Feeding control device

The control device with a rotating mechanism and segmented plates addresses the issue of uneven manual feeding in zinc dross separation machines, achieving uniform and automated material distribution for improved separation efficiency.

CN223096950UActive Publication Date: 2025-07-15HUBEI YUZHOU METAL PROD CO LTD
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Patent Information

Application Number
CN202422109609.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-29
Publication Date
2025-07-15
Estimated Expiration
2034-08-29

AI Technical Summary

Technical Problem

When feeding materials, the manual feeding of existing zinc ash separators cannot be uniform and automatically controlled, which affects the feed uniformity.

Method used

The feed control device is adopted, including a base, a rotating motor, a rotating rod, a slot and a partition plate. The rotating motor drives the rotating rod to drive the partition plate to rotate in an annular manner, realizing the partitioning and quantitative control of materials, combining cleaning components and locking components to ensure uniform material delivery.

Benefits of technology

The material uniform and automatic delivery of the zinc ash separator is achieved, and the feed uniformity is improved, and the inner wall of the device is kept clean by cleaning the components.

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Abstract

The utility model provides a feeding control device, which relates to the technical field of zinc ash separators, and comprises a base, the bottom end of the base is provided with a tripod, two sides of the tripod are provided with fixing screws in a penetrating manner, the front end of the base is connected with a material guide cover, and the middle parts of the base and the material guide cover are provided with a control assembly; the control assembly comprises a rotating motor, a rotating rod, a clamping groove and a partition plate, the rotating motor is arranged at the bottom end of the base, the driving end of the rotating motor is connected with the rotating rod, the clamping groove is formed in the circle of the inner wall of the rotating rod, and the partition plate is inserted in the middle of the clamping groove; an inner groove is formed in the outer surface of the control assembly; an inner groove is formed in the base, a cleaning assembly is inserted in the middle of the inner groove, a placement groove is formed in the top end of the control assembly, a locking assembly is inserted in the middle of the placement groove, and a rotating motor is started to drive a rotating rod and a partition plate in a clamping groove to annularly rotate on the base; and quantitative feeding treatment of materials can be realized.
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Description

Technical Field

[0001] The utility model relates to the technical field of zinc ash separators, in particular to a feeding control device. Background Technique

[0002] The working principle of the zinc ash separator: The zinc ash separator consists of three major parts: crushing, separation, and dust removal. After the zinc ash enters the separator, the metal inside is deformed by mechanical force, but its weight remains unchanged and is discharged at the bottom of the machine. Impurities and zinc oxide are crushed into very fine powder due to their different properties and are sucked away by a blower and discharged into a separator. Inside the separator, the fine powder is collected, and the gas is discharged into a dust collector. After being filtered by the dust collector, the clean gas is discharged into the atmosphere. The collected metallic zinc can be melted into zinc ingots in a furnace, and the fine powder can be directly sold or processed into downstream products.

[0003] When feeding the existing zinc ash separator, manual feeding cannot control the amount of zinc ash fed into the separator, and it is difficult to evenly and automatically place the material at the feeding port of the zinc ash separator, thus affecting the uniformity of feeding of the zinc ash separator.

[0004] Therefore, the utility model provides a feeding control device. Content of the Utility Model

[0005] The purpose of the utility model is to solve the defects existing in the prior art and provide a feeding control device.

[0006] In order to achieve the above purpose, the utility model adopts the following technical scheme: A feeding control device includes a base, a tripod is arranged at the bottom end of the base, and fixing screws are inserted through both sides of the tripod. A feeding guide cover is connected to the front end of the base, and a control component is arranged in the middle of the base and the feeding guide cover;

[0007] The control component includes a rotating motor, a rotating rod, a card slot, and a partition plate. A rotating motor is arranged at the bottom end of the base, and the driving end of the rotating motor is connected to a rotating rod. A card slot is formed in a circle on the inner wall of the rotating rod, and a partition plate is inserted in the middle of the card slot;

[0008] An inner groove is arranged on the outer surface of the control component; and a cleaning component is inserted in the middle of the inner groove. An installation groove is formed at the top end of the control component, and a locking component is inserted in the middle of the installation groove. A feeding cover is connected to the upper end of the base, observation windows are installed on both sides of the feeding cover, a feeding nozzle is arranged in the middle of the feeding cover, and a material bucket is connected to the top end of the feeding nozzle.

