Fish body section cutting device for tilapia mossambica processing
By employing a combination of moving plates, electric rods, and fastening plates in the tilapia processing fish body segmentation device, the problems of inconvenient cutter position adjustment and excessive device length have been solved, achieving convenient cutter adjustment and efficient material output, thus improving processing efficiency and space utilization.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- YUNNAN LANJIANG FISHERY & AGRICULTURE DEVELOPMENT CO LTD
- Filing Date
- 2025-06-12
- Publication Date
- 2026-05-15
AI Technical Summary
The existing tilapia processing and cutting device is inconvenient to adjust the position of the cutting blade, and the device is too long, taking up too much space and reducing the utilization rate of the site.
By employing a combination of a moving plate, electric rod, fastening plate, guide rod, main slider, fastening sleeve, and fastening layer, multiple sets of cutters can be easily fixed, and rapid material discharge can be achieved through the cooperation of hydraulic rod and limiting plate, thus shortening the length of the device.
The process of adjusting the cutter position has been simplified, improving the convenience of cutter position adjustment and the space utilization of the device, thereby increasing the processing efficiency of tilapia.
Smart Images

Figure CN224234611U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of tilapia processing equipment, specifically to a device for cutting tilapia into sections during processing. Background Technology
[0002] Tilapia is a major farmed aquatic product in my country. Its flesh is delicious, with few bones, high in protein, and rich in the eight essential amino acids required by the human body. Among the non-essential amino acids, glutamic acid and glycine are relatively high. Tilapia is loved by people for these characteristics and is known as "white-fleshed salmon" and "fish of the 21st century". In recent years, it has become one of the hot spots for aquaculture, processing and export.
[0003] A search revealed an existing technology for a device used to cut tilapia into segments (publication number: CN219288618U). The document describes a device where "side plates are bolted to both sides of the top of the base plate, a top plate is bolted to the top of the side plates, a first cylinder is bolted inside the top plate, a mounting bracket is bolted to the bottom of the first cylinder, a sliding rod is bolted to the bottom of the mounting bracket, a sliding sleeve is slidably fitted onto the surface of the sliding rod, a clamping block is bolted to the bottom of the sliding sleeve, a cutter is engaged at the bottom of the clamping block, a second cylinder is bolted inside the side plates, and a push plate is bolted to one end of the second cylinder." This device uses the first cylinder to drive the cutter to cut the tilapia into segments, and then pulls the sliding sleeve, causing the sliding sleeve to move on the surface of the sliding rod. The device slides and then the limiting bolt is turned to fix the sliding sleeve, which allows the user to easily adjust the width of the cut section. The second cylinder drives the push plate to move, and then the push plate pushes the cut fish body out through the discharge port, which can effectively and quickly discharge the processed fish body. However, the device requires turning the limiting bolt once for each movement of the cutter position. If multiple sets of cutters need to be adjusted, multiple sets of limiting bolts need to be turned, making the cutter position adjustment process inconvenient. At the same time, the device pushes the fish body out quickly by using the second cylinder, which makes the device too long. As a result, the second cylinder in the device needs to occupy extra space, thus reducing the utilization rate of the site space. Utility Model Content
[0004] To overcome the shortcomings of the existing technology, a device for cutting tilapia into sections is provided to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, a device for processing tilapia into segments is provided, comprising: a base, an mounting frame fixedly connected to the upper surface of the base, a hydraulic cylinder fixedly connected to the upper surface of the mounting frame, a movable plate fixedly connected to the telescopic rod of the hydraulic cylinder, a main slide groove formed on the lower surface of the movable plate, a guide rod fixedly connected within the main slide groove, a main slider slidably connected to the main slide groove via the sleeved guide rod, a fixed plate fixedly connected to the lower surface of the main slider, and a cutter fixedly connected to the lower surface of the fixed plate; a buffer groove formed on the side of the main slide groove, an electric rod fixedly connected within the buffer groove, a fastening plate fixedly connected to the telescopic rod of the electric rod, the fastening plate slidably connected within the buffer groove, and a rotating groove formed in the middle of the upper surface of the base, a carrying plate movably connected to the upper end of the rotating groove via a bearing, and a hydraulic rod disposed between the carrying plate and the rotating groove.
[0006] Preferably, the movable plate has a rectangular structure, and the cross-section formed by the combination of the movable plate and the main slide groove is U-shaped. Two sets of guide columns are symmetrically connected at both ends of the upper surface of the movable plate, and both sets of guide columns are cylindrical. At the same time, scale lines are symmetrically opened on the outer side of the movable plate.
[0007] Preferably, the mounting frame has a U-shaped structure, and guide holes are opened on the upper surface of the mounting frame corresponding to the positions of the guide posts. Two sets of guide posts are symmetrically distributed on both sides of the hydraulic cylinder, and the size of the inner cavity of the mounting frame is adapted to the size of the moving plate.
