Standardized goat milk powder batching system and use method thereof

The filter and suction components collect the dispersed ingredients, and the adjustment components are combined to ensure that the filter is located close to the top of the serving bucket, solving the weight inconsistency caused by dispersing in the goat milk powder ingredients system, improving work efficiency and accuracy.

CN120437872APending Publication Date: 2025-08-08XINJIANG NALA BENYUAN DAIRY CO LTD +2
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Patent Information

Application Number
CN202510599095.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-10
Publication Date
2025-08-08

AI Technical Summary

Technical Problem

The existing ingredient system is prone to dissipation when the powdered ingredients fall, resulting in inconsistent actual weight and affecting work progress and efficiency.

Method used

A standardized ingredient system for goat milk powder including a filter, housing, suction assembly and adjustment assembly is adopted. The ingredient is collected through the suction assembly, so that its weight acts on the ingredient. The ingredient is ensured to be close to the top of the ingredient. The ingredient is adjusted to avoid impact and dissipation.

Benefits of technology

Effectively collect dispersed ingredients to ensure accurate weight of ingredients, reduce additional replenishment time, improve work efficiency, and avoid dispersing affecting the overall dispersed ingredients weight.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of batching systems, and discloses a standardized goat milk powder batching system and a use method thereof.The system comprises a batching machine and a weighing device which are used for weighing ingredients; the weighing device is used for weighing ingredients, the containing barrel is arranged above the weighing device and used for containing the ingredients, and the support is arranged at the top of the containing barrel; and the shell is rotatably arranged on the bracket. According to the invention, ingredients escaping in the air can be guided and collected, so that the weight of the escaping ingredients can directly act on the containing barrel through the filter screen, the shell and the bracket, and a batching machine does not need to spend time in supplementing the escaping ingredients subsequently, so that the working efficiency is improved; the position of the filter screen can be adjusted according to the height of ingredients in the containing barrel, so that the filter screen is close to the top of the ingredients in the containing barrel, the ingredients in the containing barrel cannot be impacted when falling, the ingredients are prevented from escaping, and the overall weight of the ingredients is prevented from being affected.
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Description

Technical Field

[0001] The invention belongs to the technical field of batching systems, and in particular relates to a standardized batching system for goat milk powder and a use method thereof. Background Art

[0002] Goat milk powder is a powdered food made from goat milk as the main raw material. When processing goat milk powder, it needs to be standardized through the ingredient system.

[0003] The existing batching system consists of a batching machine, a holding bucket for the ingredients, and a weighing device assembly for weighing. During operation, the ingredients are released through the batching machine and enter the holding bucket. The weight of the ingredients acts on the weighing device assembly through the holding bucket. The weighing device assembly senses the weight change. When the weight reaches the set value, the batching machine is controlled to stop and the weighing is completed.

[0004] However, when the existing batching system is used, when powdered ingredients are injected, the powdered ingredients fall and impact the ingredients in the holding barrel, causing the ingredients to escape, resulting in the ingredients released by the batching machine being inconsistent with the actual weight of the ingredients entering the holding barrel, that is, the weight of the ingredients released by the batching machine is greater than the weight of the ingredients entering the holding barrel. This problem will result in the need to continue to release some ingredients to supplement the escaped ingredients after the amount released by the batching machine reaches the required amount, to ensure that the ingredients in the holding barrel reach the required weight. This will extend the working time of the batching machine and affect the work progress.

[0005] Therefore, it is necessary to invent a standardized batching system for goat milk powder and a method for using the same to solve the above problems. Summary of the Invention

[0006] In view of the above problems, the present invention provides a standardized goat milk powder batching system and a method of using the same to solve the problems raised in the above background technology.

[0007] To achieve the above object, the present invention provides the following technical solution: a standardized goat milk powder batching system, comprising a batching machine, a weighing device for weighing the ingredients; a holding bucket, arranged above the weighing device, for holding the ingredients; a bracket, arranged on the top of the containing tub; a housing rotatably disposed on the bracket; a filter screen, disposed inside the housing, for providing an attachment point for the scattered ingredients; The suction component is used to extract the air in the shell to the outside.

