A conveying device for processing shrimp fillets

CN224597563UActive Publication Date: 2026-08-07FUJIAN MINGWANG FOOD CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
FUJIAN MINGWANG FOOD CO LTD
Filing Date
2025-09-13
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

[0004]该专利中公开的运输装置虽然通过沥水网框的晃动在虾仁进行运输时可以进行沥水,但是,该运输装置不能够对虾排在加工时的虾浆与成型模具进行输送,而且目前人工在输送带的两侧对虾浆进行上料,人力资源浪费大,工作效率低

Benefits of technology

[0022]In this invention, a spiral extrusion cylinder is installed above the conveyor belt, allowing shrimp paste to be discharged in an orderly and precise manner. This facilitates the injection of shrimp paste into the mold on the surface of the conveyor belt, significantly improving injection efficiency compared to manual injection methods and effectively saving manpower. Furthermore, the pressing component above the mold allows the pressing platen to press against the mold surface via an electric push rod, ensuring the formation of the shrimp paste within the mold. A side rack is fixedly connected to the bottom of the top plate, and the wiping cylinder moves outward synchronously as the pressing platen moves downward, preventing interference with the pressing platen's movement while maintaining effective wiping of the pressing platen under normal conditions. The wiping cylinder's rotation during movement also prevents shrimp paste from sticking to the mold surface after pressing, ensuring the formation of the shrimp fillets within the mold and guaranteeing processing quality during the shrimp fillet processing and conveying process.

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Abstract

The utility model provides a kind of conveying device for shrimp fillet processing belongs to shrimp fillet processing technical field, it solves the technical problem that current shrimp pulp needs manual injection molding on the surface of conveying device and mould.A kind of conveying device for shrimp fillet processing, including conveyor belt, the surface of conveyor belt equidistantly is placed with multiple mould, and the upper portion of one mould is provided with the discharge end of spiral extruding cylinder.In the utility model, by being provided with spiral agent cylinder in the upper portion of conveyor belt, so that shrimp pulp is orderly and accurately discharged by spiral extruding cylinder, it is convenient for shrimp pulp to inject moulding on the surface of conveyor belt on the upper portion, compared with existing manual injection molding, greatly improve the injection molding efficiency of shrimp pulp, effectively save manpower resources, and under the action of material pressing assembly arranged on the upper portion of mould, then make the die holder can be moved downward on the surface of mould by electric push rod and crimp, ensure the molding effect of shrimp pulp in mould.
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Description

Technical Field

[0001] This utility model belongs to the field of shrimp processing technology, and relates to a shrimp processing device, particularly a conveying device for shrimp processing. Background Technology

[0002] A shrimp burger is a type of burger with shrimp as the main ingredient. The shrimp patty is the core component of the shrimp burger. The shrimp patty is a fried food made primarily of shrimp, which requires processing, seasoning and marinating, coating and frying. The main ingredients for the shrimp patty are farmed shrimp, fish, breadcrumbs, etc. During the production of the shrimp patty, frozen shrimp are soaked in water to thaw. After thawing, the shrimp are manually deveined, shelled, and deveined. The processed shrimp meat is then mashed, ice water is added and stirred, and the shrimp paste is manually pumped into molds on the surface of the conveyor belt on both sides of the conveyor device. Finally, it is sent to a double spiral quick-freezing machine or a flat plate quick-freezing machine for freezing.

[0003] A search revealed a Chinese patent document, such as the patent for a transport device for processing frozen shrimp [Application No.: CN201721725217.4; Publication No.: CN207566073U]. This transport device includes a transport box, inside which is a draining mesh frame. Connecting crossbars are provided on both sides of the top of the draining mesh frame. A guide plate, slidably connected to the connecting crossbars, is provided on the top of the transport box. Vertical plates are provided on both sides of the draining mesh frame. A lever is provided on one side of each of the two sets of vertical plates. A transmission wheel is connected to the end of the lever away from the vertical plate. A transmission rod is provided in the center of the transmission wheel. A rotating groove, cooperating with the transmission wheel and transmission rod, is provided on the top of the transmission rod. A transmission gear is provided on the outside of the transmission gear. A transmission plate is slidably connected to the transport box, and the bottom of the transmission plate, along its length, has a toothed groove that cooperates with the transmission gear.