[0008] Preferably, the guide rod fixedly connected to the inner cavity of the movable plate has a cylindrical structure, and the buffer groove opened on the side of the main slide groove has a long strip structure. Two sets of mounting ports are symmetrically opened in the buffer groove, and a set of electric rods are fixedly connected to each of the two sets of mounting ports.
[0009] Preferably, the main slider has a square structure, the main slider and the main slide groove are matched in size, and a through hole is opened in the middle of the main slider relative to the guide rod, and a fastening sleeve is fixedly connected in the through hole, and the fastening sleeve has a cylindrical structure.
[0010] Preferably, an auxiliary groove is provided on the side of the main slider relative to the position of the buffer groove, and a fastening layer is fixedly connected in the auxiliary groove. The fastening layer has a rectangular structure and the length of the fastening layer is greater than the width of the opening of the buffer groove.
[0011] Preferably, the fastening plate has a long strip structure, the size of the fastening plate and the buffer groove are matched, and multiple sets of protrusions are evenly arranged on the surface of the fastening plate, and the multiple sets of protrusions are all hemispherical structures.
[0012] Preferably, the base has an overall U-shaped structure, and the two ends of the hydraulic rod are movably connected to the surface of the carrying plate and the base respectively through bearings. The carrying plate has a rectangular structure, and the size of the carrying plate and the opening of the rotating groove are matched. At the same time, the limiting plate fixedly connected to the upper surface of the base has a long strip structure.
[0013] Compared with the prior art, the beneficial effects of this utility model are as follows: through the cooperation of the moving plate, electric rod, fastening plate, guide rod, main slider, fastening sleeve and fastening layer, the device can synchronously and conveniently fix multiple sets of cutters after the position is adjusted. This can not only effectively simplify the operation process of cutting position adjustment, but also improve the convenience of cutting position adjustment. At the same time, through the cooperation of the base, hydraulic rod, limiting plate and carrying plate, the device can quickly discharge the fish after cutting, and effectively shorten the length of the device, reduce the space volume required by the device, and help improve the utilization rate of site space. Attached Figure Description
[0014] Figure 1 This is a front view schematic diagram of an embodiment of the present utility model.
[0015] Figure 2 This is a side view of an embodiment of the present utility model.
[0016] Figure 3 This is a partial disassembly diagram of the main slider and the moving plate in an embodiment of the present invention.
[0017] Figure 4 This is a schematic diagram of the base and the carrying plate of this utility model embodiment.
[0018] In the diagram: 1. Base; 2. Loading plate; 3. Limiting plate; 4. Hydraulic rod; 5. Mounting frame; 6. Cutter; 7. Fixing plate; 8. Main slider; 9. Guide rod; 10. Fastening plate; 11. Moving plate; 12. Guide column; 13. Electric rod; 14. Hydraulic cylinder; 15. Fastening sleeve; 16. Fastening layer. Detailed Implementation
[0019] Reference Figures 1 to 4 As shown, this utility model provides a device for cutting tilapia into sections, comprising: a base 1, an mounting frame 5 fixedly connected to the upper surface of the base 1, a hydraulic cylinder 14 fixedly connected to the upper surface of the mounting frame 5, a telescopic rod of the hydraulic cylinder 14 fixedly connected to a moving plate 11, a main slide groove formed on the lower surface of the moving plate 11, a guide rod 9 fixedly connected in the main slide groove, and a main slider 8 slidably connected to the main slide groove via the sleeved guide rod 9, a fixing plate 7 fixedly connected to the lower surface of the main slider 8, and a cutter 6 fixedly connected to the lower surface of the fixing plate 7, a buffer groove formed on the side of the main slide groove, an electric rod 13 fixedly connected in the buffer groove, and a fastening plate 10 fixedly connected to the telescopic rod of the electric rod 13, the fastening plate 10 slidably connected in the buffer groove, and a rotating groove formed in the middle of the upper surface of the base 1, the upper end of the rotating groove being movably connected to a carrying plate 2 via a bearing, and a hydraulic rod 4 being provided between the carrying plate 2 and the rotating groove.
