Shaping device for nutritious food processing

By designing a shaping device for nutritional food processing that includes a rotation drive, lifting and cooling mechanism, the problems of unstable shaping frame and high temperature residue were solved. This enabled stable loading and unloading of the shaping frame and rapid cooling, ensuring the stability of the shape and structure of the nutritional food.

CN224055316UActive Publication Date: 2026-03-31ZHEJIANG YUFU FOOD CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-06-09
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

In the prior art, the shaping frame is unstable when placed and is easy to tip over, causing the nutritional food to spill. In addition, after the shaping frame is tightened, it is inconvenient to pick up and put in the shaped nutritional food. Furthermore, the nutritional food retains high temperature during the shaping process in the shaping frame, causing it to soften and making it difficult to dissipate heat and cool down quickly.

Method used

A shaping device for processing nutritional foods was designed, including a base plate, a mounting plate, a rotary drive mechanism, a lifting mechanism, and a heat dissipation and cooling mechanism. The rotary drive mechanism maintains the stability of the shaping frame through a rotating frame and a drive rod. The lifting mechanism enables convenient loading and unloading of the shaping frame through an electric push rod and a lifting rod. The heat dissipation and cooling mechanism achieves rapid cooling through a heat dissipation cavity and heat dissipation holes.

Benefits of technology

It achieves stable placement of the shaping frame, facilitates the placement and removal of the shaping frame, and quickly reduces the temperature of the nutritious food through a heat dissipation and cooling mechanism, ensuring that the food is quickly shaped.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of nutritious food processing, in particular to a shaping device for nutritious food processing, which comprises a bottom plate, a mounting plate is mounted above the bottom plate, a rotary driving mechanism is mounted in the middle of the top end of the mounting plate, and a lifting mechanism is arranged at the bottom end of the rotary driving mechanism. A shaping frame is mounted above the edge of the mounting plate; the nutritional food shaping device has the advantages that the clamping frame is driven by the driving rod to clamp the surface of the inserting pipe, so that the shaping frame is stably mounted above the mounting plate, nutritional food is shaped, and after the nutritional food is shaped, the electric push rod drives the ejector rod to move telescopically through the connecting frame, so that the nutritional food is shaped. And then the supporting plate, the rotating frame, the driving rod, the inserting pipes and the shaping frames are pushed to move upwards, the inserting pipes at the bottom ends of the shaping frames are pulled out of the inserting holes, and therefore the multiple shaping frames can be taken out at the same time.
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Description

Technical Field

[0001] This utility model relates to the field of nutritional food processing technology, and in particular to a shaping device for nutritional food processing. Background Technology

[0002] Nutritional food processing and shaping equipment refers to equipment used to shape and refine prepared nutritional foods. This equipment is usually located in the last stage of the production line and is responsible for ensuring that the shape, size, and structure of the food meet the product design requirements. Moreover, during the processing of nutritional foods, they may soften due to the temperature immediately after processing, which can affect their shape and structure. Therefore, a shaping device with a cooling structure is used to solidify and shape the nutritional foods, maintaining their stability and appearance during packaging and transportation.

[0003] Existing shaping devices for nutritional food processing involve placing processed nutritional foods into shaping frames of different shapes for cooling and shaping. However, these frames are not stable enough and are prone to tipping over, causing the nutritional foods to spill. After the frames are securely connected, it becomes inconvenient to retrieve and place the shaped nutritional foods inside. Furthermore, the nutritional foods retain a certain amount of high temperature while being shaped in the frames, causing them to soften and become difficult to shape, and failing to quickly dissipate heat and cool down the nutritional foods in the frames.

[0004] Therefore, a shaping device for processing nutritional foods is proposed. Utility Model Content

[0005] The purpose of this invention is to address the shortcomings of existing technologies, such as the instability of the shaping frame during placement, which makes it easy to tip over and spill nutritious food, and the inconvenience of retrieving and placing the shaped nutritious food inside the shaping frame after it is securely connected. Therefore, this invention proposes a shaping device for nutritious food processing.

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

[0007] Design a shaping device for processing nutritional food, including a base plate, an mounting plate mounted on the top of the base plate, a rotary drive mechanism mounted at the top center of the mounting plate, a lifting mechanism at the bottom end of the rotary drive mechanism, a shaping frame mounted above the edge of the mounting plate, and a heat dissipation and cooling mechanism at the bottom end of the shaping frame.

