UPS battery fixing tray structure
By designing an adjustable UPS battery mounting tray structure, the problem of unstable battery transportation caused by fixed tray size was solved, achieving stable battery positioning and safe transportation, while also saving costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SICHUAN VISION HAOPU ELECTRONIC ENGINEERING CO LTD
- Filing Date
- 2025-06-19
- Publication Date
- 2026-05-22
AI Technical Summary
The current UPS battery trays have fixed dimensions, which makes the batteries prone to displacement and damage during transportation, and replacing them with compatible trays increases costs.
A UPS battery fixing tray structure was designed. Through limit screws, mounting screws and adjustment structure, the spacing between the partitions inside the tray can be adjusted. Combined with buffer rubber pads, it ensures stable battery positioning.
It enables the tray space to be adjusted according to the battery size, avoiding displacement and bumps during battery transportation, improving transportation stability and safety, while the detachable structure saves space and weight.
Smart Images

Figure CN224266209U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of UPS battery trays, and specifically relates to a UPS battery fixing tray structure. Background Art
[0002] A UPS battery transport tray is a device used to carry and protect batteries during the transportation of UPS batteries, which facilitates the transportation and storage of batteries by staff in units of trays, facilitates the counting and management of the number of batteries, and is convenient for logistics personnel to conduct inventory checks and goods tracking.
[0003] In the prior art, the size of the tray used for transporting UPS batteries is fixed, while the size specifications of UPS batteries are different, resulting in a certain amount of movable space when the UPS batteries are placed in the tray. If there is jolting during transportation, it is easy for the batteries to be displaced and bumped, affecting stability. If trays of corresponding sizes are replaced, it will incur additional costs. Therefore, a UPS battery fixing tray structure is needed to meet people's needs. Summary of the Invention
[0004] The purpose of the utility model is to provide a UPS battery fixing tray structure to solve the problems in the above background art that the size of the tray used for transporting UPS batteries is fixed, while the size specifications of UPS batteries are different, resulting in a certain amount of movable space when the UPS batteries are placed in the tray, which is easy to be displaced and bumped during transportation, and if trays of corresponding sizes are replaced, it will incur additional costs.
[0005] To achieve the above purpose, the utility model provides the following technical solution: a UPS battery fixing tray structure, including a positioning tray; mounting strips are installed on both inner walls of the positioning tray, and a number of positioning structures are connected to the two mounting strips. A limiting screw rod and a mounting screw rod are connected to the positioning structure, an adjusting structure is connected to the limiting screw rod, and a dismounting structure is connected to the mounting screw rod.
[0006] Preferably, the positioning structure includes two mounting frames, which are respectively movably installed on the two mounting strips. Movable screw rods are slidably installed inside the two mounting frames. The ends of the two movable screw rods are provided with the same long partition board. A number of U-shaped short partition boards are slidably installed on the long partition board. Buffer rubber pads are installed on both sides of the long partition board and the U-shaped short partition boards.
[0007] Preferably, the adjusting structure includes a number of first limiting nuts. Two first limiting nuts on the same side are respectively in contact with both sides of the U-shaped short partition board. The two first limiting nuts are both threadedly sleeved on the limiting screw rod, and the limiting screw rod is installed on the long partition board.
[0008] Preferably, the adjustment structure further includes a threaded sleeve, which is rotatably mounted inside the mounting bracket and threaded onto the movable screw.
[0009] Preferably, the movable screw is threaded with two limiting nuts, which are in contact with the two sides of the mounting bracket respectively.
[0010] Preferably, the disassembly structure includes a plurality of mounting screw holes, which are evenly distributed inside the mounting strip. One end of the mounting screw passes through the mounting bracket and is threaded into the corresponding mounting screw hole.
[0011] Preferably, the mounting strip has several limiting grooves inside, and a limiting block is installed on one side of the mounting frame, with the limiting block being movably installed in the corresponding limiting groove.
[0012] Compared with the prior art, the beneficial effects of this utility model are:
[0013] (1) In this utility model, the position of the long partition can be adjusted by loosening the second limiting nut and rotating the threaded sleeve. When the first limiting nut is loosened, the position of the U-shaped short partition can be adjusted, thereby changing the distance between the adjacent long partition and the U-shaped short partition and the space size formed between them. This allows the U-shaped short partition and the long partition to adjust their positions according to the size of the UPS battery placed in, ensuring that they can be attached to the side of the UPS battery and restricting its position. The contact surfaces of the U-shaped short partition, the long partition and the battery can be equipped with buffer pads to prevent the UPS battery from shifting and bumping against each other during transportation, thereby improving the stability and safety of the UPS battery during transportation.
