Sorting device for fish ball processing and production

By designing the lifting drive component and screening component in the sorting device, the problem of low conveying and screening efficiency in the fish ball sorting process was solved, realizing multi-round screening and continuous conveying of fish balls, thus improving the sorting effect and efficiency.

CN223517978UActive Publication Date: 2025-11-07NANYANG NANDUHU AGRICULTURAL DEVELOPMENT CO LTD
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Patent Information

Application Number
CN202422738928.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-11
Publication Date
2025-11-07
Estimated Expiration
2034-11-11

AI Technical Summary

Technical Problem

After the fish balls are processed, the sorting process is complicated and cannot effectively complete the continuous conveying and multiple rounds of screening of the fish balls, which affects the sorting effect and work efficiency.

Method used

A sorting device comprising two sorting pools and a recycling pool was designed. A lifting drive assembly controls a screening assembly. The screening assembly holds the fish balls from below and raises them within the sorting pool. The size of the screen holes is changed to accommodate different fish balls, achieving multi-round screening and conveying.

Benefits of technology

The operation process was simplified, enabling continuous conveying and multi-round screening of fish balls, thus improving sorting efficiency and work efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of fish ball processing, and particularly relates to a sorting device for fish ball processing and production, which comprises two fixedly connected sorting pools, a recycling pool fixedly connected to the outer side of the sorting pool located at the rear position, a screening assembly arranged in the sorting pools and comprising an upper screening plate and a lower screening plate, according to the fish ball sorting device, fish balls firstly enter the first sorting pool, the screening assembly supports the fish balls from the lower portion, the fish balls larger than the hole diameter of the screening plates are driven by the screening assembly to ascend in the sorting pools, and after the fish balls ascend to the position above the water surface, the fish balls are separated from the screening assembly; the screening assembly is continuously controlled by the lifting driving assembly to move so as to incline by an angle, the fish balls move towards the interior of the adjacent sorting pool, the next round of fish ball sorting is conducted through the screening assembly in the sorting pool, operation is simple, continuous conveying operation of the screened fish balls can be effectively completed, and the efficiency is improved. Therefore, continuous conveying and multi-round screening operation of the fish balls are effectively completed.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to fish ball processing technical field, concretely relates to a sorting device for fish ball processing production. BACKGROUND

[0002] The fish balls after processing are of different sizes, and need to be sorted, classified and unqualified products are removed. The fish balls after processing are conveyed to the inside of the floating pool filled with water, and the staff operates the screen to lift the fish balls from the water, and the fish balls are screened by a plurality of staff in circulation. The operation process is complicated, and the continuous conveying operation of the screened fish balls cannot be effectively completed in the process of screening the fish balls, and the continuous conveying and multi-round screening operation of the fish balls cannot be effectively completed, affecting the sorting effect and operation efficiency of the fish balls. UTILITY MODEL CONTENT

[0003] The utility model provides a sorting device for fish ball processing production with the characteristics of improving sorting effect and operation efficiency.

[0004] The utility model provides the following technical scheme: including two fixed connection's sorting pool, the sorting pool outside fixed connection has the recovery pool in rear position, be equipped with the screening subassembly in the sorting pool, the screening subassembly includes upper sieve plate and lower sieve plate, the lower sieve plate is in the upper sieve plate below, the sorting pool top fixed connection has the fixed frame, be equipped with lifting drive assembly on the fixed frame, the lifting drive assembly includes drive piece, drive rod, movable rod and fixed seat, the fixed seat passes through movable rod and is in drive rod bottom end, the upper sieve plate is fixedly connected in the fixed seat bottom, drive rod is by drive piece control in fixed frame inboard vertical movement, with control screening subassembly vertical movement in the sorting pool, the screening subassembly holds up fish ball from below and screens the fish ball greater than sieve plate aperture and moves to adjacent sorting pool inside to multi-round sorting fish ball.

[0005] Among them, the upper sieve plate bottom is equipped with two guide grooves, the lower sieve plate side fixed connection has two guide blocks corresponding the guide groove, two guide blocks are respectively connected in two guide grooves inside.

[0006] Among them, the top of the lower sieve plate is close to the bottom of the upper sieve plate, and the size of the lower sieve plate is smaller than the size of the upper sieve plate.

[0007] Among them, the drive piece is fixedly connected at the top of the fixed frame, and the drive rod is fixedly connected at the output end of the drive piece.

[0008] Among them, the movable rod is rotatably connected at the bottom end of the drive rod, and the bottom end of the movable rod is fixedly connected with the fixed seat.

[0009] The fixed seat is located below the driving rod, and a gap is formed between the fixed seat and the bottom end of the driving rod.

[0010] The side edges of the sorting pool and the recycling pool are provided with grooves, and the grooves on the recycling pool are communicated with the grooves on the adjacent sorting pool.

