Dairy product conveying device

By designing a combination of support structure, shaft, and gravity components for the dairy conveying device, and utilizing eccentric rotation and vibration, the problem of uneven mixing of dairy liquid was solved, and uniform mixing of dairy liquid was achieved during the conveying process.

CN224132010UActive Publication Date: 2026-04-17GUANGDONG CHEESEBURGER DAIRY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGDONG CHEESEBURGER DAIRY CO LTD
Filing Date
2025-05-30
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

The dairy liquid is not mixed evenly during the production process, and the existing equipment cannot meet the requirements of multiple shaking, which causes the dairy liquid to fail to reach its optimal state during transportation.

Method used

Design a dairy product conveying device, including a frame, a first conveying component, a vibration component and a second conveying component. By setting up a combination of support body, shaft, tube body and gravity component, the device uses eccentric rotation and vibration to shake the dairy product bag, ensuring uniform mixing of the emulsion.

Benefits of technology

It achieves uniform mixing of dairy liquid during transportation, improves the mixing effect of dairy liquid, and meets the production requirements of multiple shaking.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of dairy product production equipment, in particular to a dairy product conveying device. Comprising a rack, a first conveying assembly, a vibration assembly and a second conveying assembly, the vibration assembly comprises a plurality of supporting bodies, the supporting bodies are sequentially arranged in the conveying direction, each supporting body comprises a shaft rod, a pipe body and a gravity part, the shaft rods are arranged on the rack, the pipe bodies are provided with mounting holes, and the radial specification of the mounting holes is larger than that of the shaft rods; the longitudinal section of the pipe body comprises a first inclined surface and a second inclined surface, the first inclined surface and the second inclined surface intersect to form a sharp corner part, and the gravity part is arranged in the pipe body and is opposite to the sharp corner part; by means of the structure, the external box body firstly makes contact with the first inclined face, the pipe body is driven to rotate eccentrically, the external box body moves in the vertical direction, namely, the vibration phenomenon occurs, the purpose of shaking the emulsion in the dairy bag in the box body is achieved, the mixture of the emulsion is evenly mixed, and the purpose of evenly shaking the emulsion in the conveying process is achieved.
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Description

Technical Field

[0001] This utility model relates to the field of dairy production equipment technology, and in particular to a dairy product conveying device. Background Technology

[0002] Because dairy liquid is a mixture of multiple ingredients, it usually needs to be shaken well before use. To achieve the best performance, the dairy bag needs to be shaken multiple times to ensure the dairy liquid is evenly mixed. When the dairy liquid is produced and enters the bagging and boxing process, it is usually transported in a stable state, which cannot meet the production requirements of shaking the dairy bag multiple times to evenly mix the dairy liquid. Therefore, it needs to be improved. Summary of the Invention

[0003] In order to overcome the problems of insufficient shaking and uneven mixing of dairy liquid in the existing technology, the purpose of this utility model is to provide a dairy product conveying device that increases the shaking frequency and improves the mixing uniformity of dairy liquid.

[0004] To achieve the above objectives, the technical solution of this utility model is as follows:

[0005] A dairy product conveying device includes a frame, a first conveying component, a vibration component, and a second conveying component, wherein the first conveying component, the vibration component, and the second conveying component are arranged sequentially along the conveying direction;

[0006] The vibration assembly includes several supports arranged sequentially along the conveying direction, with a spacing between adjacent supports. Each support includes a shaft, a tube, and a gravity component. The shaft is mounted on the frame, and the tube has a mounting hole with a radial specification larger than that of the shaft. The longitudinal section of the tube includes a first inclined surface and a second inclined surface, which intersect to form a sharp corner. The gravity component is located inside the tube and is positioned opposite the sharp corner.

[0007] Furthermore, the support body is provided with an adhesive layer, which includes the surface of the gravity component.

[0008] Furthermore, the gravity component includes several solid spheres.

[0009] Furthermore, the tube body includes a first plate, a second plate, a third plate, and a fourth plate connected in sequence. The gravity member is located at the intersection of the first plate and the second plate, or at the intersection of the second plate and the third plate, or at the intersection of the third plate and the fourth plate, or at the intersection of the fourth plate and the first plate.

[0010] Furthermore, the first conveying component includes a first driving member and a plurality of first rotating shafts, wherein the first driving member drives the first rotating shafts to rotate.

[0011] Furthermore, the first rotating shaft includes an inner tube, an outer tube, and several elastic elements, with both ends of the elastic elements connected to the inner tube and the outer tube, respectively.

[0012] Furthermore, the second conveying assembly includes a second drive source, a plurality of second rotating shafts, and a plurality of third rotating shafts, with one third rotating shaft located between two adjacent second rotating shafts, and the radial specification of the second rotating shafts being larger than that of the third rotating shafts.

[0013] Furthermore, the center line connecting the several second rotating shafts coincides with the center line connecting the several third rotating shafts.