[0020] In this embodiment, the tilapia is placed on the surface of the carrier plate 2. The hydraulic cylinder 14 is activated, and its extension rod pushes the moving plate 11 downwards. The moving plate 11 then moves the fixedly connected main slider 8, fixed plate 7, and cutter 6 downwards simultaneously, allowing the cutter 6 to smoothly cut the tilapia into segments. The hydraulic rod 4 is then activated, causing one end of the carrier plate 2 to rotate. Under gravity, the tilapia pieces are quickly discharged along the inclined surface of the carrier plate 2, improving the efficiency of the device in processing tilapia. When the width of the tilapia pieces needs adjustment, the electric... The reset switch of lever 13 causes the telescopic rod of electric lever 13 to drive the fastening plate 10 to disengage from the surface of the fastening layer 16, thereby releasing the fixed connection between the main slider 8 and the moving plate 11. Then, the main slider 8 and the fixed plate 7 are pushed to adjust the position of the corresponding cutter 6. The scale lines on the outer side of the moving plate 11 can help enhance the convenience and accuracy of the cutter 6 position adjustment. After the cutter 6 position is adjusted, the electric lever 13 is activated again. The telescopic rod of electric lever 13 will push the fastening plate 10 to simultaneously press and fix the fastening layer 16 of multiple main sliders 8, thereby realizing the batch fixing of multiple cutters 6 and improving the convenience of the device adjustment.
[0021] In a preferred embodiment, the movable plate 11 has a rectangular structure, and the cross-section formed by the movable plate 11 and the main slide groove is U-shaped. Two sets of guide posts 12 are symmetrically connected to the two ends of the upper surface of the movable plate 11, and both sets of guide posts 12 are cylindrical. At the same time, scale lines are symmetrically opened on the outer side of the movable plate 11.
[0022] In this embodiment, as Figure 1 , Figure 2 and Figure 3 The main slide groove helps to restrict the movement path of the main slide block 8 and its corresponding cutter 6, making it easier to adjust the position of the cutter 6. At the same time, the scale lines improve the convenience and accuracy for workers to adjust the position of the cutter 6.
[0023] As a preferred embodiment, the mounting frame 5 has a U-shaped structure. Guide holes are opened on the upper surface of the mounting frame 5 relative to the position of the guide post 12. The two sets of guide posts 12 are symmetrically distributed on both sides of the hydraulic cylinder 14. At the same time, the size of the inner cavity of the mounting frame 5 is adapted to the size of the moving plate 11.
[0024] In this embodiment, as Figure 1 The guide post 12 and the guide hole are matched in size, which can help enhance the stability of the moving plate 11 when it moves and help enhance the effect of the cutter 6 on cutting tilapia into segments.
[0025] In a preferred embodiment, the guide rod 9 fixedly connected to the inner cavity of the movable plate 11 has a cylindrical structure, and the buffer groove opened on the side of the main slide groove has a long strip structure. Two sets of mounting ports are symmetrically opened in the buffer groove, and a set of electric rods 13 are fixedly connected to each of the two sets of mounting ports.
[0026] In this embodiment, as Figure 1 , Figure 2 and Figure 3 The buffer groove allows the fastening plate 10 to move within the main slide groove, preventing the fastening plate 10 from interfering with the movement of the main slider 8. The electric rod 13 allows the fastening plate 10 to automatically fix or release the main slider 8, improving the convenience of adjusting the position of the cutter 6.
[0027] In a preferred embodiment, the main slider 8 has a square structure, the size of the main slider 8 is adapted to the main slide groove, and a through hole is opened in the middle of the main slider 8 relative to the guide rod 9, and a fastening sleeve 15 is fixedly connected in the through hole, while the fastening sleeve 15 has a cylindrical structure.
[0028] In this embodiment, as Figure 1 , Figure 2 and Figure 3 The main slider 8 and the main slide groove are matched in size, which helps to enhance the stability of the main slider 8 when it moves. The fastening sleeve 15 is made of soft rubber, which helps to increase the frictional resistance between the main slider 8 and the guide rod 9, so that the main slider 8 does not move when there is no external force on the surface of the guide rod 9, thereby helping to improve the convenience of adjusting the position of the main slider 8 and the cutter 6.
[0029] In a preferred embodiment, an auxiliary groove is provided on the side of the main slider 8 corresponding to the position of the buffer groove. A fastening layer 16 is fixedly connected in the auxiliary groove, and the fastening layer 16 has a rectangular structure, and the length of the fastening layer 16 is greater than the width of the opening of the buffer groove.
[0030] In this embodiment, as Figure 2 and Figure 3 The fastening layer 16 can be made of soft rubber, which can help enhance the fixing effect when the main slider 8 and the fastening plate 10 abut against each other, and reduce the probability of positional displacement of the main slider 8 and its corresponding cutter 6.
[0031] In a preferred embodiment, the fastening plate 10 has a long strip structure, the size of the fastening plate 10 is adapted to the size of the buffer groove, and multiple sets of protrusions are evenly arranged on the surface of the fastening plate 10, and the multiple sets of protrusions are all hemispherical structures.
[0032] In this embodiment, as Figure 2 and Figure 3The size setting of the fastening plate 10 can help enhance the stability of the fastening plate 10 when it moves in the buffer groove, and the protrusion structure on the surface of the fastening plate 10 can help enhance the frictional resistance between the fastening plate 10 and the fastening layer 16 when the fastening plate 10 abuts, thus enhancing the fixing effect between the moving plate 11 and the main slider 8.