[0008] The rotary drive mechanism includes a rotating frame and a drive rod. The rotating frame is installed above the mounting plate and has a movable groove at its outer end. A connecting column is fixed to the top of the inner end of the drive rod. The top of the connecting column slides through the movable groove. A nut is connected to the surface of the connecting column at the top of the movable groove. A snap-fit ​​frame is fixed to the outer end of the drive rod.

[0009] Furthermore, the lifting mechanism includes an electric push rod and a jacking rod. The electric push rod is vertically fixed in the middle of the bottom end of the mounting plate, and a connecting frame is fixed at its bottom end. The surface of the mounting plate is uniformly provided with first guide holes. The jacking rod is fixed to the top end of the extended end of the connecting frame and slides through the first guide hole.

[0010] Furthermore, the jacking rod is vertically arranged, the connecting frame is a cross-shaped structure and is horizontally arranged, and a support plate is fixed at the top of the jacking rod above the mounting plate. The support plate is horizontally arranged below the rotating frame.

[0011] Furthermore, a motor is installed in the middle of the bottom end of the support plate, and a rotating rod that rotates through the middle of the support plate is connected to the top of the motor. The top of the rotating rod is fixed in the middle of the bottom end of the rotating frame. The rotating frame has a cross-shaped structure and is horizontally arranged.

[0012] Furthermore, a support strip is fixed to the outer side of the support plate. The support strip is a long strip structure and is horizontally distributed in a cross shape. A support block is fixed to the top of the support strip. A second guide hole is opened inside the support block. The drive rod slides through the second guide hole.

[0013] Furthermore, the movable groove has an elongated waist-shaped structure, the connecting column has a threaded column structure, the drive rod and the support bar are arranged crosswise, and the snap-fit ​​frame has a U-shaped structure.

[0014] Furthermore, the heat dissipation and cooling mechanism includes a heat dissipation cavity, heat dissipation holes, and a connecting pipe. The heat dissipation cavity is located in the middle of the frame wall of the shaping frame. The connecting pipe is a rectangular tube structure, vertically connected to the middle of the bottom end of the shaping frame, and communicating with the bottom end of the heat dissipation cavity. The heat dissipation holes are evenly located on the top side of the shaping frame and communicate with the heat dissipation cavity.

[0015] Furthermore, the mounting plate has evenly spaced insertion holes along its edge, the bottom end of the insertion tube slides through the insertion hole, a first limiting ring is fixed to the surface of the insertion tube at the top of the insertion hole, the snap-fit ​​frame snaps onto the surface of the insertion tube, and a second limiting ring is fixed to the surface of the insertion tube at the upper and lower sides of the snap-fit ​​frame.

[0016] Furthermore, the base plate has a hollow structure and is horizontally arranged. A support column is fixed between its top end and the bottom end of the mounting plate. A blower is installed on one side of the top end of the base plate. A blower pipe is connected to the side of the blower. The bottom end of the blower pipe is inserted into the cavity inside the base plate. Air guide pipes are evenly connected to the top edge of the base plate. The air guide pipes are vertically arranged, and their top ends are inserted into the bottom end of the insertion pipe.

[0017] The present invention provides a shaping device for processing nutritional foods, which has the following advantages:

[0018] 1. This utility model features an installation plate on a base plate, with a rotating drive mechanism and a lifting mechanism at the top of the installation plate. The shaping frame is then installed on the top of the installation plate via a connector. A motor drives a rotating frame via a rotating rod, which in turn drives a drive rod via a connecting column and a movable slot. This drive rod then drives a snap-fit ​​frame to snap-fit ​​the surface of the connector, ensuring the shaping frame is stably installed above the installation plate for shaping the nutritional food. After the nutritional food is shaped, an electric push rod drives a push rod to extend and retract via a connecting frame, thereby pushing the support plate, rotating frame, drive rod, connector, and shaping frame upwards. This pulls the connector at the bottom of the shaping frame out of the insertion hole, allowing multiple shaping frames to be removed simultaneously.

[0019] 2. This utility model provides a heat dissipation cavity in the middle of the frame wall of the shaping frame and a heat dissipation hole at the top outer side of the shaping frame. Therefore, during the shaping process of the nutritional food being placed inside the shaping frame, the air guide pipe is inserted into the bottom of the insertion pipe, and the blower blows air into the cavity inside the bottom plate through the air guide pipe, thereby blowing into the insertion pipe through the air guide pipe and being discharged from the heat dissipation hole through the heat dissipation cavity. Therefore, the high temperature remaining on the nutritional food can be carried away, which facilitates the rapid cooling of the nutritional food and is conducive to the rapid shaping of the nutritional food. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0021] Figure 2 This utility model Figure 1 A sectional view;

[0022] Figure 3 This utility model Figure 1 A schematic diagram of the rotary drive mechanism and lifting mechanism;

[0023] Figure 4 This utility model Figure 1 A schematic diagram of the mounting plate and base plate;

[0024] Figure 5 This utility model Figure 1A schematic diagram of the connector and snap-fit ​​frame.

