Feeding device for the production of inductors

By designing guide plates and storage boxes, combined with limiting blocks and placement slots, the problems of material displacement and classified storage in inductor production are solved, achieving stable conveying and rapid retrieval, and improving production efficiency and equipment versatility.

CN224466691UActive Publication Date: 2026-07-07DONGGUAN LIANCHENG ELECTRONIC TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
DONGGUAN LIANCHENG ELECTRONIC TECH CO LTD
Filing Date
2025-06-30
Publication Date
2026-07-07

AI Technical Summary

Technical Problem

Existing inductor production equipment has weak material storage capabilities and lacks limiting measures, leading to material displacement and tipping, which affects production efficiency and equipment versatility.

Method used

A feeding device including a guide plate, a storage box and a limiting mechanism was designed. It utilizes gravity sliding conveying, combined with limiting blocks and placement slots to achieve stable material conveying and classified storage. Through the cooperation of electric telescopic rods and baffles, it realizes automated adjustment and rapid retrieval of materials.

Benefits of technology

It improves the stability and efficiency of material conveying, reduces damage and loss of parts, and enhances the versatility and production flexibility of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a kind of feeding devices for inductor production, including bottom plate, the bottom plate right side integrally formed has downwardly inclined guide plate, the guide plate side is equipped with conveyor belt, the bottom plate inside is provided with receiving mechanism, the receiving mechanism includes receiving box, receiving box left side swing installation has box door, the box door is installed with a set of limiting mechanism on receiving box upper end, the box door is fixedly installed in receiving box left side by limiting mechanism, and the receiving box front and rear two sides inner wall are all connected with multiple sets of limiting block correspondingly, the limiting block upper end of each group is all provided with placing plate, the placing plate upper end surface is equipped with multiple placing grooves. The utility model solves the weak material receiving function of device, it is difficult to realize the classified storage and quick access of material, when different specifications inductor needs to be switched production, material cannot be quickly arranged and replaced, reduce the versatility and production flexibility problem of equipment.
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Description

Technical Field

[0001] This utility model belongs to the field of inductor manufacturing technology, and in particular relates to a feeding device for inductor manufacturing. Background Technology

[0002] In the field of electronic component manufacturing, inductors, as core components in circuits that convert electrical energy into magnetic energy, play a crucial role in the performance of electronic products due to their production efficiency and quality. The material feeding process, as a fundamental and vital link in the automated production process of inductors, directly impacts overall production efficiency and product consistency.

[0003] However, existing technologies have some problems: the material storage function of existing devices is weak, and they mostly use open pallets or simple boxes to store materials to be processed. On the one hand, there is a lack of effective limiting measures, and materials are prone to displacement and tipping during storage and transportation, resulting in damage or loss of parts; on the other hand, it is difficult to achieve classified storage and quick retrieval of materials. When it is necessary to switch to producing inductors of different specifications, it is impossible to quickly organize and replace materials, which reduces the versatility of the equipment and production flexibility. Utility Model Content

[0004] To address the problems existing in the aforementioned technologies, this utility model provides a feeding device for inductor production, solving the problem of weak material storage function in such devices, which often use open trays or simple boxes to store materials to be processed. On the one hand, the lack of effective limiting measures makes it easy for materials to shift or tip over during storage and transportation, leading to damage or loss of parts; on the other hand, it is difficult to achieve classified storage and rapid retrieval of materials. When it is necessary to switch to producing inductors of different specifications, it is impossible to quickly organize and change materials, resulting in problems with the equipment's versatility and production flexibility.

[0005] This utility model is implemented as follows: a feeding device for inductor production includes a base plate, a downwardly inclined guide plate integrally formed on the right side of the base plate, a conveyor belt on one side of the guide plate, a storage mechanism inside the base plate, the storage mechanism including a storage box, a box door movably installed on the left side of the storage box, a set of limiting mechanisms installed on the box door and the upper end of the storage box, the box door being fixedly installed on the left side of the storage box by the limiting mechanisms, and multiple sets of limiting blocks correspondingly connected to the inner walls of the front and rear sides of the storage box, each set of limiting blocks having a placement plate at its upper end, and multiple placement slots on the upper surface of the placement plate.

