Instant sea cucumber slicing device and process
By designing an instant sea cucumber slicer slicing device with automatic guidance and toggle components, the problem of sea cucumber slices requires manual placement, and automatic slices are realized, saving manpower and improving slice efficiency and quality.
Patent Information
- Application Number
- CN202310369263.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-04-04
- Publication Date
- 2025-09-02
- Estimated Expiration
- 2043-04-04
AI Technical Summary
In the processing of sea cucumber slices, it is necessary to manually place the sea cucumbers to ensure their direction, which consumes manpower.
A fast-food sea cucumber slicer is designed, including a rack, conveyor belt, feed basket, partition and guide roller set. The sea cucumber is automatically guided through gravity and guide structure, so that it can move it to the bottom of the cutter along its length direction, and solve the material problem with the toggle assembly to reduce manual intervention.
It realizes that there is no need for manual placement and tweaking of sea cucumbers during slicing, saving manpower and improving slice efficiency and quality.
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Figure CN116373014B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the field of sea cucumber processing, in particular to an instant sea cucumber slicing device and process. Background Art
[0002] Sea cucumbers are a popular seafood product, rich in over 50 essential nutrients such as amino acids and vitamins, and possess a high nutritional value. Sea cucumbers can be consumed in a variety of ways, including soup, sashimi, and instant sea cucumber slices. The processing of these slices requires slicing the sea cucumbers using a slicer.
[0003] Currently, sea cucumber slicing is typically performed using a general-purpose slicer. This involves the sea cucumber moving along a conveyor belt, while a blade positioned above the conveyor belt rises and falls in a reciprocating cycle, slicing the sea cucumber as it passes beneath the blade. Users can adjust the blade's rise and fall cycle, as well as the conveyor belt's speed, to alter the thickness of the slices.
[0004] Regarding the above-mentioned related technologies, slicing sea cucumbers requires that the sea cucumbers be gradually moved below the cutter along their own length. Currently, during processing, the sea cucumbers need to be manually placed to ensure their direction, which is relatively labor-intensive. Summary of the Invention
[0005] In order to save manpower, the present application provides an instant sea cucumber slicing device and process.
[0006] In a first aspect, the present application provides an instant sea cucumber slicing device, which adopts the following technical solution:
[0007] A fast-food sea cucumber slicing device comprises: a frame, wherein the upper end of the frame is provided with a cutter for cutting the sea cucumber and a lifting assembly for driving the cutter to rise and fall; a conveyor belt, horizontally arranged at the upper end of the frame and located below the cutter, for driving the sea cucumber to move along its own conveying direction; a feeding basket, located at the end of the frame away from the cutter, the height of the bottom surface of the feeding basket gradually decreases towards the cutter, and the lowest point of the feeding basket is flush with the upper belt surface of the conveyor belt; a plurality of partitions, located between the feeding basket and the cutter, the plurality of partitions being parallel to each other and arranged along the length direction of the conveyor belt.
[0008] By adopting the above technical solution, the user places the sea cucumber to be processed on the feed basket, and the sea cucumber moves onto the conveyor belt under the action of gravity; the user controls the spacing between adjacent partitions between the width and length of the sea cucumber, and while the sea cucumber moves onto the conveyor belt, the partition limits and guides the sea cucumber, so that the sea cucumber gradually moves toward the bottom of the cutter along its own length direction, and is then smoothly cut into the required slices without manual placement, effectively saving manpower.
[0009] Optionally, several guide roller groups are rotatably connected above the feed basket, each guide roller group includes two rollers turning in opposite directions, the guide roller groups correspond to the partitions one by one, one end of the guide roller group is aligned with the corresponding partition, and the spacing between adjacent guide roller groups gradually increases in the direction away from the partition.
[0010] By adopting the above technical solution, the sea cucumber is roughly cylindrical. When the sea cucumber moves in the feed basket, the rotating surface of the sea cucumber contacts the roller, thereby straightening the sea cucumber, which is conducive to the sea cucumber entering smoothly between the partitions without manual placement, saving manpower.
