Quantitative packaging equipment for colostrum powder production

By combining a porous flow-guiding filter bed and an alternating load grinding carrier, the problems of clumping and dust during the filling process of colostrum powder were solved, enabling quantitative packaging and safe transportation of colostrum powder.

CN224241463UActive Publication Date: 2026-05-15ANMUJI (SANYA) BIOTECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ANMUJI (SANYA) BIOTECHNOLOGY CO LTD
Filing Date
2025-04-24
Publication Date
2026-05-15

AI Technical Summary

Technical Problem

Colostrum powder is prone to clumping and dust generation during the filling process, which is difficult to effectively solve with existing equipment.

Method used

A porous flow-guiding filter bed and an alternating load grinding carrier are used to filter and crush colostrum powder. Combined with an airtight dustproof screen and a dual-stage axial compensation sealing cavity, quantitative packaging of colostrum powder is achieved.

Benefits of technology

It effectively prevents colostrum powder from clumping, reduces dust pollution, and improves packaging efficiency and operational safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of colostrum powder production, in particular to quantitative packaging equipment for colostrum powder production, which comprises a colostrum filling stable bearing component with a controller, and the colostrum filling stable bearing component is provided with a canning container continuous positioning conveying system for conveying colostrum powder cans. The colostrum filling stable bearing component is provided with a colostrum freeze-dried powder temporary storage bin used for storing colostrum powder, and a weight-loss type colostrum powder dynamic measuring bin used for measuring the colostrum powder is installed in the colostrum freeze-dried powder temporary storage bin. And an airtight dustproof screen communicated with the weightlessness type colostrum powder dynamic metering bin is fixedly mounted in the colostrum freeze-dried powder temporary storage bin. According to the utility model, the porous flow guide filter bed is arranged in the colostrum freeze-dried powder temporary storage bin, so that colostrum powder can be filtered, ground and crushed in the rotating process; and by arranging a movable two-stage axial compensation sealing cavity, the two-stage axial compensation sealing cavity can intercept raised colostrum powder dust when the colostrum powder is conveyed, so that the colostrum powder is in a sealed state when being conveyed.
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Description

Technical Field

[0001] This utility model relates to the field of colostrum powder production technology, and in particular to a quantitative packaging device for colostrum powder production. Background Technology

[0002] Colostrum is the milk secreted by a healthy cow within 72 hours after giving birth. It contains valuable active immunoglobulins (IgG, IgA, IgM, IgE, IgD) as well as rich milk calcium, protein, and various trace elements. It is known as the "King of Immunity in the 21st Century".

[0003] The immunoglobulins in colostrum have poor activity and stability. During the processing of raw colostrum into colostrum powder, sugars are often added to maintain their activity. However, the addition of sugars can cause clumping in the colostrum powder. During filling, clumps of colostrum powder may enter the colostrum powder container along with the regular powder. Furthermore, because colostrum powder has finer particles than regular milk powder, it is more prone to dust generation during filling. Therefore, functional improvements and upgrades to the quantitative packaging equipment for colostrum powder are necessary. Utility Model Content

[0004] The purpose of this invention is to solve the problems of clumping and excessive dust during filling of colostrum powder in the existing technology, and to propose a quantitative packaging equipment for colostrum powder production.

[0005] To achieve the above objectives, the present invention adopts the following technical solution:

[0006] A quantitative packaging device for colostrum powder production includes a colostrum filling and stabilizing support component equipped with a controller. The colostrum filling and stabilizing support component is equipped with a continuous positioning conveying system for transporting colostrum powder cans. The colostrum filling and stabilizing support component is equipped with a colostrum freeze-dried powder temporary storage bin for storing colostrum powder. A loss-in-weight dynamic metering bin for measuring colostrum powder is installed inside the colostrum freeze-dried powder temporary storage bin. [Further details about the device are missing from the original text.] An airtight dustproof screen is connected to the loss-in-weight colostrum powder dynamic metering chamber. The colostrum freeze-dried powder temporary storage chamber is equipped with a porous flow-guiding filter bed for filtering the colostrum powder. The colostrum freeze-dried powder temporary storage chamber is equipped with a main positioning concentric bushing that cooperates with the loss-in-weight colostrum powder dynamic metering chamber to transport the colostrum powder. The colostrum filling stabilizing bearing component is provided with a filling passage corresponding to the colostrum powder tank. The main positioning concentric bushing is provided with a two-stage axial compensation sealing cavity for intercepting the colostrum powder.

[0007] Preferably, the airtight dustproof screen is horizontally arranged, and the weightless colostrum powder dynamic metering chamber is located below the airtight dustproof screen. The main positioning concentric bushing is vertically arranged at the bottom of the colostrum freeze-dried powder temporary storage chamber and corresponds to the filling passage.

