Spraying type operating platform for marine products

By introducing vibration components and flushing components into the spray-type operating table, the problem of poor surface cleaning of seafood is solved and a more efficient cleaning effect is achieved.

CN223341682UActive Publication Date: 2025-09-16SHISHI WANCHENG WATER PRODUCTS FREEZING CO LTD
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Patent Information

Application Number
CN202422579290.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-24
Publication Date
2025-09-16
Estimated Expiration
2034-10-24

AI Technical Summary

Technical Problem

Existing spray-type operating tables are not effective in cleaning the surface of certain seafood (such as fish) and are unable to meet the demand for efficient cleaning.

Method used

A seafood spraying operation table is designed, which includes a mesh belt conveyor, a flushing component, a fluid replenishing component, a vibration component and a buffer component. The cleaning efficiency is improved by combining vibration and spraying.

Benefits of technology

The coordinated use of vibration and spray components significantly improves the cleaning effect and frequency of seafood and enhances the coverage of the cleaning surface.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a spraying type operating platform for marine products, which relates to the technical field of marine product transfer machinery and comprises a bottom frame, a mesh belt conveyor, a conveying cavity, a plurality of groups of flushing components and a plurality of groups of liquid supplementing components, a feeding hopper and a controller; the buffer pieces are uniformly and fixedly arranged between the bottom frame and the mesh belt conveyor so as to provide elastic support for the mesh belt conveyor by the bottom frame; the vibration assemblies are fixedly arranged on the mesh belt conveyor; the mesh belt conveyor does not make contact with the bottom frame, the washing assembly and the feeding hopper during vibration. The buffering device has the advantages that the buffering piece is installed between the top end of the bottom frame and the bottom end of the mesh belt conveyor so that the bottom frame can elastically support the mesh belt conveyor, vibration is generated under the action of the vibration assembly so as to drive the mesh belt conveyor to vibrate, and then vibration jumping can be provided for marine products in the conveying cavity of the mesh belt conveyor; when used in cooperation with a flushing assembly, the cleaning area and frequency can be increased, so that the cleaning efficiency is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of seafood transfer machinery, and more specifically to a seafood spraying operation platform. Background Art

[0002] The spray table is a common equipment in the seafood processing industry. It is mainly used for fine cleaning, cooling or pre-processing of seafood. The equipment generally uses a spray system to evenly spray water to the seafood placed on the table for simple conveying cleaning.

[0003] The existing spray-type operation table [such as the publication number: CN217509802U, a high-pressure spray cleaning device for shellfish hair roller] shows that the seafood is placed inside the main body at the top of the hair roller for transportation, which has a good cleaning effect;

[0004] However, for some seafood (such as fish, etc.), it is not suitable to scrape the surface of the seafood, and the effect of simply cleaning by spraying is not good. Therefore, it is urgent to propose another device that can improve the cleaning effect during the transportation of seafood. Utility Model Content

[0005] The purpose of the present utility model is to provide a seafood spraying operation platform in order to solve the above technical problems.

[0006] In order to achieve the above-mentioned purpose, the present invention specifically adopts the following technical solutions:

[0007] The utility model provides a seafood spraying operation platform, comprising:

[0008] chassis;

[0009] A mesh belt conveyor is provided between the base frames;

[0010] A conveying chamber, which is provided on the mesh belt conveyor;

[0011] Several groups of flushing components are fixed on the base frame and are used to spray the conveying cavity;

[0012] A liquid replenishing assembly is fixedly mounted on the base frame and is connected to a plurality of flushing assemblies to supply water for the spraying operation of the plurality of flushing assemblies;

[0013] A feeding hopper fixedly mounted on the bottom frame, used to guide the seafood to the side of the conveying chamber facing the spraying chamber;

[0014] A controller, which is fixed on the chassis;

[0015] It also includes multiple groups of buffer members, which are evenly fixed between the base frame and the mesh belt conveyor to provide elastic support for the mesh belt conveyor by the base frame;

[0016] Several groups of vibration components are fixedly mounted on the mesh belt conveyor;

[0017] Furthermore, when the mesh belt conveyor vibrates due to the operation of several groups of vibration components, the vibration does not contact the base frame, the flushing components and the feed hopper.

