Battery support with adjustable size and stacking support
By designing an adjustable-size battery holder and utilizing movable limiting parts and telescopic tube components, the problem of low applicability of battery holders has been solved, enabling stable storage of batteries of different shapes and sizes, and improving work efficiency and resource utilization.
Patent Information
- Application Number
- CN202423068192.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-12
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2034-12-12
AI Technical Summary
Existing battery racks are typically rigid structures that cannot adapt to changes in the shape and volume of batteries or battery packs of different specifications, resulting in low applicability, serious waste of resources, and low work efficiency.
An adjustable battery holder was designed. Through a movable limiting part and a telescopic tube assembly, combined with a holder base and a slide rail structure, it can stably store batteries of different sizes. The support components can be adjusted in height and position to adapt to different battery shapes and volumes.
It improves the applicability of battery holders, reduces resource waste, increases work efficiency, and ensures the stability of batteries during transportation and storage.
Smart Images

Figure CN223809210U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to battery storage technical field especially, relate to a size adjustable battery support and superposition support. BACKGROUND
[0002] With the rapid development of battery technology, the shape and size of battery systems or modules are increasingly diverse. The growing demand for battery storage and management in the market poses many challenges to traditional battery storage solutions. Currently, battery supports are commonly used in the market to store batteries or battery packs. Because the weight of the batteries or battery packs is relatively large, the general battery support is a rigid structure and is relatively fixed as a whole. Different specifications of batteries or battery packs have different shapes or volumes. Therefore, the existing battery support needs to be customized according to the model of the battery or battery pack, which results in low applicability of the battery support and cannot be shared.
[0003] When the model of the battery or battery pack to be stored changes, the corresponding battery support needs to be selected according to the actual model of the battery or battery pack, and the battery support used before cannot be stored, which leads to waste of battery support resources. Moreover, the replacement of the battery support every time the model of the battery or battery pack changes also seriously affects work efficiency. SUMMARY
[0004] The utility model provides a size adjustable battery support to solve the problem that the battery support in the prior art can only be used to store batteries of corresponding models and cannot be used universally.
[0005] The utility model provides a size adjustable battery support, which comprises:
[0006] A battery bracket, the battery bracket comprises a receiving part and a plurality of limiting parts, the limiting parts are movably arranged on the receiving part;
[0007] A plurality of support assemblies, the support assembly comprises a fixed tube and a telescopic tube, the fixed tube is connected to the receiving part, and the telescopic tube is telescopically connected to the fixed tube.
[0008] According to the size adjustable battery support provided by the utility model, the support assembly further comprises a support base, and the support base is connected to one end of the fixed tube away from the telescopic tube.
[0009] According to the size adjustable battery support provided by the utility model, along the direction of the telescopic tube towards the support base, the cross-sectional area of the support base gradually increases.
[0010] The utility model provides a size adjustable battery support, the support base is equipped with accommodating groove away from one end of fixed pipe.
[0011] According to the size adjustable battery support provided by the utility model, in the vertical direction, the projection of the telescopic pipe away from one end of the fixed pipe is located in the projection of the accommodating groove.
[0012] According to the size adjustable battery support provided by the utility model, the limiting part comprises a first limiting rod and a second limiting rod, the first limiting rod is arranged on the receiving part, the second limiting rod is arranged on the first limiting rod, and the first limiting rod and the second limiting rod are used for limiting the movement of the battery on the receiving part.
[0013] According to the size adjustable battery support provided by the utility model, the limiting part further comprises a third limiting rod, the third limiting rod is connected to one end of the second limiting rod away from the receiving part, and the third limiting rod extends from the second limiting rod towards the center of the battery.
[0014] According to the size adjustable battery support provided by the utility model, the fixed pipe is provided with at least one limiting hole, the telescopic pipe is provided with a plurality of connecting holes, the telescopic pipe is combined and connected with the limiting hole through the plurality of connecting holes, and the relative position between the fixed pipe and the telescopic pipe is adjusted.
[0015] According to the size adjustable battery support provided by the utility model, the size adjustable battery support further comprises a sliding rail, the sliding rail is arranged on the receiving part, and the plurality of limiting parts are connected to the sliding rail.
[0016] The utility model further provides a superimposed support which comprises a plurality of size adjustable battery supports as described above, the plurality of size adjustable battery supports are stacked in the same direction, and adjacent two size adjustable battery supports are connected by inserting the telescopic pipe into the accommodating groove.