[0011] The present application has the following advantages:

[0012] The two sorting pools and the recycling pool are sequentially combined, the fish balls first enter the first sorting pool, the screening assembly in the sorting pool is controlled by the lifting driving assembly to support the fish balls from below, the fish balls larger than the hole diameter of the screen plate are lifted in the sorting pool by the screening assembly, after being lifted above the water surface, the screening assembly is continuously controlled by the lifting driving assembly to tilt at an angle, so that the fish balls move to the adjacent sorting pool, the next round of fish ball sorting is performed by the screening assembly in the sorting pool, the operation is simple, and the continuous conveying operation of the screened fish balls can be effectively completed, so that the continuous conveying and multi-round screening operation of the fish balls are effectively completed, the size of the screen hole can be changed by changing the position of the lower screen plate below the upper screen plate to adapt to different fish balls, and the sorting effect and operation efficiency of the fish balls are improved.

[0013] The parts not involved in the device are the same as or can be realized by the prior art. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 The present application has the following advantages:

[0015] Figure 2 The present application has the following advantages:

[0016] Figure 3 The present application has the following advantages:

[0017] Figure 4 The present application has the following advantages: Figure 3 Another perspective of the structure is shown in the figure.

[0018] In the figure: 1, sorting pool; 11, recycling pool; 12, fixed frame; 13, groove; 2, screening assembly; 21, upper screen plate; 211, guide groove; 22, lower screen plate; 221, guide block; 3, lifting driving assembly; 31, driving piece; 32, driving rod; 33, movable rod; 34, fixed seat. DETAILED DESCRIPTION

[0019] Please refer to Figures 1-4The utility model provides following technical scheme: Including two fixed connection's sorting pool 1, the sorting pool 1 outside fixed connection has recovery pool 11 in rear position, the inside of sorting pool 1 is equipped with screening subassembly 2, screening subassembly 2 includes upper sieve 21 and lower sieve 22, and lower sieve 22 moves below upper sieve 21, and the top of sorting pool 1 is fixedly connected with fixed frame 12, and fixed frame 12 is equipped with lifting drive assembly 3, and lifting drive assembly 3 includes drive part 31, drive rod 32, movable rod 33 and fixed seat 34, and fixed seat 34 moves in drive rod 32 bottom end through movable rod 33, and upper sieve 21 is fixedly connected in fixed seat 34 bottom, and drive rod 32 is controlled in fixed frame 12 inside vertical movement by drive part 31, to control screening subassembly 2 vertical movement in the inside of sorting pool 1, and screening subassembly 2 holds fish ball from below and screens fish ball greater than sieve aperture and moves to the inside of adjacent sorting pool 1 to multiple round sorting fish ball.

[0020] In the embodiment: two sorting pools 1 are fixedly connected in sequence, and the outside of sorting pool 1 in rear position is fixedly connected with recovery pool 11, and two sorting pools 1 and a recovery pool 11 are used to store fish ball temporarily during fish ball sorting process.

[0021] Screening subassembly 2 is arranged in the inside of sorting pool 1, and screening subassembly 2 is composed of upper sieve 21 and lower sieve 22, two guide grooves 211 are formed in the bottom of upper sieve 21, two guide blocks 221 corresponding to guide grooves 211 are fixedly connected to the side edge of lower sieve 22, two guide blocks 221 are slidably connected in the inside of two guide grooves 211 respectively, so that lower sieve 22 moves below upper sieve 21, through the movement of two guide blocks 221 in the inside of two guide grooves 211, lower sieve 22 can move below upper sieve 21, so as to change the position of lower sieve 22 below upper sieve 21, thereby effectively changing sieve aperture to adapt to different fish balls, the top of lower sieve 22 is tightly attached to the bottom of upper sieve 21, the size of lower sieve 22 is less than the size of upper sieve 21, and upper sieve 21 completely covers lower sieve 22, which provides sufficient moving space for lower sieve 22, and ensures that lower sieve 22 can stably move below upper sieve 21.

