A discharging structure of a seafood packaging device

CN224603410UActive Publication Date: 2026-08-07MUTUAL FOODS (DALIAN) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
MUTUAL FOODS (DALIAN) CO LTD
Filing Date
2025-07-21
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

[0003]本实用新型要解决的技术问题是:现有技术中存在人工下料需配合封装设备的节奏逐件操作,难以跟上自动化封装的高速运转,极易造成生产流程中断,大幅降低整体生产线的产能的缺点,为此我们提出一种海产品封装设备的下料结构

Benefits of technology

本实用新型中,封装好的海产品继续由输送主体输送,最终被送至收料箱内,此时承装板的斜面结构发挥着关键作用,当封装后的海产品落到承装板上时,会顺着斜面自动滑动,实现有序排列收纳,避免了人工整理的繁琐,保证了海产品在收料箱内的整齐性,为后续的仓储、运输等环节提供了便利,解决了现有用于海产品的自动封装设备在完成封装后,通常依赖人工进行下料,人工下料需配合封装设备的节奏逐件操作,难以跟上自动化封装的高速运转,极易造成生产流程中断,大幅降低整体生产线的产能的问题。

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Abstract

The utility model relates to aquatic product processing technical field discloses a discharging structure of aquatic product packaging equipment, including the packaging body, the upper wall of packaging body is equipped with the conveying main body and the packaging processing main body, the inside of packaging processing main body is provided with the processing area, and the conveying main body is penetrated in processing area, and one end of packaging body is provided with the material collecting box, the height of material collecting box is lower than the conveying main body, and the conveying terminal of conveying main body is at the opening of material collecting box, the inner wall of material collecting box is provided with the upper wall of the bearing plate and is inclined plane structure, and the upper wall of the side of bearing plate far from conveying main body is the lowest place of inclined plane, and the aquatic product of good packaging continues by conveying main body and is conveyed, and is finally sent to material collecting box, and the inclined plane structure of bearing plate plays the key role at this time, when the aquatic product after packaging falls on the bearing plate, will slide along the inclined plane automatically, realizes the orderly arrangement and accomodates, avoids the tediousness of artificial arrangement, guarantees the neatness of aquatic product in material collecting box.
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Description

Technical Field

[0001] This utility model relates to the field of seafood processing technology, and in particular to a material feeding structure for seafood packaging equipment. Background Technology

[0002] Seafood refers to edible or usable products from the ocean, mostly including seaweed, kelp, lobster, and prawns; these products are popular due to their rich nutritional value. In the processing of seafood, the packaging stage is crucial, effectively ensuring the product does not spoil during storage. However, existing automated packaging equipment for seafood typically relies on manual unloading after packaging. Manual unloading requires matching the rhythm of the packaging equipment, operating one item at a time, which is difficult to keep up with the high-speed operation of automated packaging, easily causing production interruptions and significantly reducing the overall production line capacity. Summary of the Invention

[0003] The technical problem this invention aims to solve is that existing technologies require manual material feeding, which needs to be coordinated with the rhythm of the packaging equipment for one-by-one operation. This makes it difficult to keep up with the high-speed operation of automated packaging, which can easily cause production process interruptions and significantly reduce the overall production line capacity. Therefore, we propose a material feeding structure for seafood packaging equipment.

[0004] To achieve the above objectives, this application adopts the following technical solution: a material feeding structure for a seafood packaging equipment, comprising a packaging body, a conveying body and a packaging processing body installed on the upper wall of the packaging body, a processing area provided inside the packaging processing body, the conveying body passing through the processing area, a receiving box provided at one end of the packaging body, the height of the receiving box being lower than that of the conveying body, and the conveying end of the conveying body being located at the opening of the receiving box, the upper wall of the receiving box having a support plate with an inclined structure, and the side of the upper wall of the support plate away from the conveying body being the lowest point of the inclined surface.

[0005] Furthermore, an upper connecting block is fixedly connected to the lower wall of the receiving plate, and a lower connecting plate is fixedly connected to the bottom of the cavity of the receiving box.

[0006] Furthermore, the lower wall of the upper connecting block is shaft-connected to an upper pressure plate, the upper wall of the lower connecting plate is shaft-connected to a lower pressure plate, the opposite ends of the upper pressure plate and the lower pressure plate are shaft-connected, and an elastic element is fixedly connected between the included angle of the upper pressure plate and the lower pressure plate.

[0007] Furthermore, the upper pressure plate and the lower pressure plate are symmetrically distributed about the center of the elastic element.

[0008] Furthermore, the inner walls of the receiving box are provided with sliding groove bodies on both sides, and sliding slider bodies are slidably connected to the inner walls of the sliding groove bodies. One end of the sliding slider body is fixedly connected to the mounting plate.

[0009] Furthermore, an inner rod is fixedly connected to the lower end of the slider body, and an outer rod is fixedly connected to the bottom of the cavity of the slide body. The inner rod and the inner wall of the outer rod are slidably connected. A movable block is fixedly connected to the lower end of the inner rod, and a return spring is fixedly connected to the lower wall of the movable block. The lower end of the return spring is fixedly connected to the bottom of the cavity of the outer rod.