[0025] In the diagram: 1. Base plate; 2. Blower pipe; 3. Blower; 4. Support column; 5. Air guide pipe; 6. Mounting plate; 7. Insertion hole; 8. First limiting ring; 9. Second limiting ring; 10. Snap-fit ​​frame; 11. Insertion pipe; 12. Shaping frame; 13. Heat dissipation hole; 14. Support block; 15. Drive rod; 16. Connecting column; 17. Rotating frame; 18. Support plate; 19. Support bar; 20. Movable groove; 21. Push rod; 22. Connecting frame; 23. Electric push rod; 24. Motor; 25. Rotating rod; 26. Nut; 27. Heat dissipation cavity; 28. First guide hole; 29. ​​Second guide hole. Detailed Implementation

[0026] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.

[0027] For examples, please refer to Figures 1 to 5 The figure shows a shaping device for processing nutritional food, including a base plate 1, an mounting plate 6 mounted on the top of the base plate 1, a rotary drive mechanism mounted at the top center of the mounting plate 6, a lifting mechanism at the bottom of the rotary drive mechanism, a shaping frame 12 mounted above the edge of the mounting plate 6, and a heat dissipation and cooling mechanism at the bottom of the shaping frame 12.

[0028] In detail, the lifting mechanism includes an electric push rod 23 and a jacking rod 21. The electric push rod 23 is vertically fixed in the middle of the bottom end of the mounting plate 6, and a connecting frame 22 is fixed at its bottom end. The surface of the mounting plate 6 is evenly provided with first guide holes 28. The jacking rod 21 is fixed at the top of the extended end of the connecting frame 22 and slides through the first guide hole 28.

[0029] The jacking rod 21 is set vertically, the connecting frame 22 has a cross-shaped structure and is set horizontally, and a support plate 18 is fixed at the top of the jacking rod 21 and above the mounting plate 6. The support plate 18 is set horizontally below the rotating frame 17.

[0030] After the nutritional food is shaped, the electric push rod 23 drives the push rod 21 to extend and retract through the connecting frame 22, thereby pushing the support plate 18, the rotating frame 17, the drive rod 15, the insertion tube 11 and the shaping frame 12 to move upward, pulling the insertion tube 11 at the bottom of the shaping frame 12 out of the insertion hole 7, so that multiple shaping frames 12 can be removed at the same time.

[0031] Furthermore, the rotary drive mechanism includes a rotary frame 17 and a drive rod 15. The rotary frame 17 is mounted above the mounting plate 6 and has a movable groove 20 at its outer end. A connecting post 16 is fixed to the top of the inner end of the drive rod 15. The top of the connecting post 16 slides through the movable groove 20. A nut 26 is connected to the surface of the connecting post 16 at the top of the movable groove 20. A snap-fit ​​frame 10 is fixed to the outer end of the drive rod 15.

[0032] A motor 24 is installed in the middle of the bottom end of the support plate 18. The top of the motor 24 is connected to a rotating rod 25 that rotates through the middle of the support plate 18. The top of the rotating rod 25 is fixed in the middle of the bottom end of the rotating frame 17. The rotating frame 17 has a cross-shaped structure and is set horizontally.

[0033] A support strip 19 is fixed to the outside of the support plate 18. The support strip 19 is a long strip structure and is horizontally distributed in a cross shape. A support block 14 is fixed to the top of the support strip 19. A second guide hole 29 is opened inside the support block 14. The drive rod 15 slides through the second guide hole 29.

[0034] The movable groove 20 has a long waist-shaped structure, the connecting column 16 has a threaded column structure, the drive rod 15 and the support bar 19 are arranged crosswise, and the snap-fit ​​frame 10 has a U-shaped structure.

[0035] The shaping frame 12 is installed on the top of the mounting plate 6 by inserting the connector 11. The motor 24 drives the rotating frame 17 to rotate through the rotating rod 25, and drives the drive rod 15 through the connecting column 16 and the movable groove 20. In turn, the drive rod 15 drives the snap-fit ​​frame 10 to snap-fit ​​and clamp the surface of the connector 11, thereby keeping the shaping frame 12 stably installed above the mounting plate 6 to shape the nutritional food.

