Stirring machine for fish roll production

By integrating mixing, conveying and crushing functions, the problem of fish meat raw material blockage and multiple transfers has been solved, realizing a highly efficient fish roll production process.

CN224165571UActive Publication Date: 2026-04-28HUIAN COUNTY CHONGWU KEJI FOOD CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUIAN COUNTY CHONGWU KEJI FOOD CO LTD
Filing Date
2025-06-11
Publication Date
2026-04-28

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Abstract

The utility model relates to a stirring machine for fish roll production, which comprises a device bottom plate, a telescopic cylinder body mounted at one end of the top of the device bottom plate, a movable plate body fixed on a piston rod at the top of the telescopic cylinder body, a first motor mounted at the bottom of the movable plate body, a cover plate mounted at the bottom of the first motor, and an output shaft of the first motor penetrating through the cover plate. According to the stirring and crushing integrated device, the stirring, conveying and crushing functions are integrated on the first rotating rod, and when the first rotating rod extends into the stirring barrel and rotates, the stirring, conveying and crushing functions are integrated on the first rotating rod, so that the stirring, conveying and crushing effects are improved, and the stirring, conveying and crushing effects are improved. The stirring rod, the spiral conveying blade and the first blade are used for stirring raw materials in the stirring barrel, conveying the raw materials in the conveying pipeline and crushing the raw materials in the crushing pipeline respectively, and multiple additional driving devices do not need to be arranged to complete all procedures.
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Description

Technical Field

[0001] This utility model relates to the field of mixers, specifically a mixer for fish roll production. Background Technology

[0002] Fish rolls, called "chikuwa" in Japan, can be eaten directly, sliced ​​and used as a seasoning, or sliced ​​or shredded and fried or cooked into various varieties. Currently, the processing of fish rolls requires stirring and seasoning the fish meat.

[0003] According to publicly available patent 201620326694.2, a mixer for processing fish rolls, the machine includes a fixed base plate. A crushing chamber and a meat grinding chamber are arranged on the upper side of the fixed base plate. A rotating rod is arranged inside the meat grinding chamber, and meat grinding blades are arranged on the rotating rod. One end of the rotating rod is connected to a driven gear, which meshes with a driving gear. The driving gear is connected to a motor. An extrusion disc is arranged at the outlet of the meat grinding chamber, and several discharge holes are arranged inside the extrusion disc. A rotating shaft is arranged at the center of the crushing chamber, and extrusion blades are arranged at the lower end of the rotating shaft. The upper end of the rotating shaft is connected to an extrusion motor. In operation, the meat pieces to be crushed are added into the crushing chamber. At this time, the extrusion motor drives the rotating shaft to rotate, realizing the rotation of the extrusion blades to feed the meat pieces. The feeding speed is fast, avoiding blockage. Simultaneously, the extrusion disc improves the meat grinding effect.

[0004] In traditional fish roll production mixers, the mixing blades are used to agitate the fish meat. However, after mixing, the fish meat tends to accumulate, easily clogging the discharge pipe. Furthermore, after mixing, the fish meat needs to be transferred to a separate grinding unit for further processing, resulting in multiple transfers and an inconvenient process. Therefore, a new technical solution is needed to address this issue. Utility Model Content

[0005] The purpose of this utility model is to overcome the shortcomings of the existing technology, adapt to the needs of reality, and provide a mixer for fish roll production. This solves the problem that the current traditional fish roll production mixers rely on mixing blades to mix fish meat raw materials. However, after the mixing operation is completed, the fish meat raw materials will accumulate in large quantities, which can easily cause the fish meat raw materials to be blocked in the discharge pipe. Moreover, after the fish meat has completed the mixing process, it still needs to be transferred to a separate crushing device for crushing, which results in the fish meat having to undergo multiple transfers, making the whole process inconvenient.

[0006] To achieve the purpose of this utility model, the technical solution adopted by this utility model is as follows: a mixer for fish roll production is designed, including a device base plate, a telescopic cylinder is installed at one end of the top of the device base plate, a movable plate is fixed to the piston rod at the top of the telescopic cylinder, a first motor is installed at the bottom of the movable plate, a cover plate is installed at the bottom of the first motor, and its output shaft passes through the cover plate and is connected to a first rotating rod through a coupling, and an integrated component is provided on the outside of the first rotating rod, the bottom of the integrated component extending into the mixing cylinder.