[0011] Optionally, the partition includes a first partition and a second partition, the first partition is spaced apart from the second partition, both sides of the first partition are slidably connected with a shift plate, the upper end of the frame is slidably connected with a cross plate along the length direction of the conveyor belt, and the upper ends of the shift plates are fixedly connected to the cross plates.
[0012] By adopting the above technical solution, the horizontal plate drives all the paddles to slide along the length direction of the partition. If a sea cucumber is stuck between the partitions, the movement of the paddle can pry the sea cucumber, and then quickly move the sea cucumber to the bottom of the cutter for slicing. There is no need for manpower to always supervise and solve the problem of sea cucumber getting stuck, which saves manpower.
[0013] Optionally, a limit plate is provided at one end of the frame away from the cutter, and the limit plate is arranged along the width direction of the conveyor belt. The limit plate is slidably connected to a plurality of push plates along the length direction of the conveyor belt. The push plates correspond to the rollers one by one and are parallel to the axes of the corresponding rollers.
[0014] By adopting the above technical solution, the limiting plate can limit the partition, making the spacing between the partitions more stable; if a sea cucumber is stuck at the end of the partition, the push plate can slide along the length direction of the conveyor belt to push the stuck sea cucumber and guide the stuck sea cucumber so that it can move smoothly between the partitions. The structure is simple and easy to control.
[0015] Optionally, the limit plate is slidably connected to a slider along the length direction of the conveyor belt, an elastic member is connected between the slider and the limit plate, and in a natural state of the elastic member, one end of the slider close to the cutter protrudes out of the limit plate.
[0016] By adopting the above technical solution, the cross plate moves back and forth along the length direction of the conveyor belt. When the cross plate approaches the limit plate, it abuts against the slider and pushes it away from the cutter, thereby periodically and automatically pushing the push plate to solve the problem of material jamming at the end of the partition. The structure is simple and does not require additional manual operation, saving manpower.
[0017] Optionally, guide blocks are fixedly provided under the partitions, and the guide blocks are arranged along the length direction of the corresponding partitions. The lower ends of the guide blocks are slidably connected to the conveyor belt, and arc-shaped grooves are provided on both sides of the guide blocks in the width direction.
[0018] By adopting the above technical solution, when the sea cucumber moves between the partitions, if it deviates, the end will contact the groove wall of the arc groove and then be quickly straightened, so that the sea cucumber gradually moves toward the bottom of the cutter along its own length, and the straightening effect is better.
[0019] Optionally, a pressure roller is provided between the partition and the cutter. The pressure roller is arranged along the width direction of the conveyor belt and is rotatably connected to the frame. The rotation direction of the pressure roller is opposite to that of the conveyor belt.
[0020] By adopting the above technical solution, after the sea cucumber moves to the pressure roller, it is clamped by the conveyor belt and the pressure roller, and gradually moves under the cutter. Due to the limitation of the pressure roller, the lifting and lowering of the cutter is not likely to cause the sea cucumber to move around, which is conducive to improving the slicing effect.
[0021] Optionally, the surface of the pressing roller is covered with a sponge layer, and the sponge layer is fixedly connected to the pressing roller.
[0022] By adopting the above technical solution, the sponge layer is in direct contact with the sea cucumber, and the deformation of the sponge layer is used to enhance the conveying effect of the pressure roller on the sea cucumber. At the same time, the soft sponge layer is not easy to cause excessive damage to the surface of the sea cucumber, which is beneficial to improving the quality of sea cucumber slices.
[0023] In a second aspect, the present application provides an instant sea cucumber slicing process, comprising the following steps:
[0024] S1: Pretreatment: preliminary cleaning of the sea cucumber and removal of the internal organs;
[0025] S2: steaming, steaming the pretreated sea cucumber;
[0026] S3: Soaking: placing the sea cucumber in an environment of 0-4°C for soaking;
[0027] S4: Slicing, placing the processed sea cucumbers in a feeding basket, the sea cucumbers are conveyed from between the partitions to the cutter by a conveyor belt, and are cut into slices by the cutter before being discharged;
[0028] S5: Drying and storage.