[0008] Furthermore, the suction assembly includes: a suction nozzle, disposed inside the shell and used to extract air from the shell; a hard tube, one end of which is connected to the suction nozzle; a first hose connected to the other end of the rigid tube; a second hose, disposed on the top of the tub, the second hose being connected to the first hose; The telescopic tube is connected to the top of the second flexible pipe and is used for connecting to an external air extraction device.

[0009] Furthermore, a mounting plate is provided on the inner side of the bracket, and side plates are symmetrically fixedly installed on the inner side of the mounting plate. A rotating shaft is connected to both sides of the shell, and the rotating shaft is rotatably installed on the corresponding side plate. An iron block is connected to the end of the rotating shaft, and a magnet block that cooperates with the iron block is fixedly installed on the outer side of the side plate.

[0010] Furthermore, the mounting plate is slidably arranged on the inner side of the bracket, and an adjustment component for adjusting the position of the shell according to the height of the ingredients inside the barrel is provided on the mounting plate.

[0011] Furthermore, the adjustment component includes: a straight rod connected to the bottom of the mounting plate; a flat plate connected to the bottom of the straight rod; The magnet plate is arranged on the bracket. The material of the mounting plate is iron. The mounting plate can be adsorbed and fixed on the magnet plate.

[0012] Furthermore, a frame is provided on the outside of the filter screen, and a vibration component for driving the filter screen to vibrate is provided on the frame; The vibration component includes: A pressing block is symmetrically arranged on the frame; A pressing groove is symmetrically arranged on the inner side of the shell and is used for the pressing block to slide; a spring, connecting the pressing block to the bottom wall of the pressing groove; an iron rod connected to the bottom of the frame; an electromagnet, disposed on the bottom wall of the housing and configured to attract the iron rod; A controller, disposed on the housing; The switch is arranged at the bottom of the hard tube and is used for cooperating with the controller to control the power on and off of the electromagnet.

[0013] Furthermore, the pore size of the filter is not large enough to allow the ingredients to pass through.

[0014] The method for using the standardized batching system for goat milk powder as described above comprises the following steps: S1. When in use, the batching machine injects ingredients into the bucket. As the ingredients are injected, more and more ingredients are added to the bucket. The weighing device senses the weight change. When the weight reaches the required weight, the weighing device cooperates with the external control device to control the batching machine to stop, completing the batching. S2. When in use, the air in the housing is extracted through the suction component, so that the outside air is continuously drawn into the housing; S3. The ingredients scattered in the air are continuously moved to the filter with the airflow and are filtered and stay on the filter surface. The air is drawn out through the filter and the shell and discharged to the outside. Since this part of the scattered ingredients can be located on the top of the filter, the weight of the scattered ingredients can directly act on the containing barrel through the filter, the shell and the bracket, so that the batching machine does not need to spend time to replenish this part of the scattered ingredients.

[0015] Technical effects and advantages of the present invention: 1. The present invention can guide and collect the ingredients scattered in the air, so that the weight of the scattered ingredients can directly act on the containing barrel through the filter, housing, and bracket, so that the batching machine does not need to spend time to replenish these scattered ingredients, thereby improving work efficiency; 2. The present invention can adjust the position of the filter according to the height of the ingredients in the barrel, so that the filter is close to the top of the ingredients in the barrel, so that when the ingredients fall, they will not impact the ingredients in the barrel, thereby avoiding the escape of ingredients and thus avoiding affecting the weight of the entire ingredients. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 A schematic structural diagram of a standardized batching system for goat milk powder according to an embodiment of the present invention is shown; Figure 2 A schematic structural diagram of a tub according to an embodiment of the present invention is shown; Figure 3 The structure diagram of the bracket and housing combination of the embodiment of the present invention is shown Figure 1 ; Figure 4 A schematic cross-sectional view of a bracket and housing assembly according to an embodiment of the present invention is shown; Figure 5 The structure diagram of the bracket and housing combination of the embodiment of the present invention is shown Figure 2 ; In the figure: 1. Batching machine; 2. Scale; 3. Container; 4. Bracket; 5. Shell; 6. Filter; 7. Suction nozzle; 8. Hard tube; 9. First hose; 10. Second hose; 11. Telescopic tube; 12. Stopper; 13. Mounting plate; 14. Side plate; 15. Iron block; 16. Magnet block; 17. Frame; 18. Straight rod; 19. Flat plate; 20. Magnet plate; 21. Pressure block; 22. Spring; 23. Iron rod; 24. Electromagnet; 25. Controller; 26. Switch. DETAILED DESCRIPTION

[0017] In order to make the purpose, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions of the present invention will be clearly and completely described below in conjunction with the embodiments.