[0017] The size adjustable battery support provided by the utility model stores the battery through the battery bracket, and is provided with a limiting part on the receiving part; the movement of the battery on the receiving part is limited through the limiting part, so that the storage of the battery is stable. In the application, the connection between the limiting part and the receiving part is relatively movable, so that the installation position of the limiting part on the receiving part can be changed. The storage of the battery on the receiving part is realized through the limiting of the limiting part, so that when the battery of different sizes is placed on the receiving part, the position of the limiting part is adjusted to make the limiting part adhere to the outer surface of the battery, and the storage of the battery is completed. In the application, the position of the limiting part is adjusted, so that the battery bracket can store the battery of different sizes, and the applicability of the battery bracket is improved. BRIEF DESCRIPTION OF DRAWINGS
[0018] In order to more clearly illustrate the technical solutions of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings described below are some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor on the basis of these drawings.
[0019] Figure 1 is a schematic view of the battery support with adjustable size provided by the present application.
[0020] Figure 2 is a schematic view of the support assembly provided by the present application.
[0021] Figure 3 is a bottom view of the support assembly provided by the present application.
[0022] Figure 4 is a schematic view of the limiting part provided by the present application.
[0023] Reference signs:
[0024] 1, battery bracket; 11, receiving part; 12, limiting part; 121, first limiting rod; 122, second limiting rod; 123, third limiting rod;
[0025] 2, support assembly; 21, fixed tube; 22, telescopic tube; 23, support base; 24, accommodating groove. DETAILED DESCRIPTION
[0026] In order to make the purpose, technical solutions and advantages of the present application more clear, the following will combine the drawings in the present application to clearly and completely describe the technical solutions in the present application. Obviously, the described embodiments are some embodiments of the present application, not all embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the present application.
[0027] The following will combine Figure 1 to describe a battery support with adjustable size of the present application, which comprises a battery bracket 1 and a plurality of support assemblies 2. The battery bracket 1 comprises a receiving part 11 and a plurality of limiting parts 12, and the limiting parts 12 are movably arranged on the receiving part 11. The support assembly 2 comprises a fixed tube 21 and a telescopic tube 22, the fixed tube 21 is connected to the receiving part 11, and the telescopic tube 22 is telescopically connected with the fixed tube 21.
[0028] As Figure 1As shown, the battery bracket 1 in this embodiment is selected in a square structure, wherein the receiving part 11 is a square frame, and multiple hollows are arranged inside the receiving part 11. In this embodiment, the battery in a cuboid is taken as an example. After the battery in a cuboid is placed on the receiving part 11, the battery in a cuboid is in contact with the receiving part 11 through the bottom surface. The bottom surface of the battery in a cuboid is a plane, so the surface of the receiving part 11 for placing the battery is also a plane, so that the receiving part 11 can be attached to the battery, the contact area between the receiving part 11 and the battery is increased, and thus the pressure is reduced. Therefore, after the battery in a cuboid is placed on the receiving part 11, the battery and the receiving part 11 are relatively fixed by the friction force. However, during the transportation or storage of the battery, the battery may be subjected to an external force greater than the friction force, causing the battery and the receiving part 11 to relatively slide.
[0029] Because the general battery or battery pack is in a cuboid structure, the receiving part 11 in this embodiment is selected in a square. In different embodiments, the receiving part 11 can also be selected in other shapes corresponding to the shape of the battery, such as a circle, etc. The multiple hollows arranged inside the receiving part 11 can help the receiving part 11 save materials and reduce weight. However, the specific hollow area and hollow shape on the receiving part 11 need to be determined according to the actual battery to be received, on the basis of ensuring that the receiving part 11 has sufficient strength, the receiving part 11 is hollowed out, and at the same time, it is also necessary to ensure that the receiving part 11 and the battery have sufficient contact area, so as to prevent the battery from falling easily.
[0030] In this embodiment, multiple limiting parts 12 are also arranged on the receiving part 11. Because the battery placed on the receiving part 11 is in a cuboid, the battery is in contact with the receiving part 11 through the bottom surface, so the battery also has four side surfaces. Correspondingly, in this embodiment, the limiting part 12 is also four. The four limiting parts 12 are arranged corresponding to the four side surfaces of the battery, and each limiting part 12 is arranged opposite to one side surface. And the four limiting parts 12 are arranged along the edge of the battery, so that each limiting part 12 is attached to one side surface of the battery. That is, the shape and size enclosed by the four limiting parts 12 correspond to the shape and size of the battery.
