Efficient processing platform for tilapia mossambica slicing

By designing an efficient processing platform for fish fillet slitting mechanism, material pushing mechanism and ozone disinfection mechanism for tilapia slices, the problem of difficulty in thorough disinfection of existing devices is solved, and efficient and safe fish fillet processing is achieved.

CN223236430UActive Publication Date: 2025-08-19GUANGDONG YECHANG FOOD CO LTD
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Patent Information

Application Number
CN202422618112.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-28
Publication Date
2025-08-19
Estimated Expiration
2034-10-28

AI Technical Summary

Technical Problem

The blade frame module and fish section lifting groove of the existing tilapia slicer device are complex in structure, and it is difficult to thoroughly clean and disinfect, resulting in bacterial growth and affecting food safety.

Method used

Design an efficient processing platform including a fish fillet slant cutting mechanism, a material pushing mechanism and an ozone disinfection mechanism, and use an ozone generator to sterilize and disinfect the fish fillet slant cutting mechanism and a material pushing mechanism to ensure the disinfection effect.

Benefits of technology

It effectively avoids bacteria adhesion of fish fillets when sliced, improves food safety, and improves processing efficiency and labor saving.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an efficient processing platform for tilapia slicing, which comprises a slicing platform, a fillet inclined cutting mechanism, a material pushing mechanism and a disinfection mechanism, the slicing platform is provided with an accommodating space, and the fillet inclined cutting mechanism is arranged in the accommodating space and is used for carrying out inclined slicing operation on fish meat placed in the accommodating space; the pushing mechanism is arranged in the accommodating space, is positioned on one side of the fillet beveling mechanism, and is used for pushing out the fillets subjected to beveling from the fillet beveling mechanism. According to the utility model, the disinfection mechanism for performing ozone disinfection on internal elements is designed on the slicing platform, during disinfection, the slicing platform can be sealed into a sealed space by utilizing the sealing cover plate, then ozone is discharged into the slicing platform by utilizing the disinfection mechanism, and the ozone can be in full contact with the fillet inclined cutting mechanism and the pushing mechanism; therefore, the disinfection quality of the fillet beveling mechanism and the pushing mechanism can be ensured, and bacteria can be prevented from being adhered to fillets during slicing as much as possible.
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Description

Technical Field

[0001] The utility model belongs to the technical field of fish processing, in particular to a high-efficiency processing platform for tilapia slices. Background Art

[0002] Tilapia is delicious, tender, with few bones and no intramuscular spines. It tastes great whether braised or steamed. There are many ways to cook tilapia. When selling fish, customers need to slice the fish meat when processing it.

[0003] For example, the Chinese utility model patent with the announcement number CN218736940U specifically discloses a fish fillet slicing device, which is characterized by comprising a frame, a transmission rod, a blade frame module, a fish fillet lifting trough and a feeding module; the blade frame module is driven by a main motor to perform reciprocating cutting in the horizontal direction, and there is no need to manually push out the cut fish fillets, which has higher work efficiency and lower labor intensity.

[0004] In actual application, the applicant found that due to the complex structure of the blade frame module and the fish segment lifting groove (small gaps), it is difficult to achieve thorough cleaning and disinfection. After long-term use, bacteria are prone to breed in the blade frame module and the fish segment lifting groove. During subsequent slicing, bacteria are easily adhered to the fish fillets, which can easily lead to food safety issues.

[0005] In view of this, an efficient processing platform for tilapia filleting was proposed. Utility Model Content

[0006] The purpose of the utility model is to provide an efficient processing platform for tilapia slices in order to solve the above-mentioned problems.

[0007] The technical solution adopted by the utility model is as follows: an efficient processing platform for tilapia slicing, comprising: a slicing platform, a fillet beveling mechanism, a pushing mechanism and a disinfecting mechanism, wherein the slicing platform has a accommodating space, the fillet beveling mechanism is arranged in the accommodating space, and is used to perform an oblique slicing operation on the fish meat placed therein; the pushing mechanism is arranged in the accommodating space and is located on one side of the fillet beveling mechanism, and is used to push the beveling fish fillets out of the fillet beveling mechanism; the disinfecting mechanism comprises an ozone generator, an ozone discharge pipe and an ozone concentration sensor, the ozone generator is installed at the outer end of the slicing platform, the exhaust end of the ozone generator is connected to the ozone discharge pipe, and the other end of the ozone discharge pipe extends into the accommodating space, and is used to sterilize and disinfect the fillet beveling mechanism and the pushing mechanism.

