A processing device for gurnard
Patent Information
- Application Number
- CN202620918006.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2026-06-22
- Publication Date
- 2026-08-21
- Estimated Expiration
- 2036-06-22
AI Technical Summary
而常规的海产品加工厂普遍还是通过人工对鱼体进行切割打花刀,从而导致生产效率低,尤其是对于有一定韧性的鱼进行打花刀
1、通过机械设备自动化地将鱼体切割打花刀,实现降低人力成本和提高生产效率,此外,由于工作人员无需接触到刀具,从而在一定程度上提高工作人员的作业安全性;
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Figure CN224654582U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the technical field of seafood processing equipment, and in particular relates to a processing equipment for Kung Fu Fish. Background Technology
[0002] Kung Fu Fish is a dish where fish is scored before cooking. Kitchens in major food markets often purchase pre-scored fish to reduce preparation steps when processing large quantities of ingredients. However, conventional seafood processing plants typically still manually score fish, resulting in low production efficiency, especially for fish with a certain degree of toughness. Utility Model Content
[0003] The purpose of this invention is to provide a processing device for Kung Fu Fish to solve the technical problems described in the background.
[0004] The Kung Fu Fish processing equipment includes a fish-cutting station, which includes: A support base, wherein at least two support columns are arranged in a row on the support base, and a gap is provided between the support columns, which are used to support the fish body; The lifting mechanism is driven by a lifting frame, on which springs and cutters are arranged. The springs are connected to liftable pressure rods, which are located above the support columns and below the cutters. When the lifting frame descends, the pressure rods are used to pre-press down and fix the fish body on the support columns and compress the springs. The cutters are located between two adjacent pressure rods, so that when the pressure rods compress the springs, the cutters are below the pressure rods and insert into the gap between the support columns.
[0005] Therefore, when the lifting mechanism drives the lifting frame to descend, the lifting frame drives the pressure rod and the cutter to descend. At this time, the pressure rod is pre-pressed down to the support column to press and fix the fish body on the support column, and the pressure rod pushes the spring to compress, so that the cutter is lower than the pressure rod and inserted into the gap between the support columns to cut the fish body located on the support column.
[0006] Based on the above technical solution, the present invention achieves the following beneficial effects: 1. By using mechanical equipment to automatically cut and score fish, labor costs can be reduced and production efficiency can be improved. In addition, since workers do not need to touch the knives, the safety of workers can be improved to a certain extent. 2. When cutting fish with a certain degree of toughness, the pressure bar is pressed down to the support column in advance to press and fix the fish on the support column. Therefore, when the cutter contacts the fish, the cutter will not push the fish to move and cause the cut to fail. 3. Since the cutter is located between two adjacent pressure rods, when the pressure rod is pressed down in advance to press and fix the fish body on the support column, it is also equivalent to simultaneously tightening the two ends of the fish body located below the cutter. Thus, by driving the cutter to descend, the fish body can be cut or cut to a specific depth. 4. When the pressure bar presses the fish body on the support column to a tighter position, the spring can buffer and absorb some of the pressure, thus preventing the pressure bar from damaging the fish body; at the same time, by using the push of the spring, the pressure bar can press the fish body more stably. 5. When the lifting mechanism drives the lifting frame to rise and reset, during the separation of the cutter from the fish body, the spring still pushes the pressure rod to press and fix the fish body on the support column, thereby preventing the cutter from sticking to the fish body.
[0007] To further optimize the above technical solutions, they can be combined with one or more of the following implementation methods without conflict.
[0008] In some embodiments, the lifting frame is fitted with an isolation cover, and the spring and cutter are installed inside the isolation cover. The isolation cover is equipped with nozzles for rinsing the fish body, support column, pressure bar and cutter.
[0009] Based on the above technical solution, the present invention will further achieve the following beneficial effects: 1. The nozzle is designed to clean up debris generated when the cutter cuts the fish, while the shield prevents wastewater from splashing outwards during nozzle rinsing. 2. The isolation shield can separate the operator from the cutting edge, thereby improving the safety of cutting processes; 3. When the cutter separates from the fish, and when the pressure bar separates from the fish, water can be sprayed onto the fish, cutter, and pressure bar through the nozzle to prevent the fish from sticking to the cutter and pressure bar.
