Electronic trays for vertically lifting containers and electronic racks

CN224632225UActive Publication Date: 2026-08-14CHANGZHOU NAIEN IND TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-15
Publication Date
2026-08-14

AI Technical Summary

Technical Problem

[0003]但在实际的应用过程中发现,由于待储存的物料的体积与数量均不一致,在前一批物料使用完毕需填放新的物料时,原有的隔间大小可能并不完全适用于新一批的物料储存,则需替换新的料盘,一定程度提升了使用成本

Benefits of technology

[0021]1.将隔板与待安装位置的连接通孔对应,而后随着隔板的移动使得连接板嵌入对应的连接通孔中,可通过工具弯折连接板,使得隔板与料盘主体固定,隔板与料盘主体可拆卸式连接,隔板可重复利用的同时可以随意调整腔室的大小,从而单个料盘可满足不同的物料储放,有效减少了料盘主体的使用成本;

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Abstract

This utility model relates to an electronic tray for vertically lifting containers and electronic racks, belonging to the technical field of trays. It includes a tray body with a receiving cavity for accommodating materials. Multiple partitions divide the receiving cavity into multiple chambers on the tray body. The partitions are arranged sequentially along the length of the tray body. Each partition includes a first rectangular plate and a second trapezoidal plate. The shape of the receiving cavity matches the shape of the partitions. Connecting plates are provided on both sides of the first and second plates. A through-hole is provided on the tray body for the connecting plates to pass through. This application has the effect of reducing the cost of using the tray.
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Description

Technical Field

[0001] This utility model relates to the technical field of material trays, and in particular to an electronic material tray for vertical lifting containers and electronic material racks. Background Technology

[0002] Both vertical lifting containers and electronic racks use trays to store materials. In order to save storage space on the trays, multiple dividers are usually installed on the trays so that a single tray can be used to store a variety of goods.

[0003] However, in actual application, it was found that since the volume and quantity of the materials to be stored are inconsistent, when the previous batch of materials is used up and new materials need to be filled, the original compartment size may not be fully suitable for storing the new batch of materials, so new material trays need to be replaced, which increases the cost of use to a certain extent. Utility Model Content

[0004] To reduce the cost of using material trays, this application provides an electronic material tray for vertically lifting containers and electronic racks.

[0005] This application provides an electronic tray for vertically lifting containers and electronic racks, employing the following technical solution:

[0006] An electronic tray for vertically lifting containers and electronic racks includes a tray body with a receiving cavity for accommodating materials. Multiple partitions are provided on the tray body, dividing the receiving cavity into multiple chambers. The partitions are arranged sequentially along the length of the tray body. Each partition includes a first rectangular plate and a second trapezoidal plate. The shape of the receiving cavity matches the shape of the partition. Connecting plates are provided on both sides of the first and second plates. A through hole is provided on the tray body for the connecting plates to pass through.

[0007] By adopting the above technical solution, the partition plate is aligned with the connecting through hole at the installation position. Then, as the partition plate moves, the connecting plate is embedded in the corresponding connecting through hole. The connecting plate can be bent with a tool to fix the partition plate to the main body of the tray. The partition plate and the main body of the tray are detachably connected. The partition plate can be reused and the size of the chamber can be adjusted at will. Thus, a single tray can meet the storage needs of different materials, effectively reducing the usage cost of the main body of the tray. The inverted trapezoidal design of the bottom wall of the partition plate makes the side wall of the partition plate fit against the inner wall of the receiving cavity, which facilitates the embedding of the connecting plate into the connecting through hole.

[0008] Preferably, the connecting plate includes a connecting part and a fixing part, the fixing part being located between the partition and the connecting part, and the size of the fixing part being larger than the size of the connecting part.

[0009] By adopting the above technical solution, and by setting the size of the fixing part to be larger than that of the connecting part, the contact area between the concave bending tool and the connecting plate is effectively increased, thereby effectively saving the force required for the concave bending fixing part. On the other hand, the connection area between the fixing part and the connecting part is reduced, which facilitates the concave bending of the fixing part.

[0010] Preferably, the end of the fixing part away from the connecting part is provided with a clearance slope.

[0011] By adopting the above technical solution and setting the inclined surface, a guide is provided for the partition to move into the connecting plate and embed into the connecting through hole, thereby effectively improving the installation efficiency of the partition.

[0012] Preferably, the connecting plates on the first plate are located on the side of the first plate away from the second plate, and the number of connecting plates on the second plate is greater than the number of connecting plates on the first plate.

[0013] By adopting the above technical solution, since the second plate is close to the bottom wall of the receiving cavity, the material accumulated at the bottom exerts greater pressure on the partition. The second plate is provided with multiple connecting plates on one side, thereby effectively improving the stability of the partition installed on the main body of the material tray.