[0008] Preferably, a shaft drive assembly and a variable frequency pneumatic actuator are fixedly installed on the pre-emulsion freeze-dried powder storage chamber, and a dynamic sealing rotary shaft is fixedly connected to the output end of the shaft drive assembly, and the porous flow guide filter bed is disposed on the dynamic sealing rotary shaft.

[0009] Preferably, the dynamic sealing rotary shaft is vertically arranged, and the porous flow guide filter bed and the dynamic sealing rotary shaft extend to the lower position inside the pre-emulsion freeze-dried powder temporary storage chamber. The porous flow guide filter bed is an annular structure with an open top. The output end of the variable frequency pneumatic actuator is fixedly connected to an alternating load grinding carrier for applying pressure to the pre-emulsion powder. The alternating load grinding carrier is a semi-circular plate structure adapted to the porous flow guide filter bed.

[0010] Preferably, the main positioning concentric bushing has a groove, and a reference coaxial guide slide is slidably fitted in the groove. A spring-loaded torsion spring is welded between the reference coaxial guide slide and the main positioning concentric bushing. An elastic reset load control rod connected to the reference coaxial guide slide is fixedly installed in the groove. The dual-stage axial compensation sealing cavity is located between the two reference coaxial guide slides.

[0011] Preferably, the slide groove is vertically opened, the spring-loaded torsion spring is vertically arranged below the reference coaxial guide slide extending into the slide groove, the main positioning concentric bushing is concentrically arranged with the double-stage axial compensation sealing cavity, and the double-stage axial compensation sealing cavity is an open annular structure.

[0012] Compared with the prior art, the present invention has the following advantages:

[0013] 1. This utility model sets up a porous flow-guiding filter bed in the temporary storage chamber of colostrum freeze-dried powder, which can intercept the agglomerated colostrum powder. Then, the porous flow-guiding filter bed can filter the colostrum powder during the rotation of the shaft drive assembly. Finally, the agglomerated colostrum powder can be crushed and crushed by the alternating load grinding carrier, so that the colostrum powder entering the colostrum powder tank will not agglomerate.

[0014] 2. This utility model sets up a movable double-stage axial compensation sealing cavity between the main positioning concentric bushing and the colostrum powder tank, so that the double-stage axial compensation sealing cavity can intercept the colostrum powder dust when the colostrum powder is transported, so that the colostrum powder is in a sealed state during transportation. This not only protects the surrounding environment, but also prevents the operator from inhaling too much colostrum powder dust during operation. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the structure of a quantitative packaging equipment for colostrum powder production proposed in this utility model;

[0016] Figure 2 This is a cross-sectional view of a quantitative packaging device for colostrum powder production proposed in this utility model;

[0017] Figure 3 This is a schematic diagram of an alternating load grinding carrier for a quantitative packaging equipment for colostrum powder production proposed in this utility model.

[0018] In the diagram: 1. Stable load-bearing component for colostrum filling; 2. Continuous positioning and conveying system for filling containers; 3. Temporary storage bin for colostrum freeze-dried powder; 4. Airtight dustproof screen; 5. Loss-in-weight dynamic metering bin for colostrum powder; 6. Main positioning concentric bushing; 7. Filling duct; 8. Shaft drive assembly; 9. Variable frequency pneumatic actuator; 10. Dynamic sealing rotary shaft; 11. Porous flow guide filter bed; 12. Alternating load grinding carrier; 13. Two-stage axial compensation sealing cavity; 14. Reference coaxial guide slide; 15. Rebound torsion spring; 16. Elastic reset load control rod. Detailed Implementation

[0019] 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.

[0020] Reference Figures 1-3 A quantitative packaging device for colostrum powder production includes a colostrum filling and stabilizing support component 1 equipped with a controller. The colostrum filling and stabilizing support component 1 is equipped with a continuous positioning conveying system 2 for conveying colostrum powder cans. The colostrum filling and stabilizing support component 1 is equipped with a colostrum freeze-dried powder temporary storage bin 3 for storing colostrum powder. The colostrum freeze-dried powder temporary storage bin 3 is equipped with a loss-in-weight colostrum powder dynamic metering bin 5 for metering colostrum powder. The continuous positioning conveying system 2 can convey the colostrum powder cans, and the loss-in-weight colostrum powder dynamic metering bin 5 can quantify the colostrum powder. This technical solution is prior art and will not be elaborated further here.

