Quick-frozen food stuffing mixing device

By designing the spiral conveyor and mixing components, the problem of uneven mixing between the lower and upper ingredients in the quick-frozen food mixing device was solved, achieving thorough and uniform mixing of the filling.

CN223474802UActive Publication Date: 2025-10-28NANYANG YUGUAN FOOD CO LTD
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Patent Information

Application Number
CN202422903665.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-26
Publication Date
2025-10-28
Estimated Expiration
2034-11-26

AI Technical Summary

Technical Problem

In existing frozen food mixing devices, the ingredients at the bottom and the ingredients at the top are difficult to mix fully during the mixing process, resulting in uneven mixing of the filling.

Method used

The design employs a combination of a spiral conveyor and a mixing assembly. The spiral conveyor transports the raw materials from below to above, and the meshing transmission of the mixing rod and driven gear ensures thorough mixing of the raw materials from below and above.

Benefits of technology

This allows for more even mixing of the filling, improving mixing efficiency and effectiveness.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a quick-frozen food stuffing mixing device, which belongs to the technical field of quick-frozen food production, and comprises a barrel body, a feed pipe arranged above one side of the surface of the barrel body, a discharge pipe arranged at the lower part of the barrel body, and a uniform mixing mechanism arranged inside the barrel body, a connecting plate is arranged at the lower end of the rotating column, a spiral conveying rod is arranged in the center of the lower portion of the connecting plate, a conveying frame is arranged in the center of the interior of the barrel body, the spiral conveying rod is located in the conveying frame, a feeding groove is formed in the lower side of the outer wall of the conveying frame, and a discharging groove is formed in the upper side of the outer wall of the conveying frame; the driving assembly is used for driving the connecting plate to rotate, a stirring assembly is arranged below the connecting plate, and the stirring assembly is used for stirring and mixing raw materials in the barrel body; according to the utility model, raw materials at the lower part and raw materials at the upper part can be fully mixed together for stirring, so that stuffing is more uniformly mixed.
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Description

Technical Field

[0001] This utility model relates to the field of quick-frozen food production technology, specifically to a quick-frozen food filling mixing device. Background Technology

[0002] Quick-frozen foods are processed through rapid freezing at low temperatures. This process prevents the loss of moisture and juices from the food tissues, and at such low temperatures, microorganisms are virtually unable to multiply, ensuring food safety. When processing the fillings for quick-frozen foods, various raw materials need to be placed in a mixing device and stirred together.

[0003] However, some existing mixing devices have a relatively simple internal structure, and only use a stirring rod to stir horizontally to mix the raw materials. However, some raw materials piled at the bottom cannot be fully mixed with the raw materials at the top, resulting in uneven mixing of the filling. Utility Model Content

[0004] In view of this, the present invention provides a quick-frozen food filling mixing device, which can fully mix the raw materials below and the raw materials above together to make the filling more uniform.

[0005] To solve the above-mentioned technical problems, this utility model provides a quick-frozen food filling mixing device, including a barrel body, an inlet pipe provided on the upper side of one side of the barrel body, an outlet pipe provided at the lower part of the barrel body, and a uniform mixing mechanism provided inside the barrel body. The uniform mixing mechanism includes a rotating column rotatably mounted on the upper side of the inner wall of the barrel body, a connecting plate provided at the lower end of the rotating column, a spiral conveying rod provided at the lower center of the connecting plate, a conveying frame provided at the center of the inner wall of the barrel body, and the spiral conveying rod located inside the conveying frame. An inlet groove is provided on the lower side of the outer wall of the conveying frame, and an outlet groove is provided on the upper side of the outer wall of the conveying frame. The uniform mixing mechanism also includes a driving component for driving the connecting plate to rotate. A stirring component is provided below the connecting plate for stirring and mixing the raw materials inside the barrel body. The operator pours the raw materials to be mixed into the barrel body through the inlet pipe. The spiral conveying rod conveys the raw materials at the bottom of the conveying frame to the upper part of the conveying frame, and then discharges them into the upper part of the barrel body through the outlet groove. This allows the raw materials at the bottom and the raw materials at the top to be fully mixed together, making the filling mixture more uniform.