[0018] The present invention provides a standardized batching system for goat milk powder, such as Figures 1 to 5 As shown, it includes a batching machine 1, a weighing device 2, a holding bucket 3, a bracket 4, a shell 5, a filter 6, and a suction component; The weighing device 2 is used to weigh the ingredients. The holding bucket 3 is arranged above the weighing device 2 for holding the ingredients. The bracket 4 is slidably arranged on the top of the holding bucket 3. The bracket 4 is provided in multiple numbers and is equidistantly arranged on the top of the holding bucket 3. The shell 5 is rotatably arranged on the bracket 4. The number of the shells 5 corresponds to the number of the brackets 4. The filter 6 is arranged inside the shell 5 to provide an attachment place for the escaped ingredients. The suction component is used to extract the air in the shell 5 to the outside.

[0019] When in use, ingredients are injected into the holding barrel 3 through the batching machine 1. As the ingredients are injected, more and more ingredients are added to the holding barrel 3. At this time, the weighing device 2 senses the change in weight. When the weight reaches the required weight, the weighing device 2 cooperates with the external control device to control the batching machine 1 to stop and complete the batching. The specific principle of the weighing device 2 cooperating with the external control device to control the batching machine 1 to stop is consistent with the principle of cooperation between the batching machine, the weighing device and the control device in the prior art. It will not be repeated here. In the process of injecting ingredients, some ingredients will dissipate into the air, resulting in the ingredients released by the batching machine 1 being inconsistent with the actual weight of the ingredients entering the holding barrel 3, that is, the weight of the ingredients released by the batching machine is greater than the weight of the ingredients entering the holding barrel 3. This problem will result in that after the amount released by the batching machine 1 reaches the required amount, it is still necessary to continue to release some ingredients to supplement the dissipated ingredients to ensure that the ingredients in the holding barrel 3 reach the required weight. This will extend the working time of the batching machine 1 and affect the work progress. Therefore, when in use, the air in the shell 5 is extracted by the suction component, so that the outside air is continuously drawn into the shell 5, and the ingredients scattered in the air are continuously moved to the filter 6 with the airflow, filtered and retained on the surface of the filter 6, and the air is sucked out through the filter 6 and the shell 5 and discharged to the outside. Since this part of the scattered ingredients can be located on the top of the filter 6, the weight of the scattered ingredients can directly act on the holding barrel 3 through the filter 6, the shell 5, and the bracket 4, so that the batching machine does not need to spend time to replenish this part of the scattered ingredients later. That is, part of the ingredients released by the batching machine can be on the filter 6, and the other part will be in the holding barrel 3. The overall weight of the ingredients can directly and accurately act on the holding barrel 3, and thus directly act on the weighing device 2, and there is no need for the batching machine 1 to spend extra time to replenish the scattered ingredients, thereby improving work efficiency. A stopper 12 is fixedly installed on the top of the holding barrel 3. After stopping the ingredients, the shell 5 is pushed downward to make the filter 6 rotate accordingly. Finally, the filter 6 is in a vertical state. The ingredients on the filter 6 fall into the holding barrel 3 under the action of gravity. In order to collect the scattered ingredients in a larger range, the filter 6 is positioned above the inside of the holding barrel 3. The ingredients on the filter 6 are poured into the holding barrel 3, so that when the holding barrel 3 is subsequently moved, the ingredients on the filter 6 can be prevented from being blown away by the external airflow. When the internal ingredients need to be poured out, the multiple brackets 4 are rotated so that the multiple brackets 4 are rotated to one side along the top of the holding barrel 3, and the ingredients are poured out from the side without the bracket 4, so that the bracket 4 can be prevented from affecting the pouring of the ingredients. The set stopper 12 can facilitate the pushing of the multiple brackets 4 to a state of mutual adhesion.