[0021] An airtight dustproof screen 4, connected to a loss-in-weight dynamic metering chamber 5, is fixedly installed inside the colostrum freeze-dried powder storage chamber 3. A porous flow-guiding filter bed 11 for filtering the colostrum powder is provided inside the colostrum freeze-dried powder storage chamber 3. A shaft drive assembly 8 and a variable frequency pneumatic actuator 9 are fixedly installed on the colostrum freeze-dried powder storage chamber 3, and a dynamic sealing rotary shaft 10 is fixedly connected to the output end of the shaft drive assembly 8. The porous flow-guiding filter bed 11 is located on the dynamic sealing rotary shaft 10. On top of 0, the dynamic sealing rotary shaft 10 is vertically set, and the porous flow guide filter bed 11 and the dynamic sealing rotary shaft 10 extend to the lower position inside the colostrum freeze-dried powder temporary storage chamber 3. The porous flow guide filter bed 11 is an annular structure with an open top. The output end of the shaft drive assembly 8 drives the dynamic sealing rotary shaft 10 and the porous flow guide filter bed 11 to rotate, so that the porous flow guide filter bed 11 can dynamically filter the colostrum powder and effectively intercept the agglomerated colostrum powder.

[0022] The output end of the variable frequency pneumatic actuator 9 is fixedly connected to an alternating load grinding carrier 12 for pressurizing the colostrum powder. The alternating load grinding carrier 12 is a semi-circular plate structure adapted to the porous flow filter bed 11. The colostrum freeze-dried powder temporary storage bin 3 is equipped with a main positioning concentric bushing 6 that cooperates with the weightless colostrum powder dynamic metering bin 5 and conveys the colostrum powder. The colostrum filling stable bearing component 1 is provided with a filling passage 7 corresponding to the colostrum powder tank. The alternating load grinding carrier 12 driven by the output end of the variable frequency pneumatic actuator 9 moves down and crushes the colostrum powder, so that the colostrum powder can remain flowing during transportation.

[0023] The airtight dustproof screen 4 is set horizontally, and the weightless colostrum powder dynamic metering chamber 5 is set below the airtight dustproof screen 4. The main positioning concentric bushing 6 is set vertically at the bottom of the colostrum freeze-dried powder temporary storage chamber 3 and corresponds to the filling diameter 7. The main positioning concentric bushing 6 is provided with a double-stage axial compensation sealing cavity 13 for intercepting colostrum powder. A sliding groove is opened in the main positioning concentric bushing 6, and a reference coaxial guide slide 14 is slidably sleeved in the sliding groove. The sliding groove guides the reference coaxial guide slide 14, so that the reference coaxial guide slide 14 can smoothly pull the double-stage axial compensation sealing cavity 13 when moving.

[0024] A spring-loaded torsion spring 15 is welded between the reference coaxial guide slide 14 and the main positioning concentric bushing 6. An elastic reset load control rod 16 connected to the reference coaxial guide slide 14 is fixedly installed in the slide groove. A double-stage axial compensation sealing cavity 13 is located between the two reference coaxial guide slides 14. The slide groove is vertically opened. The spring-loaded torsion spring 15 is vertically located at the lower position where the reference coaxial guide slide 14 extends into the slide groove. The spring-loaded torsion spring 15 provides a buffering effect for the reference coaxial guide slide 14. The main positioning concentric bushing 6 and the double-stage axial compensation sealing cavity 13 are concentrically arranged, and the double-stage axial compensation sealing cavity 13 is an open annular structure.

[0025] The output end of the elastic reset load control rod 16 drives the reference coaxial guide slide 14 to slide in the slide groove. When the reference coaxial guide slide 14 moves down, it drives the double-stage axial compensation sealing cavity 13 to move down into the filling diameter 7 and correspond to the colostrum powder tank. This prevents the colostrum powder from spilling when it falls into the colostrum powder tank, thereby improving the efficiency of colostrum powder quantitative packaging. This not only protects the surrounding environment but also protects the safety of the operator during operation.

[0026] It should be noted that the specific models and specifications of the controller, the continuous positioning and conveying system for the canned container 2, the loss-in-weight colostrum powder dynamic metering bin 5, the shaft drive assembly 8, the variable frequency pneumatic actuator 9, and the elastic reset load control rod 16 need to be selected and determined according to the actual specifications of the device. The specific selection and calculation methods adopt the existing technology in this field, so they will not be elaborated here.

[0027] The functional principle of this utility model can be explained through the following operation methods:

[0028] The continuous positioning conveyor system 2 for canned containers transports the colostrum powder can at regular intervals. When the colostrum powder can moves to the position of the filling passage 7, the continuous positioning conveyor system 2 for canned containers stops operating.

[0029] When the colostrum powder is in the colostrum freeze-dried powder temporary storage chamber 3, the output end of the shaft drive assembly 8 drives the dynamic sealing rotary shaft 10 to rotate, which in turn drives the porous flow filter bed 11 to rotate. The porous flow filter bed 11 can intercept the agglomerated colostrum powder. The filtered colostrum powder falls through the airtight dustproof screen 4 into the loss-in-weight colostrum powder dynamic metering chamber 5 for metering.

[0030] After the colostrum powder is metered, it is transported into the main positioning concentric bushing 6.