[0010] In some embodiments, a wastewater recycling tank is provided below the support column. The wastewater recycling tank is used to collect the wastewater that falls when the nozzle washes the fish, support column, pressure bar and cutter, so as to avoid the wastewater flowing out directly and polluting the working environment. At the same time, it is convenient to centrally treat the wastewater.
[0011] In some embodiments, a plurality of cutters are mounted on the lifting frame.
[0012] According to the above technical solution, it is possible to simultaneously cut multiple parts of the fish body with several cutting blades to complete the sculpting process. Compared with manually or mechanically cutting each part of the fish body one cut at a time, this utility model can further improve the cutting efficiency.
[0013] In some embodiments, the part of the pressure bar that contacts the fish body is adapted to the shape of the support column.
[0014] According to the above technical solution, when the fish body on the support column is pressed and fixed by the pressure rod, the contact area between the support column and the pressure rod and the fish body is increased, the friction between the fish body and the support column and the pressure rod is increased, and the possibility of the fish body slipping when the cutter cuts the fish body is reduced.
[0015] In some embodiments, the Kung Fu Fish processing equipment further includes a conveying device for conveying the fish body to a support column.
[0016] According to the aforementioned technical solution, the fish can be connected to other workstations via a conveying device to further automate the processing of fish. In addition, by conveying the fish to the support column via the conveying device, workers can be kept away from the cutting blade, thereby improving safety during the cutting process.
[0017] In some embodiments, the conveying device includes a roller axis and a conveyor chain, a support column is disposed on the roller axis and the support column is non-rolling, and the conveyor chain is provided with a hook; When the fish is placed on the roller axis, the hook pulls the fish to move along the roller axis and can move it to the support column.
[0018] Based on the above technical solution, the present invention will further achieve the following beneficial effects: 1. The roller axis can drain excess water from the fish during transport, thereby reducing the probability of slippage during cutting and processing. 2. The fish is pulled by the hook driven by the conveyor belt, so that the fish moves in a straight line on the conveyor device, avoiding tilting and displacement of the fish, and allowing the fish to be moved accurately under the cutter.
[0019] In some embodiments, roller axes are provided on both sides of the conveyor belt, the fish body is a fish body with its back opened, when the fish body is placed on the conveyor device, the hook is used to hook the fish head, one side of the fish body is located on one roller axis, and the other side of the fish body is located on the other roller axis.
[0020] Based on the above technical solution, the present invention will further achieve the following beneficial effects: 1. Since rollers are installed on both sides of the conveyor belt, and a support column is installed on each roller, and a pressure bar is installed above the support column, and a cutter is installed between two adjacent pressure bars, it is possible to cut both sides of the fish body at the back at the same time. 2. There is no need to turn the fish over or rotate it during cutting; both sides of the fish can be cut, thereby further improving cutting efficiency. 3. Since the cutting knife used for Kung Fu fish usually only cuts the two sides of the fish body and does not cut the whole fish, this utility model has roller axes on both sides of the conveyor chain, and only the roller axes have support columns. Therefore, the cutter only cuts the part of the fish body that is located on the roller axis and does not cut the part of the fish body that is located on the conveyor chain. In other words, the cutting knife only cuts the two sides of the fish body.
[0021] In some embodiments, the conveying device is equipped with a pushing power module, which drives push plates that can move from both sides of the conveying device toward the conveyor belt. The push plates are used to push the sides of the fish body to the center line of the conveying device and limit the tilting and displacement of the fish body during movement.
[0022] Based on the above technical solution, the present invention will further achieve the following beneficial effects: 1. When the conveyor belt drives the hook to move the fish, the pusher plate driven by the pusher power module pushes the fish to the center line of the conveyor device and restricts the tilting and displacement of the fish, so that the cutting part of the fish can be moved to the support column more accurately. 2. When the fish is placed on the roller axis, the push plate can be driven by the pusher power module to push the fish to the center line of the conveyor, so that the hook can catch the fish. Attached Figure Description
[0023] To more clearly illustrate the specific embodiments of this utility model, the following will briefly explain the drawings and reference numerals used in the description of the specific embodiments.