[0014] (2) By rotating and unscrewing the mounting screw, the installation restriction on the mounting frame can be released. At this time, pulling the mounting frame can remove the limit block from the limit groove, thereby disassembling the mounting frame and the long partition and other structures. Then the limit block can be aligned with the remaining limit grooves for installation, thereby adjusting the installation position of the mounting frame, or choosing to remove the idle mounting frame, which can save space and reduce transportation weight. Attached Figure Description
[0015] Figure 1 This is a three-dimensional structural diagram of a UPS battery fixing tray structure proposed in this utility model;
[0016] Figure 2 This is a schematic diagram of the internal structure of a UPS battery fixing tray structure proposed in this utility model;
[0017] Figure 3 This is a schematic diagram of the mounting strip structure of a UPS battery fixing tray structure proposed in this utility model;
[0018] Figure 4This is a cross-sectional view of the mounting bracket for a UPS battery fixing tray structure proposed in this utility model.
[0019] In the diagram: 100, positioning tray; 200, mounting strip; 201, mounting bracket; 202, movable screw; 203, long partition; 204, U-shaped short partition; 300, limit screw; 301, limit nut one; 302, threaded sleeve; 303, limit nut two; 400, mounting screw; 401, mounting screw hole; 402, limit groove; 403, limit block. Detailed Implementation
[0020] 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 of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0021] Example 1: Please refer to Figure 1-4 This utility model provides a technical solution: a UPS battery fixing tray structure, including a positioning tray 100; mounting strips 200 are installed on both inner walls of the positioning tray 100, and several positioning structures are connected to the two mounting strips 200. The positioning structures are used to limit the position of the UPS battery in the positioning tray 100. Limiting screws 300 and mounting screws 400 are connected to the positioning structures. An adjustment structure is connected to the limiting screws 300, and the positioning structure can be adjusted according to the size of the UPS battery. A disassembly structure is connected to the mounting screws 400, and the disassembly structure can be used to remove unnecessary positioning structures to save space.
[0022] Furthermore, the positioning structure includes two mounting brackets 201, which are movably mounted on two mounting strips 200 respectively. Movable screws 202 are slidably installed inside each mounting bracket 201. A common long partition 203 is installed at one end of each screw 202. Several U-shaped short partitions 204 are slidably installed on the long partition 203. Buffer rubber pads are installed on both sides of the long partition 203 and the U-shaped short partitions 204. During use, the UPS batteries can be sequentially placed into the space formed by the long partition 203 and the U-shaped short partitions 204, thus restricting and positioning the UPS batteries and preventing them from shifting or bumping against each other during transportation. Buffer rubber pads are also provided on the side of the U-shaped short partitions 204 and the long partition 203 that contacts the battery to prevent damage to the UPS batteries.
[0023] Furthermore, the adjustment structure includes several limiting nuts 301. Two limiting nuts 301 located on the same side contact the two sides of the U-shaped short partition 204 respectively. Both limiting nuts 301 are threaded onto the limiting screw 300, which is installed on the long partition 203. Rotating the limiting nuts 301 on both sides releases them from the pressure on the U-shaped short partition 204. Then, pushing the U-shaped short partition 204 allows it to slide on the long partition 203 and the limiting screw 300, thereby adjusting the position of the U-shaped short partition 204. After adjustment, rotating the limiting nuts 301 on both sides in the opposite direction and pressing them back onto the U-shaped short partition 204 can re-limit its position.
[0024] Furthermore, the adjustment structure also includes a threaded sleeve 302, which is rotatably installed inside the mounting bracket 201. The threaded sleeve 302 is threaded onto the movable screw 202. By rotating the threaded sleeve 302, the movable screw 202 can be moved. The movable screw 202 will slide inside the mounting bracket 201 and move the long partition 203 to adjust the position of the long partition 203. The long partition 203 and the U-shaped short partition 204 can be adjusted to a suitable position according to the size of the UPS battery.
[0025] Furthermore, two limiting nuts 303 are threaded onto the movable screw 202. The two limiting nuts 303 contact the two sides of the mounting bracket 201 respectively. After adjusting the position of the long partition 203, the limiting nuts 303 on both sides can be rotated in the opposite direction to press the limiting nuts 303 onto the surface of the mounting bracket 201, which can re-limit the position of the movable screw 202 and the long partition 203.
[0026] Example 2: As Figure 3-4 To facilitate the disassembly of the unused long partition 203 and U-shaped short partition 204 according to usage requirements, a disassembly structure is provided. The disassembly structure includes several mounting screw holes 401, which are evenly distributed inside the mounting strip 200. One end of the mounting screw 400 passes through the mounting bracket 201 and is threaded into the corresponding mounting screw hole 401. By rotating the mounting screw 400 and unscrewing it from the corresponding mounting screw hole 401, the position restriction on the mounting bracket 201 can be released. Conversely, by inserting the mounting screw 400 into the mounting bracket 201 and screwing it into the corresponding mounting screw hole 401, the installation position of the mounting bracket 201 can be restricted.
[0027] Furthermore, the mounting strip 200 has several limiting grooves 402 inside, and a limiting block 403 is installed on one side of the mounting bracket 201. The limiting block 403 is movably installed in the corresponding limiting groove 402. By inserting the limiting block 403 into the limiting groove 402, the horizontal position of the mounting bracket 201 can be restricted to prevent it from sliding and loosening horizontally. In conjunction with the mounting screw 400 to fix the mounting bracket 201, the stability of the mounting bracket 201 can be improved.