[0018] As a preferred technical solution of the present invention, the flushing components are provided in multiple groups and are arranged in sequence along the direction in which the conveying cavity conveys the seafood.

[0019] As a preferred technical solution of the present invention, the discharge end of the feed hopper is not higher than the top of the conveying cavity.

[0020] As a preferred technical solution of the present invention, the vibration components are provided in multiple groups and are evenly distributed on the mesh belt conveyor.

[0021] As an optimal technical solution of the present invention, the mesh belt conveyor includes a base, multiple groups of conveying rollers rotatably connected to the inner side of the base, a mesh belt that simultaneously adheres to the multiple groups of conveying rollers, a servo motor fixed on the base, and multiple groups of supporting feet evenly fixed to the bottom end of the base, the bottom end of the supporting foot is fixed to the buffer member, the output end of the servo motor is fixed to one roller end of the conveying roller, and the operation of the servo motor drives the mesh belt to rotate between the multiple groups of conveying rollers, and a conveying cavity is formed between the top end of the mesh belt and the base.

[0022] As a preferred technical solution of the present invention, the flushing assembly includes an empty pipe fixedly mounted on the base frame, and a plurality of groups of nozzles fixedly mounted on the empty pipe, with the spraying ends of the nozzles facing the delivery cavity.

[0023] As an optimal technical solution of the present invention, the fluid replenishing assembly includes a main pipe fixedly mounted on a base frame, and multiple groups of branch pipes with one end of the branch pipe evenly connected and fixed to one end of the main pipe, and the other end of the branch pipe is connected and fixed to an empty pipe.

[0024] As a preferred technical solution of the present invention, the vibration assembly includes a vibration motor fixedly mounted on the base, and a sealing cover covering the vibration motor and tightly fixed outside the base.

[0025] The beneficial effects of the utility model are as follows:

[0026] By installing a buffer between the top of the base frame and the bottom of the mesh belt conveyor to provide the base frame with elastic support for the mesh belt conveyor, vibration is generated under the action of the vibration component to drive the mesh belt conveyor to vibrate, which can provide vibration and jumping for the seafood inside the conveying cavity on the mesh belt conveyor. When used in conjunction with the flushing component, the cleaning area and frequency can be increased, thereby improving the cleaning efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] Figure 1 It is a structural diagram of the present utility model.

[0028] Figure numerals: chassis-1, mesh belt conveyor-2, buffer-3, conveying chamber-4, flushing component-5, rehydration component-6, hopper-7, vibration component-8, controller-9, base-21, conveying roller-22, mesh belt-23, servo motor-24, support leg-25, empty pipe-51, nozzle-52, main pipe-61, branch pipe-62, vibration motor-81, sealing cover-82. DETAILED DESCRIPTION

[0029] like Figure 1 As shown, the utility model proposes: a seafood spraying operation platform, comprising;

[0030] Base frame 1;

[0031] The mesh belt conveyor 2 is provided between the base frames 1, and the conveying direction of the mesh belt conveyor 2 is left-right;

[0032] The conveying chamber 4 is provided on the mesh belt conveyor 2. The conveying chamber 4 is located at the top of the mesh belt conveyor 2. The seafood is conveyed at this position.

[0033] Several groups of flushing components 5 are fixed on the base frame 1 and are used to spray the inside of the conveying cavity 4. They are located above the conveying cavity 4 and spray water into the conveying cavity 4 to clean the seafood.