[0007] Preferably, the integrated component includes an agitator, a spiral conveyor blade, and a first blade.

[0008] Preferably, multiple agitator rods are installed at the top outer part of the first rotating rod, the spiral conveying blades are installed in the middle of the first rotating rod, and the first blade is installed at the bottom of the first rotating rod.

[0009] Preferably, the bottom of the stirring cylinder is connected to a conveying pipe, and the bottom of the conveying pipe is connected to a crushing pipe.

[0010] Preferably, the bottom plate of the device has a material trough on the top, a cavity inside the bottom plate, and multiple heat dissipation holes on the sides and bottom of the cavity. A second motor is installed inside the cavity.

[0011] Preferably, the output shaft at the top of the second motor passes through the cavity and is connected to a second rotating rod via a coupling. The top of the second rotating rod extends into the crushing pipe, and a second blade is installed at one end of the second rotating rod located inside the crushing pipe.

[0012] Preferably, support rods are fixed on both sides of the bottom of the stirring cylinder, and a device base plate is fixed at the bottom of the support rods.

[0013] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0014] 1. This utility model combines a telescopic cylinder, a first motor, and an integrated component. When the first rotating rod is inserted into the mixing drum, the stirring rod, spiral conveying blade, and first blade on its surface will respectively enter the mixing drum, the conveying pipe, and the crushing pipe. During the rotation of the first rotating rod, the stirring rod will stir the raw materials in the mixing drum. At the same time, the raw materials entering the conveying pipe will be conveyed by the rotation of the spiral conveying blade. When the raw materials are conveyed to the crushing pipe, the rotating first blade will crush them. The stirring, conveying, and crushing functions are integrated into one unit, eliminating the need for multiple additional drive devices to complete these processes. This solves the technical problem of traditional fish roll production mixers that rely on stirring blades to stir fish meat raw materials. However, after the stirring operation, the fish meat raw materials tend to accumulate in large quantities, which can easily cause blockage in the discharge pipe. Moreover, after the fish meat completes the stirring process, it still needs to be transferred to a separate crushing device for crushing, resulting in the fish meat undergoing multiple transfers, making the entire process inconvenient.

[0015] 2. This utility model combines a second motor, a second blade, and a feed trough. When the raw material enters the crushing pipe, the second motor starts to operate. The second motor can drive the second blade located in the crushing pipe to rotate in the opposite direction to the first blade. Through the cooperation of the first blade and the second blade, the raw material is subjected to force in opposite directions, which can realize the crushing of the raw material in two opposite directions and can more effectively improve the crushing effect of the raw material. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0017] Figure 2 This is a schematic diagram of the integrated component structure of this utility model;

[0018] Figure 3 This is a schematic diagram of the internal structure of the cavity in this utility model.

[0019] In the diagram: 1. Device base plate; 101. Material trough; 2. Telescopic cylinder; 201. Moving plate; 202. First motor; 203. Cover plate; 204. Mixing cylinder; 205. Support rod; 206. Conveying pipe; 207. Crushing pipe; 208. First rotating rod; 209. Stirring rod; 210. Spiral conveying blade; 211. First blade; 3. Second rotating rod; 301. Cavity; 302. Second motor; 303. Second blade. Detailed Implementation

[0020] The present invention will be further described below with reference to the accompanying drawings and embodiments:

