plate is sealed on the main body 1 of the display stand, the staff will put multiple fixing rings 3 on the outside of the main body 1 of the display stand. At this time, the multiple fixing rings 3 will tightly hold the main body 1 of the display stand. The staff will fasten the third slot 44 and the fifth slot 46 together, so that the second fixing strip 43 fixes the fixing ring 3 from the outside. Then, the second slot 42 and the fourth slot 45 will fasten together, so that the second fixing strip 43 is fixed by the first fixing strip 4. At this time, the multiple first slots 41 opened on the surface of the first fixing strip 4 will also be fastened inside the fifth slot 46, so that the fixing ring 3 will also be fixed by the first fixing strip 4 from the outside. At this time, the fixing ring 3, the first fixing strip 4, and the second fixing strip 43 are fixed to each other on the outside of the main body 1 of the display stand, thereby fixing the main body 1 of the display stand. The staff will fasten multiple fixing brackets 5 to the side wall of the fixing ring 3 through the slot 51. By wrapping the outer wall of the main body 1 with a protective layer 6, moisture can be effectively prevented from penetrating into the interior of the main body 1 of the display stand, thereby protecting the battery inside the main body 1 from moisture damage.

[0033] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. A detachable and modular display stand for salespersons of new energy vehicle battery swapping equipment, comprising a main body (1); characterized in that: The main body (1) of the display stand has an inner layer (11) inside; a first partition (12) is installed inside the inner layer (11); there are multiple first partitions (12) arranged in an alternating manner; the multiple first partitions (12) are engaged with each other through slots; a battery placement slot (13) is provided between the multiple first partitions (12); multiple second partitions (14) are provided between the main body (1) of the display stand and the inner layer (11); the multiple second partitions (14) are engaged with each other through slots; the multiple second partitions (14) are arranged in an alternating manner. A cavity (15) is provided; a first anti-collision pad (16) is provided inside the cavity (15); the first anti-collision pad (16) is located between the main body (1) of the display stand and the inner layer (11) of the display stand; a second anti-collision pad (17) is provided inside the cavity (15); the second anti-collision pad (17) is L-shaped; the second anti-collision pad (17) is located between the main body (1) of the display stand and the inner layer (11) of the display stand; a third anti-collision pad (18) is provided inside the cavity (15); the third anti-collision pad (18) is in contact with the bottom of the main body (1) of the display stand.

2. The detachable and modular display stand for salespersons of new energy vehicle battery swapping equipment according to claim 1, characterized in that: A first limiting plate (2) is connected to the middle of the side wall of the first partition (12); the surface of the first limiting plate (2) is provided with multiple indentations; a second limiting plate (21) is connected to the middle of the side wall of the first partition (12); the surface of the second limiting plate (21) is provided with multiple indentations; the first limiting plate (2) and the second limiting plate (21) are arranged in parallel.

3. The detachable and modular display stand for salespersons of new energy vehicle battery swapping equipment according to claim 2, characterized in that: The outer wall of the display stand body (1) is fitted with a fixing ring (3); there are multiple fixing rings (3) and they are evenly arranged on the outer wall of the display stand body (1).

4. The detachable and modular display stand for salespersons of new energy vehicle battery swapping equipment according to claim 3, characterized in that: The fixing ring (3) has a first fixing strip (4) in the middle of its outer wall; the first fixing strip (4) has a first slot (41) in the middle of its side wall; the first fixing strip (4) has a second slot (42) in the middle of its side wall; the first fixing strip (4) has a second fixing strip (43) in the middle of its side wall; the second fixing strip (43) has a third slot (44) in the middle of its side wall; the second fixing strip (43) has a fourth slot (45) in the middle of its side wall; the first fixing strip (4) and the second fixing strip (43) are engaged with each other through the second slot (42) and the fourth slot (45); the fixing ring (3) has a fifth slot (46) in the middle of its side wall; the first fixing strip (4) and the fixing ring (3) are engaged with each other through the first slot (41) and the fifth slot (46); the second fixing strip (43) and the fixing ring (3) are engaged with each other through the third slot (44) and the fifth slot (46).

5. A detachable and modular display stand for salespersons of new energy vehicle battery swapping equipment according to claim 4, characterized in that: The outer wall of the fixed ring (3) is provided with a plurality of fixed brackets (5); the side wall of the fixed bracket (5) is provided with a slot (51); the fixed bracket (5) and the fixed ring (3) are engaged with each other through the slot (51).

6. A detachable and modular display stand for salespersons of new energy vehicle battery swapping equipment according to claim 5, characterized in that: The main body (1) of the display stand is fitted with a protective layer (6) on its side wall; the protective layer (6) is made of waterproof and dustproof material.