[0034] Among them, there are multiple groups of flushing components 5 and they are arranged in sequence along the direction of conveying seafood in the conveying chamber 4 (as shown in the figure, three groups of flushing components 5 are distributed from left to right on the right side of the feed hopper 7 described below to improve the cleaning effect of spray cleaning);

[0035] A liquid replenishing assembly 6 is fixedly mounted on the base frame 1 and is connected to a plurality of flushing assemblies 5 to continuously supply water for the spraying operations of the plurality of flushing assemblies 5;

[0036] The feed hopper 7 (as shown in the figure, the inner cavity of the feed hopper 7 is larger at the top and smaller at the bottom, and the top and bottom are connected) is fixedly mounted on the base frame 1 and is used to guide the seafood to the side of the conveying chamber 4 facing the spraying interior (as shown in the figure, it is arranged on the left side of the top of the feed hopper 7 to convey the seafood from left to right, and convey it to the direction of the washing component 5 spraying);

[0037] The discharge end of the feed hopper 7 is no higher than the top of the conveying chamber 4 (as shown in the figure, the discharge position of the bottom end of the feed hopper 7 is extended into the inner side of the conveying chamber 4. This position is set to discharge the seafood into the conveying chamber 4 in a more stable manner and not easy to fall out);

[0038] The controller 9 is fixed on the chassis 1 and is connected to an external power source to supply power to the electrical components for opening and closing.

[0039] It also includes multiple groups of buffer members 3, which are evenly fixed between the base frame 1 and the mesh belt conveyor 2 to provide elastic support for the mesh belt conveyor 2 by the base frame 1;

[0040] Several groups of vibration components 8 are fixedly mounted on the mesh belt conveyor 2;

[0041] Furthermore, when the mesh belt conveyor 2 vibrates due to the operation of the several groups of vibration components 8, they do not contact the base frame 1, the flushing component 5 and the feed hopper 7. Reasonable spacing is provided, that is, the mesh belt conveyor 2 has good protection when it shakes (and the entire vibration system only includes the several groups of vibration components 8 and the mesh belt conveyor 2, so the overall vibrating part is small, the energy consumption is low and the vibration protection is high);

[0042] Among them, there are multiple groups of vibration components 8 and they are evenly distributed on the mesh belt conveyor 2, which improves the overall vibration balance of the mesh belt conveyor 2 and improves the stability of the frequency beating of seafood;

[0043] Based on the above, it can be summarized as follows: by installing a buffer part 3 between the top of the base frame 1 and the bottom end of the mesh belt conveyor 2 to provide the base frame 1 with elastic support for the mesh belt conveyor 2, vibration is generated under the action of the vibration component 8 to drive the mesh belt conveyor 2 to vibrate, which can provide vibration and jumping for the seafood inside the conveying cavity 4 on the mesh belt conveyor 2. When used in conjunction with the flushing component 5, the cleaning surface and frequency can be increased, thereby improving the cleaning efficiency.

[0044] In order to implement the above-mentioned mesh belt conveyor 2, a specific structure and composition of the mesh belt conveyor 2 are proposed, which can be as follows: the mesh belt conveyor 2 includes a base 21, multiple groups of conveying rollers 22 rotatably connected to the inner side of the base 21, a mesh belt 23 simultaneously attached to the multiple groups of conveying rollers 22, a servo motor 24 fixed on the base 21, and multiple groups of supporting legs 25 evenly fixed on the bottom end of the base 21;

[0045] The bottom end of the support leg 25 is fixed to the buffer member 3, and the output end of the servo motor 24 is fixed to one end of the conveyor roller 22. The servo motor 24 drives the mesh belt 23 to rotate between the multiple groups of conveyor rollers 22. The conveying cavity 4 is formed between the top end of the mesh belt 23 and the base 21.

[0046] The above-mentioned specific mesh belt conveyor 2 has a base 21 that is open and connected from top to bottom. Multiple groups of conveyor rollers 22 are arranged from left to right, and the mesh belt 23 is attached to the outside of the multiple groups of conveyor rollers 22. When the servo motor 24 is running, the conveyor roller 22 fixed at the output end of the servo motor 24 can be driven to rotate, thereby driving the mesh belt 23 to rotate at the conveyor roller 22 (specifically: gears can be set at the rotating end of the conveyor roller 22, and transmission chains can be set at the front and rear ends of the mesh belt 23 to perform meshing transmission, so that the rotation of the conveyor roller 22 can drive the mesh belt 23 to rotate), and impurities and spray water fall downward due to the hollowing of the mesh belt 23 and the openings connected from top to bottom in the base 21.