[0024] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 This is a schematic diagram of the conveying device described in this utility model; Figure 3 This is a cross-sectional view of the fish-cutting station described in this utility model.
[0025] Figure label: 1. Fish cutting station; 11. Support base; 12. Support column; 13. Gap; 2. Lifting mechanism; 21. Lifting frame; 22. Spring; 23. Cutting knife; 24. Pressure rod; 25. Isolation cover; 26. Nozzle; 3. Wastewater recycling tank; 4. Conveying device; 41. Roller shaft; 42. Conveyor chain; 43. Hook; 44. Pushing power module; 45. Push plate. Detailed Implementation
[0026] To make the objectives, technical solutions, and advantages of this utility model clearer, the following description is provided with reference to the accompanying drawings.
[0027] like Figures 1 to 3As shown in the illustration, this specific embodiment provides a fish processing device for processing fish bodies, specifically fish bodies that have been dehisced (opened up). The fish processing device includes a conveying device 4 and a fish-cutting station 1. The conveying device 4 passes through the fish-cutting station 1.
[0028] The conveying device 4 can be a conveyor belt or a conveyor chain plate. When the conveying device 4 is a conveyor belt or a conveyor chain plate, a support seat 11 is provided at the part of the conveying device 4 located in the fish cutting station 1.
[0029] In addition, the conveying device 4 can also be a conveying device 4 including a conveyor chain 42 and roller axes. The conveyor chain 42 is provided with hooks 43, and roller axes are provided on both sides of the conveyor chain 42. When the fish body cover is placed on the conveying device 4, the hooks 43 are used to hook the fish head. One side of the fish body is located on one roller axis, and the other side of the fish body is located on the other roller axis. The rollers of the roller axis can roll. The support column 12 is provided with a support seat 11 at the part of the roller axis located in the fish cutting station 1. The support seat 11 contains the aforementioned rollers. The conveying device 4 is equipped with a pushing power module 44. The pushing power module 44 drives push plates 45 that can move from both sides of the conveying device 4 toward the conveyor chain 42. The push plates 45 are used to push the two sides of the fish body to the center line of the conveying device 4 and limit the tilting and displacement of the fish body during movement. The pushing power module 44 can be a screw module, cylinder module, or other power module.
[0030] The support base 11 is provided with a number of support columns 12 arranged in a row. The support columns 12 are non-rolling and there are gaps 13 between the support columns 12. The support columns 12 are used to support the fish.
[0031] The fish-cutting station 1 is equipped with a lifting mechanism 2. The lifting mechanism 2 can be a power module such as a screw module, hydraulic module, cylinder module, or motor chain module. An isolation cover 25 is installed on the lifting mechanism 2, and the lifting mechanism 2 can drive the isolation cover 25 to rise and fall. A lifting frame 21 and a nozzle 26 are installed inside the isolation cover 25. A lifting frame 21 is equipped with springs 22 and cutters 23 arranged in a row. Springs 22 push pressure rods 24 located above support columns 12 and movable up and down. The part of the pressure rod 24 that contacts the fish body is adapted to the shape of the support column 12. The pressure rod 24 is lower than the cutters 23. A cutter 23 is provided between every two adjacent pressure rods 24, meaning there are several cutters 23. When the lifting mechanism 2 drives the lifting frame 21 to descend, the lifting frame 21 drives the pressure rods 24 and cutters 23 to descend as well. At this time, the pressure rods 24 are pre-pressed down to the support column 12 to press and fix the fish body on the support column 12. The pressure rods 24 also push the springs 22 to compress, causing the cutters 23 to be lower than the pressure rods 24 and inserted into the gaps 13 between the support columns 12 to cut the fish body on the support column 12. Nozzles 26 are used to rinse the fish body, support column 12, pressure rods 24, and cutters 23. A wastewater recovery tank 3 is provided below the support column 12.
[0032] The following is an instruction manual for using this type of Kung Fu Fish processing equipment.