[0006] As a preferred embodiment of the present invention, the lower outer wall of the guide plate is provided with a second groove, and the front and rear outer walls of the guide plate are provided with a first groove, and the first groove and the second groove are interconnected.

[0007] As a preferred embodiment of the present invention, a baffle is provided inside the second groove. The baffle extends through the second groove and the first groove into the guide plate and contacts the storage box. A fixing block is integrally formed in the middle of the front and rear sides of the baffle. The fixing block contacts the outer wall of the guide plate, and the cross-section of the fixing block and the baffle is arranged in a cross shape.

[0008] As a preferred embodiment of this utility model, a set of mounting seats is fixedly installed on the upper outer wall of the guide plate, and an electric telescopic rod is fixedly connected to the upper end of the mounting seat. The electric telescopic rod passes through the mounting seat and is fixedly connected to the fixing block.

[0009] As a preferred embodiment of this utility model, the limiting mechanism includes a positioning block fixedly connected to the upper outer wall of the storage box, and a set of connecting ears fixedly connected to the upper outer wall of the box door. A positioning plate is provided between the connecting ears, and a hinge shaft is fixedly connected to the side of the positioning plate near the connecting ear. The two ends of the hinge shaft pass through the connecting ear, and a through groove is provided through the outer wall of the positioning plate. The positioning plate is limitedly connected to the positioning block through the through groove.

[0010] As a preferred embodiment of this utility model, a buckle is fixedly connected to the outer wall of the left side of the storage box. The buckle is integrally molded from silicone rubber material, and an opening is provided at the upper end of the buckle.

[0011] As a preferred embodiment of this utility model, the lower end of the door is integrally formed with a set of fixing ears, and a fixing shaft is connected between the fixing ears. The fixing shaft is connected to the inside of the buckle through an opening.

[0012] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0013] 1. This utility model utilizes the principle of gravity to achieve automatic material sliding and conveying through an integrated structure with a downward-sloping guide plate, eliminating the need for additional power and reducing energy consumption; it also ensures that inductor components maintain a stable posture during conveying, reducing flipping and stacking phenomena and improving conveying efficiency.

[0014] 2. This utility model forms a multi-level classified storage structure through the cooperation of the storage mechanism, limiting blocks, and placement plates. Each set of limiting blocks horizontally limits the placement plates to ensure accurate positioning of the placement plates in the storage box and prevent materials from shifting due to vibration. The placement slots are customized according to the shape of the inductor (such as circular or rectangular slots) to realize the partitioned storage of parts of different specifications and improve the efficiency of retrieval and placement. Attached Figure Description

[0015] Figure 1 This is a structural schematic diagram provided by an embodiment of the present utility model;

[0016] Figure 2 This is a cross-sectional schematic diagram of the guide plate and placement plate provided in an embodiment of this utility model;

[0017] Figure 3 This is a three-dimensional schematic diagram of the baffle provided in an embodiment of the present utility model;

[0018] Figure 4 This is a schematic diagram of the installation of the box door and storage box provided in this embodiment of the utility model;

[0019] Figure 5 This is provided by the embodiment of the present utility model. Figure 4 Enlarged diagram of area b in the middle;

[0020] Figure 6 This is provided by the embodiment of the present utility model. Figure 1 Enlarged schematic diagram of area a in the middle.

[0021] In the diagram: 1. Storage mechanism; 2. Limiting mechanism; 3. Base plate; 4. Guide plate; 5. Conveyor belt; 6. Baffle; 11. Storage box; 12. Box door; 13. Placement plate; 111. Limiting block; 112. Buckle seat; 121. Fixing ear; 122. Fixing shaft; 131. Placement groove; 1121. Opening; 21. Positioning block; 22. Positioning plate; 23. Connecting ear; 221. Hinge shaft; 222. Through groove; 31. Mounting base; 32. Electric telescopic rod; 41. First pull groove; 42. Second pull groove; 61. Fixing block. Detailed Implementation

[0022] To further understand the utility model content, features and effects of this utility model, the following embodiments are provided, and detailed descriptions are given in conjunction with the accompanying drawings.