[0014] Preferably, a snap-fit ​​groove is provided through the middle of the partition, and the distance between two partitions that are spaced apart is the same as the length of the partition itself. After the partition is inserted into any one of the partitions provided on the main body of the tray, the two chambers are divided into four chambers.

[0015] By adopting the above technical solution, when disassembling the partition on the main body of the material tray, the connecting plate has a certain probability of breaking. With the partition being pluggable, the broken partition can be used to further divide the chamber, which further reduces the cost of using the material tray. Since the end of the pluggable partition away from the bottom of the main body of the material tray is trapezoidal, it is easy for operators to identify the parts placed in the internal chamber.

[0016] Preferably, a limiting member is provided between the partition for insertion and the partition located on the main body of the tray.

[0017] By adopting the above technical solution, the position between the partitions is fixed by setting the limiting component, thereby ensuring the stability of the partitions installed on the main body of the material tray.

[0018] Preferably, the limiting member is made of rubber.

[0019] By adopting the above technical solution, the rubber limiting component has good wear resistance and plasticity, which ensures the reliability of limiting the movement of the partition while effectively extending the service life of the limiting component.

[0020] In summary, this application includes at least one of the following beneficial technical effects:

[0021] 1. Align the partition with the connecting through hole at the installation location. Then, as the partition moves, the connecting plate is embedded in the corresponding connecting through hole. The connecting plate can be bent with a tool to fix the partition to the main body of the tray. The partition and the main body of the tray are detachably connected. The partition can be reused and the size of the chamber can be adjusted at will. Thus, a single tray can meet the storage needs of different materials, effectively reducing the usage cost of the main body of the tray.

[0022] 2. When disassembling the partition on the main body of the material tray, the connecting plate may break. The partition can be plugged in, and the broken partition can be used to further divide the chamber, which further reduces the cost of using the material tray. Since the end of the plugged partition away from the bottom of the main body of the material tray is trapezoidal, it is easy for the operator to identify the parts placed in the internal chamber. Attached Figure Description

[0023] Figure 1 This is a schematic diagram of the overall structure of Embodiment 1 of this application.

[0024] Figure 2 This is a disassembled diagram of the partition in Embodiment 1 of this application.

[0025] Figure 3 This is a schematic diagram of the partition in Embodiment 2 of this application.

[0026] Figure 4 This is a schematic diagram of the three-port limiting component in Embodiment 2 of this application.

[0027] Figure 5 This is a schematic diagram of the four-port limiting component in Embodiment 2 of this application.

[0028] Explanation of reference numerals in the attached drawings: 1. Material tray body; 11. Receiving cavity; 2. Partition; 21. First plate; 22. Second plate; 23. Snap-fit ​​groove; 24. Limiting component; 3. Connecting plate; 31. Connecting through hole; 32. Connecting part; 33. Fixing part; 331. Leaving slope. Detailed Implementation

[0029] The following is in conjunction with the appendix Figure 1-5 The present invention will be described in further detail below.

[0030] Example 1: This application discloses an electronic tray for vertically lifting containers and electronic racks, referring to... Figure 1 and Figure 2The system includes a material tray body 1, which has a receiving cavity 11 for containing materials. The material tray body 1 is provided with multiple partitions 2 for dividing the receiving cavity 11. The multiple partitions 2 are arranged sequentially along the length of the material tray body 1. The number of partitions 2 depends on the overall length of the material tray body 1. In this embodiment, there are fourteen partitions 2. The fourteen partitions 2 divide the receiving cavity 11 into fifteen separate chambers. In actual application, the two chambers located on both sides are used to store parts that cooperate with other mechanisms.

[0031] Reference Figure 1 and Figure 2 The partition 2 includes a first plate 21 with a rectangular shape and a second plate 22 with a trapezoidal shape. The shape of the receiving cavity 11 is consistent with the shape of the partition 2. Both sides of the first plate 21 and the second plate 22 are provided with bendable connecting plates 3. The main body of the tray is provided with a through hole 31 for the connecting plate 3 to pass through. In actual application, the partition 2 can be aligned with the through hole 31 of the position to be installed. Then, as the partition 2 moves, the connecting plate 3 is embedded in the corresponding through hole 31. The connecting plate 3 can be bent with a tool to fix the partition 2 to the main body of the tray. The inverted trapezoidal shape of the bottom wall of the partition 2 makes the side wall of the partition 2 fit with the inner wall of the receiving cavity 11, while facilitating the embedding of the connecting plate 3 into the through hole 31.