[0047] In order to implement the above-mentioned flushing assembly 5, a specific structure and composition of the flushing assembly 5 are proposed, which can be as follows: the flushing assembly 5 includes an empty pipe 51 fixedly mounted on the base frame 1, and a plurality of nozzles 52 fixedly mounted on the empty pipe 51, and the spraying end of the nozzle 52 is directed toward the conveying chamber 4;

[0048] The above-mentioned specific flushing component 5: the tube ends of the empty pipe 51 face front to back, and a nozzle 52 is installed at the bottom of the empty pipe 51 to connect with the inside of the empty pipe 51. When multiple groups of nozzles 52 are provided, they are evenly arranged from front to back to improve the uniformity of the spray.

[0049] To implement the above-mentioned fluid replenishment assembly 6, a specific structure and composition of the fluid replenishment assembly 6 are proposed. The fluid replenishment assembly 6 may include: a main pipe 61 fixedly mounted on the base frame 1, and a plurality of branch pipes 62, one end of which is evenly connected and fixed to one end of the main pipe 61, and the other end of the branch pipe 62 is connected and fixed to the empty pipe 51;

[0050] The above specific fluid replenishing component 6: the main pipe 61 is installed on the base frame 1, such as Figure 1 The bottom end of the main pipe 61 is connected to an external water pump, etc., and the top end of the main pipe 61 is connected to the bottom ends of multiple groups of branch pipes 62, and the bottom ends of the multiple groups of branch pipes 62 are evenly distributed on the top end of the main pipe 61 to ensure that the water in the main pipe 61 flows evenly to the multiple groups of branch pipes 62, and is discharged into the empty pipe 51 from the top end of the branch pipe 62.

[0051] In order to implement the above-mentioned vibration assembly 8, a specific structure and composition of the vibration assembly 8 are proposed, which can be as follows: the vibration assembly 8 includes a vibration motor 81 fixedly mounted on the base 21, and a sealing cover 82 covering the vibration motor 81 and sealed and fixed outside the base 21 (the sealing cover 82 can be made of stainless steel, etc.);

[0052] The specific vibration assembly 8 mentioned above: a vibration motor 81 is installed on the outside of the base 21. When multiple groups of vibration motors 81 are set, they are evenly distributed to improve the uniformity and effect of the vibration. At the same time, a sealing cover 82 is used to cover the vibration motor 81 outside each group of vibration motors 81. The sealed end is covered with a sealing sticker (the sealing sticker material can be rubber, etc.) and then fixed with bolts or the like. (For example, Figure 1 As shown, when the vibration motor 81 is installed at the front end of the base 21, the sealing cover 82 covers the vibration motor 81, and a sealing sticker is used as a fitting intermediate layer on the outer periphery of the rear end of the sealing cover 82, and then bolts are used to penetrate the sealing cover 82 and the base 21 from front to back to fix them).

[0053] The control method of the present invention is to manually start and stop the switch. The wiring diagram of the power element and the provision of power supply are common knowledge in the field. Moreover, the present invention is mainly used to protect mechanical devices. Therefore, the control method and wiring arrangement are not explained in detail in the present invention.

[0054] The above shows and describes the basic principles and main features of the present invention and the advantages of the present invention. It is obvious to those skilled in the art that the present invention is not limited to the details of the above exemplary embodiments and that the present invention can be implemented in other specific forms without departing from the spirit or essential characteristics of the present invention. Therefore, from all perspectives, the embodiments should be regarded as illustrative and non-restrictive. The scope of the present invention is defined by the appended claims rather than the above description, and it is intended that all changes that fall within the meaning and range of equivalents of the claims be included in the present invention. Any reference signs in the claims should not be construed as limiting the claim to which they relate.