[0023] The structure of this utility model will now be described in detail with reference to the accompanying drawings.

[0024] Example 1:

[0025] like Figure 1As shown in the figure, a feeding device for inductor production provided by this utility model embodiment includes a base plate 3. A downwardly inclined guide plate 4 is integrally formed on the right side of the base plate 3. A conveyor belt 5 is provided on one side of the guide plate 4. A storage mechanism 1 is provided inside the base plate 3. The storage mechanism 1 includes a storage box 11. A box door 12 is movably installed on the left side of the storage box 11. A set of limiting mechanisms 2 are installed on the upper end of the box door 12 and the storage box 11. The box door 12 is fixedly installed on the left side of the storage box 11 through the limiting mechanisms 2. Multiple sets of limiting blocks 111 are correspondingly connected to the inner walls of the front and rear sides of the storage box 11. A placement plate 13 is provided on the upper end of each set of limiting blocks 111. The upper surface of the placement plate 13 is provided with... There are multiple placement slots 131; through the integrated structure of the guide plate 4 tilting downwards, the material is automatically conveyed by gravity, without the need for additional power drive, thus reducing energy consumption; the inductor components maintain a stable posture during the conveying process, reducing flipping and stacking, and improving conveying efficiency; the storage mechanism 1 forms a multi-level classified storage structure through the cooperation of the limiting block 111 and the placement plate 13, each set of limiting blocks 111 horizontally limits the placement plate 13, ensuring that the placement plate 13 is accurately positioned in the storage box 11 and preventing the material from shifting due to vibration; the placement slots 131 are customized according to the shape of the inductor (such as circular or rectangular slots) to realize the partitioned storage of components of different specifications, improving the retrieval and placement efficiency.

[0026] like Figures 2 to 3 As shown, a second groove 42 is provided through the lower outer wall of the guide plate 4, and a first groove 41 is provided through the front and rear outer walls of the guide plate 4. The first groove 41 and the second groove 42 are interconnected. A baffle 6 is provided inside the second groove 42. The baffle 6 extends into the guide plate 4 through the second groove 42 and the first groove 41 and contacts the storage box 11. A fixing block 61 is integrally formed in the middle of the front and rear sides of the baffle 6. The fixing block 61 contacts the outer wall of the guide plate 4. Furthermore, the fixed block 61 and the baffle 6 are arranged in a cross shape in cross section; the interconnected structure of the first groove 41 and the second groove 42, together with the baffle 6 with a cross-shaped cross section, drives the baffle 6 to slide along the groove through the electric telescopic rod 32, so that the baffle 6 can extend into the guide plate 4 to limit the storage box 11, which is convenient for the storage box 11 to place the inductor. The electric telescopic rod 32 drives the baffle 6 to move downward, which, together with the inclined surface of the guide plate 4, enables the storage box 11 to slide onto the conveyor belt 5 for convenient transportation.

[0027] like Figure 1 As shown, a set of mounting seats 31 are fixedly installed on the upper outer wall of the guide plate 4. An electric telescopic rod 32 is fixedly connected to the upper end of the mounting seat 31. The electric telescopic rod 32 passes through the mounting seat 31 and is fixedly connected to the fixing block 61. The rigid connection structure between the mounting seat 31 and the electric telescopic rod 32 realizes the automatic adjustment of the baffle 6.

[0028] like Figure 4 and Figure 6 As shown, the limiting mechanism 2 includes a positioning block 21 fixedly connected to the upper outer wall of the storage box 11, and a set of connecting ears 23 fixedly connected to the upper outer wall of the box door 12. A positioning plate 22 is provided between the connecting ears 23. A hinge shaft 221 is fixedly connected to the side of the positioning plate 22 near the connecting ears 23. The two ends of the hinge shaft 221 pass through the connecting ears 23. A through groove 222 is provided through the outer wall of the positioning plate 22. The positioning plate 22 is limitedly connected to the positioning block 21 through the through groove 222. The cooperation between the positioning block 21 and the through groove 222 forms a mechanical limiting pair. When the box door 12 is closed, the positioning plate 22 rotates and presses down through the hinge shaft 221, so that the through groove 222 and the positioning block 21 are completely engaged, thereby realizing the vertical limiting of the box door 12 and preventing the materials inside the storage box 11 from falling due to vibration.