[0004] Although the conveying device disclosed in the patent can drain the shrimp meat during transport by shaking the draining mesh frame, it cannot transport the shrimp paste and forming mold during the processing of the shrimp patties. Moreover, currently, the shrimp paste is manually fed on both sides of the conveyor belt, which results in a large waste of human resources and low work efficiency. Utility Model Content

[0005] The purpose of this utility model is to address the aforementioned problems in the existing technology by proposing a conveying device for shrimp patty processing. The technical problem to be solved by this utility model is: how to achieve the injection molding of shrimp paste onto the surface of the conveying device and the mold.

[0006] The objective of this utility model can be achieved through the following technical solutions:

[0007] A conveying device for processing shrimp fillets includes a conveyor belt, on the surface of which a plurality of molds are equidistantly placed. Above one of the molds is the discharge end of a spiral extrusion cylinder, which is located above the conveyor belt. A pressing component is provided on one side of the spiral extrusion cylinder, and the pressing component is installed above the conveyor belt.

[0008] The pressing assembly includes a column, which is fixedly connected to the top of both sides of the conveyor belt support. A top plate is telescopically installed above the column, and a connecting rod is fixedly connected to the bottom of the top plate. A pressing template is fixedly installed at the bottom of the connecting rod. The pressing template is located at the top of the mold, and a wiping unit is provided below the pressing template.

[0009] Using the above structure, shrimp paste is fed into the spiral extruder through the feed hopper. Driven by the extrusion motor, the shrimp paste is discharged in an orderly and precise manner through the spiral extruder, facilitating the injection of the shrimp paste into the mold on the conveyor belt surface. Simultaneously, a pressing component is installed on one side of the spiral extruder, causing the electric push rod to move the top plate downwards. This top plate, via the connecting rod, moves the pressing plate downwards to press against the top of the mold, ensuring the formation effect of the shrimp paste inside the mold. Additionally, a side toothed rack is fixedly connected to the bottom of the top plate. Under the action of the mechanism, the side rack drives the gear column to rotate. By meshing with the horizontal rack at the upper and lower ends of the gear column, the horizontal rack drives the wiping cylinder at the bottom of the pressing template to move outward through the connecting plate and the side plate. Under the rotational connection between the wiping cylinder and the side plate, the wiping cylinder rotates outward synchronously when the pressing template moves downward, thus wiping the bottom of the pressing template. This achieves the cleaning effect of the pressing template before pressing and wets the bottom of the pressing template, preventing the shrimp paste from sticking together and ensuring the forming quality of the shrimp fillets.

[0010] The spiral extrusion cylinder is driven by an extrusion motor, which is fixedly installed on one side of the spiral extrusion cylinder. A feed hopper is fixedly connected to the top of the spiral extrusion cylinder.

[0011] With the above structure, the internal spiral rod of the spiral extrusion cylinder is rotated by the extrusion motor, so that the shrimp paste is discharged in an orderly and precise manner through the spiral extrusion cylinder. This makes it easier for the shrimp paste to be injected into the mold on the surface of the conveyor belt. Compared with the current manual injection, the injection efficiency of shrimp paste is greatly improved and human resources are effectively saved.

[0012] A fixing block is fixedly connected to the inner side of the column, and an electric push rod is fixedly installed on the surface of the fixing block. A top plate is fixedly connected to the top of the electric push rod.

[0013] With the above structure, the fixing block is fixedly installed inside the column. Under the connection of the electric push rod, the top plate can move up and down in the mold, which makes it easy for the top plate to drive the pressing plate to flatten the mold from above, thus ensuring the filling effect of shrimp paste inside the mold.

[0014] Side racks are fixedly connected to the bottom ends of both sides of the top plate. The side racks are slidably connected to the inner wall of the column. A gear column is meshed with the surface of the side rack. The gear column is rotatably connected to the inside of the column, and the side rack is located on one side of the gear column.

[0015] With the above structure, the side rack is fixedly connected to the top plate. Under the meshing action of the side rack and the gear column, the side rack moves the gear column to rotate synchronously inside the column when the top plate is raised and lowered, thus ensuring the transmission effect of the gear column.

[0016] The wiping unit includes two transverse racks slidably connected inside the column, and the two transverse racks are symmetrically meshed and connected to the upper and lower ends of the gear column;

[0017] The two columns are arranged in a symmetrical "U" shape on the surface of the conveyor belt, and through holes are provided on both sides of the columns to accommodate the movement of the transverse rack.

