Raw material batching device with weighing mechanism for fish ball processing

By designing a fish ball processing raw material batching device with a multi-station rotating structure and quantitative components, the problem of slow single-item batching speed in existing equipment has been solved. This device enables independent weighing and quantitative batching at multiple stations, thereby improving the efficiency and accuracy of fish ball processing.

CN224142099UActive Publication Date: 2026-04-21FUJIAN RUIYUN FOODS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
FUJIAN RUIYUN FOODS CO LTD
Filing Date
2025-02-25
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

The existing fish ball processing equipment lacks a complete workstation switching setting, resulting in slow feeding speed of single ingredient quantities, which affects the accuracy and efficiency of raw material batching.

Method used

Design a raw material batching device for fish ball processing with a weighing mechanism. It adopts a multi-station rotating structure and quantitative components. The weight information is collected in real time by a weighing sensor to realize independent weighing and quantitative batching at multiple stations.

Benefits of technology

It achieves accuracy and speed in multi-station batching, ensures the timeliness and precision of raw material batching, and improves overall processing efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224142099U_ABST
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Abstract

The utility model belongs to the field of fish ball production, and discloses a fish ball processing raw material batching device with a weighing mechanism, which comprises a plurality of batching buckets and a frame component for conveying raw materials along a plurality of stations in the circumferential direction for blanking, the position changing assembly is installed in the middle of the rack assembly and used for bearing the batching barrel to rotate to different stations to contain raw materials, and a plurality of quantitative assemblies used for telescopically bearing the batching barrel to collect weight information in real time are arranged below the position changing assembly and evenly distributed along the circumference with the center of the rack assembly as the base point; the transposition assembly comprises a positioning mechanism used for bearing, positioning and rotating. According to the fish ball processing raw material batching device with the weighing mechanism, the accuracy of raw material batching is ensured through the arrangement of independently weighing raw material batching at multiple stations; and through the arrangement of multi-station conveying and discharging of the raw materials in the circumferential direction, the raw material batching operation of the multiple batching barrels can be carried out in sequence, and the raw material batching speed is increased.
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Description

Technical Field

[0001] This utility model belongs to the field of fish ball production, and in particular relates to a raw material preparation device for fish ball processing with a weighing mechanism. Background Technology

[0002] Fish ball processing mainly includes steps such as raw material preparation, fish meat collection and processing, pulping, shaping, cooking, cooling, and packaging, which may require the use of a series of specialized equipment. Because the processed fish meat needs to be placed in a pulping machine with appropriate amounts of water, starch, salt, seasonings, and other ingredients, and then high-speed stirred and pounded to produce a more delicious and tender fish ball, accurate quantitative measurement of the raw materials is essential.

[0003] Comparing with Chinese Patent CN213187970U, a weighing and feeding device for a fish ball forming machine is disclosed. The device includes columns on both sides of the material hopper; a support plate fixed to the measuring end of the weighing sensor; a vertical plate on top of the support plate; nuts and rollers on the outer wall of the material hopper; the roller's shaft fixedly connected to the outer wall of the material hopper; a wedge-shaped block with one surface attached to the material hopper; a positioning strip embedded in a positioning groove; the roller's body pressing against the surface of the vertical plate and the top surface of the inclined plate; a rotating shaft fixed to the top of the vertical plate; a stop hook rotatably connected to the shaft; and the stop hook abutting the end of the roller away from the vertical plate. This structure allows for simple disassembly and assembly of the material hopper, facilitating cleaning and maintenance.

[0004] However, the aforementioned patent lacks a complete workstation switching setting and can only perform quantitative feeding of single ingredients, which seriously affects the speed of raw material feeding. Therefore, a new type of equipment needs to be designed. Utility Model Content

[0005] The purpose of this invention is to provide a raw material mixing device for fish ball processing with a weighing mechanism, so as to solve the problems mentioned in the background art.

[0006] To achieve the above objectives, this utility model provides the following technical solution:

[0007] A raw material mixing device for fish ball processing with a weighing mechanism includes several mixing barrels and a frame assembly for conveying raw materials to multiple stations along the circumference. It also includes a shifting component installed in the middle of the frame assembly to support the mixing barrels as they rotate to different stations to hold raw materials. Below the shifting component is a quantitative component for telescopically supporting the mixing barrels and collecting weight information in real time. Several quantitative components are evenly distributed around the center of the frame assembly. The shifting component includes a positioning mechanism for supporting, positioning, and rotating the barrels. A drive shaft is located at the center of the bottom of the positioning mechanism, and a motor is located at the bottom end of the drive shaft. The quantitative component includes a telescopic cylinder with a supporting mechanism installed at its telescopic end. A weighing sensor is installed on the top surface of the supporting mechanism.

[0008] Furthermore: the frame assembly includes a worktable, a bearing seat is provided in the middle of the worktable, a plurality of limiting holes are evenly distributed on the worktable, the limiting holes are evenly distributed along the circumference with the center of the worktable as the base point, a first bracket is provided below each limiting hole, and a feeding mechanism is provided above the limiting hole, the number of feeding mechanisms is at least one less than the number of limiting holes.