[0020] like Figure 2 and Figure 3 As shown, the suction assembly includes: a suction nozzle 7, a hard tube 8, a first hose 9, a second hose 10, and a telescopic tube 11; The suction nozzle 7 is arranged inside the shell 5 and is used to extract air inside the shell 5. The suction nozzle 7 is fixedly connected to the shell 5. One end of the hard tube 8 is connected to the suction nozzle 7. The first hose 9 is connected to the other end of the hard tube 8. The second hose 10 is arranged on the top of the bucket 3. The second hose 10 is connected to the first hose 9. The part where the second hose 10 contacts the bracket 4 is fixedly connected. The telescopic tube 11 is connected to the top of the second hose 10 for connecting to an external air extraction device.

[0021] When in use, air is extracted through external air extraction equipment, so that the telescopic tube 11, the second hose 10, the first hose 9, the hard tube 8, and the suction nozzle 7 are coordinated to extract the air in the shell 5 to achieve air extraction.

[0022] like Figure 4As shown, a mounting plate 13 is provided on the inner side of the bracket 4, and a side plate 14 is symmetrically fixedly installed on the inner side of the mounting plate 13. A rotating shaft is fixedly connected to both sides of the shell 5, and the rotating shaft is rotatably installed on the corresponding side plate 14. An iron block 15 is fixedly connected to the end of the rotating shaft, and a magnet block 16 that cooperates with the iron block 15 is fixedly installed on the outer side of the side plate 14.

[0023] The magnet block 16 fixes the iron block 15 so that the shaft cannot rotate and the shell 5 cannot move, and remains in a horizontal state. The shell 5 is pressed downward to rotate with the shaft and the iron block 15 until it leaves the magnet block 16. At this time, the shell 5 rotates under the action of gravity, and the shell 5 moves with the filter 6, and finally the filter 6 is in a vertical state.

[0024] If the proportion of ingredients is small, after the ingredients are loaded, the top of the ingredients in the holding bucket 3 is far away from the shell 5, causing the shell 5 with the filter 6 to be turned vertically. At this time, the ingredients that fall will move in the air for a period of time and then fall on the top of the ingredients in the holding bucket 3. The falling ingredients impact the ingredients in the holding bucket 3, causing them to escape. Some of the escaped ingredients leave the holding bucket 3, affecting the weight of the ingredients. Therefore, an adjustment component is provided to solve the above problem. like Figure 4 As shown, the mounting plate 13 is slidably arranged on the inner side of the bracket 4 , and an adjustment component for adjusting the position of the shell 5 according to the height of the ingredients inside the barrel 3 is provided on the mounting plate 13 .

[0025] After the addition of ingredients is completed, the top of the ingredients in the holding barrel 3 is smoothed, and then the position of the mounting plate 13 and the shell 5 is adjusted by adjusting the assembly, so that when the shell 5 is subsequently rotated with the filter 6 in a vertical state, the filter 6 is close to the top of the ingredients in the holding barrel 3, so that when the ingredients fall, they will not impact the ingredients in the holding barrel 3, thereby avoiding the escape of ingredients and thus avoiding affecting the weight of the overall ingredients.

[0026] like Figure 4 As shown, the adjustment assembly includes: a straight rod 18, a flat plate 19, and a magnet plate 20; The straight rod 18 is fixedly connected to the bottom of the mounting plate 13, and the flat plate 19 is fixedly connected to the bottom of the straight rod 18. The bottom of the flat plate 19 is horizontally arranged. The material of the flat plate 19 is stainless steel. The bottom of the flat plate 19 is smooth. A vertical groove is provided on the inner side of the bracket 4. The mounting plate 13 is slidably arranged in the vertical groove. The magnet plate 20 is fixedly installed on the top wall of the vertical groove opened by the bracket 4. The material of the mounting plate 13 is iron. The mounting plate 13 can be adsorbed and fixed on the magnet plate 20. When the shell 5 and the filter screen 6 are rotated to a vertical state, the bottom of the shell 5 is flush with the top position of the flat plate 19.