[0014] The beneficial effects of this utility model are as follows: By setting up a first conveying component, a vibration component, and a second conveying component, the vibration component includes several support bodies, each support body including a shaft, a tube, and a gravity component. The shaft is set on the frame, and the tube has a mounting hole. The radial specification of the mounting hole is larger than the radial specification of the shaft. The longitudinal section of the tube includes a first inclined surface and a second inclined surface. The first inclined surface and the second inclined surface intersect to form a sharp corner. The gravity component is set on the tube and is positioned opposite to the sharp corner, so that the outer box first touches the first inclined surface, driving the tube to rotate eccentrically. The outer box is displaced in the vertical direction, i.e., vibrates, which serves to shake the emulsion in the dairy bag inside the box, so that the emulsion mixture is evenly mixed, achieving the purpose of even shaking of the emulsion during the conveying process. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the planar structure of the present invention;

[0016] Figure 2 This is a three-dimensional structural diagram of the vibration component of this utility model;

[0017] Figure 3 This is a schematic diagram of the disassembled structure of the vibration component of this utility model;

[0018] Figure 4 This is a schematic diagram of the cross-sectional structure of the support body of this utility model;

[0019] Figure 5 This is a schematic diagram of the planar structure of the first conveying component of this utility model;

[0020] Figure 6 This is a schematic diagram of the planar structure of the second conveying component of this utility model.

[0021] The reference numerals in the figures include:

[0022] 1—First conveying assembly; 11—First driving component; 12—First rotating shaft

[0023] 121—Inner tube; 122—Outer tube; 123—Elastic element

[0024] 2—Vibration Component 21—Support 211—Shaft

[0025] 212—Tube body 2121—Sharp corner 2122—Sharp corner

[0026] 213—Gravity component 3—Second conveying assembly 31—Second drive source

[0027] 32—Second rotating shaft; 33—Third rotating shaft. Detailed Implementation

[0028] To facilitate understanding by those skilled in the art, the present invention will be further described below with reference to embodiments and accompanying drawings. The content mentioned in the embodiments is not intended to limit the present invention.

[0029] Please see Figures 1 to 6 The present invention provides a dairy product conveying device, including a frame, a first conveying component 1, a vibration component 2, and a second conveying component 3, wherein the first conveying component 1, the vibration component 2, and the second conveying component 3 are arranged sequentially along the conveying direction;

[0030] The vibration assembly 2 includes several supports 21, which are arranged sequentially along the conveying direction. The distance between adjacent supports 21 is set. Each support 21 includes a shaft 211, a tube 212, and a gravity member 213. The shaft 211 is mounted on the frame. The tube 212 has a mounting hole 2121. The radial specification of the mounting hole 2121 is larger than that of the shaft 211. The longitudinal section of the tube 212 includes a first inclined surface and a second inclined surface. The first inclined surface and the second inclined surface intersect to form a sharp corner 2122. The gravity member 213 is located inside the tube 212 and is arranged opposite to the sharp corner 2122.

[0031] Specifically, in this embodiment, the vibration assembly 2 includes several support bodies 12. Each support body 12 includes a shaft 211, a tube 212, and a gravity member 213. There are two shafts 211, which are fixed to the frame and arranged opposite each other. A mounting hole 2121 is machined at each end of the tube 212 along its length. One mounting hole 2121 cooperates with one shaft 211 to install the tube 212 onto the frame. The diameter of the mounting hole 2121 is larger than the diameter of the shaft 211. The first and second inclined surfaces form a sharp corner 2122. The gravity member 212 is located inside the tube 212 and is arranged opposite to the sharp corner 2122, that is, the center of gravity of the gravity member 212 is 180° to the center line of the sharp corner 2122. The arrangement of the gravity member 213 ensures that the sharp corner 2122 is in an upward-facing state when not in operation. The outer box filled with dairy bags is conveyed by the first conveying component 1 and then enters the vibration component 2. After the outer box contacts the first inclined surface of the tube 212, it continues to move forward, causing the tube 212 to rotate along the central axis of the shaft 211. Because the diameter of the mounting hole 2121 is larger than the diameter of the shaft 211, the tube 212 rotates eccentrically, causing the outer box to be displaced in the vertical direction. The dairy bags inside the box vibrate, shaking the dairy liquid inside the dairy bags, so that the various compositions in the dairy liquid are shaken evenly. Conversely, when the support 12 is unloaded, the tube 212 returns to its original state under the action of the gravity component 213, that is, the pointed end 2122 is facing upward. The next box passes through the support 12 and repeats the above action to complete the purpose of vibrating and shaking the dairy liquid inside the box. Then the outer box is conveyed to the next station by the second conveying component 3.

[0032] By setting up a first conveying component 1, a vibration component 2, and a second conveying component 3, the vibration component 2 includes several support bodies 21. Each support body 21 includes a shaft 211, a tube 212, and a gravity component 213. The shaft 211 is mounted on the frame. The tube 212 has a mounting hole 2121. The radial specification of the mounting hole 2121 is larger than that of the shaft 211. The longitudinal section of the tube 212 includes a first inclined surface and a second inclined surface. The first inclined surface and the second inclined surface intersect to form a sharp corner 2122. The gravity component 213 is mounted on the tube 212 and is positioned opposite to the sharp corner 2122. This allows the outer box to first touch the first inclined surface, driving the tube 212 to rotate eccentrically. The outer box then undergoes vertical displacement, i.e., vibration, which shakes the emulsion in the milk bag inside the box, ensuring uniform mixing of the emulsion and achieving uniform shaking of the emulsion during the conveying process.