[0009] Furthermore: the feeding mechanism includes a second support, a discharge pipe is installed on the top of the second support, and a discharge valve is installed on the discharge pipe.

[0010] Furthermore: the positioning mechanism includes a rotating table, on which a plurality of positioning grooves are evenly distributed, and a through hole is provided at the bottom of the positioning groove.

[0011] Furthermore: the drive shaft and the rotary table are welded together, and the number of positioning slots is equal to the number of quantitative components.

[0012] Furthermore: the supporting mechanism includes a supporting sleeve, and a connecting seat is provided at the bottom of the supporting sleeve.

[0013] Furthermore: the support sleeve is a cylinder, the weighing sensor is installed inside the support sleeve, and the support plate protrudes 1 cm from the support sleeve.

[0014] Compared with existing technologies, the beneficial effects are:

[0015] By setting up multiple workstations to independently weigh and dispense raw materials, the accuracy of raw material dispensing is ensured.

[0016] By setting up a multi-station material feeding system along the perimeter, it is convenient to carry out the material feeding operation of multiple batching bins in sequence, thus speeding up the material feeding process.

[0017] By controlling the ingredient settings through real-time collection of weight information, the timeliness of raw material weighing is ensured. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the structure of a raw material mixing device for fish ball processing with a weighing mechanism as described in this utility model;

[0019] Figure 2 This is a top axonometric view of the frame assembly of a raw material batching device for fish ball processing with a weighing mechanism as described in this utility model.

[0020] Figure 3 This is a bottom-view axonometric view of the frame assembly of a raw material batching device for fish ball processing with a weighing mechanism as described in this utility model.

[0021] Figure 4 This is a schematic diagram of the transposition component of a raw material batching device with a weighing mechanism for fish ball processing according to the present invention.

[0022] Figure 5 This is a front perspective view of the shifting component of a raw material batching device with a weighing mechanism for fish ball processing according to the present invention.

[0023] Figure 6 This is a schematic diagram of the quantitative component of a raw material batching device with a weighing mechanism for fish ball processing according to the present invention.

[0024] In the attached diagram, the following are the reference numerals: 101, workbench; 102, limiting hole; 103, bearing seat; 104, first support; 105, second support; 106, discharge pipe; 107, discharge valve; 201, rotary table; 202, positioning groove; 203, through hole; 204, motor; 205, drive shaft; 301, telescopic cylinder; 302, connecting seat; 303, support sleeve; 304, support plate; 305, weighing sensor; 4, batching barrel. Detailed Implementation

[0025] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0026] Please see Figures 1-6A raw material batching device for fish ball processing with a weighing mechanism includes several batching barrels 4 and a frame assembly for conveying raw materials to multiple stations along the circumference. It also includes a transfer assembly installed in the middle of the frame assembly for supporting the batching barrels 4 to rotate to different stations to hold raw materials. Below the transfer assembly is a quantitative assembly for telescopically supporting the batching barrels 4 and collecting weight information in real time. There are six quantitative assemblies, which are evenly distributed along the circumference with the center of the frame assembly as the base point.

[0027] In this embodiment: the frame assembly includes a worktable 101, a bearing seat 103 is disposed in the middle of the worktable 101, and six limiting holes 102 are evenly distributed on the worktable 101. The limiting holes 102 are evenly distributed around the center of the worktable 101. A first support 104 is disposed below each limiting hole 102, and a feeding mechanism is disposed above the limiting holes 102. The number of feeding mechanisms is at least one less than the number of limiting holes 102. The feeding mechanism includes a second support 105. A discharge pipe 106 is installed on the top of the support 105, and a discharge valve 107 is installed on the discharge pipe 106; the workbench 101 supports the rotation of the drive shaft 205 through the bearing seat 103; the first support 104 is fixedly connected to the telescopic cylinder 301; the limit hole 102 ensures that the weighing sensor 305 passes through the workbench 101 to collect weight information; the second support 105 supports the discharge pipe 106, so that the host computer controls the opening and closing of the discharge valve 107 to ensure that the raw material slurry flows quantitatively into the batching tank 4 along the discharge pipe 106;

[0028] In this embodiment: the transposition component includes a positioning mechanism for supporting, positioning, and rotating. A drive shaft 205 is provided at the bottom center of the positioning mechanism, and a motor 204 is provided at the bottom end of the drive shaft 205. The positioning mechanism includes a rotating table 201, on which six positioning slots 202 are evenly distributed. A through hole 203 is provided at the bottom of the positioning slots 202. The drive shaft 205 and the rotating table 201 are welded together. The number of positioning slots 202 is equal to the number of quantitative components. The mixing barrel 4 is inserted into the positioning slots 202 on the rotating table 201, ensuring that the motor 204 drives the rotating table 201 to rotate through the drive shaft 205, supporting the mixing barrel 4 to rotate to face the discharge pipe 106. The through hole 203 is used for the weighing sensor 305 to pass through the rotating table 201 to collect weight information.

