High-performance array magnet placing tray

By designing a high-performance array magnet placement tray, using the coordination of push rods and push plates and the design of automatic opening and closing end plates, the problems of attraction and incongruence during magnet storage and transportation are solved, and efficient magnet management and convenience of automated production are achieved.

CN222906182UActive Publication Date: 2025-05-27JINGZE AUTOMATION TECH (SUZHOU) CO LTD
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Patent Information

Application Number
CN202421999807.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-19
Publication Date
2025-05-27
Estimated Expiration
2034-08-19

AI Technical Summary

Technical Problem

The existing magnet placement methods are prone to attraction and irregular arrangement between magnets during storage and transportation, resulting in inconvenience in management and use, and are not conducive to automated production and processing.

Method used

A high-performance array magnet placing tray is designed, including a base, a bracket and a magnet. By opening a storage groove and groove in the base, the automatic pushing of the bracket and the end plate are achieved by using the cooperation of the push rod and the push plate to achieve automatic pushing of the bracket and automatic opening and closing of the end plate, ensuring the stable and convenient operation of the magnet.

Benefits of technology

It improves the storage space utilization of magnets, ensures the stability and neat arrangement of magnets, is easy to manage and quickly access, and is suitable for automated production and processing needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of high-performance array magnet processing, in particular to a high-performance array magnet placing tray. According to the technical scheme, the high-performance array magnet placing tray comprises a base, a bracket is placed in the base, magnets are placed in the bracket, a containing groove is formed in the base, a groove is formed in the end, located at the containing groove, of the interior of the base, a push rod is inserted in the position, located at the groove, of the base in a penetrating mode, and the push rod is arranged in the containing groove. A push plate is welded to the end, located in the storage groove, of the push rod. A limiting groove is formed in the end, away from the groove, of the base, an end plate is movably installed on the base through the limiting groove, and a check block is arranged at the top end of the end plate and located on the center line of the end plate. According to the magnet placing device, magnets can be placed in order, management and use are convenient, and production efficiency and automation level can be improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of high-performance array magnet processing, in particular to a high-performance array magnet placement tray. Background Art

[0002] Magnets need to be stored during the production process. After searching, the Chinese patent announcement number CN213650800U discloses a material tray for AGV transportation. Although the device presses the material by setting a slider on the tray body to ensure the stability of the material and prevent the material from sliding off the tray body, the device is only used for easily separable materials. When used to place magnets, the magnets are easily attracted to each other, making it difficult to access the magnets. Secondly, the existing placement method may not be neat enough and is not easy to manage and use. In addition, this method is not conducive to automated production and processing. Utility Model Content

[0003] In view of the deficiencies of the prior art, the utility model provides a high-performance array magnet placement tray, which solves the problems raised in the background technology.

[0004] The utility model solves the above-mentioned technical problems as follows:

[0005] A high-performance array magnet placement tray comprises a base, a bracket is placed in the base, and a magnet is placed in the bracket;

[0006] A storage slot is provided in the base, a groove is provided at one end of the base located in the storage slot, a push rod is inserted through the base located in the groove, and a push plate is welded to one end of the push rod located in the storage slot;

[0007] A limiting groove is provided at one end of the base away from the groove, and an end plate is movably mounted on the base through the limiting groove. A stopper is provided on the top of the end plate, and the stopper is located on the center line of the end plate.

[0008] On the basis of the above technical solution, the present invention can also be improved as follows.

[0009] Furthermore, a protrusion is provided on the end plate, and the end plate is installed at the limiting groove of the base through the protrusion.

[0010] The beneficial effects of adopting the above further scheme are:

[0011] The cooperation between the protrusion and the limiting groove can ensure that the position of the end plate on the base is fixed, preventing the end plate from shaking or shifting during operation, thereby ensuring the stability of the entire tray structure.

[0012] Furthermore, the base and the end plate are rotationally connected via a torsion spring shaft.

[0013] The beneficial effects of adopting the above further scheme are:

[0014] The design of the torsion spring shaft allows the end plate to automatically flip open when subjected to external force (such as when the bracket is pushed out), and automatically reset and close when the external force disappears. This automatic reset function improves the convenience of operation, and the end plate can be opened and closed without manual operation. Compared with designs that require manual operation or additional drive devices, the torsion spring shaft rotation connection reduces the number of operating steps and improves work efficiency.