[0032] Reference Figure 1 and Figure 2 The connecting plate 3 includes a connecting part 32 and a fixing part 33. The connecting plate 3 is integrally formed with the partition plate 2. The fixing part 33 is located between the partition plate 2 and the connecting part 32. The size of the fixing part 33 is larger than the size of the connecting part 32. The size of the connecting through hole 31 is adapted to the fixing part 33. In actual application, the length of the connecting part 32 is consistent with the thickness of the tray body 1. By setting the size of the fixing part 33 to be larger than the size of the connecting part 32, the contact area between the concave bending tool and the connecting plate 3 is effectively increased, thereby effectively saving the force required for the concave bending fixing part 33. On the other hand, the connection area between the fixing part 33 and the connecting part 32 is reduced, which facilitates the concave bending of the fixing part 33.

[0033] Reference Figure 1 and Figure 2 The fixed part 33 is provided with a relief slope 331 at the end away from the connecting part 32. The relief slope 331 provides a guide for the partition 2 to move into the connecting plate 3 and be embedded in the connecting through hole 31, thereby effectively improving the installation efficiency of the partition 2.

[0034] Reference Figure 1 and Figure 2The connecting plate 3 on the first plate 21 is located on the side of the first plate 21 away from the second plate 22. The number of connecting plates 3 on the second plate 22 is greater than the number of connecting plates 3 on the first plate 21. In this embodiment, one connecting plate 3 is provided on one side of the first plate 21. Since the second plate 22 is close to the bottom wall of the receiving cavity 11, the material accumulated at the bottom exerts greater pressure on the partition 2. Two connecting plates 3 are provided on one side of the second plate 22, thereby effectively improving the stability of the partition 2 installed on the material tray body.

[0035] Example 2, refer to Figure 3 The partition 2 has a through slot 23 in the middle. The distance between two partitions 2 is the same as the length of the partition 2 itself. After the partition 2 is inserted into any partition 2 on the main body of the tray, the two chambers are divided into four chambers. When the partition 2 on the main body of the tray is disassembled, the connecting plate 3 has a certain probability of breaking. Due to the insertable design of the partition 2, the broken partition 2 can be used to further divide the chambers, which further reduces the cost of using the tray. Since the end of the inserted partition 2 away from the bottom of the tray is trapezoidal, it is easy for the operator to identify the parts placed in the internal chambers.

[0036] Reference Figure 4 and Figure 5 A limiting member 24 is provided between the partition 2 used for insertion and the partition 2 located on the main body 1 of the tray. The limiting member 24 fixes the position between the partitions 2, thereby ensuring the stability of the partitions 2 installed on the main body 1 of the tray. The limiting member 24 has three or four openings to adapt to different connection methods. The limiting member 24 is made of rubber. The rubber material of the limiting member 24 has good wear resistance and plasticity, which ensures the reliability of limiting the movement of the partitions 2 while effectively extending the service life of the limiting member 24.

[0037] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. An electronic tray for vertically lifting containers and electronic racks, comprising a tray body (1), wherein the tray body (1) is provided with a receiving cavity (11) for receiving materials, characterized in that, The main body (1) of the tray is provided with multiple partitions (2), which divide the receiving cavity (11) into multiple chambers. The multiple partitions (2) are arranged sequentially along the length of the main body (1). Each partition (2) includes a first plate (21) in a rectangular shape and a second plate (22) in a trapezoidal shape. The shape of the receiving cavity (11) is consistent with the shape of the partition (2). Both sides of the first plate (21) and the second plate (22) are provided with connecting plates (3). The main body (1) of the tray is provided with a through hole (31) for the connecting plate (3) to pass through.

2. The electronic tray for vertically lifting the electronic bins and electronic racks according to claim 1, wherein, The connecting plate (3) includes a connecting part (32) and a fixing part (33). The fixing part (33) is located between the partition plate (2) and the connecting part (32). The size of the fixing part (33) is larger than the size of the connecting part (32).

3. The electronic tray for vertically lifting the electronic bins and electronic racks according to claim 2, wherein, The fixed part (33) has a clearance slope (331) at the end away from the connecting part (32).

4. The electronic tray for vertically lifting the electronic bins and electronic racks according to claim 2, wherein, The connecting plate (3) on the first plate (21) is located on the side of the first plate (21) away from the second plate (22), and the number of connecting plates (3) on the second plate (22) is greater than the number of connecting plates (3) on the first plate (21).

5. The electronic tray for vertically lifting the electronic bins and electronic racks according to claim 4, wherein, The partition (2) has a through slot (23) in the middle. The distance between two partitions (2) is the same as the length of the partition (2). After the partition (2) is inserted into any one of the partitions (2) on the main body of the tray (1), the two chambers are divided into four chambers.

6. The electronic tray for vertically lifting the electronic bins and electronic racks according to claim 5, wherein, A limiting member (24) is provided between the partition (2) for insertion and the partition (2) located on the tray body (1).

7. The electronic tray for vertically lifting the electronic bins and electronic racks according to claim 6, wherein, The limiting component (24) is made of rubber.