[0033] When the fish carcass behind the shell is placed on the conveyor device 4, the pusher plate 45 can be driven by the pusher power module 44 to push the fish carcass to the center line of the conveyor device 4. Then, the hook 43 hooks the head of the fish carcass, with one side of the fish carcass on one roller axis and the other side on the other roller axis. The conveyor chain 42 drives the hook 43 to pull the fish carcass. When the fish carcass moves, the pusher plate 45 can be driven by the pusher power module 44 to push the fish carcass to the center line of the conveyor device 4 and to limit the tilting and displacement of the fish carcass. When the conveyor belt 42 drives the hook 43 to pull the fish onto the support column 12, the lifting mechanism 2 drives the lifting frame 21 to descend. The lifting frame 21 then lowers the pressure rod 24 and the cutter 23. At this time, the pressure rod 24 is pre-pressed down onto the support column 12 to press and fix the fish on the support column 12, and the pressure rod 24 pushes the spring 22 to compress. Subsequently, the cutter 23 is lower than the pressure rod 24 and inserted into the gap 13 between the support columns 12 to cut the fish on the support column 12. At this time, the fish can be cut or cut to a specific depth by controlling the descent height of the cutter 23. Afterward, the lifting mechanism 2 drives the lifting frame 21 to rise and reset, and the pressure rod 24 and the cutter 23 separate from the fish. At this time, the nozzle 26 can rinse the fish, support column 12, pressure rod 24, and cutter 23. Afterward, the conveyor belt 42 drives the hook 43 to pull the fish away from the support column 12 and move it out of the fish cutting station 1.
Claims
1. A processing device for Kung Fu Fish, characterized in that, The fish cutting station (1) includes: A support base (11) is provided with at least two support columns (12) arranged in a row, and a gap (13) is provided between the support columns (12). The support columns (12) are used to support the fish body. A lifting mechanism (2) is provided, which drives a lifting frame (21). The lifting frame (21) is provided with a spring (22) and a cutter (23). The spring (22) is connected to a liftable pressure rod (24). The pressure rod (24) is located above the support column (12) and below the cutter (23). When the lifting frame (21) descends, the pressure rod (24) is used to pre-press down and fix the fish body located on the support column (12) and compress the spring (22). The cutter (23) is located between two adjacent pressure rods (24) so that when the pressure rod (24) compresses the spring (22), the cutter (23) is below the pressure rod (24) and inserts into the gap (13) between the support columns (12).
2. The processing equipment for Kung Fu Fish according to claim 1, characterized in that: The lifting frame (21) is fitted with an isolation cover (25), the spring (22) and the cutter (23) are installed inside the isolation cover (25), and a nozzle (26) is installed inside the isolation cover (25) for rinsing the fish body, the support column (12), the pressure rod (24) and the cutter (23).
3. The processing equipment for Kung Fu Fish according to claim 2, characterized in that: A wastewater recycling tank (3) is provided below the support column (12).
4. The processing equipment for Kung Fu Fish according to claim 1, characterized in that: The lifting frame (21) is equipped with a plurality of the cutters (23).
5. The processing equipment for Kung Fu Fish according to claim 1, characterized in that: The part of the pressure rod (24) that contacts the fish body is adapted to the shape of the support column (12).
6. The processing equipment for Kung Fu Fish according to claim 1, characterized in that: It also includes a conveying device (4) for conveying the fish body onto the support column (12).
7. The processing equipment for Kung Fu Fish according to claim 6, characterized in that: The conveying device (4) includes a roller axis (41) and a conveyor chain (42). The support column (12) is disposed on the roller axis and the support column (12) is non-rolling. The conveyor chain (42) is provided with a hook (43). When the fish is placed on the roller axis, the hook (43) pulls the fish to move on the roller axis and can move onto the support column (12).
8. The processing equipment for Kung Fu Fish according to claim 7, characterized in that: The conveyor belt (42) is provided with roller axes on both sides. The fish body is a fish body with its back opened. When the fish body is placed on the conveyor device (4), the hook (43) is used to hook the fish head of the fish body. One side of the fish body is located on one roller axis, and the other side of the fish body is located on the other roller axis.
9. The processing equipment for Kung Fu Fish according to claim 8, characterized in that: The conveying device (4) is equipped with a pushing power module (44), which drives a push plate (45) that can move from both sides of the conveying device (4) toward the conveying chain (42). The push plate (45) is used to push the fish body to the center line of the conveying device (4) and restrict the fish body from tilting and shifting during movement.