[0018] By adopting the above structure, the horizontal racks are symmetrically meshed on the outer wall of the gear column. When the gear column is driven by the side racks, the horizontal racks arranged symmetrically on the outer wall of the gear column move towards or away from each other synchronously. This achieves the synchronous transmission effect of the top plate driving the two horizontal racks. The structure is simple and has high stability.

[0019] A connecting plate is fixedly connected to the inner side of the horizontal rack, and a side plate is fixedly connected to the bottom end of the connecting plate. A wiping cylinder is rotatably connected to the end of the side plate away from the connecting plate, and the wiping cylinder is attached to the bottom end of the pressing template.

[0020] By adopting the above structure, a wiping cylinder is installed at the bottom of the pressing template, ensuring that the wiping cylinder constantly wipes the pressing template at the bottom. Furthermore, under the action of two horizontal racks, the two racks synchronously drive the two wiping cylinders to move at the bottom of the pressing template. This allows the wiping cylinders to move outwards synchronously as the pressing template moves downwards, avoiding interference with the movement of the pressing template. Simultaneously, the wiping cylinders wipe the bottom of the pressing template during their movement. The surfaces of the two wiping cylinders are made of wet sponge, ensuring that the bottom of the pressing template remains moist after wiping. This prevents the shrimp paste from sticking to the mold surface after pressing, ensuring the formation effect of the shrimp paste inside the mold and guaranteeing the precision of the shrimp fillet pressing.

[0021] Compared with the prior art, the conveying device for shrimp patty processing of this utility model has the following advantages:

[0022] In this invention, a spiral extrusion cylinder is installed above the conveyor belt, allowing shrimp paste to be discharged in an orderly and precise manner. This facilitates the injection of shrimp paste into the mold on the surface of the conveyor belt, significantly improving injection efficiency compared to manual injection methods and effectively saving manpower. Furthermore, the pressing component above the mold allows the pressing platen to press against the mold surface via an electric push rod, ensuring the formation of the shrimp paste within the mold. A side rack is fixedly connected to the bottom of the top plate, and the wiping cylinder moves outward synchronously as the pressing platen moves downward, preventing interference with the pressing platen's movement while maintaining effective wiping of the pressing platen under normal conditions. The wiping cylinder's rotation during movement also prevents shrimp paste from sticking to the mold surface after pressing, ensuring the formation of the shrimp fillets within the mold and guaranteeing processing quality during the shrimp fillet processing and conveying process. Attached Figure Description

[0023] Figure 1 This is a schematic diagram of the structure of a conveying device for processing shrimp fillets according to this utility model.

[0024] Figure 2 This utility model Figure 1 A magnified structural diagram at point A.

[0025] Figure 3 This is a cross-sectional structural diagram of the pressing component in this utility model.

[0026] In the picture:

[0027] 1. Conveyor belt; 2. Spiral extrusion cylinder; 3. Extrusion motor; 4. Feed hopper; 5. Mold; 6. Column; 7. Fixing block; 8. Electric push rod; 9. Top plate; 10. Connecting rod; 11. Pressing plate; 12. Side rack; 13. Gear column; 14. Horizontal rack; 15. Connecting plate; 16. Side plate; 17. Wiping cylinder. Detailed Implementation

[0028] The following are specific embodiments of the present invention, which are described in conjunction with the accompanying drawings. However, the present invention is not limited to these embodiments.

[0029] Example

[0030] like Figures 1-3 As shown;

[0031] A conveying device for processing shrimp fillets includes a conveyor belt 1, a spiral extrusion cylinder 2, an extrusion motor 3, a feed hopper 4, a mold 5, a column 6, a fixing block 7, an electric push rod 8, a top plate 9, a connecting rod 10, a pressing plate 11, a side rack 12, a gear column 13, a transverse rack 14, a connecting plate 15, a side plate 16, and a wiping cylinder 17. Multiple molds 5 are placed at equal intervals on the surface of the conveyor belt 1. To facilitate the injection of shrimp paste into the molds 5, a discharge end of the spiral extrusion cylinder 2 is provided above one of the molds 5, and the spiral extrusion cylinder 2 is located on the conveyor belt. Above 1, the spiral extrusion cylinder 2 is driven by the extrusion motor 3, and the extrusion motor 3 is fixedly installed on one side of the spiral extrusion cylinder 2. The top of the spiral extrusion cylinder 2 is fixedly connected to the feed hopper 4. With this setting, under the driving action of the extrusion motor 3, the internal spiral rod of the spiral extrusion cylinder 2 is rotated, so that the shrimp paste is discharged in an orderly and precise manner through the spiral extrusion cylinder 2, which makes it easier for the shrimp paste to be injected into the mold 5 on the surface of the conveyor belt 1. Compared with the current manual injection, the injection efficiency of shrimp paste is greatly improved, and human resources are effectively saved.

