Tray for intelligent three-dimensional storage of aluminum alloy profile extrusion die

By adopting an elastic partition design on the mold tray and utilizing the linkage mechanism of pressure protrusions and limit strips, the problem of automatic adjustment of mold weight limiting force is solved, realizing stable storage and convenient handling of molds, reducing manufacturing costs and extending service life.

CN223935238UActive Publication Date: 2026-02-24FUJIAN MINFA ALUMINUM
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Patent Information

Application Number
CN202520634880.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-07
Publication Date
2026-02-24
Estimated Expiration
2035-04-07

AI Technical Summary

Technical Problem

Existing mold pallets cannot automatically adjust the limiting force according to the weight of the mold, resulting in instability of the mold during storage.

Method used

It adopts a flexible partition design, including pressure-bearing protrusions and limiting strips. When pressure is applied, the limiting strips tighten to provide progressive rigid support. The limiting force is automatically adjusted according to the weight of the mold. Combined with the hollow structure of the flexible partition, it facilitates automated equipment handling and high-level storage.

Benefits of technology

This achieves stability of the mold on the pallet and facilitates handling by automated equipment, reducing manufacturing costs and extending service life.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of mold storage, provides an intelligent three-dimensional storage tray for an aluminum alloy section extrusion mold, and solves the problem that the limiting force cannot be automatically adjusted according to the weight of the mold due to design defects of the conventional mold tray. The tray comprises a tray main body, the side plates are arranged on two sides of the tray main body; the elastic partition plates are arranged between the side plates, each elastic partition plate comprises a pressed protrusion and limiting strips, the pressed protrusions and the limiting strips are of a hollow structure, the limiting strips are arranged on the two sides of the pressed protrusions, and when the pressed protrusions are pressed, the minimum distance between the limiting strips is shortened; through the linkage mechanism of the pressed protrusions and the limiting strips of the elastic partition plates, the limiting strips are tightened when pressed, the mold is prevented from shaking, progressive rigid support is provided when the mold is placed according to the deformation characteristics of the pressed protrusions and the limiting strips, and the limiting force on the mold can be automatically adjusted according to the weight of the mold.
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Description

Technical Field

[0001] This utility model relates to the field of mold storage technology, specifically to an intelligent three-dimensional storage pallet for aluminum alloy profile extrusion molds. Background Technology

[0002] The intelligent automated storage pallet for molds is a modular, stackable intelligent storage device specifically designed for industrial molds such as injection molds and die-casting molds. Combining automated storage structures with Internet of Things (IoT) technology, it enables efficient management, safe storage, and automated retrieval of molds.

[0003] Existing mold pallets restrict the placement of molds by setting grooves on the pallet, as shown in Chinese Patent Publication No. CN212125851U: A large warehouse injection mold placement rack includes a first support rod, two of which are arranged in parallel. The two first support rods are arranged between the two first support rods with equal and evenly distributed first connecting rods. Each of the two first support rods has a first vertical rod on a side away from each other. The first vertical rods are perpendicular to the first support rods. A top rod is set on one side of the top of the first vertical rod. The two top rods are arranged between the two second connecting rods with equal and evenly distributed second connecting rods. However, it cannot automatically adjust the restrictive force according to the weight of the mold. Utility Model Content

[0004] Therefore, in order to address the above problems, this utility model provides an intelligent three-dimensional storage pallet for aluminum alloy profile extrusion dies, which solves the problem that existing die pallets cannot automatically adjust the limiting force according to the weight of the die due to design defects.

[0005] To achieve the above objectives, this utility model is implemented through the following technical solution:

[0006] A smart three-dimensional storage pallet for aluminum alloy profile extrusion dies includes:

[0007] Pallet body;

[0008] Side panels are provided on both sides of the pallet body;

[0009] An elastic partition is disposed between each of the side plates. The elastic partition includes a pressure-bearing protrusion and a limiting strip, both of which are hollow structures. The limiting strip is disposed on both sides of the pressure-bearing protrusion. When the pressure-bearing protrusion is compressed, the minimum distance between each of the limiting strips is shortened.

[0010] Furthermore, the pressure-bearing protrusion is integrally formed with each of the limiting strips.