[0022] The top of the sorting tank 1 is fixedly connected with a fixed frame 12, and the fixed frame 12 is provided with a lifting driving assembly 3. The lifting driving assembly 3 is composed of a driving piece 31, a driving rod 32, a movable rod 33 and a fixed seat 34. The driving piece 31 is fixedly connected to the top of the fixed frame 12. The driving rod 32 is fixedly connected to the output end of the driving piece 31. The movable rod 33 is rotatably connected to the bottom end of the driving rod 32. The bottom end of the movable rod 33 is fixedly connected with the fixed seat 34. The fixed seat 34 is movably arranged at the bottom end of the driving rod 32 through the movable rod 33. The upper sieve plate 21 is fixedly connected to the bottom of the fixed seat 34. The screening assembly 2 is stably positioned in the sorting tank 1 through the lifting driving assembly 3. The fixed seat 34 is located below the driving rod 32. There is a gap between the fixed seat 34 and the bottom end of the driving rod 32, which provides the required space for the fixed seat 34 to move below the driving rod 32. Therefore, the fixed seat 34 can move below the driving rod 32 together with the screening assembly 2, thereby changing the angle of the screening assembly 2. The driving rod 32 is controlled by the driving piece 31 to move vertically in the fixed frame 12, so as to control the vertical movement of the screening assembly 2 in the sorting tank 1. The screening assembly 2 supports the fish balls from below and screens the fish balls. The qualified fish balls pass through the sieve holes and remain in the sorting tank 1. The fish balls larger than the sieve holes are lifted by the upper sieve plate 21 to above the water surface. The screening assembly 2 is controlled by the lifting driving assembly 3 and is angularly inclined under the driving of the movable fixed seat 34, so as to move the fish balls into the adjacent sorting tank 1. The fish balls are screened again by the screening assembly 2 in the sorting tank 1 and the lifting driving assembly 3 above. The large fish balls after the second screening are moved into the recovery tank 11 for collection. The multiple screening and collection of the fish balls can be effectively completed. According to the requirements, the number of sorting tanks 1 can be increased to further improve the screening effect and work efficiency. The side edges of the sorting tank 1 and the recovery tank 11 are provided with grooves 13. The grooves 13 on the recovery tank 11 are communicated with the grooves 13 on the adjacent sorting tank 1, so as to ensure the smooth conveying of the fish balls.

[0023] The two sorting tanks 1 and the recovery tank 11 are combined in sequence. The fish balls first enter the first sorting tank 1. The screening assembly 2 in the sorting tank 1 supports the fish balls from below under the control of the lifting driving assembly 3. The fish balls larger than the sieve hole diameter are lifted in the sorting tank 1 by the screening assembly 2. After being lifted above the water surface, the screening assembly 2 is continuously controlled to move by the lifting driving assembly 3 to be angularly inclined, so as to move the fish balls into the adjacent sorting tank 1. The fish balls are screened by the screening assembly 2 in the sorting tank 1 for the next round. The operation is simple, and the continuous conveying of the screened fish balls can be effectively completed, thereby effectively completing the continuous conveying and multiple screening of the fish balls. By changing the position of the lower sieve plate 22 below the upper sieve plate 21, the size of the sieve hole can be changed to adapt to different fish balls, thereby improving the sorting effect and work efficiency of the fish balls.

Claims

1. A sorting device for fish ball processing, characterized in that: The utility model provides a fish ball sorting device, including two fixedly connected sorting pools (1), the sorting pool (1) outside fixedly connected with recovery pool (11) in rear position, the sorting pool (1) inside is equipped with screening subassembly (2), screening subassembly (2) includes upper sieve plate (21) and lower sieve plate (22), lower sieve plate (22) is active below upper sieve plate (21), the top of sorting pool (1) is fixedly connected with fixed frame (12), and fixed frame (12) is equipped with lifting drive assembly (3) on, lifting drive assembly (3) includes drive part (31), drive rod (32), movable rod (33) and fixed seat (34), fixed seat (34) is active in drive rod (32) bottom end by movable rod (33), upper sieve plate (21) is fixedly connected in fixed seat (34) bottom, drive rod (32) is controlled in fixed frame (12) inside vertical movement by drive part (31), to control screening subassembly (2) vertical movement in sorting pool (1) inside, and screening subassembly (2) holds fish ball from below and screens and divides the fish ball greater than sieve plate aperture and moves to adjacent sorting pool (1) inside to multiple round sorting fish ball.

2. The sorting device for fish ball processing and production according to claim 1, characterized in that: The bottom of the upper sieve plate (21) is provided with two guide grooves (211), and the side edges of the lower sieve plate (22) are fixedly connected with two guide blocks (221) corresponding to the guide grooves (211). Two guide blocks (221) are respectively and slidingly connected in two guide grooves (211).

3. The sorting device for fish ball processing and production according to claim 1, characterized in that: The top of the lower sieve plate (22) is close to the bottom of the upper sieve plate (21), and the size of the lower sieve plate (22) is less than the size of the upper sieve plate (21).

4. The sorting device for fish ball processing and production according to claim 1, characterized in that: The drive part (31) is fixedly connected to the top of the fixed frame (12), and the drive rod (32) is fixedly connected to the output end of the drive part (31).

5. The sorting device for fish ball processing and production according to claim 1, characterized in that: The movable rod (33) is rotatably connected to the bottom end of the drive rod (32), and the bottom end of the movable rod (33) is fixedly connected with the fixed seat (34).

6. The sorting device for fish ball processing and production according to claim 1, characterized in that: The fixed seat (34) is located below the drive rod (32), and there is a gap between the fixed seat (34) and the bottom end of the drive rod (32).

7. The sorting device for fish ball processing and production according to claim 1, characterized in that: The side edges of the sorting pool (1) and the recovery pool (11) are provided with grooves (13), and the grooves (13) on the recovery pool (11) are communicated with the grooves (13) on the adjacent sorting pool (1).