[0015] Furthermore, the magnets are evenly arranged and placed in the bracket, and the brackets are evenly arranged and placed in the base.

[0016] The beneficial effects of adopting the above further scheme are:

[0017] By evenly arranging the magnets in the brackets, and then evenly arranging the brackets in the base, this hierarchical structure effectively utilizes the space inside the pallet, allowing more magnets to be stored in a limited space. This design improves space utilization, making the pallet more compact and efficient. And the evenly arranged magnets and brackets help maintain the overall balance and stability of the pallet. When the pallet is subjected to external forces during transportation or storage, the evenly distributed magnets and brackets can jointly resist the external forces, reduce the risk of shaking and tilting, and thus protect the magnets from damage.

[0018] Furthermore, the push plate is provided with three push rods, which are evenly spaced and arranged on the push plate.

[0019] The beneficial effects of adopting the above further scheme are:

[0020] The three push rods are arranged equidistantly on the push plate to ensure that the force from the push rods is evenly distributed when the bracket is pushed. This uniform force helps reduce the deflection or shaking of the bracket during movement and improves the overall stability of the pallet.

[0021] Furthermore, the push plate is adapted to the size of the groove, and when the magnet is transported, the push plate is received in the groove.

[0022] The beneficial effects of adopting the above further scheme are:

[0023] When the push plate fits the size of the groove and can be stored in the groove when not in use, this design greatly saves the space of the pallet. It avoids the push plate taking up extra space inside the pallet, making the pallet more compact and efficient when stored.

[0024] Furthermore, the bracket with the magnet placed in the storage groove is pushed out by the push rod and the push plate.

[0025] The beneficial effects of adopting the above further scheme are:

[0026] Through the cooperation of the push rod and the push plate, the user can easily push the bracket out of the storage slot without manually grabbing or carrying the bracket. This design greatly improves the convenience of operation, reduces labor intensity, and improves work efficiency. And using the push rod and the push plate to push the bracket out can ensure the stability of the bracket during operation, preventing the risk of the bracket tilting, falling or being damaged due to improper manual operation.

[0027] The utility model provides a high-performance array magnet placement tray, which has the following beneficial effects:

[0028] By providing a storage slot in the base, multiple brackets and magnets can be compactly stored, effectively improving space utilization, so that more magnets can be stored in a limited space, facilitating centralized management and quick access.

[0029] The design of the push rod and push plate can easily push the bracket out of the storage slot, and the flip-open function of the end plate allows the user to easily pull out the bracket and magnet horizontally. The whole process is smooth and labor-saving.

[0030] The bracket is restricted at the end plate by the protrusion, which ensures the stability of the bracket during movement, prevents the bracket from shaking or tipping over during the sliding process, and ensures the safety of the magnet. At the same time, the base and the end plate are connected by a torsion spring shaft, which increases the flexibility and durability of the structure.

[0031] The above description is only an overview of the technical solution of the utility model. In order to more clearly understand the technical means of the utility model and implement it according to the contents of the specification, the following is a detailed description of the preferred embodiment of the utility model with the accompanying drawings. The specific implementation method of the utility model is given in detail by the following embodiments and their drawings. BRIEF DESCRIPTION OF THE DRAWINGS

[0032] The drawings described herein are used to provide a further understanding of the present invention and constitute a part of the present application. The illustrative embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an improper limitation on the present invention.

[0033] In the attached picture:

[0034] Figure 1 This is a schematic diagram of the axial side appearance of the utility model;

[0035] Figure 2 This is a schematic diagram of the right axial side appearance of the push-out shape of the utility model;

[0036] Figure 3 This is a schematic diagram of the left axial side appearance of the push-out shape of the utility model;

[0037] Figure 4 It is a schematic diagram of the axial side appearance of the base of the utility model.

[0038] In the accompanying drawings, the components represented by the reference numerals are listed as follows:

[0039] 1. Push rod; 2. Bracket; 3. Base; 4. Magnet; 5. End plate; 6. Stopper; 7. Torsion spring shaft; 8. Groove; 9. Storage slot; 10. Push plate; 11. Limiting slot; 12. Bump. DETAILED DESCRIPTION

[0040] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.