[0032] To flatten the shrimp paste inside the mold 5 after grouting and ensure the shaping effect of the shrimp strips, a pressing assembly is installed on one side of the spiral extrusion cylinder 2, and the pressing assembly is installed above the conveyor belt 1. Specifically, the pressing assembly includes columns 6, which are fixedly connected to the top of both sides of the conveyor belt 1 support. The two columns 6 are arranged in a symmetrical "U" shape on the surface of the conveyor belt 1. A top plate 9 is telescopically installed above the columns 6. A fixing block 7 is fixedly connected to the inner side of the column 6, and an electric push rod 8 is fixedly installed on the surface of the fixing block 7. The top plate 9 is fixedly connected to the top of the electric push rod 8, and a connecting rod 10 is fixedly connected to the bottom of the top plate 9. A pressing template 11 is fixedly installed at the bottom of the connecting rod 10. The pressing template 11 is located at the top of the mold 5 and is fixedly installed inside the columns 6 through the fixing block 7. Under the connecting action of the electric push rod 8, the top plate 9 moves up and down in the mold 5. The top plate 9 extends and retracts, allowing the pressing template 11 to press the mold 5 flat from above, ensuring the filling effect of the shrimp paste inside the mold 5. To ensure the pressing quality of the pressing template 11 on the shrimp paste inside the mold 5 and to prevent the pressing template 11 from sticking to the shrimp paste, a wiping unit is provided below the pressing template 11. At the same time, to achieve the transmission effect, side racks 12 are fixedly connected to the bottom of both sides of the top plate 9. The side racks 12 are slidably connected to the inner wall of the column 6, and the surface of the side racks 12 is meshed with a gear column 13. The gear column 13 is rotatably connected inside the column 6, and the side racks 12 are located on one side of the gear column 13. Through the fixed connection between the side racks 12 and the top plate 9, under the meshing action of the side racks 12 and the gear column 13, the side racks 12 drive the gear column 13 to rotate synchronously inside the column 6 when the top plate 9 moves up and down, ensuring the transmission effect of the gear column 13.

[0033] Furthermore, the wiping unit includes two transverse racks 14 slidably connected inside the column 6, and the two transverse racks 14 are symmetrically meshed at the upper and lower ends of the gear column 13. Through holes are provided on both sides of the column 6 to accommodate the movement of the transverse racks 14. By symmetrically meshing the transverse racks 14 on the outer wall of the gear column 13, when the gear column 13 is driven by the side racks 12, the symmetrically arranged transverse racks 14 move synchronously towards or away from each other on the outer wall of the gear column 13, achieving the synchronous transmission effect of the top plate 9 driving the two transverse racks 14. This design is simple in structure and highly stable. Simultaneously, a connecting plate 15 is fixedly connected to the inner side of the transverse racks 14, and a side plate 16 is fixedly connected to the bottom end of the connecting plate 15. A wiping cylinder 17 is rotatably connected to the end of the side plate 16 away from the connecting plate 15. The wiping cylinder 17 is attached to... The two wiping cylinders 17 are connected to the bottom of the pressing template 11. By setting the wiping cylinder 17 at the bottom of the pressing template 11, the wiping cylinder 17 is always wiping the pressing template 11 at the bottom. Under the action of the two horizontal racks 14, the two horizontal racks 14 synchronously drive the two wiping cylinders 17 to move at the bottom of the pressing template 11. When the pressing template 11 moves downward, the wiping cylinder 17 moves outward synchronously, avoiding interference with the movement of the pressing template 11. At the same time, the wiping cylinder 17 wipes the bottom of the pressing template 11 during the movement. The surfaces of the two wiping cylinders 17 are made of wet sponge structure, so that the bottom of the pressing template 11 is moist after being wiped. This prevents the shrimp paste from sticking to the surface of the mold 5 after the pressing template 11 is pressed, ensuring the molding effect of the shrimp paste inside the mold 5 and ensuring the molding accuracy of the shrimp fillets.