[0029] In this embodiment: the quantitative component includes a telescopic cylinder 301, and a support mechanism is installed at the telescopic end of the telescopic cylinder 301. A weighing sensor 305, model YZC-215, is installed on the top surface of the support mechanism. The support mechanism includes a support sleeve 303, and a connecting seat 302 is provided at the bottom of the support sleeve 303. The first bracket 104 supports the telescopic cylinder 301 to extend and push the support sleeve 303 to rise through the connecting seat 302, so that the support plate 304 passes through the limiting hole 102 and the through hole 203 to lift the batching barrel 4, so that the weighing sensor 305 collects weight information and transmits it to the host computer.

[0030] Working principle: The mixing barrel 4 is inserted into the positioning slot 202 on the rotary table 201. The first bracket 104 supports the extension of the telescopic cylinder 301, which pushes the support sleeve 303 upward through the connecting seat 302. This causes the support plate 304 to pass through the limiting hole 102 and the through hole 203, lifting the mixing barrel 4. The weighing sensor 305 collects the weight information and transmits it to the host computer as reference data. Then, the telescopic cylinder 301 retracts and resets. The worktable 101 supports the motor 204, which drives the rotary table 201 through the transmission shaft 205, causing the mixing barrel 4 to rotate to below the discharge pipe 106. The telescopic cylinder 301 extends, pushing the weighing sensor 305 upward, causing the weighing sensor 305 to collect the weight information and transmit it to the host computer. At the same time, the host computer presses the button. The received weight information opens the discharge valve 107, allowing the raw material slurry to flow into the batching tank 4 along the discharge pipe 106. Once the weight information reaches the set value, the host computer controls the discharge valve 107 to close. Then, the telescopic cylinder 301 retracts and resets. The motor 204 drives the rotary table 201 to rotate again via the transmission shaft 205, supporting the batching tank 4 to rotate to the next discharge pipe 106. The above process is repeated until the batching tank 4 passes through all discharge pipes 106, completing the batching of all raw materials and returning to its original position. The batching tank 4 can then be removed and placed into an empty batching tank 4. Moreover, since each discharge pipe 106 has a corresponding positioning groove 202 and a metering component, the raw material batching operation of multiple batching tanks 4 can be performed simultaneously and sequentially.

[0031] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A raw material batching device for fish ball processing with a weighing mechanism, comprising a plurality of batching bins (4), and a frame assembly for conveying raw materials to multiple stations along the circumference, characterized in that: It also includes a shifting component installed in the middle of the frame assembly for supporting the material barrel (4) to rotate to different work positions to hold raw materials. Below the shifting component is a quantitative component for telescopically supporting the material barrel (4) and collecting weight information in real time. Several quantitative components are provided and are evenly distributed around the circumference with the center of the frame assembly as the base point. The positioning component includes a positioning mechanism for supporting, positioning and rotating, with a drive shaft (205) at the bottom center of the positioning mechanism and a motor (204) at the bottom end of the drive shaft (205). The quantitative component includes a telescopic cylinder (301), the telescopic cylinder (301) is equipped with a support mechanism at its telescopic end, a weighing sensor (305) is installed on the top surface of the support mechanism, and a support plate (304) is installed on the weighing sensor (305).

2. The raw material batching device for fish ball processing with a weighing mechanism according to claim 1, characterized in that: The frame assembly includes a workbench (101), a bearing seat (103) is provided in the middle of the workbench (101), and a plurality of limiting holes (102) are evenly distributed on the workbench (101). The limiting holes (102) are evenly distributed around the center of the workbench (101) along the circumference. A first bracket (104) is provided below each limiting hole (102), and a feeding mechanism is provided above the limiting hole (102). The number of feeding mechanisms is at least one less than the number of limiting holes (102).

3. The raw material batching device for fish ball processing with a weighing mechanism according to claim 2, characterized in that: The feeding mechanism includes a second support (105), a discharge pipe (106) is installed on the top of the second support (105), and a discharge valve (107) is installed on the discharge pipe (106).

4. The raw material batching device for fish ball processing with a weighing mechanism according to claim 1, characterized in that: The positioning mechanism includes a rotating table (201), on which a plurality of positioning grooves (202) are evenly distributed, and a through hole (203) is provided at the bottom of the positioning groove (202).

5. The raw material batching device for fish ball processing with a weighing mechanism according to claim 4, characterized in that: The drive shaft (205) and the rotary table (201) are welded together, and the number of positioning grooves (202) is equal to the number of quantitative components.

6. The raw material batching device for fish ball processing with a weighing mechanism according to claim 1, characterized in that: The supporting mechanism includes a supporting sleeve (303), and a connecting seat (302) is provided at the bottom of the supporting sleeve (303).

7. The raw material batching device for fish ball processing with a weighing mechanism according to claim 6, characterized in that: The support sleeve (303) is a cylinder, the weighing sensor (305) is installed inside the support sleeve (303), and the support plate (304) protrudes 1 cm from the support sleeve (303).

Citation Information

Patent Citations

  • Weighing and discharging device of fish ball forming machine

    CN213187970U