[0021] Example 1: A mixer for fish roll production, see [link to example]. Figures 1 to 3 The device includes a base plate 1, with a telescopic cylinder 2 mounted on one top end of the base plate 1. A movable plate 201 is fixed to the piston rod at the top of the telescopic cylinder 2. A first motor 202 is mounted on the bottom of the movable plate 201. A cover plate 203 is mounted on the bottom of the first motor 202, and its output shaft passes through the cover plate 203 and is connected to a first rotating rod 208 via a coupling. An integrated assembly is provided on the outside of the first rotating rod 208, and the bottom of the integrated assembly extends into the mixing drum 204. First, the raw material to be processed is put into the device through the opening at the top of the mixing drum 204. Then, the telescopic cylinder 2 is started. The system begins operation and generates a downward thrust, causing the connected movable plate 201 to move downwards. As the movable plate 201 moves downwards, the first motor 202, cover plate 203, and first rotating rod 208 also move downwards synchronously. When the first rotating rod 208 gradually extends into the mixing drum 204, the stirring rod 209, spiral conveying blade 210, and first blade 211 on its surface will respectively enter the mixing drum 204, the conveying pipe 206, and the pulverizing pipe 207. After completing the above position adjustment, the first motor 202 is started, and the first motor 202 drives the first rotating rod 208 to begin high-speed rotation. During rotation, the stirring rod 209 located inside the mixing drum 204 plays a full role in thoroughly and evenly mixing the raw materials inside the drum. Simultaneously, within the conveying pipe 206, which connects the mixing drum 204 and the crushing pipe 207, the spiral conveying blades 210 rotate along with the first rotating rod 208. The raw materials entering the conveying pipe 206 are propelled forward along the conveying pipe 206 by the spiral conveying blades 210, achieving automatic transfer of the raw materials from the mixing drum 204 to the crushing pipe 207, avoiding the tedious manual handling. When the raw materials are conveyed... When the material enters the crushing pipe 207, the rotating first blade 211 begins to perform its crushing function. The first blade 211 rotates at high speed to crush the raw material entering the crushing pipe 207. This solves the technical problem of traditional fish roll production mixers, which rely on mixing blades to mix fish meat raw materials. However, after the mixing operation is completed, the fish meat raw materials will accumulate in large quantities, which can easily cause the fish meat raw materials to be blocked in the discharge pipe. Moreover, after the fish meat completes the mixing process, it still needs to be transferred to a separate crushing device for crushing. This results in the fish meat having to undergo multiple transfers, making the whole process inconvenient.

[0022] For details, see Figure 2 The integrated component includes a stirring rod 209, a spiral conveying blade 210, and a first blade 211.

[0023] Further, see Figure 2Multiple stirring rods 209 are installed at the top of the outer side of the first rotating rod 208, spiral conveying blades 210 are installed in the middle of the first rotating rod 208, and the first blade 211 is installed at the bottom of the first rotating rod 208.

[0024] It is worth noting that, see Figure 1 The bottom of the mixing cylinder 204 is connected to a conveying pipe 206, and the bottom of the conveying pipe 206 is connected to a crushing pipe 207.

[0025] It is worth noting that, see Figure 3 The device base plate 1 has a material trough 101 on the top and a cavity 301 inside. The cavity 301 has multiple heat dissipation holes (not shown in the figure) on the side and bottom. A second motor 302 is installed inside the cavity 301. After the raw material enters the crushing pipe 207, the second motor 302 starts and drives the second blade 303 located in the crushing pipe 207 to rotate in the opposite direction to the first blade 211. The first blade 211 and the second blade 303 apply force to the raw material in opposite directions at the same time, forming a double crushing effect in opposite directions. This can crush the raw material to the required particle size more efficiently and thoroughly, greatly improving the crushing effect.

[0026] It is worth mentioning that, see Figure 3 The output shaft at the top of the second motor 302 passes through the cavity 301 and is connected to the second rotating rod 3 via a coupling. The top of the second rotating rod 3 extends into the crushing pipe 207, and a second blade 303 is installed at one end of the second rotating rod 3 located in the crushing pipe 207.

[0027] It is worth emphasizing that, see Figure 1 Both sides of the bottom of the mixing cylinder 204 are fixed with support rods 205, and the bottom of the support rods 205 is fixed with a device base plate 1.