[0029] By adopting the above technical solution, the processed sea cucumbers are automatically moved to the feed basket along the assembly line, and then moved towards the cutter under the drive of the conveyor belt. During the process, the partition automatically guides and limits the sea cucumbers, so that the sea cucumbers gradually move toward the bottom of the cutter along their own length. There is no need to manually place the sea cucumbers, saving manpower.
[0030] In summary, this application includes at least one of the following beneficial technical effects:
[0031] 1. The user places the sea cucumber to be processed on the feed basket, and the sea cucumber moves onto the conveyor belt under the action of gravity; the user controls the spacing between adjacent partitions to be between the width and length of the sea cucumber. As the sea cucumber moves onto the conveyor belt, the partitions limit and guide the sea cucumber, so that the sea cucumber gradually moves under the cutter along its own length, and is then smoothly cut into the required slices. There is no need for manual placement, which effectively saves manpower;
[0032] 2. The sea cucumbers are roughly cylindrical in shape. When the rollers rotate, the sea cucumbers move in the feeding basket, and the rotating surface of the sea cucumbers contacts the rollers, which helps to align the sea cucumbers, making it easier for them to enter between the partitions. This eliminates the need for manual placement and saves manpower.
[0033] 3. The horizontal plate drives all the paddles to slide along the length direction of the partition. If a sea cucumber is stuck between the partitions, the movement of the paddle can pry the sea cucumber, and then quickly move the sea cucumber to the bottom of the cutter for slicing. No manpower is required to always supervise and solve the problem of sea cucumber getting stuck, saving manpower. BRIEF DESCRIPTION OF THE DRAWINGS
[0034] Figure 1 It is a schematic diagram of the overall structure of an embodiment of the present application.
[0035] Figure 2 It is a partial schematic diagram highlighting the drive components.
[0036] Figure 3 yes Figure 2 Enlarged schematic diagram of part A.
[0037] Figure 4 It is a schematic diagram of the cross-sectional structure of an embodiment of the present application.
[0038] Explanation of the accompanying reference numerals: 1. Frame; 11. Cutter; 12. Limiting plate; 13. Pressing roller; 131. Sponge layer; 14. Threaded rod; 2. Conveyor belt; 3. Feed basket; 4. Guide roller group; 41. Roller; 5. Driving assembly; 51. Synchronous belt; 52. Synchronous wheel; 53. Universal joint; 6. First partition; 7. Second partition; 8. Toggle assembly; 81. Cross plate; 82. Toggle plate; 83. Push plate; 84. Elastic member; 85. Slider; 9. Guide block; 91. Arc groove. DETAILED DESCRIPTION
[0039] The present application is further described in detail below in conjunction with all the accompanying drawings.
[0040] The embodiment of the present application discloses an instant sea cucumber slicing device.
[0041] Reference Figure 1A fast-food sea cucumber slicing device includes a frame 1, a conveyor belt 2 and a cutter 11 are installed on the upper end of the frame 1, the cutter 11 is slidably connected to the frame 1 in the vertical direction, one end of the conveyor belt 2 is located below the cutter 11, and the sea cucumber moves from the end of the frame 1 away from the cutter 11 to the conveyor belt 2, and moves toward the cutter 11 driven by the conveyor belt 2. When passing under the cutter 11, it is cut into slices under the lifting action of the cutter 11 to complete the slicing process.
[0042] Reference Figure 1 The frame 1 is in the shape of a rectangular parallelepiped, and the conveyor belt 2 is arranged horizontally along the length direction of the frame 1. A feeding basket 3 is installed at the end of the frame 1 away from the cutter 11. The feeding basket 3 is located above the conveying starting end of the conveyor belt 2. The sea cucumbers to be sliced are initially located in the feeding basket 3. The height of the bottom surface of the feeding basket 3 gradually decreases in the direction close to the cutter 11. Under the action of gravity, the sea cucumbers in the feeding basket 3 automatically move downward along the inclined bottom surface of the feeding basket 3.