[0009] As a preferred implementation manner, the rotating rod and the partition plate form a rotating structure through the rotating motor, and the card slots are annularly distributed about the axis of the rotating rod.

[0010] The technical effects of adopting the above further solution are as follows: By arranging a control component in the middle section of the base, it is convenient to evenly put materials into the feeding port of the zinc ash separator. By starting the rotating motor, the rotating rod and the partition plate inside the card slot are driven to rotate in a ring on the base. The partition plate is used to divide and put the materials, and quantitative feeding of the materials can be realized. The middle parts of the two groups of partition plates are mainly used to place materials. When the rotating motor drives the partition plate to rotate one grid, the materials in the middle of the two groups of partition plates can be put. When the materials in the middle of each group of partition plates approach the material guiding cover, the materials in the middle of the partition plate will fall into the feeding port of the zinc ash separator from the material guiding cover, and automatic feeding of the materials can be realized.

[0011] As a preferred implementation manner, the rotating motor and the rotating rod are fixedly connected, and five groups of partition plates are provided.

[0012] The technical effects of adopting the above further solution are as follows: Users can adjust the interval between the two groups of partition plates according to the amount of materials to be put. The larger the interval between the partition plates, the more materials can be placed for feeding, which is convenient for better controlling the uniform feeding of the zinc ash separator.

[0013] As a preferred implementation manner, the cleaning component includes a cleaning brush and a buckle. The cleaning brush is inserted in the middle of the inner groove, and the buckle is connected to the rear end of the cleaning brush.

[0014] The technical effects of adopting the above further solution are as follows: By arranging a cleaning component, an inner groove is opened on the outer wall of the partition plate. Users snap the buckle of the cleaning brush into the inner groove for installation, which is convenient for the cleaning brush to clean the inner wall of the cavity of the base, greatly improving the cleanliness of the inner wall of the base.

[0015] As a preferred implementation manner, the cleaning brush is connected to the buckle, and five groups of cleaning brushes are provided.

[0016] The technical effects of adopting the above further solution are as follows: The cleaning brush fits on the inner wall of the base, and the cleaning brush rubs against the cavity of the base, greatly improving the cleaning of the cleaning brush on the cavity of the base.

[0017] As a preferred implementation manner, the locking component includes a fixing plate, a plug rod and a bolt. The fixing plate is installed at the upper end of the placement groove, and the plug rod is connected to the middle and lower end of the fixing plate. A bolt is inserted in a circle inside the fixing plate.

[0018] The technical effects of adopting the above further solution are as follows: A placement groove is opened at the top end of the rotating rod, which is convenient to tightly lock the partition plate in the middle of the rotating rod. The plug rod of the fixing plate is inserted into the placement groove for installation.

[0019] As a preferred embodiment, the fixing plate and the inserting rod form a fixing structure through bolts, and the fixing plate is of an annular shape structure.

[0020] The technical effect of adopting the above further solution is: by locking the fixing plate above the rotating rod through bolts, the positioning process of the partition plate can be realized.

[0021] Compared with the prior art, the advantages and positive effects of the present utility model are that

[0022] By starting the rotating motor, driving the rotating rod and the partition plate inside the card slot to rotate annularly on the base, and using the partition plate to conduct grid feeding treatment on the material, quantitative feeding treatment of the material can be realized. The middle parts of the two groups of partition plates are mainly used to place the material. When the rotating motor drives the partition plate to rotate one grid, the material in the middle of the two groups of partition plates can be fed. When the material in the middle of each group of partition plates approaches the material guiding cover, the material in the middle of the partition plate will fall into the feeding port of the zinc ash separator from the material guiding cover, and automatic feeding treatment of the material can be realized. The user can adjust the interval between the two groups of partition plates according to the amount of the fed material. The larger the interval of the partition plate, the more material can be placed for feeding treatment, which is convenient for better controlling the uniform feeding of the zinc ash separator. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 is a structural schematic diagram of the feeding control device of the present utility model;

[0024] Figure 2 is a structural diagram of the control component of the present utility model;

[0025] Figure 3 is the present utility model Figure 2 the enlarged structural diagram at A in;

[0026] Figure 4 is the partial enlarged structural diagram of the locking component of the present utility model.