[0008] In a preferred embodiment, the fish fillet beveling mechanism includes a mounting frame, a tool holder, a base plate, a plurality of beveling blades, and a fish fillet placement plate staggered with the plurality of beveling blades. The plurality of beveling blades are evenly spaced and distributed on the tool holder. A slot is formed between each pair of the beveling blades to allow the fish fillet placement plate to extend upward.

[0009] In a preferred embodiment, the fish fillet beveling mechanism also includes a motor and a guide frame arranged longitudinally in the accommodating space, the output end of the motor is sleeved with a crank, a connecting arm is provided on the crank, the other end of the connecting arm is hinged to the tool holder, there are two guide frames, and sliders are provided at both ends of the tool holder that can slide longitudinally on the two guide frames.

[0010] In a preferred embodiment, a plurality of the fish fillet placing plates are combined to form a U-shaped cavity for placing fish fillets, and the plurality of the fish fillet placing plates are evenly spaced on the mounting frame. The bottom plate is tilted upward, and a cylinder is provided in the middle of the upper end of the bottom plate, and the telescopic end of the cylinder is connected to the bottom of the mounting frame.

[0011] In a preferred embodiment, guide rails are symmetrically provided on the upper surface of the base plate, and a guide slider capable of sliding on the guide rails is provided at the bottom of the mounting frame.

[0012] In a preferred embodiment, the pushing mechanism includes a pushing rack, a spur rack, a second motor and a gear. The gear is fixed to the output end of the second motor. The spur rack is arranged along the length direction of the tool holder, and the spur rack is meshed with the gear. One end of the spur rack is provided with a guide block that can slide in the reserved cavity on the inner wall of the slicing platform.

[0013] In a preferred embodiment, the pusher rack is installed on the upper end of the straight rack, and the tail end of the straight rack is provided with a pusher plate arranged longitudinally along the fish fillet placement plate, and the bottom of the pusher plate is in the same horizontal plane as the bottom of the U-shaped cavity.

[0014] In a preferred embodiment, it further includes a discharge plate, which is tilted downward and disposed at the rear end of the tool holder, and a material receiving port is disposed on the slicing platform at the lowest end of the discharge plate.

[0015] In a preferred embodiment, a maintenance port is provided on the slicing platform directly above the fish fillet beveling mechanism, and a sealing cover plate is hingedly connected to the maintenance port and the material taking port by a hinge, a sealing strip is circumferentially provided on the inner wall of the sealing cover plate, and a transparent viewing panel is provided in the middle of the sealing cover plate located on the maintenance port.

[0016] In a preferred embodiment, the ozone concentration sensor is installed inside the slicing platform, and the outer end of the slicing platform is further provided with a control panel electrically connected to the disinfection mechanism, the fish fillet beveling mechanism and the pushing mechanism.

[0017] In summary, due to the adoption of the above technical solution, the beneficial effects of the present invention are:

[0018] 1. In the utility model, a disinfection mechanism for performing ozone disinfection on the internal components is designed on the slicing platform. During disinfection, the slicing platform can be sealed into a sealed space using a sealing cover plate, and then ozone is discharged into the interior using the disinfection mechanism. The ozone gas can fully contact the fish fillet beveling mechanism and the pushing mechanism, thereby ensuring the disinfection quality of the fish fillet beveling mechanism and the pushing mechanism. Compared with traditional disinfection and cleaning operations, it can also minimize the adhesion of bacteria to the fish fillets during slicing after long-term use, and is less likely to cause food safety problems.