[0031] Therefore, when the battery is placed on the receiving part 11, the four limiting parts 12 are attached to the four side surfaces of the battery, so as to limit the sliding of the battery on the receiving part 11 and ensure the stability of the battery placed on the receiving part 11.
[0032] In this embodiment, the four limiting parts 12 are taken as an example. In different embodiments, the number of limiting parts 12 can also be increased or reduced, and the specific number needs to be determined according to the shape of the actual battery to be stored. However, it is necessary to ensure that each side surface of the battery is provided with at least one limiting part 12.
[0033] Understandably, since the limiting part 12 and the receiving part 11 are relatively movable, the position of the limiting part 12 on the receiving part 11 can be changed. The limiting part 12 and the receiving part 11 are relatively movable, and the connection method is preferably a threaded connection. Therefore, by providing multiple threaded mounting holes on the receiving part 11, the position of the limiting part 12 on the receiving part 11 can be adjusted by mounting the limiting part 12 onto different threaded mounting holes.
[0034] When the size or shape of the batteries to be stored changes, simply adjust the mounting position of the limiting part 12 accordingly to store batteries of different sizes. For example, when the batteries to be stored change from cuboids to cubes, adjusting the mounting positions of the four limiting parts 12 to fit against the four sides of the cube battery will keep the stored batteries stable.
[0035] In this embodiment, by connecting the limiting part 12 and the receiving part 11 in a relatively movable manner, the battery tray 1 can adapt to the storage of batteries of different sizes, thereby improving the applicability of the battery tray 1.
[0036] Furthermore, multiple support components 2 are connected to the outer ring of the receiving part 11. In this embodiment, the receiving part 11 is a square frame, and four support components 2 are provided accordingly. The four support components 2 are respectively arranged at the four corners of the receiving part 11, which can prevent external parts from entering.
[0037] The support assembly 2 includes a fixed tube 21 and a telescopic tube 22. The fixed tube 21 is fixedly connected to the corner of the receiving part 11. The telescopic tube 22 is telescopically connected to the fixed tube 21, meaning that the telescopic tube 22 moves relative to the fixed tube 21. The fixed tube 21 is made of hollow tube, and the telescopic tube 22 is inserted inside the fixed tube 21. The telescopic tube 22 can slide along the fixed tube 21, thereby extending and retracting.
[0038] like Figure 1 As shown, in this embodiment, the support component 2 is connected to the corner of the receiving part 11 and is vertically arranged. The entire adjustable battery holder contacts the ground through the support component 2, which separates the battery on the receiving part 11 from the ground, suspending the battery and preventing it from being affected by contact with the ground. The vertically arranged support component 2 also serves as a barrier, because the telescopic tube 22 and the fixed tube 21 are telescopically connected, so the telescopic tube 22 can be adjusted according to the height of the batteries to be stored, to accommodate different battery heights.
[0039] In an embodiment, the support assembly 2 further comprises a support base 23 connected to the fixed tube 21 at an end away from the telescopic tube 22. In an embodiment, the cross-sectional area of the support base 23 gradually increases in a direction along the telescopic tube 22 towards the support base 23. In an embodiment, the end of the support base 23 away from the fixed tube 21 is provided with a receiving groove 24.
[0040] In the present embodiment, the bottom of the fixed tube 21 is connected with the support base 23, which is in contact with the ground. The support base 23 is in the shape of a quadrangular prism, i.e. the support base 23 is in the form of a structure with a small upper part and a large lower part. The size of the upper part of the support base 23 corresponds to the size of the lower end of the fixed tube 21, so as to ensure the stable connection of the support base 23 with the fixed tube 21. The size of the lower part of the support base 23 gradually increases until the lower end of the support base 23 reaches the maximum size. Then the support base 23 is in contact with the ground through the largest lower end surface, which increases the contact area and reduces the pressure.
[0041] As shown in Figure 3 , the lower end of the support base 23 is further provided with a receiving groove 24. After the entire device is placed on the ground, it is relatively fixed with the ground through friction, and then relative sliding between the support base 23 and the ground can occur. Therefore, in the present embodiment, the receiving groove 24 is provided at the lower end of the support base 23, and a corresponding limiting column is provided on the ground. When placing the battery support with adjustable size, the receiving groove 24 is aligned with the limiting column on the ground, so that the limiting column is inserted into the receiving groove 24 for connection. The limiting column can limit the entire device to avoid relative sliding of the entire device, and can also position the entire device to ensure that the placement position of the entire device does not change.