[0027] After smoothing the top of the ingredients in the holding barrel 3, pull the mounting plate 13 away from the magnet plate 20, and slowly lower the mounting plate 13 downward. The mounting plate 13 moves with the straight rod 18 and the flat plate 19. Finally, the bottom of the flat plate 19 contacts the top of the ingredients. At this time, the mounting plate 13 stops moving, and then the shell 5 and the filter 6 are rotated to a vertical state. The vertical filter 6 is close to the top of the ingredients in the holding barrel 3. At this point, the position adjustment of the shell 5 and the filter 6 is completed.

[0028] like Figure 4 As shown, a frame 17 is provided on the outside of the filter 6, and a vibration component for driving the vibration thereof is provided on the frame 17; The vibration assembly includes: a pressing block 21, a pressing groove, a spring 22, an iron rod 23, an electromagnet 24, a controller 25, and a switch 26; The pressure block 21 is symmetrically fixedly connected to the frame 17, and the pressure groove is symmetrically arranged on the inner side of the shell 5 for the pressure block 21 to slide; the spring 22 fixes the pressure block 21 to the bottom wall of the pressure groove, the iron rod 23 is symmetrically fixedly connected to the bottom of the frame 17, the electromagnet 24 is fixed to the bottom wall of the shell 5, and is used to attract the iron rod 23, the controller 25 is fixed to the shell 5, and the switch 26 is fixedly installed at the bottom of the hard tube 8, and is used to cooperate with the controller 25 to control the power on and off of the electromagnet 24. The shell 5 is provided with a power supply for the switch 26, the controller 25, and the electromagnet 24, which is not shown in the figure.

[0029] The shell 5 rotates downward, and the suction nozzle 7 and the hard tube 8 rotate with it, thereby moving the switch 26 with it. The switch 26 contacts the straight rod 18 and is pressed. The controller 25 controls the electromagnet 24 to be energized intermittently. At this time, the filter 6 is in a vertical state. When the electromagnet 24 is energized, the electromagnet 24 is magnetic, so that the iron rod 23 is attracted to move with the frame 17, the pressure block 21, and the filter 6 in the direction close to the suction nozzle 7. The pressure block 21 compresses the spring 22 to deform it. Then the electromagnet 24 is de-energized, and the spring 22 quickly resets the pressure block 21, the frame 17, and the filter 6. The pressure block 21 hits the top wall of the pressure groove to generate vibration, which shakes the ingredients attached to the filter 6 into the containing barrel 3. Subsequently, as the electromagnet 24 is intermittently energized and de-energized, the filter 6 can be vibrated, and the ingredients can be separated from the filter 6 more thoroughly.

[0030] like Figure 4 As shown, the pore size of the filter 6 is not large enough to allow the ingredients to pass through.