[0010] The technical effects and advantages of this utility model are as follows: In this invention, the packaged seafood continues to be conveyed by the main conveyor and is eventually sent to the receiving box. At this point, the inclined structure of the receiving plate plays a key role. When the packaged seafood falls onto the receiving plate, it will automatically slide along the inclined surface to achieve orderly arrangement and storage, avoiding the tediousness of manual sorting and ensuring the neatness of the seafood in the receiving box. This provides convenience for subsequent warehousing and transportation, and solves the problem that existing automatic packaging equipment for seafood usually relies on manual unloading after packaging. Manual unloading requires operation one piece at a time in coordination with the rhythm of the packaging equipment, which is difficult to keep up with the high-speed operation of automated packaging, and is prone to production process interruption, significantly reducing the overall production line capacity. Attached Figure Description

[0011] The disclosure of this utility model is illustrated with reference to the accompanying drawings. It should be understood that the drawings are for illustrative purposes only and are not intended to limit the scope of protection of this utility model. In the drawings, the same reference numerals are used to refer to the same parts: Figure 1 This is a schematic diagram of the overall three-dimensional structure of this utility model; Figure 2 This is a schematic diagram of the overall planar structure of the present invention; Figure 3 This is a schematic diagram of the internal structure of the receiving box of this utility model; Figure 4 This is a schematic diagram of the internal structure of the external rod of this utility model.

[0012] Legend: 1. Packaging body; 2. Conveying body; 3. Packaging processing body; 4. Receiving box; 5. Loading plate; 6. Upper connecting block; 7. Lower connecting plate; 8. Upper pressure plate; 9. Lower pressure plate; 10. Elastic element; 11. Slide body; 12. Slider body; 13. Inner connecting rod; 14. Outer connecting rod; 15. Movable block; 16. Return spring. Detailed Implementation

[0013] It is readily understood that, based on the technical solution of this utility model, those skilled in the art can propose various interchangeable structural methods and implementations without altering the essential spirit of this utility model. Therefore, the following detailed embodiments and accompanying drawings are merely illustrative descriptions of the technical solution of this utility model and should not be considered as the entirety of this utility model or as limitations or restrictions on the technical solution of this utility model.

[0014] Reference Figures 1-4 As shown, in order to solve the problem that existing automated packaging equipment for seafood usually relies on manual unloading after packaging, and manual unloading needs to be operated one by one in accordance with the rhythm of the packaging equipment, it is difficult to keep up with the high-speed operation of automated packaging, which can easily cause production process interruption and significantly reduce the overall production line capacity, the following preferred technical solution is provided.

[0015] A material feeding structure for a seafood packaging device includes a packaging body 1. A conveying body 2 and a packaging processing body 3 are installed on the upper wall of the packaging body 1. The packaging processing body 3 has a processing area inside. The conveying body 2 passes through the processing area. A receiving box 4 is provided at one end of the packaging body 1. The height of the receiving box 4 is lower than that of the conveying body 2, and the conveying end of the conveying body 2 is located at the opening of the receiving box 4. The conveying body 2 is responsible for conveying the seafood to be packaged and accurately conveying it to the processing area of ​​the packaging processing body 3 to complete the packaging operation. The packaged seafood continues to be conveyed by the conveying body 2 and is finally sent to the receiving box 4. The inner wall of the receiving box 4 is provided with a support plate 5. The upper wall of the support plate 5 has an inclined structure, and the side of the upper wall away from the conveying body 2 is the lowest point of the inclined surface. When the packaged seafood falls onto the support plate 5, it will automatically slide along the inclined surface to achieve orderly arrangement and storage.

[0016] An upper connecting block 6 is fixedly connected to the lower wall of the receiving plate 5. A lower connecting plate 7 is fixedly connected to the bottom of the cavity of the receiving box 4. An upper pressure plate 8 is axially connected to the lower wall of the upper connecting block 6. A lower pressure plate 9 is axially connected to the upper wall of the lower connecting plate 7. The opposite ends of the upper pressure plate 8 and the lower pressure plate 9 are axially connected. An elastic element 10 is fixedly connected between the included angle of the upper pressure plate 8 and the lower pressure plate 9. The upper pressure plate 8 and the lower pressure plate 9 are symmetrically distributed about the center of the elastic element 10. A sliding groove body 11 is provided on both sides of the inner wall of the receiving box 4. A slider body 12 is slidably connected to the inner wall of the sliding groove body 11. One end of the slider body 12 is fixedly connected to the receiving plate 5. An inner connecting rod 13 is fixedly connected to the lower end of the slider body 12. The bottom of the cavity of the sliding groove body 11... An external rod 14 is fixedly connected to the inner rod 13, which is slidably connected to the inner wall of the external rod 14. A movable block 15 is fixedly connected to the lower end of the inner rod 13, and a return spring 16 is fixedly connected to the lower wall of the movable block 15. The lower end of the return spring 16 is fixedly connected to the bottom of the cavity of the external rod 14. When the mounting plate 5 is subjected to a downward impact force, the upper block 6 drives the upper pressure plate 8 to move downward. The included angle between the upper pressure plate 8 and the lower pressure plate 9 becomes smaller, and the elastic element 10 is compressed. At the same time, the slider body 12 slides downward along the slide groove body 11, the inner rod 13 moves downward within the outer rod 14, and the movable block 15 compresses the return spring 16. The elastic deformation of the elastic element 10 and the return spring 16 will absorb part of the impact force.