[0042] In an embodiment, in the vertical direction, the projection of the telescopic tube 22 away from the fixed tube 21 is located within the projection of the receiving groove 24.
[0043] Please refer to Figure 1 and Figure 2 together, the battery bracket 1 is used for storing batteries. Usually, the battery bracket 1 is placed on the ground, and then the batteries are placed on the receiving part 11. The entire battery bracket 1 is in contact with the ground through the support assembly 2, and the support assembly 2 is vertically arranged. Then in the vertical direction, i.e. in the arrangement direction of the support assembly 2, the projection of the upper end of the telescopic tube 22 is within the projection of the receiving groove 24, so that the upper end of the telescopic tube 22 can be inserted into the receiving groove 24.
[0044] Preferably, the shape of the upper end of the telescopic tube 22 corresponds to the shape of the accommodating groove 24, and the size of the upper end of the telescopic tube 22 is close to the size of the accommodating groove 24, so that the upper end of the telescopic tube 22 is in interference fit with the accommodating groove 24. After the upper end of the telescopic tube 22 is inserted into the accommodating groove 24, the upper end of the telescopic tube 22 is limited by the accommodating groove 24, so that the installation is more stable.
[0045] In an embodiment, the limiting part 12 comprises a first limiting rod 121 and a second limiting rod 122, the first limiting rod 121 is arranged on the receiving part 11, and the second limiting rod 122 is arranged on the first limiting rod 121, and the first limiting rod 121 and the second limiting rod 122 are used to limit the movement of the battery arranged on the receiving part 11. In an embodiment, the limiting part 12 further comprises a third limiting rod 123, the third limiting rod 123 is connected to one end of the second limiting rod 122 away from the receiving part 11, and the third limiting rod 123 extends from the second limiting rod 122 towards the center of the battery.
[0046] Please refer to Figure 1 and Figure 4 , the limiting part 12 is composed of the first limiting rod 121, the second limiting rod 122 and the third limiting rod 123. In this embodiment, a square battery is taken as an example, so that the limiting part 12 corresponds to four, and each limiting part 12 corresponds to one side of the square battery. The first limiting rod 121 is arranged on the receiving part 11, the first limiting rod 121 is attached to one side of the square battery, and the first limiting rod 121 extends along the side length of the side, so as to increase the contact area between the first limiting rod 121 and the side.
[0047] Then the second limiting rod 122 is connected to the first limiting rod 121, and the second limiting rod 122 extends along a direction different from the extending direction of the first limiting rod 121, so as to ensure that the first limiting rod 121 and the second limiting rod 122 extend in different directions, thereby limiting the square battery in two directions. After the first limiting rod 121 extends along the side length of the side, the second limiting rod 122 extends along the height direction of the side. Preferably, the connection position of the second limiting rod 122 is arranged at the middle position of the height direction of the side, so that the side is more uniform when stressed.
[0048] Specifically, the upper end of the second limiting rod 122 is further connected with a third limiting rod 123, which extends in the direction towards the battery. Since the first limiting rod 121 and the second limiting rod 122 are both in contact with the side surface of the battery, the battery can be prevented from sliding on the receiving part 11. However, the battery may vibrate during transportation. Therefore, in the present embodiment, the third limiting rod 123 located above is used to limit the height of the battery. The height of the third limiting rod 123 is equal to the height of the battery after being placed on the receiving part 11, so that the third limiting rod 123 is limited. Here, equal means that the bottom surface height of the third limiting rod 123 is equal to the top surface height of the battery, so that the battery is just in contact with the third limiting rod 123 after being placed on the receiving part 11.
[0049] In the present embodiment, by arranging the limiting part 12 on each side surface of the battery, the length, width and height of the battery are all limited, so as to ensure the stability of the battery during storage.
[0050] In an embodiment, the size-adjustable battery support further comprises a sliding rail, which is arranged on the receiving part 11, and the plurality of limiting parts 12 are connected to the sliding rail.
[0051] As shown in Figure 1 , in the present embodiment, the limiting part 12 is movably connected with the receiving part 11 through the sliding rail. However, it is not limited thereto, and in different embodiments, the limiting part 12 and the receiving part 11 can also be threadedly connected, and the movement of the limiting part 12 relative to the receiving part 11 is realized by installing the limiting part 12 at different positions on the receiving part 11.