[0043] Reference Figure 1 and Figure 2 , several groups of guide roller groups 4 are rotatably connected to the bottom surface of the feed basket 3, and the several guide roller groups 4 are arranged at equal intervals along the width direction of the frame 1. Each group of guide roller groups 4 includes two parallel rollers 41. The axes of the rollers 41 are parallel to the bottom surface of the feed basket 3, and the axes are located below the bottom surface of the feed basket 3, that is, the radial upper and lower halves of the rollers 41 are embedded in the bottom of the feed basket 3, and the upper half protrudes from the bottom surface of the feed basket 3. The sea cucumbers in the feed basket 3 can directly contact the rollers 41.
[0044] Reference Figure 2 and Figure 3 The feed basket 3 is equipped with a driving assembly 5 for driving the rotating roller 41 to rotate. The driving assembly 5 includes a synchronous belt 51 and several synchronous wheels 52. The synchronous wheels 52 are all rotatably connected to the feed basket 3. The synchronous wheels 52 correspond to the guide roller groups 4 one by one and are arranged along the width direction of the frame 1. The frame 1 is equipped with a motor coaxially connected to one of the synchronous wheels 52. The synchronous belt 51 is engaged with all the synchronous wheels 52 at the same time. After the motor is started, all the synchronous wheels 52 can be driven to rotate synchronously.
[0045] Reference Figure 2 and Figure 3 The driving assembly 5 also includes a plurality of universal joints 53. The universal joints 53 are common in the prior art and will not be elaborated on in detail in this embodiment. The universal joints 53 correspond one-to-one to the synchronous wheels 52, and one end is coaxially fixedly connected to the corresponding synchronous wheel 52, and the other end is coaxially fixedly connected to one of the rollers 41 of the corresponding guide roller group 4. Under the action of the universal joints 53, the synchronous wheel 52 drives the corresponding roller 41 of the guide roller group 4 to rotate.
[0046] Reference Figure 3The higher ends of the two rollers 41 of the same group of guide rollers 4 are coaxially fixed with gears, and the gears of the two rollers 41 of the same group are engaged with each other, so that the two rollers 41 of the same group rotate in opposite directions, and the rollers 41 of adjacent guide roller groups 4 that are close to each other turn in opposite directions. Under the rotation of the rollers 41, the rotating surface of the sea cucumber contacts the rollers 41 and is driven by the rollers 41 to rotate, thereby correcting the direction of the sea cucumber.
[0047] Reference Figure 3 and Figure 4 The spacing between the higher ends of adjacent guide roller groups 4 is greater than the spacing between the lower ends. The sea cucumber moves downward between the two adjacent guide roller groups 4. The spacing between the guide roller groups 4 at the position where the sea cucumber is located gradually becomes smaller, and then the rotating roller 41 is used to correct the direction of the sea cucumber, so that the sea cucumber moves along its own length direction and gradually moves onto the conveyor belt 2.
[0048] Reference Figure 3 and Figure 4 The lowest point of the bottom surface of the feed basket 3 is flush with the upper end surface of the conveyor belt 2. When the sea cucumber moves to the lowest point of the feed basket 3, it automatically contacts the upper end surface of the conveyor belt 2 and moves with the conveyor belt 2 under the friction of the conveyor belt 2. A number of partitions are provided above the conveyor belt 2. The partitions are located between the feed basket 3 and the cutter 11. The partitions correspond to the guide roller group 4 one by one and are arranged at equal intervals along the width direction of the conveyor belt 2. Two limit plates 12 are fixedly installed on the frame 1. Both limit plates 12 are arranged along the width direction of the frame 1. All partitions are located between the two limit plates 12, and the ends of the partitions are fixedly connected to the limit plates 12 at the corresponding positions. The limit plates 12 support the partitions on the conveyor belt 2.