[0019] 2. In the present invention, a pushing mechanism is designed on one side of the fish fillet oblique cutting mechanism. After the fish fillets are obliquely cut, the cut fish fillets can be pushed out through the pushing mechanism, which is more labor-saving and efficient during use. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is a schematic diagram of the overall three-dimensional structure of the utility model;

[0021] Figure 2 It is a schematic diagram of the cross-sectional plan structure of the entire utility model;

[0022] Figure 3 This is a schematic diagram of the three-dimensional structure of the combination of the pushing mechanism and the fish fillet beveling mechanism in the present invention;

[0023] Figure 4 This is a schematic side plan view of the structure of the combination of the pushing mechanism and the fillet beveling mechanism in the present invention;

[0024] Figure 5 This is a schematic diagram of the upward planar structure of the combination of the pushing mechanism and the fish fillet beveling mechanism in the present invention.

[0025] Markings in the figure: 1-discharging plate, 2-slicing platform, 3-ozone generator, 4-control panel, 5-fish fillet beveling mechanism, 501-motor, 502-crank, 503-connecting arm, 504-slider, 505-guide frame, 506-beveling blade, 507-knife holder, 508-fish fillet placement plate, 509-mounting frame, 510-guide rail, 511-bottom plate, 512-cylinder, 6-sealing cover, 7-pushing mechanism, 701-pushing frame, 702-second motor, 703-gear, 704-guide block, 705-spur rack, 8-transparent viewing plate, 9-ozone discharge pipe, 10-ozone concentration sensor. DETAILED DESCRIPTION

[0026] In order to make the purpose, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.

[0027] Reference Figure 1-5 , an efficient processing platform for tilapia slicing, comprising: a slicing platform 2, a fillet beveling mechanism 5, a pushing mechanism 7 and a disinfection mechanism, the slicing platform 2 has a receiving space, the fillet beveling mechanism 5 is arranged in the receiving space, and is used to perform an oblique slicing operation on the fish meat put in; the pushing mechanism 7 is arranged in the receiving space and is located on one side of the fillet beveling mechanism 5, and is used to push the beveled fish fillets out of the fillet beveling mechanism 5; the disinfection mechanism comprises an ozone generator 3, an ozone discharge pipe 9 and an ozone concentration sensor 10, the ozone generator 3 is installed at the outer end of the slicing platform 2, the exhaust end of the ozone generator 3 is connected to the ozone discharge pipe 9, and the other end of the ozone discharge pipe 9 extends into the receiving space , used to sterilize and disinfect the fish fillet beveling mechanism 5 and the pushing mechanism 7, a disinfection mechanism for ozone disinfection of internal components is designed on the slicing platform 2, and ozone is discharged into the accommodating space during disinfection by the disinfection mechanism, and the ozone gas can fully contact the fish fillet beveling mechanism 5 and the pushing mechanism 7, thereby ensuring the disinfection quality of the fish fillet beveling mechanism 5 and the pushing mechanism 7. Compared with traditional disinfection and cleaning operations, it can also avoid bacteria adhering to the fish fillets during slicing after long-term use, and is not prone to food safety problems. At the same time, the oxides produced by ozone during the disinfection process are non-toxic and odorless, and can be quickly decomposed into oxygen or single oxygen atoms, and will not cause secondary pollution.

[0028] Furthermore, the fish fillet beveling mechanism 5 includes a mounting frame 509, a knife frame 507, a bottom plate 511, a plurality of beveling blades 506, and a fish fillet placement plate 508 staggered with the plurality of beveling blades 506. The plurality of beveling blades 506 are distributed on the knife frame 507 at equal intervals, and a slot is formed between the two beveling blades 506 to allow the fish fillet placement plate 508 to extend upward. The fish fillet beveling mechanism 5 also includes a motor 501 and a guide frame 505 longitudinally arranged in the accommodating space. The output end of the motor 501 is sleeved with a crank 502, and a connecting arm 503 is provided on the crank 502. The other end of the connecting arm 503 is hinged to the knife frame 507. There are two guide frames 505, and both ends of the knife frame 507 are provided with sliders 5 that can slide longitudinally on the two guide frames 505. 04. A plurality of fillet placing plates 508 are combined to form a U-shaped cavity for placing fish fillets. The plurality of fillet placing plates 508 are distributed on the mounting frame 509 at equal intervals. The bottom plate 511 is tilted upward. A cylinder 512 is provided in the middle of the upper end of the bottom plate 511. The telescopic end of the cylinder 512 is connected to the bottom of the mounting frame 509. During the slicing process, the fish pieces are placed in the U-shaped cavity. At this time, the motor 501 and the cylinder 512 work simultaneously. The motor 501 drives the crank 502 to rotate. During the rotation, the beveling blade 506 is guided by the guide frame 505 and the slider 504 to move back and forth. At the same time, the cylinder 512 pushes upward, which can drive the fillet placing plate 500 to tilt upward and extend. During the extension process, the automatic beveling operation of the fish fillets is realized.