[0036] Finally, the heat dissipation and cooling mechanism includes a heat dissipation cavity 27, heat dissipation holes 13, and a connector 11. The heat dissipation cavity 27 is located in the middle of the frame wall of the shaping frame 12. The connector 11 is a rectangular tube structure that is vertically connected to the middle of the bottom end of the shaping frame 12 and communicates with the bottom end of the heat dissipation cavity 27. The heat dissipation holes 13 are evenly distributed on the top side of the shaping frame 12 and communicate with the heat dissipation cavity 27.

[0037] The mounting plate 6 has evenly spaced insertion holes 7 along its edge. The bottom end of the insertion tube 11 slides through the insertion hole 7. A first limiting ring 8 is fixed on the surface of the insertion tube 11 at the top of the insertion hole 7. The snap-fit ​​frame 10 snaps onto the surface of the insertion tube 11. A second limiting ring 9 is fixed on the surface of the insertion tube 11 at the upper and lower sides of the snap-fit ​​frame 10.

[0038] The base plate 1 is a hollow structure and is horizontally set. A support column 4 is fixed between its top end and the bottom end of the mounting plate 6. A blower 3 is installed on one side of the top end of the base plate 1. A blower pipe 2 is connected to the side of the blower 3. The bottom end of the blower pipe 2 is inserted into the cavity inside the base plate 1. Air guide pipes 5 are evenly connected to the top edge of the base plate 1. The air guide pipes 5 are set vertically and their top end is inserted into the bottom end of the insertion pipe 11.

[0039] During the shaping process of the nutritional food, the air duct 5 is inserted into the bottom of the insertion tube 11. The blower 3 blows air into the cavity inside the base plate 1 through the air duct 2, and then blows it into the insertion tube 11 through the air duct 5. The air is then discharged from the heat dissipation hole 13 through the heat dissipation cavity 27. Therefore, the high temperature remaining on the nutritional food can be carried away, which facilitates the rapid cooling of the nutritional food and helps it to be quickly shaped.

[0040] Working method: By setting an mounting plate 6 on the base plate 1, and setting a rotation drive mechanism and a lifting mechanism at the top of the mounting plate 6, the shaping frame 12 is installed on the top of the mounting plate 6 through the insertion tube 11. The motor 24 drives the rotating frame 17 to rotate through the rotating rod 25, and drives the drive rod 15 through the connecting column 16 and the movable groove 20. Then, the drive rod 15 drives the snap-fit ​​frame 10 to snap and clamp the surface of the insertion tube 11, thereby keeping the shaping frame 12 stably installed above the mounting plate 6 to shape the nutritional food. Moreover, after the nutritional food is shaped, the electric push rod 23 drives the push rod 21 to move telescopically through the connecting frame 22, thereby pushing the support plate 18, the rotating frame 17, the drive rod 15, the insertion tube 11 and the shaping frame 12 to move upward, pulling the insertion tube 11 at the bottom of the shaping frame 12 out of the insertion hole 7, so that multiple shaping frames 12 can be removed at the same time.

[0041] A heat dissipation cavity 27 is provided in the middle of the frame wall of the shaping frame 12, and a heat dissipation hole 13 is provided at the top outer side of the shaping frame 12. Therefore, during the shaping process of the nutritional food being placed inside the shaping frame 12, the air guide pipe 5 is inserted into the bottom of the insertion pipe 11, and the blower 3 blows air into the cavity inside the base plate 1 through the air blower pipe 2, thereby blowing air into the insertion pipe 11 through the air guide pipe 5 and discharging it out through the heat dissipation cavity 27 and the heat dissipation hole 13. Therefore, the high temperature remaining on the nutritional food can be carried out, which facilitates the rapid cooling of the nutritional food and is conducive to the rapid shaping of the nutritional food.

[0042] The above are merely preferred embodiments of this utility model, but the scope of protection of this utility model is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in this utility model, based on the technical solution and inventive concept of this utility model, should be included within the scope of protection of this utility model.