[0049] Reference Figure 4 The partitions are all arranged along the length direction of the conveyor belt 2. All partitions are parallel to each other, and the ends away from the cutter 11 are aligned with the guide roller group 4. When the sea cucumbers in the feed basket 3 move from between two adjacent guide roller groups 4 to the conveyor belt 2, they enter between the corresponding two partitions, and then approach the cutter 11 along the conveyor belt 2 under the limitation of the two partitions; the distance between the two adjacent partitions is greater than the width of the sea cucumber and smaller than the length of the sea cucumber. It is not easy for the sea cucumber to change its angle too much when moving between the partitions, thereby ensuring that one end of the sea cucumber enters the cutter 11 to the bottom first, thereby improving the slicing quality.
[0050] Reference Figure 4 The lower end of the partition is fixedly installed with a guide block 9. The guide block 9 is in the shape of a strip arranged along the length direction of the partition and has the same length as the partition. Arc grooves 91 are opened on both sides of the guide block 9 in the width direction. The length of the arc groove 91 is the same as the length of the partition. When the sea cucumber enters between the partitions and moves with the conveyor belt 2, if its end deviates from the guide block 9, the groove wall of the arc groove 91 will give the sea cucumber a reaction force away from the guide block 9, thereby quickly correcting the direction of the sea cucumber.
[0051] Reference Figure 1 Since sea cucumbers have many spines on their surface, the spines and the sea cucumbers themselves will become harder during the low-temperature processing. If a sea cucumber is accidentally stuck between two adjacent partitions, it will affect the subsequent movement of the sea cucumber and require manual operation to move the stuck sea cucumber. The provision of the moving assembly 8 in this embodiment saves the manpower consumed in this operation.
[0052] Reference Figure 1 The shift assembly 8 comprises a horizontal plate 81 and a plurality of shift plates 82. The horizontal plate 81 is mounted above the partition along the width of the frame 1. A threaded rod 14 is rotatably connected to one side of the frame 1 along its width. The threaded rod 14 is disposed along the length of the frame 1 and is connected to a motor that drives its rotation. During machining, the motor drives the threaded rod 14 to periodically rotate forward and reverse. One end of the horizontal plate 81 is threadedly connected to the threaded rod 14, and the other end is slidably connected to the frame 1. As the threaded rod 14 rotates, the horizontal plate 81 slides along the length of the frame 1 due to the action of the threads.
[0053] Reference Figure 1 , the paddles 82 are all fixedly mounted on the lower end surface of the transverse plate 81 and move synchronously with the transverse plate 81. The partitions include a first partition 6 and a second partition 7. The first partition 6 and the second partition 7 are spaced apart. Each first partition 6 corresponds to two paddles 82 and is located between the corresponding two paddles 82. The paddles 82 are all slidably connected to the side surfaces of the corresponding first partitions 6. During the processing, the paddles 82 slide along the length direction of the first partition 6 with the transverse plate 81. If the sea cucumber is stuck between the first partition 6 and the adjacent second partition 7, when the paddle 82 slides to the sliding position, the end of the sea cucumber contacting the first partition 6 can be paddled, thereby freeing the sea cucumber from the stuck state and moving it toward the cutter 11 again along the conveyor belt 2. No manual paddle is required, saving manpower.
[0054] Reference Figure 1 and Figure 4 When the sea cucumbers enter the space between the partitions in the feed basket 3, due to the reduced space, if there are too many sea cucumbers, it is also easy to get stuck. This embodiment uses the toggle assembly 8 to solve the problem of blockage at the end of the partition. The toggle assembly 8 also includes a slider 85. The slider 85 is installed on the limit plate 12 closer to the feed basket 3 along the width direction of the frame 1. The limit plate 12 closer to the feed basket 3 is provided with a strip through hole along the length direction of the frame 1. The slider 85 is slidably connected to the strip through hole along the length direction of the frame 1. An elastic member 84 is connected between the slider 85 and the limit plate 12. The elastic member 84 is a spring. The width of the slider 85 is greater than the width of the limit plate 12. In the natural state of the elastic member 84, the end of the slider 85 close to the cross plate 81 protrudes out of the strip through hole.