[0006] The drive assembly includes a support column mounted on the upper side wall of the housing. A motor is mounted on the lower part of the support column, with the fixed end of the motor fixed to the lower wall of the support column. The output end of the motor passes through the lower wall of the support column and is equipped with a drive gear. A toothed ring is mounted on the outer wall of the connecting plate. A through slot is opened on the outer wall of the housing corresponding to the position of the drive gear. The drive gear passes through the through slot of the housing and is meshed with the toothed ring. When the operator starts the motor, the output end of the motor drives the drive gear to rotate. Because the drive gear meshes with the toothed ring, the rotation of the drive gear drives the toothed ring to rotate, which in turn drives the connecting plate and the rotating column to rotate. This causes the connecting plate to drive the bottom spiral conveyor rod to rotate and transport materials upward.

[0007] The mixing assembly includes stirring rods rotatably mounted on both sides of the lower part of the connecting plate. When the connecting plate rotates, it drives the stirring rods to rotate around the center of the rotating column, thereby mixing the raw materials in the tank.

[0008] The surface of the stirring rod is evenly provided with several stirring paddles, and the cross-section of the stirring paddles is spiral-shaped. The spiral-shaped stirring paddles can make the stirring rod more effective in mixing the raw materials.

[0009] The mixing assembly also includes a rotating component, which drives the mixing rod to rotate. When the connecting plate drives the mixing rod to rotate around the center of the rotating column, the rotating column can rotate around its own center, thereby making the mixing paddle more effective at mixing the raw materials.

[0010] The rotating component includes a rotating groove located on the upper side of the inside of the barrel. A driven gear is rotatably mounted on the upper part of the connecting plate, corresponding to the position directly above the stirring rod. An internal gear is mounted on the inner wall of the rotating groove, and the driven gear is meshed with the internal gear. The upper end of the stirring rod passes through the lower wall of the connecting plate, and the upper end of the stirring rod is connected to the lower center of the driven gear. When the connecting plate rotates, it drives the stirring rod and the driven gear to rotate synchronously around the center of the rotating column. At this time, the driven gear can rotate on its own through the meshing connection with the internal gear, and the driven gear drives the stirring rod to rotate synchronously. This allows the stirring rod to rotate around the center of the rotating column while simultaneously mixing the raw materials more thoroughly and evenly through its own rotation.

[0011] In summary, compared with the prior art, this application includes at least one of the following beneficial technical effects:

[0012] 1. When using this utility model, the staff pours the raw materials to be mixed into the barrel through the feed pipe. The spiral conveyor rod transports the raw materials at the bottom of the conveyor frame to the top of the conveyor frame, and then discharges them through the discharge chute to the top of the barrel. This allows the raw materials at the bottom and the raw materials at the top to be fully mixed together, making the filling more evenly mixed.

[0013] 2. When using this utility model, the operator starts the motor, and the output end of the motor drives the drive gear to rotate. Since the drive gear meshes with the gear ring, the rotation of the drive gear drives the gear ring to rotate, which in turn drives the connecting plate and the rotating column to rotate. This causes the connecting plate to drive the bottom spiral conveyor rod to rotate and convey the material upward.

[0014] 3. When this utility model is in use, the connecting plate rotates, which drives the stirring rod to rotate around the center of the rotating column, so that the stirring rod stirs and mixes the raw materials in the barrel.

[0015] 4. When this utility model is in use, the connecting plate rotates, which drives the stirring rod and the driven gear to rotate synchronously around the center of the rotating column. At this time, the driven gear can rotate on its own through the meshing connection of the internal gear, and the driven gear drives the stirring rod to rotate synchronously. Thus, while the stirring rod rotates around the center of the rotating column, its own rotation makes the mixing of the raw materials by the stirring paddle more thorough and uniform. Attached Figure Description

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

[0017] Figure 2 This is a side view of the main structure of this utility model;

[0018] Figure 3 For the present utility model Figure 2 Front sectional view of the structure at point AA;

[0019] Figure 4 This is a cross-sectional view of the internal structure of the barrel of this utility model;

[0020] Figure 5 For the present utility model Figure 4 Enlarged schematic diagram of the structure at point A in the middle.

[0021] Explanation of reference numerals in the attached drawings: 100, barrel body; 101, feed pipe; 102, discharge pipe; 200, rotating column; 300, connecting plate; 301, screw conveyor rod; 302, gear ring; 400, conveyor frame; 401, feed chute; 402, discharge chute; 500, support column; 501, motor; 502, drive gear; 503, stirring rod; 504, stirring paddle; 505, internal gear; 506, driven gear. Detailed Implementation

[0022] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the following will be described in conjunction with the accompanying drawings of the embodiments of this utility model. Figure 1-5 The technical solutions of the embodiments of this utility model are clearly and completely described herein. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. All other embodiments obtained by those skilled in the art based on the described embodiments of this utility model are within the protection scope of this utility model.