[0029] There is a gap between the fish fillet placement plate 508 and the bevel cutting blade 506 to allow the fish fillets to leak out.

[0030] Furthermore, guide rails 510 are symmetrically arranged on the upper surface of the base plate 511, and a guide slider (not shown in the figure) that can slide on the guide rail 510 is provided at the bottom of the mounting frame 509. Through the cooperation of the guide rail 510 and the guide slider, it can play an auxiliary guiding role for the movement of the mounting frame 509 and ensure the stability of the movement of the mounting frame 509.

[0031] Furthermore, the pushing mechanism 7 includes a pushing frame 701, a spur rack 705, a second motor 702 and a gear 703. The gear 703 is fixed to the output end of the second motor 702. The spur rack 705 is arranged along the length direction of the knife holder 507, and the spur rack 705 is meshed with the gear 703. One end of the spur rack 705 is provided with a guide block 704 that can slide in the reserved cavity on the inner wall of the slicing platform 2. The pushing frame 701 is installed at the upper end of the spur rack 705. The tail end of the spur rack 705 is provided with a pushing plate longitudinally arranged along the fish fillet placement plate 508. The bottom of the pushing plate is in the same horizontal plane as the bottom of the U-shaped cavity. A pushing mechanism is designed on one side of the fish fillet beveling mechanism. After the beveling, the second motor 702 drives the gear 703 to rotate, which can drive the spur rack 705 to move. During the movement, the cut fish fillet is pushed out by the pushing plate, which is more labor-saving and efficient when used.

[0032] Furthermore, it also includes a discharge plate 1, which is tilted downward and is arranged at the tail end of the knife holder 507. The lowest end of the discharge plate 1 is provided with a material taking port on the slicing platform 2. The sliced fish fillets can be collected through the discharge plate 1, and the fish fillets can be collected through the material taking port. The inclination angle of the discharge plate 1 is 45°~60°.

[0033] Furthermore, a maintenance port is provided on the slicing platform 2 just above the fillet beveling mechanism 5. A sealing cover plate 7 is hingedly connected to the maintenance port and the material taking port by a hinge. A sealing strip is provided circumferentially on the inner wall of the sealing cover plate 7. A transparent viewing panel 8 is provided in the middle of the sealing cover plate 7 located on the maintenance port. When performing disinfection operations or when not in use, the sealing cover plate 7 can be used to seal the slicing platform 2 into a sealed space to avoid ozone leakage during disinfection. When not in use, foreign matter or bacteria in the external space can also be prevented from entering the equipment. The working status of the equipment can be checked during the slicing process through the transparent cover plate 8.

[0034] The sealing cover plates 7 are each provided with a handle.

[0035] Furthermore, an ozone concentration sensor 10 is installed inside the slicing platform 2, and the outer end of the slicing platform 2 is also provided with a control panel 4 electrically connected to the disinfection mechanism, the fish fillet beveling mechanism 5 and the pushing mechanism 7. The ozone concentration sensor 10 can monitor the ozone concentration inside the accommodating space to avoid the ozone concentration being too high or too low.

[0036] A fan (not shown) may be further provided below the accommodation space to achieve rapid diffusion of ozone.