[0033] In a preferred embodiment, the base 1 has a U-shaped structure, and the two ends of the hydraulic rod 4 are movably connected to the surface of the carrying plate 2 and the base 1 respectively through bearings. The carrying plate 2 has a rectangular structure, and the size of the carrying plate 2 and the opening of the rotating groove are matched. At the same time, the limiting plate 3 fixedly connected to the upper surface of the base 1 has a long strip structure.
[0034] In this embodiment, as Figure 1 , Figure 2 and Figure 4 The hydraulic rod 4 is movably connected to the carrying plate 2 and the base 1 at both ends, so that the hydraulic rod 4 can smoothly drive the carrying plate 2 to rotate in the rotating groove opened in the base 1. Then the carrying plate 2 can quickly discharge the material through its own rotation. Moreover, the setting of the limiting plate 3 can limit the rotation range of the carrying plate 2 and ensure the stability of the tilapia when it is placed.
Claims
1. A device for processing tilapia into segments, comprising: The base (1) is characterized in that: the upper surface of the base (1) is fixedly connected to the mounting frame (5), the upper surface of the mounting frame (5) is fixedly connected to the hydraulic cylinder (14), and the telescopic rod of the hydraulic cylinder (14) is fixedly connected to the moving plate (11). The lower surface of the moving plate (11) is provided with a main slide groove, and the guide rod (9) is fixedly connected in the main slide groove. The main slider (8) is slidably connected to the main slide groove through the sleeved guide rod (9). The lower surface of the main slider (8) is fixedly connected to the fixing plate (7), and the lower surface of the fixing plate (7) is fixedly connected to the cutter (6). At the same time, the side of the main slide groove is provided with a buffer groove, and the electric rod (13) is fixedly connected in the buffer groove. The telescopic rod of the electric rod (13) is fixedly connected to the fastening plate (10). The fastening plate (10) is slidably connected in the buffer groove. The middle part of the upper surface of the base (1) is provided with a rotating groove. The upper end of the rotating groove is movably connected to the carrying plate (2) through the bearing. The hydraulic rod (4) is provided between the carrying plate (2) and the rotating groove.
2. The device for cutting tilapia into segments according to claim 1, characterized in that, The movable plate (11) has a rectangular structure. The cross section formed by the movable plate (11) and the main slide groove is U-shaped. Two sets of guide columns (12) are symmetrically connected at both ends of the upper surface of the movable plate (11). Both sets of guide columns (12) are cylindrical. At the same time, scale lines are symmetrically opened on the outer side of the movable plate (11).
3. The device for cutting tilapia into segments according to claim 1, characterized in that, The mounting frame (5) has a U-shaped structure. The upper surface of the mounting frame (5) has guide holes corresponding to the positions of the guide posts (12). The two sets of guide posts (12) are symmetrically distributed on both sides of the hydraulic cylinder (14). At the same time, the size of the inner cavity of the mounting frame (5) is compatible with the size of the moving plate (11).
4. The device for cutting tilapia into segments according to claim 1, characterized in that, The guide rod (9) fixedly connected to the inner cavity of the movable plate (11) has a cylindrical structure, and the buffer groove opened on the side of the main slide groove has a long strip structure. Two sets of installation ports are symmetrically opened in the buffer groove, and a set of electric rods (13) are fixedly connected in each of the two sets of installation ports.
5. The device for cutting tilapia into segments according to claim 1, characterized in that, The main slider (8) has a square structure. The main slider (8) and the main slide groove are matched in size. A through hole is opened in the middle of the main slider (8) relative to the guide rod (9). A fastening sleeve (15) is fixedly connected in the through hole. The fastening sleeve (15) has a cylindrical structure.
6. The device for cutting tilapia into segments according to claim 1, characterized in that, An auxiliary groove is opened on the side of the main slider (8) relative to the position of the buffer groove. A fastening layer (16) is fixedly connected in the auxiliary groove, and the fastening layer (16) has a rectangular structure. The length of the fastening layer (16) is greater than the width of the opening of the buffer groove.
7. The device for cutting tilapia into segments according to claim 1, characterized in that, The fastening plate (10) has a long strip structure. The size of the fastening plate (10) and the buffer groove are matched. Multiple sets of protrusions are evenly arranged on the surface of the fastening plate (10), and the multiple sets of protrusions are all hemispherical structures.
8. The device for cutting tilapia into segments according to claim 1, characterized in that, The base (1) has a U-shaped structure, and the two ends of the hydraulic rod (4) are movably connected to the surface of the carrying plate (2) and the base (1) respectively through bearings. The carrying plate (2) has a rectangular structure, and the size of the carrying plate (2) and the opening of the rotating groove are compatible. At the same time, the limiting plate (3) fixedly connected to the upper surface of the base (1) has a long strip structure.