[0033] The support 21 is provided with an adhesive layer, which includes the surface of the gravity component 213. The gravity component 213 includes several solid spheres. The adhesive layer ensures that the gravity component 213 moves silently relative to the tube 212.

[0034] The tube body 212 includes a first plate, a second plate, a third plate, and a fourth plate connected in sequence. The gravity member 213 is located at the intersection of the first plate and the second plate, or at the intersection of the second plate and the third plate, or at the intersection of the third plate and the fourth plate, or at the intersection of the fourth plate and the first plate. The longitudinal section of the tube body 212 is square. In the non-working state, under the action of the gravity member 213, the sharp corners 2122 face upwards, ensuring that each external box pushes the tube body 212 to rotate eccentrically, thereby achieving the purpose of vibrating the box.

[0035] The first conveying component 1 includes a first driving component 11 and a plurality of first rotating shafts 12. The first driving component 11 drives the first rotating shafts 12 to rotate. The first driving component 11 uses a motor to drive the chain to rotate. The plurality of first rotating shafts 12 are all connected to the chain to achieve the purpose of rotating the first rotating shafts 12 and complete the conveying of the external box.

[0036] The first rotating shaft 12 includes an inner tube 121, an outer tube 122, and several elastic elements 123. The two ends of the elastic elements 123 are connected to the inner tube 121 and the outer tube 122, respectively. When the outer tube 122 carries the outer box, the outer tube 122 moves downward under the weight of the box, that is, the outer box moves downward synchronously, and the box is in a state of slight vibration, so that the milk in the milk bag is in a state of slight shaking.

[0037] The second conveying assembly 3 includes a second drive source 31, a plurality of second rotating shafts 32, and a plurality of third rotating shafts 33. One third rotating shaft 33 is located between two adjacent second rotating shafts 32. The radial dimension of the second rotating shaft 32 is larger than that of the third rotating shaft 33. The second drive source 31 uses a servo motor to drive the second rotating shafts 32 and the third rotating shafts 33 to rotate synchronously. The center line connecting the plurality of second rotating shafts 32 coincides with the center line connecting the plurality of third rotating shafts 33. The radial dimension of the second rotating shaft 32 is larger than that of the third rotating shaft 33. This structure further causes the external box to vibrate during the conveying process, further shaking the emulsion and promoting the uniformity of emulsion mixing.

[0038] The above description is only a preferred embodiment of this utility model. For those skilled in the art, there will be changes in the specific implementation method and application scope based on the idea of ​​this utility model. The content of this specification should not be construed as a limitation of this utility model.

Claims

1. A milk conveying device comprising a frame, characterized in that: It also includes a first conveying component (1), a vibration component (2) and a second conveying component (3), which are arranged sequentially along the conveying direction; The vibration assembly (2) includes several supports (21), which are arranged sequentially along the conveying direction. The distance between two adjacent supports (21) is set. Each support (21) includes a shaft (211), a tube (212), and a gravity member (213). The shaft (211) is mounted on the frame. The tube (212) is provided with a mounting hole (2121). The radial specification of the mounting hole (2121) is larger than that of the shaft (211). The longitudinal section of the tube (212) includes a first inclined surface and a second inclined surface. The first inclined surface and the second inclined surface intersect to form a sharp corner (2122). The gravity member (213) is located inside the tube (212) and is arranged opposite to the sharp corner (2122).

2. The milk delivery device according to claim 1, characterized in that: The support (21) is provided with an adhesive layer, which includes the surface of the gravity member (213).

3. The milk delivery device according to claim 1, characterized in that: The gravity component (213) comprises several solid spheres.

4. The milk delivery device according to claim 1, characterized in that: The tube body (212) includes a first plate, a second plate, a third plate and a fourth plate connected in sequence. The gravity member (213) is located at the intersection of the first plate and the second plate, or at the intersection of the second plate and the third plate, or at the intersection of the third plate and the fourth plate, or at the intersection of the fourth plate and the first plate.

5. The milk delivery device according to claim 1, characterized in that: The first conveying assembly (1) includes a first driving member (11) and a plurality of first rotating shafts (12), wherein the first driving member (11) drives the first rotating shafts (12) to rotate.

6. A milk delivery device according to claim 5, characterised in that: The first rotating shaft (12) includes an inner tube (121), an outer tube (122) and several elastic elements (123), with the two ends of the elastic elements (123) connected to the inner tube (121) and the outer tube (122) respectively.

7. The milk delivery device according to claim 1, characterized in that: The second conveying assembly (3) includes a second drive source (31), a plurality of second rotating shafts (32), and a plurality of third rotating shafts (33). A third rotating shaft (33) is located between two adjacent second rotating shafts (32), and the radial specification of the second rotating shaft (32) is greater than the radial specification of the third rotating shaft (33).

8. A milk delivery device according to claim 7, characterised in that: The center line connecting the several second rotating shafts (32) coincides with the center line connecting the several third rotating shafts (33).