[0037] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent replacements and improvements made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. An efficient processing platform for tilapia slices, characterized in that, include: a slicing platform having a receiving space; a fish fillet oblique cutting mechanism, which is arranged in the accommodating space and is used to perform an oblique slicing operation on the fish meat placed therein; a pushing mechanism, which is arranged in the accommodating space and located on one side of the fish fillet beveling mechanism, and is used to push the beveled fish fillets out of the fish fillet beveling mechanism; The disinfection mechanism includes an ozone generator, an ozone discharge pipe and an ozone concentration sensor. The ozone generator is installed at the outer end of the slicing platform, the exhaust end of the ozone generator is connected to the ozone discharge pipe, and the other end of the ozone discharge pipe extends into the accommodating space, which is used to sterilize and disinfect the fish fillet beveling mechanism and the pushing mechanism.

2. A highly efficient processing platform for slicing tilapia as claimed in claim 1, characterized in that: The fish fillet beveling mechanism includes a mounting frame, a knife holder, a base plate, a plurality of beveling blades, and a fish fillet placement plate staggered with the plurality of beveling blades. The plurality of beveling blades are evenly spaced and distributed on the knife holder. A slot is formed between each pair of the beveling blades to allow the fish fillet placement plate to extend upward.

3. A high-efficiency processing platform for slicing Tilapia as claimed in claim 2, characterized in that: The fish fillet beveling mechanism also includes a motor and a guide frame arranged longitudinally in the accommodating space. A crank is sleeved on the output end of the motor, and a connecting arm is provided on the crank. The other end of the connecting arm is hinged to the tool holder. There are two guide frames, and sliders are provided at both ends of the tool holder that can slide longitudinally on the two guide frames.

4. A high-efficiency processing platform for slicing Tilapia as claimed in claim 2, characterized in that: A plurality of the fish fillet placing plates are combined to form a U-shaped cavity for placing fish fillets. The plurality of the fish fillet placing plates are evenly spaced and distributed on the mounting frame. The bottom plate is tilted upward, and a cylinder is provided in the middle of the upper end of the bottom plate. The telescopic end of the cylinder is connected to the bottom of the mounting frame.

5. A high-efficiency processing platform for tilapia slices as claimed in claim 2, characterized in that: The upper surface of the bottom plate is symmetrically provided with guide rails, and the bottom of the mounting frame is provided with a guide slider that can slide on the guide rails.

6. A highly efficient processing platform for slicing tilapia as claimed in claim 2, characterized in that: The pushing mechanism includes a pushing rack, a spur rack, a second motor and a gear. The gear is fixed to the output end of the second motor. The spur rack is arranged along the length direction of the tool holder and is meshed with the gear. One end of the spur rack is provided with a guide block that can slide in the reserved cavity on the inner wall of the slicing platform.

7. A highly efficient processing platform for tilapia slices as claimed in claim 6, characterized in that: The pushing rack is installed on the upper end of the straight rack, and the tail end of the straight rack is provided with a pushing plate arranged longitudinally along the fish fillet placement plate, and the bottom of the pushing plate is in the same horizontal plane as the bottom of the U-shaped cavity.

8. A highly efficient processing platform for tilapia slices as claimed in claim 2, characterized in that: It also includes a discharge plate, which is tilted downward and arranged at the rear end of the tool holder, and a material taking port is provided on the slicing platform at the lowest end of the discharge plate.

9. A highly efficient processing platform for tilapia slices as claimed in claim 8, characterized in that: A maintenance port is provided on the slicing platform directly above the fillet beveling mechanism. A sealing cover plate is hingedly connected to the maintenance port and the material taking port by a hinge. A sealing strip is provided circumferentially on the inner wall of the sealing cover plate. A transparent viewing panel is provided in the middle of the sealing cover plate located on the maintenance port.

10. The efficient processing platform for tilapia slices according to claim 1, wherein: The ozone concentration sensor is installed inside the slicing platform, and the outer end of the slicing platform is also provided with a control panel electrically connected to the disinfection mechanism, the fish fillet beveling mechanism and the pushing mechanism.

Citation Information

Patent Citations

  • Fish section slicing device

    CN218736940U