[0017] Specifically, the conveyor body 2 is responsible for conveying the seafood to be packaged, accurately transporting it to the processing area of ​​the packaging body 3 to complete the packaging operation. The packaged seafood continues to be conveyed by the conveyor body 2 and is finally sent to the receiving box 4. At this time, the inclined structure of the receiving plate 5 plays a key role. When the packaged seafood falls onto the receiving plate 5, it will automatically slide along the inclined surface to achieve orderly arrangement and storage, avoiding the tediousness of manual sorting and ensuring the neatness of the seafood in the receiving box. This provides convenience for subsequent warehousing and transportation, and solves the problem that existing automatic packaging equipment for seafood usually relies on manual unloading after packaging. Manual unloading needs to be coordinated with the rhythm of the packaging equipment to operate one piece at a time, which is difficult to keep up with the high-speed operation of automated packaging, and is very easy to cause production process interruption, significantly reducing the overall production line capacity. When seafood falls from the conveyor body 2 into the receiving box 4 and impacts the receiving plate 5, the receiving plate 5 will be subjected to a downward impact force. At this time, the upper connecting block 6 drives the upper pressure plate 8 to move downward, the included angle between the upper pressure plate 8 and the lower pressure plate 9 becomes smaller, the elastic element 10 is compressed, and the slider body 12 slides downward along the slide groove body 11. The inner connecting rod 13 moves downward within the outer rod 14, and the movable block 15 compresses the return spring 16. The elastic deformation of the elastic element 10 and the return spring 16 absorbs part of the impact force, effectively buffering the impact force of the falling seafood and preventing damage to the seafood seal due to excessive impact force. As the weight of the seafood piled on the receiving plate 5 gradually increases, the deformation of the elastic element 10 and the return spring 16 increases, and the receiving plate 5 will gradually move downward. During this process, the slider body 12 always slides within the slide groove body 11, ensuring the stability of the downward movement of the receiving plate 5. The downward movement of the receiving plate 5 is adapted to the piled weight, so that the top layer of seafood can always be at the opening of the receiving box 4, which facilitates the subsequent handling or further processing of the seafood. There is no need for frequent manual bending over and reaching into the receiving box, which improves work efficiency and reduces manual labor intensity.

[0018] The technical scope of this utility model is not limited to the content described above. Those skilled in the art can make various modifications and variations to the above embodiments without departing from the technical concept of this utility model, and all such modifications and variations should fall within the protection scope of this utility model.

Claims

1. A feeding structure for a seafood packaging equipment, characterized in that, The package includes a packaging machine body, on the upper wall of which a conveying body and a packaging processing body are mounted. The packaging processing body has a processing area inside, and the conveying body passes through the processing area. A receiving box is provided at one end of the packaging machine body. The height of the receiving box is lower than that of the conveying body, and the conveying end of the conveying body is located at the opening of the receiving box. The inner wall of the receiving box has a support plate with an inclined upper wall structure, and the side of the support plate away from the conveying body is the lowest point of the inclined upper wall.

2. The feeding structure of the seafood packaging equipment according to claim 1, characterized in that: The lower wall of the receiving plate is fixedly connected to an upper connecting block, and the bottom of the cavity of the receiving box is fixedly connected to a lower connecting plate.

3. The feeding structure of the seafood packaging equipment according to claim 2, characterized in that: The lower wall of the upper connecting block is shaft-connected to an upper pressure plate, and the upper wall of the lower connecting plate is shaft-connected to a lower pressure plate. The upper pressure plate and the lower pressure plate are shaft-connected at opposite ends, and an elastic element is fixedly connected between the included angle of the upper pressure plate and the lower pressure plate.

4. The feeding structure of the seafood packaging equipment according to claim 3, characterized in that: The upper and lower pressure plates are symmetrically distributed about the center of the elastic element.

5. The feeding structure of the seafood packaging equipment according to claim 4, characterized in that: The receiving box has a sliding groove body on both sides of its inner wall. A slider body is slidably connected to the inner wall of the sliding groove body, and one end of the slider body is fixedly connected to the mounting plate.

6. The feeding structure of the seafood packaging equipment according to claim 5, characterized in that: An inner rod is fixedly connected to the lower end of the slider body, and an outer rod is fixedly connected to the bottom of the cavity of the slide body. The inner rod and the inner wall of the outer rod are slidably connected. A movable block is fixedly connected to the lower end of the inner rod, and a return spring is fixedly connected to the lower wall of the movable block. The lower end of the return spring is fixedly connected to the bottom of the cavity of the outer rod.