[0028] When using a mixer for fish roll production, firstly, the raw material to be processed is fed into the equipment through the opening at the top of the mixing cylinder 204. Then, the telescopic cylinder 2 is activated, generating a downward thrust that moves the connected moving plate 201 downwards. As the moving plate 201 moves downwards, the first motor 202, cover plate 203, and first rotating rod 208 also move downwards synchronously. When the first rotating rod 208 gradually extends into the mixing cylinder 204, the stirring rod 209, spiral conveying blade 210, and first blade 211 on its surface will respectively enter the mixing cylinder 204, conveying pipe 206, and crushing pipe 207. After completing the above positional adjustments, the first motor 202 is activated, driving the first rotating rod 208 to rotate at high speed. During rotation, the stirring rod 209 inside the mixing cylinder 204 fully functions, thoroughly and evenly mixing the raw material inside the cylinder. Simultaneously, the mixing cylinder 204 and the crushing pipe 207... Within the conveying pipe 206, which connects the mixing drum 204 and the crushing pipe 207, the spiral conveying blades 210 rotate along with the first rotating rod 208. The raw materials entering the conveying pipe 206 are conveyed forward along the conveying pipe 206 under the push of the spiral conveying blades 210, realizing the automatic transfer of raw materials from the mixing drum 204 to the crushing pipe 207, avoiding the tedious manual transfer. When the raw materials are conveyed into the crushing pipe 207, the rotating first blade 211 begins to perform its crushing function. The first blade 211 rotates at high speed to crush the raw materials entering the crushing pipe 207. After the raw materials enter the crushing pipe 207, the second motor 302 starts, driving the second blade 303 located in the crushing pipe 207 to rotate in the opposite direction to the first blade 211. The first blade 211 and the second blade 303 apply force to the raw materials in opposite directions at the same time, forming a double crushing effect in opposite directions, which can crush the raw materials to the required particle size more efficiently and thoroughly, greatly improving the crushing effect.

[0029] In addition, all components designed in this utility model are general standard parts or components known to those skilled in the art. Their structure and principle can be learned by those skilled in the art through technical manuals or conventional experimental methods. Those skilled in the art can fully implement them, so there is no need to elaborate. The content protected by this utility model does not involve improvements to the internal structure and method.

Claims

1. A mixer for fish roll production, comprising a base plate (1), characterized in that, The device base plate (1) is equipped with a telescopic cylinder (2) at one end of the top. The piston rod at the top of the telescopic cylinder (2) is fixed with a movable plate (201). The bottom of the movable plate (201) is equipped with a first motor (202). The bottom of the first motor (202) is equipped with a cover plate (203), and its output shaft passes through the cover plate (203) and is connected to a first rotating rod (208) through a coupling. An integrated component is provided on the outside of the first rotating rod (208), and the bottom of the integrated component extends into the stirring cylinder (204).

2. The mixer for fish roll production as described in claim 1, characterized in that, The integrated component includes an agitator (209), a spiral conveying blade (210), and a first blade (211).

3. The mixer for fish roll production as described in claim 2, characterized in that, Multiple stirring rods (209) are installed at the top of the outer side of the first rotating rod (208), the spiral conveying blade (210) is installed in the middle of the first rotating rod (208), and the first blade (211) is installed at the bottom of the first rotating rod (208).

4. The mixer for fish roll production as described in claim 1, characterized in that, The bottom of the stirring cylinder (204) is connected to a conveying pipe (206), and the bottom of the conveying pipe (206) is connected to a crushing pipe (207).

5. The mixer for fish roll production as described in claim 1, characterized in that, The device base plate (1) has a material trough (101) on the top, and a cavity (301) is provided inside the device base plate (1). Multiple heat dissipation holes are provided on the side and bottom of the cavity (301). A second motor (302) is installed inside the cavity (301).

6. The mixer for fish roll production as described in claim 5, characterized in that, The output shaft at the top of the second motor (302) passes through the cavity (301) and is connected to the second rotating rod (3) via a coupling. The top of the second rotating rod (3) extends into the crushing pipe (207), and a second blade (303) is installed at one end of the second rotating rod (3) located in the crushing pipe (207).

7. The mixer for fish roll production as described in claim 1, characterized in that, The bottom of the stirring cylinder (204) is fixed with support rods (205) on both sides, and the bottom of the support rods (205) is fixed with a device base plate (1).

Citation Information

Patent Citations

  • Mixer is used in paupiette processing

    CN205695630U