[0011] Furthermore, the elastic partition is provided with sliding strips on both the front and rear sides, and each of the support plates is provided with a sliding rail that cooperates with each of the sliding strips.

[0012] Furthermore, the pallet body is formed by splicing at least two pallet units horizontally or vertically, and each pallet unit is spliced ​​together by a connecting component, which includes a matching fixing block and a fixing groove.

[0013] Furthermore, the bottom of the tray body is provided with at least two support feet, and each support foot is provided with a slot.

[0014] Furthermore, the height of the pressure-bearing protrusion is less than the height of each of the limiting strips.

[0015] Furthermore, the cross-section of each of the limiting strips is curved.

[0016] Furthermore, the elastic partition is provided on the front and rear sides of the tray body.

[0017] Compared with the prior art, the beneficial effects of this utility model are:

[0018] This utility model utilizes a linkage mechanism between the pressure-bearing protrusions of the elastic partition and the limiting strip. When pressure is applied, the limiting strip tightens to prevent the mold from shaking. The deformation characteristics of the pressure-bearing protrusions and the limiting strip provide progressive rigid support when the mold is placed. The limiting force on the mold can be automatically adjusted according to the weight of the mold. The hollow structure of the elastic partition makes it lightweight and easy for automated equipment to handle and for storage on high-rise shelves. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the structure of an embodiment of the present utility model;

[0020] Figure 2 This is a schematic diagram of the elastic partition under pressure in an embodiment of the present invention;

[0021] Figure 3 This is a schematic diagram of a preferred embodiment of the present invention.

[0022] Explanation of icon numbers

[0023] Pallet body 1; Pallet unit 11;

[0024] Side panel 2; Sliding rail 21;

[0025] 3. Elastic partition; 31. Pressure-bearing protrusion; 32. Limiting strip; 33. Sliding strip;

[0026] Connecting component 4; fixing block 41; fixing groove 42;

[0027] Support foot 5; slot 51. Detailed Implementation

[0028] The following will describe the implementation of this utility model in detail with reference to specific embodiments, so that the process of how this utility model uses technical means to solve technical problems and achieve technical effects can be fully understood and implemented accordingly.

[0029] Example

[0030] like Figures 1 to 3 As shown, an intelligent three-dimensional storage pallet for aluminum alloy profile extrusion dies includes:

[0031] Pallet body 1;

[0032] Side panels 2 are provided on both sides of the tray body 1;

[0033] An elastic partition 3 is disposed between each of the side plates 2. The elastic partition 3 includes a pressure-bearing protrusion 31 and a limiting strip 32, both of which are hollow structures. The limiting strip 32 is disposed on both sides of the pressure-bearing protrusion 31. When the pressure-bearing protrusion 31 is compressed, the minimum distance between each of the limiting strips 32 is shortened.

[0034] Through the linkage mechanism of the pressure-bearing protrusion 31 and the limiting strip 32 of the elastic partition 3, the limiting strip 32 tightens when pressure is applied to prevent the mold from shaking. The deformation characteristics of the pressure-bearing protrusion 31 and the limiting strip 32 provide progressive rigid support when the mold is placed. The limiting force on the mold can be automatically adjusted according to the weight of the mold. The hollow structure of the elastic partition 3 is lightweight and easy to handle by automated equipment and stored on high-rise shelves.

[0035] The pressure-bearing protrusion 31 and each of the limiting strips 32 are integrally formed; the integrated structure can eliminate the separate assembly process, reduce the number of parts and welding process, reduce manufacturing costs, and the integrally formed structure avoids loosening or stress concentration at the joints, extends service life, and the overall deformation changes evenly when under pressure, ensuring that the limiting strips tighten synchronously and improving the dynamic adjustment accuracy.

[0036] The elastic partition 3 is provided with sliding strips 33 on both the front and rear sides, and each of the pallet bodies 1 is provided with a sliding rail 21 that cooperates with each of the sliding strips 33; the elastic partition 3 slides along the sliding rail 21 through the sliding strips 33 to reduce the shaking of the elastic partition 3 and ensure the stability of the mold placement.