[0031] Working principle: When in use, ingredients are injected into the holding barrel 3 through the batching machine 1. As the ingredients are injected, more and more ingredients are added to the holding barrel 3. At this time, the weighing device 2 senses the change in weight. When the weight reaches the required weight, the weighing device 2 cooperates with the external control device to control the batching machine 1 to stop and complete the batching. The specific principle of the weighing device 2 cooperating with the external control device to control the batching machine 1 to stop is consistent with the principle of cooperation between the batching machine, the weighing device and the control device in the prior art, which will not be repeated here. In the process of injecting ingredients, some ingredients will dissipate into the air, resulting in the ingredients released by the batching machine 1 being inconsistent with the actual weight of the ingredients entering the holding barrel 3, that is, the weight of the ingredients released by the batching machine is greater than the weight of the ingredients entering the holding barrel 3. This problem will result in that after the amount released by the batching machine 1 reaches the required amount, it is still necessary to continue to release some ingredients to supplement the dissipated ingredients to ensure that the ingredients in the holding barrel 3 reach the required weight. This will extend the working time of the batching machine 1 and affect the work progress. Therefore, when in use, air is extracted through an external exhaust device, so that the air in the shell 5 is extracted in conjunction with the telescopic tube 11, the second hose 10, the first hose 9, the hard tube 8, and the suction nozzle 7, so that the outside air is continuously drawn into the shell 5, and the ingredients scattered in the air are continuously moved to the filter 6 with the air flow and filtered and stay on the surface of the filter 6. The air is extracted and discharged to the outside through the filter 6 and the shell 5. Since this part of the scattered ingredients can be located on the top of the filter 6, the weight of the scattered ingredients can directly act on the containing barrel 3 through the filter 6, the shell 5, and the bracket 4 , so that the subsequent batching machine does not need to spend time to replenish this part of the scattered ingredients, that is, the ingredients released by the batching machine, part of which can be on the filter 6, and the other part will be in the holding barrel 3, and the overall weight of the ingredients can directly and accurately act on the holding barrel 3, thereby directly acting on the weighing device 2, and there is no need for the subsequent batching machine 1 to spend extra time to replenish the scattered ingredients, thereby improving work efficiency; after stopping the batching, the shell 5 is dialed downward, so that the rotating shaft and the iron block 15 rotate to leave the magnet block 16, so that the filter 6 rotates accordingly, and finally the filter 6 is in a vertical state, and the ingredients on the filter 6 are weighed. Under the action of force, it falls into the holding barrel 3. In order to collect the scattered ingredients in a larger range, the position of the filter 6 is set higher than the inside of the holding barrel 3. The ingredients on the filter 6 are poured into the holding barrel 3, so that when the holding barrel 3 is subsequently moved, the ingredients on the filter 6 can be prevented from being blown away by the external airflow. The shell 5 rotates downward with the suction nozzle 7 and the hard tube 8, thereby moving the switch 26. The switch 26 contacts the straight rod 18 and is pressed. The controller 25 controls the electromagnet 24 to be energized intermittently. At this time, the filter 6 is vertical. In the state, when the electromagnet 24 is energized, the electromagnet 24 is magnetic, causing the iron rod 23 to move with the frame 17, the pressure block 21, and the filter 6 toward the direction close to the suction nozzle 7. The pressure block 21 compresses the spring 22 to deform it. Then the electromagnet 24 is de-energized, and the spring 22 quickly returns the pressure block 21, the frame 17, and the filter 6. The pressure block 21 hits the top wall of the pressure groove to generate vibration, which shakes the ingredients attached to the filter 6 into the containing barrel 3. Subsequently, as the electromagnet 24 is intermittently energized and de-energized, the filter 6 can be vibrated, and the ingredients can be separated from the filter 6 more thoroughly. If the proportion of ingredients is small, after the ingredients are loaded, the top of the ingredients in the holding bucket 3 is far away from the shell 5, causing the shell 5 with the filter 6 to be turned vertically. At this time, the ingredients that fall will move in the air for a period of time and then fall on the top of the ingredients in the holding bucket 3. The falling ingredients impact the ingredients in the holding bucket 3, causing them to escape. Some of the escaped ingredients leave the holding bucket 3, affecting the weight of the ingredients. Therefore, an adjustment component is provided to solve the above problem. When the adjustment component is working; after the addition of ingredients is completed, the top of the ingredients in the holding barrel 3 is smoothed. After the top of the ingredients in the holding barrel 3 is smoothed, pull the mounting plate 13 to make it leave the magnet plate 20, and slowly lower the mounting plate 13 downward. The mounting plate 13 moves with the straight rod 18 and the flat plate 19, and finally the bottom of the flat plate 19 contacts the top of the ingredients. At this time, the mounting plate 13 stops moving, and then the shell 5 and the filter 6 are rotated to a vertical state. The vertical filter 6 is close to the top of the ingredients in the holding barrel 3. At this point, the position of the shell 5 and the filter 6 is adjusted. The filter 6 is close to the top of the ingredients in the holding barrel 3, so that the ingredients will not impact the ingredients in the holding barrel 3 when they fall, thereby avoiding the escape of ingredients and thus avoiding affecting the weight of the overall ingredients.

[0032] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit the same.