[0023] According to one embodiment of the present invention, such as Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5 As shown: This embodiment provides a quick-frozen food filling mixing device, including a barrel 100. An inlet pipe 101 is provided above one side of the barrel 100, and a outlet pipe 102 is provided at the bottom of the barrel 100. A uniform mixing mechanism is provided inside the barrel 100, including a rotating column 200 rotatably mounted above the inner wall of the barrel 100. A connecting plate 300 is provided at the lower end of the rotating column 200, and a spiral conveying rod 301 is provided at the lower center of the connecting plate 300. A conveying frame 400 is provided at the center inside the barrel 100, and the spiral conveying rod 301 is located inside the conveying frame 400. An inlet groove 401 is provided on the lower side of the outer wall of the conveying frame 400, and an outlet groove 402 is provided on the upper side of the outer wall of the conveying frame 400. The uniform mixing mechanism also includes a driving assembly for driving the connecting plate 300. The connecting plate 300 is rotated, and a stirring component is installed below it. The stirring component is used to stir and mix the raw materials inside the barrel 100. The operator pours the raw materials to be mixed into the barrel 100 through the feed pipe 101, and then stirs and mixes the raw materials through the stirring component. At this time, the raw materials deposited at the bottom of the barrel 100 enter the lower part of the conveying frame 400 through the feed chute 401. Then, the driving component drives the connecting plate 300 to rotate, and the connecting plate 300 drives the spiral conveying rod 301 to rotate, so that the spiral conveying rod 301 conveys the raw materials at the bottom of the conveying frame 400 to the upper part of the conveying frame 400, and then discharges them to the upper part of the barrel 100 through the discharge chute 402. In this way, the raw materials at the bottom and the raw materials at the top can be fully mixed together, making the filling more evenly mixed.

[0024] The drive assembly includes a support column 500 mounted on the upper side wall of the box body. A motor 501 is mounted on the lower part of the support column 500. The fixed end of the motor 501 is fixed to the lower wall of the support column 500. The output end of the motor 501 passes through the lower wall of the support column 500 and is equipped with a drive gear 502. A gear ring 302 is mounted on the outer wall of the connecting plate 300. A through groove is opened on the outer wall of the barrel 100 corresponding to the position of the drive gear 502. The drive gear 502 passes through the through groove of the barrel 100 and is meshed with the gear ring 302. When the operator starts the motor 501, the output end of the motor 501 drives the drive gear 502 to rotate. Since the drive gear 502 is meshed with the gear ring 302, the rotation of the drive gear 502 drives the gear ring 302 to rotate, which in turn drives the connecting plate 300 and the rotating column 200 to rotate. This causes the connecting plate 300 to drive the bottom spiral conveyor rod 301 to rotate and convey materials upward.

[0025] The mixing assembly includes mixing rods 503 rotatably disposed on both sides of the lower part of the connecting plate 300. When the connecting plate 300 rotates, the connecting plate 300 drives the mixing rods 503 to rotate around the center of the rotating column 200, so that the mixing rods 503 mix the raw materials in the barrel 100.

[0026] The surface of the stirring rod 503 is uniformly provided with a number of stirring paddles 504, and the cross-section of the stirring paddles 504 is spiral. The spiral stirring paddles 504 can make the stirring rod 503 better at mixing the raw materials.

[0027] The mixing assembly also includes a rotating component, which drives the mixing rod 503 to rotate. When the connecting plate 300 drives the mixing rod 503 to rotate around the center of the rotating column 200, the rotating column 200 can rotate around its own center, thereby making the mixing paddle 504 better at mixing the raw materials.

[0028] The rotating component includes a rotating groove located on the upper side inside the barrel 100. A driven gear 506 is rotatably mounted on the upper part of the connecting plate 300, corresponding to a position directly above the stirring rod 503. An internal gear 505 is mounted on the inner wall of the rotating groove, and the driven gear 506 is meshed with the internal gear 505. The upper end of the stirring rod 503 penetrates the lower wall of the connecting plate 300, and the upper end of the stirring rod 503 is connected to the center of the lower end of the driven gear 506. When the connecting plate 300 rotates, it drives the stirring rod 503 and the driven gear 506 to rotate synchronously around the center of the rotating column 200. At this time, the driven gear 506 can rotate on its own under the meshing connection of the internal gear 505, and the driven gear 506 drives the stirring rod 503 to rotate synchronously. Thus, while the stirring rod 503 rotates around the center of the rotating column 200, its own rotation makes the mixing of the raw materials by the stirring paddle 504 more thorough and uniform.