[0055] Reference Figure 1 and Figure 4 When the cross plate 81 slides and abuts the slider 85, it pushes the slider 85 in the direction away from the cutter 11. A plurality of push plates 83 are fixedly installed on one end of the slider 85 close to the feed basket 3. The push plates 83 correspond to the rollers 41 one by one and are parallel to the axis of the corresponding rollers 41. That is, the sea cucumbers move from between two adjacent push plates 83 to between the partitions. When there are many sea cucumbers, they will be stuck at the push plates 83. When the cross plate 81 pushes the slider 85, the push plate 83 slides with the slider 85 in the direction away from the cutter 11, thereby pushing the sea cucumbers in the direction away from the cutter 11. When the cross plate 81 moves back and no longer abuts the slider 85, the slider 85 is reset under the action of the elastic member 84, pulling the push plate 83 back. At this time, the sea cucumbers move back between the partitions under the action of gravity, and no manual shifting is required, saving manpower.
[0056] Reference Figure 4 A pressure roller 13 is provided between the partition and the cutter 11. The pressure roller 13 is provided along the width direction of the conveyor belt 2 and is rotatably connected to the frame 1. During processing, the pressure roller 13 rotates in the opposite direction to the conveyor belt 2. A sponge layer 131 is fixed on the surface of the pressure roller 13. When the sea cucumber moves to the bottom of the pressure roller 13, it is clamped by the sponge layer 131 and the conveyor belt 2, and approaches the cutter 11 at the same time. The frame 1 is equipped with a lifting component that drives the cutter 11 to rise and fall cyclically. The lifting component can be a common hydraulic column. This embodiment will not be elaborated in detail. The sea cucumber is cut into slices after passing under the cutter 11. Since the sea cucumber is pressed during the slicing process, it is not easy to be accidentally moved by the cutter 11, which is conducive to ensuring the slicing effect. Since the sea cucumber is in direct contact with the sponge layer 131, the sponge layer 131 is soft in texture. After deformation, the friction force on the sea cucumber is greater, and it is not easy to damage the surface of the sea cucumber, thereby ensuring the quality of the sea cucumber during the slicing process.
[0057] The implementation principle of the instant sea cucumber slicing device in the embodiment of the present application is as follows: the sea cucumber to be processed is placed on the feed basket 3 and moves toward the conveyor belt 2 under the action of gravity; while the sea cucumber moves onto the conveyor belt 2, the partition and the guide block 9 limit and guide the sea cucumber, so that the sea cucumber gradually moves toward the bottom of the cutter 11 along its own length direction, and is then smoothly cut into the required slices without manual placement; and the toggle component 8 effectively solves the problem of the sea cucumber getting stuck near the partition, without the need for manual toggle, which effectively saves manpower.
[0058] The embodiments of the present application also disclose a process for slicing instant sea cucumbers.
[0059] A process for slicing instant sea cucumbers comprises the following steps:
[0060] S1: Pretreatment: the user places the sliced sea cucumber in warm water for preliminary cleaning, removes the internal organs and cleans it again;
[0061] S2: steaming, the user puts the pre-treated sea cucumber into hot water for steaming until the sea cucumber is cooked;
[0062] S3: Soaking: The user places the cooked sea cucumber in an environment of 0-4°C for soaking. This temperature is the best for soaking the sea cucumber and is not likely to damage the internal structure of the sea cucumber.
[0063] S4: Slicing, placing the processed sea cucumbers in the feeding basket 3, the sea cucumbers are conveyed from between the partitions by the conveyor belt 2 to the cutter 11, and are cut into slices by the cutter 11 and discharged. During the process, the processing process is directly connected to the feeding basket 3 using common assembly line equipment such as a conveyor belt, without manual operation, saving manpower;
[0064] S5: Drying and preservation: the user connects the end of the conveyor belt 2 to the drying process and directly conveys the sea cucumber slices to the drying process for drying and preservation.