Claims

1. A standardized batching system for goat milk powder, comprising a batching machine (1), characterized in that: A weighing device (2) for weighing ingredients; A holding bucket (3) is provided above the weighing device (2) and is used for holding ingredients; A bracket (4) is arranged on the top of the storage barrel (3); A housing (5) rotatably disposed on the bracket (4); A filter (6) is arranged inside the housing (5) and is used to provide an attachment point for the scattered ingredients; A suction assembly is used to extract the air in the shell (5) outwards.

2. The standardized batching system for goat milk powder according to claim 1, wherein: The suction assembly comprises: A suction nozzle (7), arranged inside the shell (5), for extracting air from the shell (5); A hard tube (8), one end of which is connected to the suction nozzle (7); A first hose (9) connected to the other end of the hard tube (8); A second hose (10) is provided on the top of the storage tub (3), and the second hose (10) is connected to the first hose (9); The telescopic tube (11) is connected to the top of the second hose (10) and is used to connect to an external air extraction device.

3. The standardized batching system for goat milk powder according to claim 2, characterized in that: A mounting plate (13) is provided on the inner side of the bracket (4), and a side plate (14) is symmetrically fixedly mounted on the inner side of the mounting plate (13). Both sides of the housing (5) are connected to a rotating shaft, and the rotating shaft is rotatably mounted on the corresponding side plate (14). The end of the rotating shaft is connected to an iron block (15), and a magnet block (16) that cooperates with the iron block (15) is fixedly mounted on the outer side of the side plate (14).

4. The standardized batching system for goat milk powder according to claim 3, characterized in that: The mounting plate (13) is slidably arranged on the inner side of the bracket (4), and an adjustment component for adjusting the position of the shell (5) according to the height of the ingredients inside the barrel (3) is provided on the mounting plate (13).

5. The standardized batching system for goat milk powder according to claim 4, characterized in that: The adjustment component includes: A straight rod (18) connected to the bottom of the mounting plate (13); A flat plate (19) connected to the bottom of the straight rod (18); The magnet plate (20) is arranged on the bracket (4); the mounting plate (13) is made of iron; and the mounting plate (13) can be adsorbed and fixed on the magnet plate (20).

6. The standardized batching system for goat milk powder according to claim 5, characterized in that: A frame (17) is provided outside the filter screen (6), and a vibration component for driving the frame (17) to vibrate is provided on the frame (17); The vibration component includes: A pressing block (21) is symmetrically arranged on the frame (17); A pressing groove, symmetrically arranged on the inner side of the housing (5), for allowing the pressing block (21) to slide; A spring (22) connects the pressing block (21) to the bottom wall of the pressing groove; An iron rod (23) connected to the bottom of the frame (17); an electromagnet (24), disposed on the bottom wall of the housing (5) and used to attract the iron rod (23); A controller (25) is provided on the housing (5); The switch (26) is arranged at the bottom of the hard tube (8) and is used to cooperate with the controller (25) to control the power on and off of the electromagnet (24).

7. The standardized batching system for goat milk powder according to claim 6, characterized in that: The pore size of the filter (6) is not large enough to allow the ingredients to pass through.

8. A method for using the standardized goat milk powder batching system according to claim 7, characterized in that: The steps include: S1. When in use, the batching machine (1) injects the ingredients into the holding barrel (3). As the ingredients are injected, the amount of ingredients in the holding barrel (3) increases. At this time, the weighing device (2) senses the change in weight. When the weight reaches the required weight, the weighing device (2) cooperates with the external control device to control the batching machine (1) to stop, thus completing the batching. S2. When in use, the air in the housing (5) is extracted through the suction assembly, so that the outside air is continuously drawn into the housing (5); S3. The ingredients scattered in the air are continuously moved to the filter (6) by the air flow and are filtered and stay on the surface of the filter (6). The air is drawn out through the filter (6) and the housing (5) and discharged to the outside. Since this part of the scattered ingredients can be located on the top of the filter (6), the weight of the scattered ingredients can directly act on the storage barrel (3) through the filter (6), the housing (5) and the bracket (4), so that the batching machine does not need to spend time to replenish this part of the scattered ingredients.