[0055] In addition, it should be understood that although this specification is described in terms of implementation methods, not every implementation method contains only one independent technical solution. This narrative method of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other implementation methods that can be understood by those skilled in the art.

Claims

1. A seafood spraying operation platform, comprising: bottom frame (1); A mesh belt conveyor (2) is provided between the base frames (1); A conveying chamber (4) is provided on the mesh belt conveyor (2); A plurality of flushing components (5) are fixedly mounted on the base frame (1) and are used to spray the inside of the conveying cavity (4); A liquid replenishing assembly (6) is fixedly mounted on the base frame (1), and the liquid replenishing assembly (6) is connected to a plurality of groups of flushing assemblies (5) to supply water for the spraying operation of the plurality of groups of flushing assemblies (5); A feed hopper (7) fixedly mounted on the base frame (1) and used to guide the seafood to the side of the conveying chamber (4) facing the spray chamber; A controller (9) fixedly mounted on the chassis (1); It is characterized in that It also includes a plurality of groups of buffer members (3) which are evenly fixed between the base frame (1) and the mesh belt conveyor (2) to provide elastic support for the mesh belt conveyor (2) by the base frame (1); A plurality of groups of vibration components (8) fixedly mounted on the mesh belt conveyor (2); Furthermore, when the plurality of groups of vibration components (8) are operated to generate vibrations in the mesh belt conveyor (2), the vibrations do not contact the base frame (1), the flushing component (5) and the feed hopper (7).

2. The seafood spraying operation platform according to claim 1, characterized in that: The flushing components (5) are provided in multiple groups and are arranged in sequence along the direction in which the conveying cavity (4) conveys the seafood.

3. The seafood spraying operation platform according to claim 1, characterized in that: The discharge end of the hopper (7) is not higher than the top of the conveying cavity (4).

4. The seafood spraying operation platform according to claim 1, characterized in that: A plurality of vibration components (8) are provided and are evenly distributed on the mesh belt conveyor (2).

5. The seafood spraying operation platform according to claim 4, characterized in that: The mesh belt conveyor (2) includes a base (21), a plurality of groups of conveying rollers (22) rotatably connected to the inner side of the base (21), a mesh belt (23) simultaneously attached to the plurality of groups of conveying rollers (22), a servo motor (24) fixed on the base (21), and a plurality of groups of supporting legs (25) uniformly fixed on the bottom end of the base (21), the bottom end of the supporting legs (25) is fixed to the buffer member (3), the output end of the servo motor (24) is fixed to one roller end of the conveying roller (22), and the servo motor (24) is driven to rotate the mesh belt (23) between the plurality of groups of conveying rollers (22), and a conveying cavity (4) is formed between the top end of the mesh belt (23) and the base (21).

6. The seafood spraying operation platform according to claim 2, characterized in that: The flushing assembly (5) includes an empty pipe (51) fixedly mounted on the base frame (1), and a plurality of nozzles (52) fixedly mounted on the empty pipe (51), wherein the spraying ends of the nozzles (52) face toward the conveying cavity (4).

7. The seafood spraying operation platform according to claim 6, characterized in that: The fluid replenishing assembly (6) comprises a main pipe (61) fixedly mounted on the base frame (1), and a plurality of branch pipes (62) each having one end connected to one end of the main pipe (61) and fixed thereto, and the other end of the branch pipe (62) is connected to the empty pipe (51) and fixed thereto.

8. The seafood spraying operation platform according to claim 5, characterized in that: The vibration assembly (8) includes a vibration motor (81) fixed on the base (21), and a sealing cover (82) covering the vibration motor (81) and sealed and fixed outside the base (21).

Citation Information

Patent Citations

  • Hair roller high-pressure spraying and cleaning equipment for shell marine products

    CN217509802U