[0041] See also Figures 1 to 4 As shown, the embodiments provided by the utility model:

[0042] Embodiment 1

[0043] A high-performance array magnet placement tray includes a base 3, a bracket 2 is placed in the base 3, a magnet 4 is placed in the bracket 2, the magnet 4 is evenly arranged and placed in the bracket 2, and the bracket 2 is evenly arranged and placed in the base 3. By evenly arranging the magnet 4 in the bracket 2 and then evenly arranging the bracket 2 in the base 3, this hierarchical structure effectively utilizes the space inside the tray, so that more magnets 4 can be stored in a limited space. This design improves space utilization and makes the tray more compact and efficient. And the evenly arranged magnets 4 and bracket 2 help to maintain the overall balance and stability of the tray. When the tray is subjected to external force during transportation or storage, the evenly distributed magnets 4 and bracket 2 can jointly resist the external force, reduce the risk of shaking and tilting, and thus protect the magnet 4 from damage.

[0044] Embodiment 2

[0045] like Figures 1 to 4As shown, the utility model proposes a high-performance array magnet placement tray. Compared with the first embodiment, the present embodiment further includes: a storage slot 9 is provided in the base 3, a groove 8 is provided at one end of the storage slot 9 in the base 3, a push rod 1 is inserted through the base 3 at the groove 8, and a push plate 10 is welded at one end of the push rod 1 located in the storage slot 9, and the bracket 2 with the magnet 4 placed in the storage slot 9 is pushed out by the push rod 1 and the push plate 10, at this time, the bracket 2 pushes the end plate 5 to flip it open, and then the bracket 2 moves to the end plate 5, and the position of the bracket 2 is limited by the protrusion 12, and then the user will pull the bracket 2 with the magnet 4 placed horizontally from the end plate 5, at this time, the subsequent bracket 2 with the magnet 4 placed will continue to remain in the storage slot 9 due to the obstruction of the side wall of the base 3, and through the cooperation of the push rod 1 and the push plate 10, the user can easily push the bracket 2 to slide out of the storage slot 9 without manually grabbing or carrying the bracket 2. This design greatly improves the convenience of operation, reduces labor intensity, and improves work efficiency. And using the push rod 1 and the push plate 10 to push out the bracket 2 can ensure the stability of the bracket 2 during operation, and prevent the risk of the bracket 2 being tilted, dropped or damaged due to improper manual operation. The push plate 10 is adapted to the size of the groove 8. When the magnet 4 is transported, the push plate 10 is stored in the groove 8. When the push plate 10 is adapted to the size of the groove 8, and the push plate 10 can be stored in the groove 8 when not in use, this design greatly saves the space of the tray. It avoids the push plate 10 from occupying additional space inside the tray, making the tray more compact and efficient when stored. There are three push rods 1 on the push plate 10, and the push rods 1 are evenly arranged on the push plate 10. The three push rods 1 are evenly arranged on the push plate 10, which can ensure that when the bracket 2 is pushed, the force from the push rods 1 on the bracket 2 is evenly distributed. This uniform force helps to reduce the deflection or shaking of the bracket 2 during the movement and improve the overall stability of the tray.

[0046] Embodiment 3

[0047] like Figures 1 to 4As shown, the utility model proposes a high-performance array magnet placement tray. Compared with the first embodiment, this embodiment also includes: a limiting groove 11 is provided at one end of the base 3 away from the groove 8, and the base 3 is movably mounted with an end plate 5 through the limiting groove 11. A protrusion 12 is provided on the end plate 5, and the end plate 5 is mounted at the limiting groove 11 of the base 3 through the protrusion 12. The cooperation between the protrusion 12 and the limiting groove 11 can ensure that the position of the end plate 5 on the base 3 is fixed, and the end plate 5 is prevented from shaking or shifting during operation, thereby ensuring the stability of the entire tray structure. The base 3 and the end plate 5 are rotatably connected through the torsion spring shaft 7. The design of the torsion spring shaft 7 enables the end plate 5 to automatically flip open when subjected to external force (such as when the bracket 2 is pushed out), and automatically reset and close after the external force disappears. This automatic reset function improves the convenience of operation, and the opening and closing of the end plate 5 can be achieved without manual operation. Compared with the design requiring manual operation or an additional driving device, the rotation connection of the torsion spring shaft 7 reduces the operating steps and improves work efficiency. A stop block 6 is provided at the top of the end plate 5 and the stop block 6 is located on the center line of the end plate 5.