[0065] The above are all preferred embodiments of the present application, and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.
Claims
1. An instant sea cucumber slicing device, characterized in that: include: A frame (1), wherein the upper end of the frame (1) is provided with a cutter (11) for cutting sea cucumbers and a lifting assembly for driving the cutter (11) to rise and fall; A conveyor belt (2) is horizontally arranged at the upper end of the frame (1) and located below the cutter (11), and is used to drive the sea cucumber to move along its own conveying direction; The feed basket (3) is located at one end of the frame (1) away from the cutter (11), and the height of the bottom surface of the feed basket (3) gradually decreases toward the cutter (11), and the lowest point of the feed basket (3) is flush with the upper belt surface of the conveyor belt (2); A plurality of partitions are located between the feed basket (3) and the cutter (11), and the plurality of partitions are parallel to each other and arranged along the length direction of the conveyor belt (2); A plurality of guide roller groups (4) are rotatably connected above the feed basket (3), each guide roller group (4) comprising two rollers (41) rotating in opposite directions, the guide roller groups (4) corresponding to the partitions one by one, one end of the guide roller group (4) being aligned with the corresponding partition, and the spacing between adjacent guide roller groups (4) gradually increasing in the direction away from the partition; The partition comprises a first partition (6) and a second partition (7), the first partition (6) and the second partition (7) are spaced apart, both sides of the first partition (6) are slidably connected to a shift plate (82), the upper end of the frame (1) is slidably connected to a transverse plate (81) along the length direction of the conveyor belt (2), and the upper ends of the shift plates (82) are fixedly connected to the transverse plate (81); A limit plate (12) is provided at one end of the frame (1) away from the cutter (11), and the limit plate (12) is arranged along the width direction of the conveyor belt (2). The push plates (83) correspond to the rollers (41) one by one and are parallel to the axes of the corresponding rollers (41). The limiting plate (12) is slidably connected to a slider (85) along the length direction of the conveyor belt (2); a plurality of push plates (83) are fixedly installed on one end of the slider (85) close to the feed basket (3); an elastic member (84) is connected between the slider (85) and the limiting plate (12); and when the elastic member (84) is in a natural state, one end of the slider (85) close to the cutter (11) protrudes out of the limiting plate (12).
2. The instant sea cucumber slicing device according to claim 1, characterized in that: A guide block (9) is fixedly provided below each of the partitions. The guide blocks (9) are arranged along the length direction of the corresponding partition. The lower end of the guide block (9) is slidably connected to the conveyor belt (2). Arc grooves (91) are provided on both sides of the guide block (9) in the width direction.
3. The instant sea cucumber slicing device according to claim 1, characterized in that: A pressure roller (13) is provided between the partition and the cutter (11). The pressure roller (13) is provided along the width direction of the conveyor belt (2) and is rotatably connected to the frame (1). The rotation direction of the pressure roller (13) is opposite to that of the conveyor belt (2).
4. The instant sea cucumber slicing device according to claim 3, characterized in that: The surface of the pressing roller (13) is covered with a sponge layer (131), and the sponge layer (131) is fixedly connected to the pressing roller (13).
5. A process for slicing instant sea cucumbers, applied to the instant sea cucumber slicing device according to any one of claims 1 to 4, comprising the following steps: S1: Pretreatment: preliminary cleaning of the sea cucumber and removal of the internal organs; S2: steaming, steaming the pretreated sea cucumber; S3: Soaking: placing the sea cucumber in an environment of 0-4°C for soaking; S4: Slicing, placing the processed sea cucumbers in a feeding basket (3), transporting the sea cucumbers from between the partitions to the cutter (11) via the conveyor belt (2), and then being cut into slices by the cutter (11) and discharged; S5: Drying and storage.
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