[0027] Wherein: 1, base; 2, tripod; 3, fixing screw; 4, material guiding cover; 5, control component; 501, rotating motor; 502, rotating rod; 503, card slot; 504, partition plate; 6, inner groove; 7, cleaning component; 701, cleaning brush; 702, buckle; 8, placement groove; 9, locking component; 901, fixing plate; 902, inserting rod; 903, bolt; 10, feeding cover; 11, observation window; 12, blanking nozzle; 13, material bucket. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0028] The following will clearly and completely describe the technical solutions in the embodiments of the present utility model with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.

[0029] Embodiment

[0030] As Figure 1 、 Figure 2 、 Figure 3 and Figure 4 shown, the present utility model provides a technical solution: a feeding control device, including a base 1, a tripod 2 is arranged at the bottom end of the base 1, and fixing screws 3 are inserted through both sides of the tripod 2. A material guiding cover 4 is connected to the front end of the base 1, and a control assembly 5 is arranged in the middle of the base 1 and the material guiding cover 4;

[0031] The control assembly 5 includes a rotating motor 501, a rotating rod 502, a card slot 503, and a partition plate 504. The rotating motor 501 is arranged at the bottom end of the base 1, and the driving end of the rotating motor 501 is connected to the rotating rod 502. A card slot 503 is formed in a circle on the inner wall of the rotating rod 502, and the partition plate 504 is inserted in the middle of the card slot 503;

[0032] The outer surface of the control component 5 is provided with an inner groove 6; and a cleaning component 7 is inserted in the middle of the inner groove 6. An installation groove 8 is opened at the top of the control component 5, and a locking component 9 is inserted in the middle of the installation groove 8. The upper end of the base 1 is connected with a feeding hood 10, and observation windows 11 are installed on both sides of the feeding hood 10. A feeding nozzle 12 is arranged in the middle of the feeding hood 10, and a material bucket 13 is connected to the top end of the feeding nozzle 12. Specifically, first, lock the tripod 2 of the base 1 at the feeding port of the zinc ash separator through the fixing screws 3, place the guide hood 4 above the feeding port of the zinc ash separator, and the material is fed into the feeding port of the zinc ash separator through the guide hood 4 for feeding treatment. By arranging the control component 5 in the middle section of the base 1, it is convenient to evenly feed the material into the feeding port of the zinc ash separator. By starting the rotating motor 501, the rotating rod 502 and the partition plate 504 inside the card slot 503 rotate in a ring on the base 1, and the partition plate 504 is used to divide the material for feeding treatment, so as to realize the quantitative feeding treatment of the material. The middle parts of the two partition plates 504 are mainly used to place the material. When the rotating motor 501 drives the partition plate 504 to rotate one grid, the material in the middle of the two partition plates 504 can be fed. When the material in the middle of each partition plate 504 approaches the guide hood 4, the material in the middle of the partition plate 504 will fall into the feeding port of the zinc ash separator from the guide hood 4, so as to realize the automatic feeding treatment of the material. The user can adjust the interval between the two partition plates 504 according to the amount of the fed material. The larger the interval of the partition plate 504, the more material can be placed for feeding treatment, which is convenient to better control the uniform feeding of the zinc ash separator. The top end of the base 1 is connected with a feeding hood 10, and the material bucket 13 and the feeding nozzle 12 are arranged in the middle of the feeding hood 10, so that the feeding nozzle 12 of the observation material bucket 13 is aligned with the material port of the partition plate 504 for feeding. By observing the observation window 11, it is convenient to observe the feeding speed of the feeding nozzle 12 of the material bucket 13. By providing a cleaning component 7, an inner groove 6 is opened on the outer wall of the partition plate 504. The user snaps the buckle 702 of the cleaning brush 701 into the inner groove 6 for installation, which is convenient to use the cleaning brush 701 to clean the inner wall of the cavity of the base 1, greatly improving the cleanliness of the inner wall of the base 1. The cleaning brush 701 fits on the inner wall of the base 1, and the cleaning brush 701 and the cavity of the base 1 are rubbed against each other, greatly improving the cleaning treatment of the cleaning brush 701 on the cavity of the base 1. An installation groove 8 is opened at the top end of the rotating rod 502, which is convenient to tightly lock the partition plate 504 in the middle of the rotating rod 502. The insertion rod 902 of the fixing plate 901 is inserted into the installation groove 8, and the fixing plate 901 is locked above the rotating rod 502 through the bolt 903, so as to realize the positioning treatment of the partition plate 504. Through this technical solution, when feeding the zinc ash separator, manual feeding cannot control the amount of feeding of the zinc ash separator, and it is difficult to evenly and automatically feed the material into the feeding port of the zinc ash separator, thus affecting the problem of the uniform feeding of the zinc ash separator.It is realized that a control component 5 is arranged in the middle section of the base 1, which facilitates uniformly feeding materials into the feeding port of the zinc ash separator. By starting the rotating motor 501, the rotating rod 502 and the partition plate 504 inside the card slot 503 are driven to rotate annularly on the base 1. The partition plate 504 is used to divide and feed the materials, and quantitative feeding of the materials can be realized. The middle parts of the two partition plates 504 are mainly used to place the materials. When the rotating motor 501 drives the partition plate 504 to rotate one grid, the materials in the middle of the two partition plates 504 can be fed. When the materials in the middle of each partition plate 504 approach the material guiding cover 4, the materials in the middle of the partition plate 504 will fall into the feeding port of the zinc ash separator from the material guiding cover 4, and automatic feeding of the materials can be realized. The user can adjust the interval between the two partition plates 504 according to the amount of the fed materials. The larger the interval between the partition plates 504, the more materials can be placed for feeding, which is convenient for better controlling the uniform feeding of the zinc ash separator.,

[0033] Furthermore, as Figure 2 and Figure 4 shown: It further includes a locking component 9 including a fixing plate 901, a plug rod 902 and a bolt 903. The fixing plate 901 is installed at the upper end of the placement groove 8, and the plug rod 902 is connected to the middle and lower end of the fixing plate 901. A bolt 903 is inserted in a circle inside the fixing plate 901. The advantage of this technical solution is that a placement groove 8 is opened at the top end of the rotating rod 502, which is convenient for tightly locking the partition plate 504 in the middle of the rotating rod 502. The plug rod 902 of the fixing plate 901 is inserted into the placement groove 8, and the fixing plate 901 is locked above the rotating rod 502 through the bolt 903, so as to realize the positioning of the partition plate 504.

[0034] In the above solutions, there is also a problem that it is not convenient to clean the remaining materials inside. As Figure 1 、 Figure 2 and Figure 3 shown: In this solution, the cleaning component 7 includes a cleaning brush 701 and a buckle 702. The cleaning brush 701 is inserted in the middle of the inner groove 6, and the buckle 702 is connected to the rear end of the cleaning brush 701. By providing the cleaning component 7, an inner groove 6 is opened on the outer wall of the partition plate 504. The user snaps the buckle 702 of the cleaning brush 701 into the inner groove 6 for installation, which is convenient for the cleaning brush 701 to clean the inner wall of the cavity of the base 1, greatly improving the cleanliness of the inner wall of the base 1. The cleaning brush 701 fits on the inner wall of the base 1, and the cleaning brush 701 is rubbed against the cavity of the base 1, greatly improving the cleaning of the cleaning brush 701 on the cavity of the base 1.

[0035] Working principle:

[0036] As Figures 1 - 4 shown:

[0037] First, lock the tripod 2 of the base 1 to the feeding port of the zinc ash separator through the fixing screw 3, place the material guiding cover 4 above the feeding port of the zinc ash separator, and let the material pass through the material guiding cover 4 and fall into the feeding port of the zinc ash separator for feeding treatment. There is a control component 5 arranged in the middle section of the base 1, which is convenient for evenly feeding the material into the feeding port of the zinc ash separator. By starting the rotating motor 501, drive the rotating rod 502 and the partition plate 504 inside the card slot 503 to rotate in a ring on the base 1, and use the partition plate 504 to perform grid feeding treatment on the material, so as to realize quantitative feeding treatment of the material. The middle parts of the two partition plates 504 are mainly used to place the material. When the rotating motor 501 drives the partition plate 504 to rotate one grid, the material in the middle of the two partition plates 504 can be fed. When the material in the middle of each partition plate 504 approaches the material guiding cover 4, the material in the middle of the partition plate 504 will fall from the material guiding cover 4 into the feeding port of the zinc ash separator, which can realize automatic feeding treatment of the material. The user can adjust the interval between the two partition plates 504 according to the amount of the fed material. The larger the interval between the partition plates 504, the more material can be placed for feeding treatment, which is convenient for better controlling the uniform feeding of the zinc ash separator. The top end of the base 1 is connected with a feeding cover 10. Place the material bucket 13 and the feeding nozzle 12 in the middle of the feeding cover 10, and align the feeding nozzle 12 of the observation material bucket 13 with the material opening of the partition plate 504 for feeding. It is convenient to observe the feeding speed of the feeding nozzle 12 of the material bucket 13 through the observation window 11. There is a cleaning component 7 arranged. An inner groove 6 is opened on the outer wall of the partition plate 504. The user snaps the buckle 702 of the cleaning brush 701 into the inner groove 6 for installation, which is convenient for the cleaning brush 701 to clean the inner wall of the cavity of the base 1, greatly improving the cleanliness of the inner wall of the base 1. The cleaning brush 701 fits on the inner wall of the base 1, and uses the friction between the cleaning brush 701 and the cavity of the base 1 to greatly improve the cleaning of the cavity of the base 1 by the cleaning brush 701. An installation groove 8 is opened at the top end of the rotating rod 502, which is convenient for tightly locking the partition plate 504 in the middle of the rotating rod 502. Insert the inserting rod 902 of the fixing plate 901 into the installation groove 8, and lock the fixing plate 901 above the rotating rod 502 through the bolt 903, so as to realize the positioning treatment of the partition plate 504.

[0038] The above is only the preferred embodiment of the present invention, and it is not a limitation of the present invention in other forms. Any person skilled in the art may use the disclosed technical content to make changes or modifications into equivalent embodiments with equivalent changes and apply them to other fields. However, as long as it does not depart from the technical content of the technical solution of the present invention, any simple modification, equivalent change and modification made to the above embodiments according to the technical essence of the present invention still belong to the protection scope of the technical solution of the present invention.

Claims

1. A feed control device, comprising a base (1), characterized in that: The bottom end of the base (1) is provided with a tripod (2), and fixing screws (3) are inserted through both sides of the tripod (2). The front end of the base (1) is connected to a material guiding cover (4), and a control component (5) is arranged in the middle of the base (1) and the material guiding cover (4); The control component (5) includes a rotating motor (501), a rotating rod (502), a clamping groove (503) and a partition plate (504). The rotating motor (501) is arranged at the bottom end of the base (1), and the driving end of the rotating motor (501) is connected to a rotating rod (502). A clamping groove (503) is formed in a circle on the inner wall of the rotating rod (502), and a partition plate (504) is inserted in the middle of the clamping groove (503); An inner groove (6) is arranged on the outer surface of the control component (5); and a cleaning component (7) is inserted in the middle of the inner groove (6). An installation groove (8) is formed at the top end of the control component (5), and a locking component (9) is inserted in the middle of the installation groove (8). The upper end of the base (1) is connected to a feeding cover (10), and observation windows (11) are installed on both sides of the feeding cover (10). A feeding nozzle (12) is arranged in the middle of the feeding cover (10), and a material bucket (13) is connected to the top end of the feeding nozzle (12).

2. The feeding control device according to claim 1, characterized in that: The rotating rod (502) and the partition plate (504) form a rotating structure through the rotating motor (501), and the clamping grooves (503) are annularly distributed about the axis of the rotating rod (502).

3. The feeding control device according to claim 1, characterized in that: The rotating motor (501) and the rotating rod (502) are fixedly connected, and five groups of partition plates (504) are provided.

4. The feeding control device according to claim 1, wherein: The cleaning component (7) includes a cleaning brush (701) and a buckle (702). The cleaning brush (701) is inserted in the middle of the inner groove (6), and the buckle (702) is connected to the rear end of the cleaning brush (701).

5. The feeding control device according to claim 4, characterized in that: The cleaning brush (701) is connected to the buckle (702), and five groups of cleaning brushes (701) are provided.

6. The feeding control device according to claim 1, characterized in that: The locking component (9) includes a fixing plate (901), a plug rod (902) and a bolt (903). The fixing plate (901) is installed at the upper end of the installation groove (8), and the plug rod (902) is connected to the middle and lower end of the fixing plate (901). The bolt (903) is inserted in a circle inside the fixing plate (901).

7. An inlet control device according to claim 6, characterized in that: The fixing plate (901) and the plug rod (902) form a fixed structure through the bolt (903), and the fixing plate (901) is of a circular ring shape structure.