[0034] The working principle of this utility model is as follows: During operation, shrimp paste is fed into the spiral extrusion cylinder 2 through the feed hopper 4. Driven by the extrusion motor 3, the shrimp paste is discharged in an orderly and precise manner through the spiral extrusion cylinder 2, facilitating the injection of the shrimp paste into the mold 5 on the surface of the conveyor belt 1. Simultaneously, by setting a pressing component on one side of the spiral extrusion cylinder 2, the electric push rod 8 drives the top plate 9 to move downward, causing the top plate 9 to drive the pressing plate 11 downward through the connecting rod 10 to press against the top of the mold 5, ensuring the forming effect of the shrimp paste inside the mold 5. At the same time, under the action of the side toothed rack 12 fixedly connected to the bottom end of the top plate 9, the side toothed rack 12 drives... When the gear column 13 rotates, the horizontal rack 14 meshes with the upper and lower ends of the gear column 13. The horizontal rack 14 then drives the wiping cylinder 17 at the bottom of the pressing template 11 to move outward through the connecting plate 15 and the side plate 16. Under the rotational connection between the wiping cylinder 17 and the side plate 16, the wiping cylinder 17 rotates outward synchronously when the pressing template 11 moves downward. This allows the wiping cylinder 17 to wipe the bottom of the pressing template 11, achieving the cleaning effect of the pressing template 11 before pressing. In addition, wetting the bottom of the pressing template 11 prevents the shrimp paste from sticking together and ensures the forming quality of the shrimp patties. This completes the working principle of the conveying device for processing shrimp patties.

[0035] The specific embodiments described herein are merely illustrative examples illustrating the spirit of this utility model. Those skilled in the art to which this utility model pertains may make various modifications or additions to the described specific embodiments or use similar methods to substitute them, without departing from the spirit of this utility model or exceeding the scope defined by the appended claims.

Claims

1. A conveying device for processing shrimp fillets, comprising a conveyor belt (1), characterized in that: Multiple molds (5) are placed at equal intervals on the surface of the conveyor belt (1). The discharge end of a spiral extrusion cylinder (2) is provided above one of the molds (5), and the spiral extrusion cylinder (2) is located above the conveyor belt (1). A pressing component is provided on one side of the spiral extrusion cylinder (2), and the pressing component is installed above the conveyor belt (1). The pressing assembly includes a column (6), which is fixedly connected to the top of both sides of the conveyor belt (1) support. A top plate (9) is telescopically provided above the column (6). A connecting rod (10) is fixedly connected to the bottom of the top plate (9), and a pressing template (11) is fixedly installed at the bottom of the connecting rod (10). The pressing template (11) is located at the top of the mold (5), and a wiping unit is provided below the pressing template (11).

2. The conveying device for processing shrimp fillets according to claim 1, characterized in that: The spiral extrusion cylinder (2) is driven by an extrusion motor (3), and the extrusion motor (3) is fixedly installed on one side of the spiral extrusion cylinder (2). The top of the spiral extrusion cylinder (2) is fixedly connected to a feed hopper (4).

3. The conveying device for processing shrimp fillets according to claim 1, characterized in that: A fixing block (7) is fixedly connected to the inner side of the column (6), and an electric push rod (8) is fixedly installed on the surface of the fixing block (7). A top plate (9) is fixedly connected to the top of the electric push rod (8).

4. The conveying device for processing shrimp fillets according to claim 3, characterized in that: Side racks (12) are fixedly connected to the bottom ends of both sides of the top plate (9). The side racks (12) are slidably connected to the inner wall of the column (6). A gear column (13) is meshed with the surface of the side racks (12). The gear column (13) is rotatably connected to the inside of the column (6), and the side racks (12) are located on one side of the gear column (13).

5. The conveying device for processing shrimp fillets according to claim 4, characterized in that: The wiping unit includes two transverse racks (14) slidably connected inside the column (6), and the two transverse racks (14) are symmetrically meshed and connected to the upper and lower ends of the gear column (13); The two columns (6) are arranged in a symmetrical "U" shape on the surface of the conveyor belt (1), and the two sides of the columns (6) are provided with through holes that can accommodate the movement of the transverse rack (14).

6. The conveying device for processing shrimp fillets according to claim 5, characterized in that: A connecting plate (15) is fixedly connected to the inner side of the transverse rack (14), and a side plate (16) is fixedly connected to the bottom end of the connecting plate (15). A wiping cylinder (17) is rotatably connected to the end of the side plate (16) away from the connecting plate (15), and the wiping cylinder (17) is attached to the bottom end of the pressing template (11).

Citation Information

Patent Citations

  • It uses conveyer to freeze shelled shrimp processing

    CN207566073U