[0029] How to use this utility model:

[0030] When it is necessary to mix the filling ingredients, the ingredients to be mixed are poured into the container 100 through the feed pipe 101. The motor 501 is started, and the output end of the motor 501 drives the drive gear 502 to rotate. Since the drive gear 502 meshes with the gear ring 302, the rotation of the drive gear 502 drives the gear ring 302 to rotate, which in turn drives the connecting plate 300 and the rotating column 200 to rotate. The connecting plate 300 drives the bottom stirring rod 503 and stirring paddle 504 to stir the ingredients. At the same time, the driven gear 506 meshes with the internal gear 505 to make the stirring... The rod 503 rotates to allow the stirring paddle 504 to thoroughly mix the raw materials. At the same time, the raw materials deposited below the barrel 100 enter the lower part of the conveying frame 400 through the feed chute 401. When the connecting plate 300 rotates, it drives the spiral conveying rod 301 to rotate, thereby allowing the spiral conveying rod 301 to transport the raw materials at the bottom of the conveying frame 400 to the upper part of the conveying frame 400, and then discharge them through the discharge chute 402 to the upper part of the barrel 100. This allows the raw materials at the bottom and the raw materials at the top to be thoroughly mixed together, making the filling more evenly mixed.

[0031] The above description is the preferred embodiment of this utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of this utility model, and these improvements and modifications should also be considered within the protection scope of this utility model.

Claims

1. A quick-frozen food filling mixing device, comprising a barrel (100), wherein an inlet pipe (101) is provided above one side of the barrel (100), and an outlet pipe (102) is provided at the lower part of the barrel (100), characterized in that: The barrel (100) is equipped with a uniform mixing mechanism, which includes a rotating column (200) rotatably mounted above the inner wall of the barrel (100). A connecting plate (300) is provided at the lower end of the rotating column (200). A spiral conveying rod (301) is provided at the lower center of the connecting plate (300). A conveying frame (400) is provided at the center inside the barrel (100), and the spiral conveying rod (301) is located inside the conveying frame (400). A feed chute (401) is provided on the lower side of the outer wall of the conveying frame (400), and a discharge chute (402) is provided on the upper side of the outer wall of the conveying frame (400). The uniform mixing mechanism also includes a driving assembly, which is used to drive the spiral conveying rod (301) to rotate. A stirring assembly is provided below the connecting plate (300), which is used to stir and mix the raw materials inside the barrel (100).

2. The quick-frozen food filling mixing device as described in claim 1, characterized in that: The drive assembly includes a support column (500) disposed above one side wall of the housing. A motor (501) is disposed at the lower part of the support column (500). The fixed end of the motor (501) is fixed to the lower wall of the support column (500). The output end of the motor (501) passes through the lower wall of the support column (500). A drive gear (502) is disposed at the output end of the motor (501). A gear ring (302) is disposed on the outer wall of the connecting plate (300). A through groove is opened on the outer wall of the barrel (100) corresponding to the position of the drive gear (502). The drive gear (502) passes through the through groove of the barrel (100). The drive gear (502) and the gear ring (302) are meshed.

3. The quick-frozen food filling mixing device as described in claim 1, characterized in that: The stirring assembly includes stirring rods (503) that are rotatably disposed on both sides of the lower part of the connecting plate (300).

4. The quick-frozen food filling mixing device as described in claim 3, characterized in that: The surface of the stirring rod (503) is uniformly provided with a plurality of stirring paddles (504), and the cross-section of the stirring paddles (504) is spiral.

5. The quick-frozen food filling mixing device as described in claim 3, characterized in that: The stirring assembly also includes a rotating component, which is used to drive the stirring rod (503) to rotate.

6. The quick-frozen food filling mixing device as described in claim 5, characterized in that: The rotating component includes a rotating groove opened on the upper side inside the barrel (100), a driven gear (506) is rotatably arranged on the upper part of the connecting plate (300) and corresponding to the position directly above the stirring rod (503), an internal gear (505) is arranged on the inner side wall of the rotating groove, and the driven gear (506) and the internal gear (505) are meshed together, the upper end of the stirring rod (503) penetrates the lower wall of the connecting plate (300), and the upper end of the stirring rod (503) is connected to the lower center of the driven gear (506).