Claims

1. A shaping device for the processing of nutraceutical products, comprising a base plate (1), characterized in that: The top of the bottom plate (1) is provided with a mounting plate (6), the top end of the mounting plate (6) is provided with a rotary drive mechanism, the bottom end of the rotary drive mechanism is provided with a lifting mechanism, the edge of the mounting plate (6) is provided with a shaping frame (12), the bottom end of the shaping frame (12) is provided with a heat dissipation cooling mechanism. The rotary drive mechanism comprises a rotating frame (17) and a drive rod (15), the rotating frame (17) is installed above the mounting plate (6), the outer end of the rotating frame (17) is provided with a movable slot (20), the inner end of the drive rod (15) is fixedly provided with a connecting column (16), the top end of the connecting column (16) slides through the movable slot (20), the surface of the connecting column (16) and the position of the top end of the movable slot (20) is connected with a nut (26), the outer end of the drive rod (15) is fixedly provided with a clamping frame (10).

2. A shaping device for processing a nutritional food according to claim 1, characterized in that: The lifting mechanism comprises an electric push rod (23) and a jacking rod (21), the electric push rod (23) is vertically fixedly installed in the middle of the bottom end of the mounting plate (6), the bottom end of the electric push rod (23) is fixedly provided with a connecting frame (22), the surface of the mounting plate (6) is uniformly provided with a first guide hole (28), the jacking rod (21) is fixedly installed at the top end of the protruding end of the connecting frame (22) and slides through the first guide hole (28).

3. A shaping device for processing a nutritional food product according to claim 2, characterized in that: The jacking rod (21) is vertically arranged, the connecting frame (22) is a cross-shaped structure and is horizontally arranged, the top end of the jacking rod (21) and the position above the mounting plate (6) is fixedly provided with a support plate (18), the support plate (18) is horizontally arranged below the rotating frame (17).

4. The shaping device for processing a nutritional food according to claim 3, wherein: The bottom end of the support plate (18) is provided with a motor (24), the top end of the motor (24) is connected with a rotating rod (25) which rotates through the middle of the support plate (18), the top end of the rotating rod (25) is fixedly installed in the middle of the bottom end of the rotating frame (17), the rotating frame (17) is a cross-shaped structure and is horizontally arranged.

5. A forming device for processing a nutritional food product according to claim 4, wherein: The outer side of the support plate (18) is fixedly provided with a support strip (19), the support strip (19) is a long strip-shaped structure and is horizontally arranged in a cross shape, the top end of the support strip (19) is fixedly provided with a support block (14), the inside of the support block (14) is provided with a second guide hole (29), the drive rod (15) slides through the second guide hole (29).

6. A forming device for processing a nutritional food product according to claim 5, wherein: The movable slot (20) is a long waist-shaped structure, the connecting column (16) is a threaded column structure, the drive rod (15) and the support strip (19) are arranged in cross, the clamping frame (10) is a U-shaped structure.

7. The shaping device for processing a nutritional food according to claim 1, wherein: The heat dissipation cooling mechanism comprises a heat dissipation cavity (27), a heat dissipation hole (13) and a plug-in pipe (11), the heat dissipation cavity (27) is arranged in the middle of the frame wall of the shaping frame (12), the plug-in pipe (11) is a rectangular pipe structure, is vertically connected in the middle of the bottom end of the shaping frame (12) and is communicated with the bottom end of the heat dissipation cavity (27), the heat dissipation holes (13) are uniformly arranged in the top end of the side of the shaping frame (12) and are communicated with the heat dissipation cavity (27).

8. A shaping device for processing a nutritional food product according to claim 7, characterized in that: The edge of the mounting plate (6) is uniformly provided with a plug hole (7), the bottom end of the plug pipe (11) slides through the plug hole (7), the surface of the plug pipe (11) and the position of the top end of the plug hole (7) is fixed with a first limiting ring (8), the clamping frame (10) is clamped on the surface of the plug pipe (11), the surface of the plug pipe (11) and the position of the upper and lower sides of the clamping frame (10) is fixed with a second limiting ring (9).

9. A forming device for processing a nutritional food product according to claim 8, wherein: The bottom plate (1) is a hollow structure and is horizontally arranged, a supporting column (4) is fixed between the top end of the bottom plate (1) and the bottom end of the mounting plate (6), a blower (3) is mounted on one side of the top end of the bottom plate (1), a blast pipe (2) is connected to the side of the blower (3), the bottom end of the blast pipe (2) is inserted into the cavity inside the bottom plate (1), air guide pipes (5) are uniformly connected to the top end edge of the bottom plate (1), the air guide pipes (5) are vertically arranged, and the top end gaps of the air guide pipes (5) are inserted into the bottom end of the plug pipe (11).