[0037] In this embodiment, the pallet body 1 is formed by splicing two pallet units 11 horizontally or vertically. Each pallet unit 11 is spliced ​​together by a connecting component 4. The connecting component 4 includes a fixing block 41 and a fixing groove 42 that match each other. The fixing block 41 and the fixing groove 42 are respectively provided on both sides of a pallet unit 11 so as to cooperate with other pallet units 11 for splicing. By splicing multiple pallet units 11 horizontally / vertically, a warehousing system that adapts to different warehouse layouts can be quickly constructed. The modular design facilitates batch transportation and on-site assembly, shortening the project deployment cycle.

[0038] In other preferred embodiments, the pallet body 1 is formed from a pallet unit 11 for adapting to molds of different sizes.

[0039] The pallet body 1 has two support legs 5 at the bottom, and each support leg 5 has a slot 51. The slot 51 is compatible with standard forklift forks, which can directly pick up the pallet without additional equipment modification. After the forks are inserted into the slot 51, the risk of them coming off during transportation is avoided.

[0040] The height of the pressure-bearing protrusion 31 is less than the height of each of the limiting strips 32. At the same time, before the pressure-bearing protrusion 31 is compressed to its limit, the limiting strips have already begun to tighten, ensuring a smooth transition in mold stability.

[0041] In this embodiment, the cross-section of each limiting strip 32 is curved, which reduces local stress concentration and extends the service life of the limiting strip; in other preferred embodiments, the cross-section of each limiting strip 32 is square.

[0042] The elastic partition 3 is located on the front and rear sides of the pallet body 1. By tightening the front and rear elastic partitions 3 simultaneously, a constraint force is applied from both sides of the mold to prevent lateral displacement of the mold. At the same time, the material used for the elastic partition 3 can be reduced, thus reducing the weight of the component.

[0043] Although the present invention has been specifically shown and described in conjunction with preferred embodiments, those skilled in the art should understand that various changes in form and detail may be made to the present invention without departing from the spirit and scope of the present invention as defined in the appended claims, and all such changes shall be within the scope of protection of the present invention.

Claims

1. A smart three-dimensional storage pallet for aluminum alloy profile extrusion dies, characterized in that, include: Pallet body; Side panels are provided on both sides of the pallet body; An elastic partition is disposed between each of the side plates. The elastic partition includes a pressure-bearing protrusion and a limiting strip, both of which are hollow structures. The limiting strip is disposed on both sides of the pressure-bearing protrusion. When the pressure-bearing protrusion is compressed, the minimum distance between each of the limiting strips is shortened.

2. The intelligent three-dimensional storage pallet for aluminum alloy profile extrusion dies according to claim 1, characterized in that... The pressure-bearing protrusion is integrally formed with each of the limiting strips.

3. The intelligent three-dimensional storage pallet for aluminum alloy profile extrusion dies according to claim 1, characterized in that... The elastic partition is provided with sliding strips on both the front and rear sides, and each of the tray bodies is provided with sliding rails that cooperate with the sliding strips.

4. The intelligent three-dimensional storage pallet for aluminum alloy profile extrusion dies according to claim 1, characterized in that... The pallet body is formed by splicing at least two pallet units horizontally or vertically. Each pallet unit is spliced ​​together by a connecting component, which includes a matching fixing block and a fixing groove.

5. The intelligent three-dimensional storage pallet for aluminum alloy profile extrusion dies according to claim 1, characterized in that... The bottom of the tray body is provided with at least two support feet, and each support foot is provided with a slot.

6. The intelligent three-dimensional storage pallet for aluminum alloy profile extrusion dies according to claim 1, characterized in that... The height of the pressure-bearing protrusion is less than the height of each of the limiting strips.

7. The intelligent three-dimensional storage pallet for aluminum alloy profile extrusion dies according to claim 1, characterized in that... The cross-section of each limiting strip is curved.

8. The intelligent three-dimensional storage pallet for aluminum alloy profile extrusion dies according to claim 1, characterized in that... The elastic partition is located on the front and rear sides of the tray body.

Citation Information

Patent Citations

  • Large-scale storage injection mold placing rack

    CN212125851U