[0031] At the same time, the output end of the elastic reset load control rod 16 drives the reference coaxial guide slide 14 to slide in the slide groove, and the rebound torsion spring 15 is stressed, causing the reference coaxial guide slide 14 to drive the double-stage axial compensation sealing cavity 13 to move down and extend into the filling diameter 7 to correspond to the colostrum powder tank.

[0032] Colostrum powder falls into the colostrum powder tank through the main positioning concentric bushing 6 and the double-stage axial compensation sealing cavity 13 in sequence. After the colostrum powder is added, the elastic reset load control rod 16 drives the double-stage axial compensation sealing cavity 13 back to the initial position.

[0033] Repeat the above steps to ensure that the colostrum powder is packaged in precise quantities into colostrum powder containers;

[0034] When there is too much colostrum powder clumped in the porous flow filter bed 11, the output end of the variable frequency pneumatic actuator 9 drives the alternating load grinding carrier 12 to move downward. The alternating load grinding carrier 12 extends into the porous flow filter bed 11 and crushes the colostrum powder. The crushed colostrum powder continues to be packaged.

[0035] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. A quantitative packaging device for colostrum powder production, comprising a colostrum filling stabilizing support member (1) equipped with a controller, wherein the colostrum filling stabilizing support member (1) is provided with a continuous positioning conveying system (2) for conveying colostrum powder cans, and the colostrum filling stabilizing support member (1) is provided with a colostrum freeze-dried powder temporary storage bin (3) for storing colostrum powder, wherein the colostrum freeze-dried powder temporary storage bin (3) is equipped with a loss-in-weight colostrum powder dynamic metering bin (5) for metering colostrum powder, characterized in that, The colostrum freeze-dried powder storage chamber (3) is fixedly installed with an airtight dustproof screen (4) connected to the weightless colostrum powder dynamic metering chamber (5). The colostrum freeze-dried powder storage chamber (3) is provided with a porous flow-guiding filter bed (11) for filtering colostrum powder. The colostrum freeze-dried powder storage chamber (3) is equipped with a main positioning concentric bushing (6) that cooperates with the weightless colostrum powder dynamic metering chamber (5) and conveys colostrum powder. The colostrum filling stable bearing component (1) is provided with a filling passage (7) corresponding to the colostrum powder tank. The main positioning concentric bushing (6) is provided with a double-stage axial compensation sealing cavity (13) for intercepting colostrum powder.

2. The quantitative packaging equipment for colostrum powder production according to claim 1, characterized in that, The airtight dustproof screen (4) is set horizontally, and the weightless colostrum powder dynamic metering chamber (5) is set below the airtight dustproof screen (4). The main positioning concentric bushing (6) is set vertically at the bottom of the colostrum freeze-dried powder temporary storage chamber (3) and corresponds to the filling diameter (7).

3. The quantitative packaging equipment for colostrum powder production according to claim 1, characterized in that, The colostrum freeze-dried powder temporary storage chamber (3) is fixedly installed with a shaft drive assembly (8) and a variable frequency pneumatic actuator (9), and the output end of the shaft drive assembly (8) is fixedly connected to a dynamic sealing rotary shaft (10), and the porous flow guide filter bed (11) is located on the dynamic sealing rotary shaft (10).

4. The quantitative packaging equipment for colostrum powder production according to claim 3, characterized in that, The dynamic sealing rotary shaft (10) is vertically arranged. The porous flow-guiding filter bed (11) and the dynamic sealing rotary shaft (10) extend to the lower position inside the pre-emulsion freeze-dried powder storage chamber (3). The porous flow-guiding filter bed (11) is an annular structure with an open top. The output end of the variable frequency pneumatic actuator (9) is fixedly connected to an alternating load grinding carrier (12) for pressurizing the pre-emulsion powder. The alternating load grinding carrier (12) is a semi-circular plate structure adapted to the porous flow-guiding filter bed (11).

5. The quantitative packaging equipment for colostrum powder production according to claim 1, characterized in that, The main positioning concentric bushing (6) has a sliding groove, and a reference coaxial guide slide (14) is slidably mounted in the sliding groove. A spring-loaded torsion spring (15) is welded between the reference coaxial guide slide (14) and the main positioning concentric bushing (6). An elastic reset load control rod (16) connected to the reference coaxial guide slide (14) is fixedly installed in the sliding groove. The dual-stage axial compensation sealing cavity (13) is located between the two reference coaxial guide slides (14).

6. The quantitative packaging equipment for colostrum powder production according to claim 5, characterized in that, The slide groove is vertically opened, and the spring spring (15) is vertically set at the lower position of the reference coaxial guide slide (14) extending into the slide groove. The main positioning concentric bushing (6) is concentrically set with the double-stage axial compensation sealing cavity (13), and the double-stage axial compensation sealing cavity (13) is an open annular structure.