[0028] The working principle is as follows: During use, the internal space of the positioning tray 100 is adjusted according to the required number and size of the UPS batteries to be loaded. During adjustment, the corresponding limit nut 303 is rotated, causing it to move through the threaded engagement with the movable screw 202. The moving limit nut 303 disengages from the mounting bracket 201, thus releasing the positional restriction on the movable screw 202. Subsequently, the threaded sleeves 302 on both sides are rotated. When the threaded sleeves 302 rotate, they engage with the movable screw 202 through their threads. The movable screw 202 moves, sliding within the mounting bracket 201 and moving the long partition 203. This allows adjustment of the distance between the long partition 203 and the inner wall of the positioning tray 100, or between two adjacent long partitions 203. After adjustment, the limiting nuts 303 on both sides are rotated in the opposite direction, causing them to move back to their original position and press against the surface of the mounting bracket 201. This prevents the movable screw 202 from moving due to the threaded restriction of the limiting nuts 303, thus controlling the movement of the movable screw 202 and the long partition 203. The position of 03 is re-restricted. A shim can be placed between the mounting bracket 201 and the second limiting nut 303 to increase friction and improve stability. Then, rotate the first limiting nut 301 on both sides, causing it to move through its threaded engagement with the limiting screw 300. This releases the first limiting nut 301 from the pressure on the U-shaped short partition 204. Pushing the U-shaped short partition 204 allows it to slide on the long partition 203 and the limiting screw 300. After adjustment, rotate the first limiting nut 301 on both sides in the opposite direction. The two limiting nuts 301 are moved and reset, pressing the U-shaped short partition 204. A shim can also be placed between the limiting nuts 301 and the U-shaped short partition 204 to increase friction, so that the U-shaped short partition 204 is pressed by the limiting nuts 301 on both sides and cannot move, thus restricting the position of the U-shaped short partition 204. The long partition 203 and the U-shaped short partition 204 can be adjusted to a suitable position according to the size of the UPS battery. The UPS battery is then placed sequentially into the space formed by the long partition 203 and the U-shaped short partition 204. Figure 1 The system can be set to restrict and position the UPS batteries to prevent them from shifting or bumping against each other during transportation.
[0029] By rotating the mounting screw 400 and unscrewing it from the corresponding mounting screw hole 401, the position restriction on the mounting bracket 201 can be released. After unscrewing the mounting screw holes 401 on both sides, the mounting brackets on both sides can be pulled to make the limiting block 403 slide out of the limiting groove 402. At the same time, the corresponding long partition 203 can be disengaged from the positioning tray 100, and the idle long partition 203 and U-shaped short partition 204 can be separated. Conversely, they can also be added according to the usage requirements.
[0030] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents. The circuits, electronic components and modules involved in the present invention are all prior art and can be fully implemented by those skilled in the art, so there is no need to elaborate. The content protected by the present invention does not involve improvements to software and methods.
Claims
1. A UPS battery fixing tray structure, comprising a positioning tray (100); characterized in that: The positioning tray (100) has mounting strips (200) installed on both inner walls. Several positioning structures are connected to the two mounting strips (200). Limiting screws (300) and mounting screws (400) are connected to the positioning structures. Adjustment structures are connected to the limiting screws (300) and mounting screws (400). Disassembly structures are connected to the mounting screws (400).
2. The UPS battery fixing tray structure according to claim 1, characterized in that: The positioning structure includes two mounting brackets (201), which are movably mounted on two mounting strips (200). Movable screws (202) are slidably mounted inside the two mounting brackets (201). A long partition (203) is mounted on one end of the two movable screws (202). Several U-shaped short partitions (204) are slidably mounted on the long partition (203). Buffer rubber pads are installed on both sides of the long partition (203) and the U-shaped short partitions (204).
3. The UPS battery fixing tray structure according to claim 1, characterized in that: The adjustment structure includes several limiting nuts (301). Two limiting nuts (301) located on the same side are in contact with the two sides of the U-shaped short partition (204). Both limiting nuts (301) are threaded onto the limiting screw (300), and the limiting screw (300) is installed on the long partition (203).
4. The UPS battery fixing tray structure according to claim 1, characterized in that: The adjustment structure also includes a threaded sleeve (302), which is rotatably installed inside the mounting bracket (201) and threaded onto the movable screw (202).
5. A UPS battery fixing tray structure according to claim 2, characterized in that: The movable screw (202) is threaded with two limiting nuts (303), which are in contact with the two sides of the mounting bracket (201) respectively.
6. The UPS battery fixing tray structure according to claim 1, characterized in that: The disassembly structure includes several mounting screw holes (401), which are evenly opened inside the mounting strip (200). One end of the mounting screw (400) passes through the mounting bracket (201) and is threaded into the corresponding mounting screw hole (401).
7. The UPS battery fixing tray structure according to claim 1, characterized in that: The mounting strip (200) has several limiting grooves (402) inside, and a limiting block (403) is installed on one side of the mounting bracket (201). The limiting block (403) is movably installed in the corresponding limiting groove (402).