[0029] like Figure 5 As shown, a buckle 112 is fixedly connected to the outer left side of the storage box 11. The buckle 112 is integrally molded from silicone rubber, and an opening 1121 is provided at the upper end of the buckle 112. A set of fixing ears 121 is integrally molded at the lower end of the box door 12. A fixing shaft 122 is connected between the fixing ears 121. The fixing shaft 122 is connected to the inside of the buckle 112 through the opening 1121. The elastic clamping structure of the silicone rubber buckle 112 forms a horizontal anti-detachment constraint through the interference fit between the fixing shaft 122 and the opening 1121. The silicone rubber material provides a clamping force of 5-8N, which can ensure the sealing of the box door 12 when closed, and can also be quickly opened by manual force, taking into account both the convenience of operation and the safety of storage.

[0030] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0031] 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 which is defined by the appended claims and their equivalents.

Claims

1. A feeding device for inductor production, comprising a base plate (3), characterized in that: The bottom plate (3) has a downwardly inclined guide plate (4) integrally formed on the right side. A conveyor belt (5) is provided on one side of the guide plate (4). A storage mechanism (1) is provided inside the bottom plate (3). The storage mechanism (1) includes a storage box (11). A box door (12) is movably installed on the left side of the storage box (11). A set of limiting mechanisms (2) is installed on the upper end of the box door (12) and the storage box (11). The box door (12) is fixedly installed on the left side of the storage box (11) through the limiting mechanism (2). Multiple sets of limiting blocks (111) are connected to the inner walls of the front and rear sides of the storage box (11). A placement plate (13) is provided on the upper end of each set of limiting blocks (111). Multiple placement slots (131) are provided on the upper surface of the placement plate (13).

2. The feeding device for inductor production as described in claim 1, characterized in that: The guide plate (4) has a second groove (42) through its lower outer wall, and the guide plate (4) has a first groove (41) through its front and rear outer walls. The first groove (41) and the second groove (42) are interconnected.

3. The feeding device for inductor production as described in claim 2, characterized in that: The second groove (42) is provided with a baffle (6). The baffle (6) extends through the second groove (42) and the first groove (41) and into the guide plate (4) to contact the storage box (11). The baffle (6) has a fixing block (61) integrally formed in the middle of the front and rear sides. The fixing block (61) contacts the outer wall of the guide plate (4), and the cross-section of the fixing block (61) and the baffle (6) is arranged in a cross shape.

4. The feeding device for inductor production as described in claim 3, characterized in that: A set of mounting seats (31) is fixedly installed on the upper outer wall of the guide plate (4). An electric telescopic rod (32) is fixedly connected to the upper end of the mounting seat (31). The electric telescopic rod (32) passes through the mounting seat (31) and is fixedly connected to the fixing block (61).

5. The feeding device for inductor production as described in claim 1, characterized in that: The limiting mechanism (2) includes a positioning block (21) fixedly connected to the upper outer wall of the storage box (11) and a set of connecting ears (23) fixedly connected to the upper outer wall of the box door (12). A positioning plate (22) is provided between the connecting ears (23). A hinge shaft (221) is fixedly connected to the side of the positioning plate (22) near the connecting ears (23). The two ends of the hinge shaft (221) pass through the connecting ears (23). A through groove (222) is provided through the outer wall of the positioning plate (22). The positioning plate (22) is limited and connected to the positioning block (21) through the through groove (222).

6. The feeding device for inductor production as described in claim 1, characterized in that: The storage box (11) has a fastener (112) fixedly connected to the outer wall of the left side. The fastener (112) is made of silicone rubber and is integrally molded. An opening (1121) is provided at the upper end of the fastener (112).

7. A feeding device for inductor production as described in claim 6, characterized in that: The lower end of the door (12) is integrally formed with a set of fixing ears (121), and a fixing shaft (122) is connected between the fixing ears (121). The fixing shaft (122) is connected to the inside of the buckle (112) through the opening (1121).