[0052] In the present embodiment, the limiting part 12 is connected to the sliding rail, and the sliding rail is provided with a control assembly, which is connected with the limiting part 12. The sliding distance of the limiting part 12 on the sliding rail is controlled through the control assembly. When storing batteries of different sizes, the limiting part 12 is controlled to slide to a position corresponding to the size of the battery to be stored through the control assembly, so as to adapt to batteries of different sizes, and batteries of different sizes can also be stably stored.
[0053] In an embodiment, the fixed tube 21 is provided with at least one limiting hole, and the telescopic tube 22 is provided with a plurality of connecting holes. The telescopic tube 22 is combined and connected with the limiting hole through the plurality of connecting holes, and is used to adjust the relative position between the fixed tube 21 and the telescopic tube 22.
[0054] Please refer to Figure 1 and Figure 2In the embodiment, the telescopic tube 22 can be telescopically adjusted relative to the fixed tube 21 by screwing.
[0055] Meanwhile, multiple limiting holes can be formed on the fixed tube 21, so that multiple different heights can be formed between the fixed tube 21 and the telescopic tube 22, thereby improving the applicability of the device.
[0056] In another embodiment, the stacked support includes multiple adjustable-size battery supports as described above, and the multiple adjustable-size battery supports are stacked in the same direction and connected by inserting the telescopic tube 22 into the accommodating groove 24.
[0057] Further, in order to better utilize the space, the stacked support provided in the embodiment can also stack multiple adjustable-size battery supports as described above. When the first adjustable-size battery support is placed on the ground, the second adjustable-size battery support is placed on the first adjustable-size battery support. Because the two are arranged in the same direction, the bottom end of the second adjustable-size battery support is aligned with the top end of the first adjustable-size battery support, i.e., the accommodating groove 24 of the second adjustable-size battery support is aligned with the telescopic tube 22 of the first adjustable-size battery support, and the connection is completed when the telescopic tube 22 is inserted into the accommodating groove 24. Because the telescopic tube 22 can be telescopically adjusted relative to the fixed tube 21, the stacked support provided in the application can also be adaptively adjusted when facing different height requirements, thereby improving the applicability.
[0058] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the application, and not to limit them. Although the application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacements to some technical features. These modifications or replacements do not make the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the application.
Claims
1. A size-adjustable battery holder, characterized by, The application relates to a battery bracket (1) comprising a receiving part (11) and a plurality of limiting parts (12) movably arranged on the receiving part (11); a plurality of support assemblies (2) comprising a fixed tube (21) connected to the receiving part (11) and a telescopic tube (22) telescopically connected to the fixed tube (21). The support assembly (2) further comprises a bracket base (23) connected to one end of the fixed tube (21) away from the telescopic tube (22). The sectional area of the bracket base (23) gradually increases along the telescopic tube (22) towards the bracket base (23).
2. The size-adjustable battery support of claim 1, wherein, The bracket base (23) is provided with a receiving groove (24) at one end away from the fixed tube (21).
3. The size-adjustable battery holder of claim 2, wherein, The projection of the telescopic tube (22) away from the fixed tube (21) in the vertical direction is located in the projection of the receiving groove (24).
4. The size-adjustable battery support of claim 2, wherein, The limiting part (12) comprises a first limiting rod (121) arranged on the receiving part (11) and a second limiting rod (122) arranged on the first limiting rod (121), and the first limiting rod (121) and the second limiting rod (122) are used for limiting the movement of the battery arranged on the receiving part (11).
5. The size-adjustable battery holder of claim 4, wherein, The limiting part (12) further comprises a third limiting rod (123) connected to one end of the second limiting rod (122) away from the receiving part (11), and the third limiting rod (123) extends from the second limiting rod (122) towards the center of the battery.
6. The size-adjustable battery support of claim 1, wherein, The fixed tube (21) is provided with at least one limiting hole, and the telescopic tube (22) is provided with a plurality of connecting holes, and the telescopic tube (22) is combined and connected with the limiting hole through the plurality of connecting holes, so as to adjust the relative position between the fixed tube (21) and the telescopic tube (22).
7. The size-adjustable battery holder of claim 6, wherein, The battery bracket with adjustable size further comprises a slide rail arranged on the receiving part (11), and the plurality of limiting parts (12) are connected to the slide rail.
8. The size-adjustable battery support of claim 1, wherein, A plurality of battery brackets with adjustable size as claimed in claim 4 or 5 are stacked in the same direction, and two adjacent battery brackets with adjustable size are connected by inserting the telescopic tube (22) into the receiving groove (24).
9. The size-adjustable battery holder of claim 1, wherein, 10. A stent, comprising: