Iron removal device for glass powder discharging bin

By introducing a scraping ring and scraping spring structure into the glass powder discharge hopper, the impurities of the iron removal rod are automatically scraped off, solving the problem of time-consuming and labor-intensive manual cleaning and improving the iron removal efficiency and safety.

CN223669379UActive Publication Date: 2025-12-16CHONGQING HUAXING GLASS CO LTD
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Patent Information

Application Number
CN202520247874.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-17
Publication Date
2025-12-16
Estimated Expiration
2035-02-17

AI Technical Summary

Technical Problem

In existing technologies, the iron rods in the glass powder discharge bin require manual cleaning of impurities, which is time-consuming, labor-intensive, poses a risk of workplace injury, and results in low work efficiency.

Method used

Design an iron removal device for glass powder discharge silos. The device adopts a scraping ring and scraping spring structure. Through the cooperation of the scraping block and the iron removal rod, impurities are automatically scraped off, making the disassembly and cleaning process of the iron removal rod convenient.

Benefits of technology

It improves the cleaning efficiency of iron removal bars, reduces manual labor intensity, enhances the stability and safety of the iron removal process, and reduces the risk of work-related injuries.

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Abstract

The utility model discloses an iron removal device for a glass powder discharge bin, which relates to the field of glass recovery, and is technically characterized by comprising a discharge bin, a discharge cavity is formed in the discharge bin and penetrates through the bottom of the discharge bin, a plurality of iron removal rods are arranged in the discharge cavity, and the iron removal rods penetrate through the discharge bin. A plurality of mounting grooves communicating with the discharging cavity are formed in one side of the discharging bin, a plurality of heterocyclic scraping rings are arranged on one side of the interior of the discharging cavity, impurity scraping cavities are formed in the heterocyclic scraping rings, and the mounting grooves communicate with the impurity scraping cavities of the heterocyclic scraping rings correspondingly; the multiple iron removal rods are in sliding fit with the impurity scraping cavities of the multiple impurity scraping rings, and the technical problems that when impurities of the iron removal rods are brushed off manually, a large amount of manual operation needs to be conducted manually, time is consumed, labor intensity is high, and low working efficiency and potential industrial injury risks are likely to be caused are solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to glass recycling field, especially a kind of iron removal device for glass powder discharge bin. BACKGROUND

[0002] To realize sustainable development, recycling and reusing old glass bottles can save expenses and better handle the harm of garbage to nature. To more easily remelt and shape the broken glass, the broken glass after recycling needs to be crushed, cleaned and decontaminated in multiple processes, and finally ground into finer glass powder and discharged from the discharge bin.

[0003] To further improve the purity of glass powder, multiple iron removal rods are usually provided in the discharge bin. The strong magnetic field generated by the iron removal rods can attract impurities such as iron filings and iron powder in the powder. After the iron removal rods continuously adsorb impurities for a period of time, a certain amount of impurities will accumulate on the surface of the iron removal rods. However, the current cleaning method requires removing the iron removal rods and manually brushing off the impurities on the iron removal rods. This method requires a lot of manual operation, is time-consuming and labor-intensive, and is prone to low work efficiency and potential risk of injury. SUMMARY

[0004] To solve the above technical problems, the utility model provides an iron removal device for glass powder discharge bin, which aims to solve the technical problem that manual brushing off of impurities on iron removal rods requires a lot of manual operation, is time-consuming and labor-intensive, and is prone to low work efficiency and potential risk of injury.

[0005] The technical solution of the utility model to solve the above technical problems is as follows:

[0006] An iron removal device for glass powder discharge bin, comprising a discharge bin, an internal discharge cavity is provided in the discharge bin, the discharge cavity penetrates the bottom of the discharge bin, a plurality of iron removal rods are provided inside the discharge cavity, a plurality of installation slots communicating with the discharge cavity are provided on one side of the discharge bin, a plurality of scrap removal rings are provided on one side inside the discharge cavity, a scrap removal cavity is provided inside the scrap removal ring, a plurality of installation slots are respectively connected to the scrap removal cavities of a plurality of scrap removal rings, the plurality of iron removal rods are in sliding fit with the scrap removal cavities of a plurality of scrap removal rings, so that one end of the plurality of iron removal rods penetrates through the plurality of installation slots, a plurality of setting grooves are provided inside the scrap removal ring, a scrap removal spring is provided inside the setting groove, a scrap removal block is provided at one end of the scrap removal spring, and the scrap removal block is located in the scrap removal cavity, so that the scrap removal block is in contact with the adjacent iron removal rod.

[0007] When the iron removal rod adsorbs a large amount of impurities, the operator pulls one end of the iron removal rod, the impurity scraping spring is compressed due to the elasticity of the impurity scraping spring and the resistance of the impurity scraping block to the iron removal rod, and the impurity scraping spring releases energy when the iron removal rod moves along the impurity scraping cavity, so that the impurity scraping block is pushed to tightly adhere to the surface of the iron removal rod, and the impurity scraping block scrapes the impurities from the surface of the iron removal rod, so that the iron removal rod is simultaneously disassembled and cleaned, and the cleaning process of the iron removal rod becomes more efficient and convenient, and the labor intensity of manual cleaning is reduced.

[0008] Further, in the present application, a plurality of limiting slots are formed on the other side of the interior of the discharge cavity, and the plurality of limiting slots are respectively directed to the plurality of mounting slots, and the other end of the plurality of iron removal rods is inserted into the plurality of limiting slots.

[0009] When the iron removal rod is cleaned, the iron removal rod is inserted into the interior of the discharge cavity through the mounting slot, so that the other end of the iron removal rod is inserted into the limiting slot, and the position of the iron removal rod in the discharge cavity is fixed through the insertion of the limiting slot, so that vibration or deviation that may occur when the glass powder flows is reduced, and the stability of the iron removal is improved.

[0010] Further, in the present application, a plurality of mounting rings are arranged on one side of the interior of the discharge cavity, a connecting slot is formed on one side of the impurity scraping ring, the connecting slot is matched with the shape of the mounting ring, and the connecting slot is threadedly connected with the adjacent mounting ring.

[0011] The impurity scraping spring may be fatigued under the condition of repeatedly bearing load for a long time, so that the material performance is reduced, and finally the impurity scraping spring may be broken. Therefore, when the impurity scraping spring is damaged, the design that the connecting slot is threadedly connected with the adjacent mounting ring makes the impurity scraping ring convenient to replace, so that the damaged impurity scraping spring is replaced.

[0012] Further, in the present application, a first mounting column is arranged on one side of the impurity scraping block, first clamping protrusions are arranged on both sides of the first mounting column, one end of the impurity scraping spring is inserted into the first mounting column, so that the first clamping protrusions on both sides of the first mounting column are clamped in the interior of one end of the impurity scraping spring, a second mounting column is arranged in the setting slot, second clamping protrusions are arranged on both sides of the second mounting column, and the other end of the impurity scraping spring is inserted into the second mounting column, so that the second clamping protrusions on both sides of the second mounting column are clamped in the interior of the other end of the impurity scraping spring.

[0013] Further, in the present application, the shape of the impurity scraping block is arc-shaped, and the recessed surface of the impurity scraping block is directed to the iron removal rod.

[0014] Further, in the application, one end of the iron-removing rod is provided with a mounting seat, the mounting seat is located outside the discharge bin, one side of the discharge bin is provided with a fixed plate, the fixed plate is located above the mounting seat, a plurality of first fixed insertion holes are formed in the inside of the fixed plate, a second fixed insertion hole is formed in one side of the mounting seat, a first fixed insertion pin is arranged in the first fixed insertion hole and is inserted into the second fixed insertion hole.

[0015] Further, in the application, one side of the mounting seat is provided with a material taking handle, the material taking handle is in the shape of n.

[0016] Further, in the application, the bottom of the discharge bin is provided with a detachable material receiving seat, a material receiving cavity is formed in the top of the material receiving seat, and the material receiving cavity is communicated with the discharge cavity.

[0017] Further, in the application, the top of the material receiving seat is provided with a plurality of connecting insertion columns, and the bottom of the discharge bin is provided with a plurality of connecting insertion slots, and the connecting insertion columns are respectively inserted into the connecting insertion slots.

[0018] Further, in the application, a third fixed insertion hole is formed in one side of the connecting insertion column, a plurality of fourth fixed insertion holes are formed in the outside of the discharge bin, the fourth fixed insertion holes are communicated with adjacent connecting insertion slots, a second fixed insertion pin is arranged in the fourth fixed insertion hole and is inserted into the third fixed insertion hole.

[0019] The utility model has the following beneficial effects:

[0020] The iron-removing rod is used for adsorbing impurities from the glass powder in the discharge cavity, when the iron-removing rod adsorbs a large amount of impurities, an operator pulls one end of the iron-removing rod, the scraping spring is compressed due to the elasticity of the scraping spring and the contact between the scraping block and the iron-removing rod, the scraping spring releases energy when the iron-removing rod moves along the scraping cavity, the scraping block is pushed to tightly adhere to the surface of the iron-removing rod, the impurities are scraped off from the surface of the iron-removing rod by the scraping block, the iron-removing rod is simultaneously disassembled and cleaned, the cleaning process of the iron-removing rod is more efficient and convenient, and the labor intensity of manual cleaning is reduced. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 It is a structural schematic view of the utility model.

[0022] Figure 2 It is a structural schematic view of the material receiving seat of the utility model.

[0023] Figure 3 It is a structural schematic view of the connecting insertion column of the utility model.

[0024] Figure 4Is the structure schematic diagram of the iron bar removing device of the utility model.

[0025] Figure 5 Is the structure schematic diagram of the discharge cavity of the utility model.

[0026] Figure 6 Is the structure schematic diagram of the scrap removing ring of the utility model.

[0027] Figure 7 Is the structure schematic diagram of the scrap removing block of the utility model.

[0028] Figure 8 Is the structure schematic diagram of the scrap removing spring of the utility model.

[0029] Among them, the sign:

[0030] 1, discharge bin;2, discharge cavity;3, iron bar removing device;4, material receiving seat;5, connecting column;6, third fixed jack;7, connecting slot;8, fourth fixed jack;9, second fixed bolt;10, limiting slot;11, installation groove;12, mounting seat;13, material taking handle;14, fixed plate;15, first fixed jack;16, second fixed jack;17, first fixed bolt;18, material receiving cavity;19, mounting ring;20, scrap removing ring;21, scrap removing cavity;22, connecting groove;23, setting groove;24, scrap removing block;25, scrap removing spring;26, first mounting column;27, first clamping convex;28, second mounting column;29, second clamping convex. DETAILED DESCRIPTION

[0031] The embodiments of the utility model are described in detail below, the examples of the embodiments are shown in the drawings, wherein the same or similar reference signs represent the same or similar elements or elements with the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary, only for explaining the utility model, and cannot be understood as the limitation of the utility model.

[0032] In the description of this utility model, it should be understood that the terms "center," "longitudinal," "lateral," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," and "counterclockwise," etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the accompanying drawings and are only for the convenience of describing this utility model and simplifying the description. They do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, features defined with "first" and "second" may explicitly or implicitly include one or more of the stated features. In the description of this utility model, "a plurality of" means two or more, unless otherwise explicitly specified.

[0033] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection, an electrical connection, or a connection that allows for communication; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0034] Reference Figures 1-8 In some specific embodiments, an iron removal device for a glass powder discharge hopper includes a discharge hopper 1, a discharge cavity 2 extending through the bottom of the discharge hopper 1, and multiple iron removal rods 3 inside the discharge cavity 2. Multiple mounting grooves 11 communicating with the discharge cavity 2 are provided on one side of the discharge hopper 1. Multiple scraping rings 20 are provided on one side of the discharge cavity 2, and scraping cavities 21 are provided inside each scraping ring 20. The mounting grooves 11 communicate with the scraping cavities 21 of the multiple scraping rings 20. The multiple iron removal rods 3 slide in cooperation with the scraping cavities 21 of the multiple scraping rings 20, allowing one end of each iron removal rod 3 to pass through the mounting grooves 11. Multiple setting grooves 23 are provided inside the scraping rings 20, and scraping springs 25 are provided inside each setting groove 23. A scraping block 24 is provided at one end of each scraping spring 25, and the scraping block 24 is located in the scraping cavity 21, causing the scraping block 24 to abut against the adjacent iron removal rods 3.

[0035] Through the technical scheme, the iron removal rod 3 adsorbs impurities from the glass powder passing through the discharging cavity 2, when the iron removal rod 3 adsorbs a large amount of impurities, an operator pulls one end of the iron removal rod 3, because the impurity scraping spring 25 is elastic and the impurity scraping block 24 is in contact with the iron removal rod 3, the impurity scraping spring 25 is compressed, when the iron removal rod 3 moves along the impurity scraping cavity 21, the impurity scraping spring 25 releases energy and pushes the impurity scraping block 24 to tightly adhere to the surface of the iron removal rod 3, so that the impurity scraping block 24 scrapes the impurities from the surface of the iron removal rod 3, thereby enabling the iron removal rod 3 to be simultaneously disassembled and cleaned, and the cleaning process of the iron removal rod 3 becomes more efficient and convenient, and the labor intensity of manual cleaning is reduced.

[0036] In addition, the scraped impurities will fall into the bottom of the discharging bin 1, in order to avoid the impurities falling together with the glass powder, it is usually necessary to stop the equipment connected with the discharging bin 1 to avoid the glass powder falling during the collection of the impurities, and then a detachable collection device is arranged at the bottom of the discharging bin 1 to facilitate the collection of the falling impurities.

[0037] Referring to Figure 4 In some specific embodiments, a plurality of limiting slots 10 are formed on the other side of the interior of the discharging cavity 2, the plurality of limiting slots 10 are respectively directed to the plurality of mounting slots 11, and the other end of the plurality of iron removal rods 3 is inserted into the plurality of limiting slots 10.

[0038] Through the technical scheme, when the impurities of the iron removal rod 3 are cleaned, the iron removal rod 3 is inserted into the interior of the discharging cavity 2 through the mounting slot 11, so that the other end of the iron removal rod 3 is inserted into the limiting slot 10, and the position of the iron removal rod 3 in the discharging cavity 2 is limited through the insertion of the limiting slot 10, thereby reducing the vibration or deviation that may occur when the glass powder flows, and thereby improving the stability of the iron removal.

[0039] Referring to Figures 7-8 In some specific embodiments, a plurality of mounting rings 19 are arranged on one side of the interior of the discharging cavity 2, a connecting slot 22 is formed on one side of the impurity scraping ring 20, the connecting slot 22 is matched with the shape of the mounting ring 19, and the connecting slot 22 is threadedly connected with the adjacent mounting ring 19.

[0040] Through the technical scheme, the impurity scraping spring 25 will be fatigued under the condition of repeatedly bearing load for a long time, which will cause the material performance to decrease and eventually cause the impurity scraping spring 25 to be broken, therefore, when the impurity scraping spring 25 is damaged, the design that the connecting slot 22 is threadedly connected with the adjacent mounting ring 19 enables the impurity scraping ring 20 to be easily replaced, thereby facilitating the replacement of the damaged impurity scraping spring 25.

[0041] Referring to Figures 7-8In some specific embodiments, one side of the scrap removal block 24 is provided with a first mounting column 26, and the two sides of the first mounting column 26 are provided with first clamping protrusions 27. The first mounting column 26 is inserted into one end of the scrap removal spring 25, so that the first clamping protrusions 27 on the two sides of the first mounting column 26 are clamped inside the one end of the scrap removal spring 25. The inside of the setting groove 23 is provided with a second mounting column 28, and the two sides of the second mounting column 28 are provided with second clamping protrusions 29. The second mounting column 28 is inserted into the other end of the scrap removal spring 25, so that the second clamping protrusions 29 on the two sides of the second mounting column 28 are clamped inside the other end of the scrap removal spring 25.

[0042] Through the above technical solution, the first clamping protrusions 27 on the two sides of the first mounting column 26 are clamped inside one end of the scrap removal spring 25, and the second clamping protrusions 29 on the two sides of the second mounting column 28 are clamped inside the other end of the scrap removal spring 25. The design of double-end clamping increases the reliability of the connection of the scrap removal spring 25. Even in the case of vibration or impact, the fixed position of the scrap removal spring 25 is not easy to loosen.

[0043] Referring to Figures 6-8 In some specific embodiments, the shape of the scrap removal block 24 is arc-shaped, and the concave surface of the scrap removal block 24 faces the iron removal rod 3.

[0044] Through the above technical solution, since the shape of the iron removal rod 3 is usually cylindrical, the arc-shaped scrap removal block 24 can more effectively fit the surface of the iron removal rod 3. Compared with the flat scrap removal block 24, the arc-shaped design can more thoroughly remove impurities on the iron removal rod 3, improving the cleaning efficiency.

[0045] Referring to Figures 1-5 In some specific embodiments, one end of the iron removal rod 3 is provided with a mounting seat 12, and the mounting seat 12 is located outside the discharge bin 1. One side of the discharge bin 1 is provided with a fixed plate 14, and the fixed plate 14 is located above the mounting seat 12. The inside of the fixed plate 14 is provided with a plurality of first fixed insertion holes 15, and one side of the mounting seat 12 is provided with a second fixed insertion hole 16. A first fixed insertion pin 17 is inserted into the first fixed insertion hole 15, and the first fixed insertion pin 17 is inserted into the adjacent second fixed insertion hole 16.

[0046] Through the above technical solution, when the iron removal rod 3 is placed in the discharge cavity 2, the first fixed insertion pin 17 is inserted into the first fixed insertion hole 15, so that the first fixed insertion pin 17 is inserted into the adjacent second fixed insertion hole 16. Through this insertion and locking mechanism, the iron removal rod 3 is firmly fixed in the discharge bin 1. Even in the case of strong vibration or impact, displacement does not occur, thereby improving the stability of the equipment and the safety of the operation.

[0047] Referring to Figures 1-5 In some specific embodiments, one side of the mounting seat 12 is provided with a material taking handle 13, and the material taking handle 13 is n-shaped.

[0048] Through the technical scheme, the n-shaped design can provide better holding feeling, so that the operator is more comfortable when pulling or pushing the iron bar 3, and hand fatigue is reduced.

[0049] Referring to Figures 1-5 In some specific embodiments, the bottom of the discharge bin 1 is provided with a detachable receiving seat 4, and the top of the receiving seat 4 is provided with a receiving cavity 18, which is communicated with the discharge cavity 2.

[0050] Through the technical scheme, when the scrapers 24 scrape impurities and the receiving seat 4 is installed on the discharge bin 1, the impurities will directly fall into the receiving cavity 18 for collection. The concentrated impurities are convenient for subsequent processing and recycling, which can reduce environmental pollution and improve resource utilization.

[0051] Referring to Figures 1-5 In some specific embodiments, the top of the receiving seat 4 is provided with a plurality of connecting columns 5, and the bottom of the discharge bin 1 is provided with a plurality of connecting slots 7, and the plurality of connecting columns 5 are respectively inserted into the plurality of connecting slots 7.

[0052] Through the technical scheme, since the plurality of connecting columns 5 are respectively inserted into the plurality of connecting slots 7, the receiving seat 4 can be quickly installed on the discharge bin 1 without the need for professional tools, thereby improving the installation efficiency of the mounting seat 12.

[0053] Referring to Figures 1-5 In some specific embodiments, one side of the connecting column 5 is provided with a third fixed insertion hole 6, the outside of the discharge bin 1 is provided with a plurality of fourth fixed insertion holes 8, the fourth fixed insertion holes 8 are communicated with adjacent connecting slots 7, a second fixed insertion pin 9 is arranged in the fourth fixed insertion hole 8, and the second fixed insertion pin 9 is inserted into the adjacent third fixed insertion hole 6.

[0054] Through the technical scheme, when the plurality of connecting columns 5 are respectively inserted into the plurality of connecting slots 7, the second fixed insertion pin 9 passes through the fourth fixed insertion hole 8 and is inserted into the third fixed insertion hole 6, thereby fixing the position of the mounting seat 12 and avoiding the mounting seat 12 from being separated from the discharge bin 1 when receiving impurities.

[0055] It is to be understood that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting; it is not intended to be used to limit the scope of the present application. Unless defined otherwise, all technical and scientific terms used herein have the same meanings as commonly understood by one of ordinary skill in the art to which this application belongs. The singular forms "a," "an," and "the" include plural referents unless the context clearly dictates otherwise.

Claims

1. An iron removal device for a glass powder discharge bin, comprising a discharge bin, an internal part of the discharge bin is provided with a discharge cavity, the discharge cavity penetrates through the bottom of the discharge bin, and the internal part of the discharge cavity is provided with a plurality of iron removal rods, characterized in that, A plurality of installation grooves are formed in one side of the discharge cavity, a plurality of scrapers are arranged in one side of the discharge cavity, a plurality of scraper cavities are formed in the scrapers, the installation grooves are connected with the scraper cavities, and the plurality of iron-removing rods are slidably connected with the scraper cavities.

2. The iron removal device for a glass powder discharge bin according to claim 1, characterized in that, A plurality of limiting insertion grooves are formed in the other side of the discharge cavity, the limiting insertion grooves are respectively directed to the installation grooves, and the other ends of the iron-removing rods are inserted into the limiting insertion grooves.

3. The iron removal device for a glass powder discharge bin according to claim 1, characterized in that, A plurality of installation rings are arranged in one side of the discharge cavity, a connecting groove is formed in one side of the scraper, the connecting groove is matched with the installation ring, and the connecting groove is threadedly connected with the adjacent installation ring.

4. The iron removal device for a glass powder discharge bin according to claim 1, characterized in that, A first installation column is arranged on one side of the scraper, a first clamping convex is arranged on both sides of the first installation column, the first installation column is inserted into one end of the scraper spring, the first clamping convex on both sides of the first installation column is clamped in one end of the scraper spring, a second installation column is arranged in the setting groove, a second clamping convex is arranged on both sides of the second installation column, the second installation column is inserted into the other end of the scraper spring, and the second clamping convex on both sides of the second installation column is clamped in the other end of the scraper spring.

5. The iron removal device for a glass powder discharge bin according to claim 1, characterized in that, The scraper is in an arc shape, and a concave surface of the scraper is directed to the iron-removing rod.

6. The iron removal device for a glass powder discharge bin according to claim 1, characterized in that, One end of the iron-removing rod is provided with a mounting seat, the mounting seat is arranged outside the discharge bin, one side of the discharge bin is provided with a fixed plate, the fixed plate is arranged above the mounting seat, a plurality of first fixed insertion holes are formed in the fixed plate, a second fixed insertion hole is formed in one side of the mounting seat, a first fixed insertion pin is arranged in the first fixed insertion hole, and the first fixed insertion pin is inserted into the adjacent second fixed insertion hole.

7. The device for removing iron from a glass powder discharge bin according to claim 6, characterized in that, One side of the mounting seat is provided with a material taking handle, and the material taking handle is in an n shape.

8. The iron removal device for a glass powder discharge bin according to claim 1, characterized in that, A detachable material receiving seat is arranged at the bottom of the discharge bin, a material receiving cavity is formed in the top of the material receiving seat, and the material receiving cavity is connected with the discharge cavity.

9. The device for removing iron from a glass powder discharge bin according to claim 8, characterized in that, A plurality of connecting insertion columns are arranged at the top of the material receiving seat, a plurality of connecting insertion grooves are formed in the bottom of the discharge bin, and the connecting insertion columns are respectively inserted into the connecting insertion grooves.

10. The device for removing iron from a glass powder discharge bin according to claim 9, characterized in that, A third fixed insertion hole is formed in one side of the connecting insertion column, a plurality of fourth fixed insertion holes are formed in the outside of the discharge bin, the fourth fixed insertion holes are connected with the adjacent connecting insertion grooves, a second fixed insertion pin is arranged in the fourth fixed insertion hole, and the second fixed insertion pin is inserted into the adjacent third fixed insertion hole.