[0048] Working principle:

[0049] When storing magnets 4, magnets 4 are evenly arranged in brackets 2, and brackets 2 are evenly arranged in receiving grooves 9 of base 3. At this time, push plate 10 is located in groove 8, does not occupy extra space, maintains the overall compactness of the tray, and end plate 5 is kept closed under the action of torsion spring shaft 7 to prevent bracket 2 from accidentally sliding out.

[0050] When taking out the magnet 4, push the push rod 1 to make the push plate 10 slide in the storage groove 9, pushing the bracket 2 to move toward the end plate 5. The bracket 2 pushes the end plate 5 to flip open, providing space for the bracket 2 to slide out further. When the first bracket 2 moves to the end plate 5, its position is limited by the protrusion 12 to prevent it from continuing to slide forward. The user can horizontally pull out the bracket 2 with the magnet 4 from the end plate 5 for subsequent transportation or use. When the first bracket 2 is pulled out, the subsequent bracket 2 will continue to remain in the storage groove 9 due to the obstruction of the side wall of the base 3. At the same time, the end plate 5 is automatically closed under the action of the torsion spring shaft 7 to restore the storage state of the tray.

[0051] The above shows and describes the basic principles and main features of the utility model and the advantages of the utility model. For those skilled in the art, it is obvious that the utility model is not limited to the details of the above exemplary embodiments, and can be implemented in other specific forms without departing from the spirit or basic features of the utility model. Therefore, no matter from which point of view, the embodiments should be regarded as exemplary and non-restrictive. The scope of the utility model is defined by the attached claims rather than the above description, and it is intended to include all changes within the meaning and scope of the equivalent elements of the claims. Any figure mark in the claims should not be regarded as limiting the claims involved.

[0052] In addition, it should be understood that although the present specification is described according to implementation modes, not every implementation mode contains only one independent technical solution. This description of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment may also be appropriately combined to form other implementation modes that can be understood by those skilled in the art.

Claims

1. A high-performance array magnet placement tray, comprising a base (3), a bracket (2) placed in the base (3), a magnet (4) placed in the bracket (2), characterized in that: The base (3) is provided with a storage groove (9), and a groove (8) is provided at one end of the base (3) located in the storage groove (9). A push rod (1) is inserted through the groove (8) of the base (3), and a push plate (10) is welded to one end of the push rod (1) located in the storage groove (9); A limiting groove (11) is provided at one end of the base (3) away from the groove (8); an end plate (5) is movably mounted on the base (3) via the limiting groove (11); a stopper (6) is provided at the top end of the end plate (5); and the stopper (6) is located on the center line of the end plate (5).

2. According to claim 1, a high-performance array magnet placement tray is characterized by: The end plate (5) is provided with a protrusion (12), and the end plate (5) is installed at the limiting groove (11) of the base (3) through the protrusion (12).

3. According to claim 2, a high-performance array magnet placement tray is characterized by: The base (3) and the end plate (5) are rotationally connected via a torsion spring shaft (7).

4. According to claim 1, a high-performance array magnet placement tray is characterized by: The magnets (4) are evenly arranged and placed in the bracket (2), and the bracket (2) is evenly arranged and placed in the base (3).

5. According to claim 1, a high-performance array magnet placement tray is characterized by: A total of three push rods (1) are arranged on the push plate (10), and the push rods (1) are arranged at equal distances on the push plate (10).

6. A high performance array magnet placement tray according to claim 5, characterized in that: The push plate (10) is matched to the size of the groove (8), and when the magnet (4) is transported, the push plate (10) is received in the groove (8).

7. The high-performance array magnet placement tray according to claim 1, characterized in that: The bracket (2) with the magnet (4) placed in the storage groove (9) is pushed out by the push rod (1) and the push plate (10).

Citation Information

Patent Citations

  • Material tray for AGV transportation

    CN213650800U