Coil platform scrap iron cleaning device

By designing a furnace iron filing cleaning device with stainless steel adsorption seat and magnet block combined with guide column pin shaft structure, the problem of difficult iron filings on the furnace surface is solved, automatic cleaning and iron filing recycling are realized, and labor costs are reduced.

CN223210103UActive Publication Date: 2025-08-12ZHANGJIAGANG HAILU ANNULAR FORGINGS
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Patent Information

Application Number
CN202421975837.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-15
Publication Date
2025-08-12
Estimated Expiration
2034-08-15

AI Technical Summary

Technical Problem

In the prior art, iron oxide chips on the surface of the furnace table are difficult to clean, especially iron chips falling into the gaps of refractory bricks, resulting in high manual cleaning costs.

Method used

A furnace iron filing cleaning device is designed, including stainless steel adsorption seat, iron plate and magnet block. The iron filings are absorbed by magnetic force, and the iron filings are automatically disengaged and collected through the guide column and pin structure, and automated cleaning is achieved in combination with the iron filing recycling box.

Benefits of technology

Automatic cleaning of iron filings in the gaps of refractory bricks is achieved, reducing labor costs and improving cleaning efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223210103U_ABST
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Abstract

The utility model discloses a coil base scrap iron cleaning device which comprises a stainless steel adsorption seat, an iron plate and a plurality of magnet blocks, hanging columns are arranged at the four corners of the stainless steel adsorption seat respectively, a hanging ring is arranged at the top of each hanging column, the iron plate is placed on the stainless steel adsorption seat, the magnet blocks are adsorbed on the iron plate at intervals, and under the action of magnetic force, the iron plate is separated from the magnet blocks. Guide columns are arranged at the four corners of the iron plate in a penetrating mode respectively, each guide column is correspondingly provided with a pin shaft, a blocking boss is arranged on the top of each guide column, each guide column is provided with an inner pin hole, an outer pin hole is formed in the position, on one side of each guide column, of the iron plate, and when the guide columns move downwards to the blocking bosses to abut against the iron plate, the inner pin holes are inserted into the outer pin holes. The inner pin holes and the outer pin holes can be aligned internally and externally, so that the corresponding pin shafts can be inserted into the inner pin holes and the outer pin holes. According to the coil base scrap iron cleaning device, scrap iron on a coil base can be adsorbed and cleaned through magnetic force, so that the scrap iron between refractory bricks can be easily cleaned, and the labor cost can be greatly reduced.
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Description

Technical Field

[0001] The utility model relates to the field of ring forging production, in particular to a furnace table iron scrap cleaning device. Background Art

[0002] During heat treatment of ring forgings, oxidized iron chips on the ring forgings will fall onto the furnace table. In order to ensure the smoothness of the furnace table surface, the oxidized iron chips on the furnace table surface need to be cleaned frequently. Usually, workers use brooms to sweep the iron chips. However, the furnace table surface is paved with refractory bricks, and the iron chips are easy to fall into the gaps between the refractory bricks, which makes it difficult to clean. Utility Model Content

[0003] The technical problem to be solved by the utility model is to provide a furnace iron scrap cleaning device which is convenient for cleaning the iron scraps on the surface of the furnace.

[0004] In order to solve the above problems, the technical solution adopted by the utility model is: a furnace iron scrap cleaning device, which is characterized in that it includes: a stainless steel adsorption seat that cannot be adsorbed by magnets, an iron plate, and several magnet blocks. A hanging column is respectively provided on the four corners of the stainless steel adsorption seat, and a hanging ring is provided on the top of each hanging column. The stainless steel adsorption seat can be lifted by the four hanging rings, and the iron plate is placed on the stainless steel adsorption seat. The various magnet blocks are adsorbed on the upper surface of the iron plate at intervals. The iron plate is used to increase the magnetic attraction area. Under the magnetic force of each magnet block, the iron scraps on the furnace can be magnetically attracted to the lower surface of the stainless steel adsorption seat. A guide column is respectively provided on the four corners of the iron plate, and each guide column is correspondingly equipped with a pin shaft. The top of each guide column is provided with a A blocking boss is provided to prevent the guide column from passing downward through the iron plate. An inner pin hole is provided on each guide column, and an outer pin hole is provided on the iron plate on one side of each guide column. When the guide column is lowered to the blocking boss and abuts against the iron plate, the inner pin hole and the outer pin hole can be aligned inside and outside, so that the corresponding pin shaft can be inserted into the inner pin hole and the outer pin hole, so that the guide column and the iron plate can be connected and fixed. At this time, when the stainless steel adsorption seat is lowered, the four guide columns can support the iron plate and make the iron plate and the stainless steel adsorption seat move away from each other, so that the iron filings adsorbed on the lower surface of the stainless steel adsorption seat can fall due to the weakening of the magnetic force. After the four pin shafts are pulled out, the four guide columns are not connected and fixed to the iron plate, so that the four guide columns can move upward relative to the iron plate without affecting the magnetic attraction of iron filings by the stainless steel adsorption seat.

[0005] Furthermore, the aforementioned furnace table iron chip cleaning device, wherein: an iron chip recovery box is also provided, and a supporting edge is welded on the inner wall at the entrance of the iron chip recovery box. The stainless steel adsorption seat can be placed in the iron chip recovery box and can be supported by the supporting edge. When the stainless steel adsorption seat is placed into the iron chip recovery box, the four guide columns can be placed on the supporting edges in the iron chip recovery box respectively. As the stainless steel adsorption seat continues to be lowered, the four guide columns can support the iron plate and make the iron plate and the stainless steel adsorption seat move away from each other, so that the iron chips adsorbed on the lower surface of the stainless steel adsorption seat can fall into the iron chip recovery box due to the weakening of the magnetic force.

[0006] Furthermore, in the aforementioned furnace iron scrap cleaning device, a magnet positioning edge is welded on the iron plate for each magnet block.

[0007] Furthermore, in the aforementioned furnace iron scrap cleaning device, lifting ears are respectively provided on both ends of the iron plate so that the iron plate can be lifted.

[0008] The advantages of the utility model are as follows: the furnace table iron filings cleaning device can absorb and clean the iron filings on the furnace table by magnetic force, so that the iron filings between the refractory bricks can also be easily cleaned away, thereby greatly reducing labor costs. BRIEF DESCRIPTION OF THE DRAWINGS

[0009] Figure 1 The utility model is a structural schematic diagram of the furnace iron chip cleaning device. DETAILED DESCRIPTION

[0010] The present invention will be described in further detail below with reference to specific embodiments and accompanying drawings.

[0011] like Figure 1As shown, the furnace table iron filings cleaning device includes: a stainless steel adsorption seat 1 that cannot be adsorbed by magnets, an iron plate 2, and several magnet blocks 3. A hanging column 4 is respectively provided on the four corners of the stainless steel adsorption seat 1, and a hanging ring 5 is provided on the top of each hanging column 4. The stainless steel adsorption seat 1 can be lifted by the four hanging rings 5, and the iron plate 2 is placed on the stainless steel adsorption seat 1. The various magnet blocks 3 are adsorbed on the upper surface of the iron plate 2 at intervals. The iron plate 2 is used to increase the magnetic attraction area. Under the magnetic force of each magnet block 3, the iron filings on the furnace table can be magnetically attracted to the lower surface of the stainless steel adsorption seat 1. A guide column 6 is respectively provided on the four corners of the iron plate 2. Each guide column 6 is correspondingly equipped with a pin shaft 8. The top of each guide column 6 is provided with a device that can prevent the guide column 6 from passing through the iron plate downward. 2, each guide column 6 is provided with an inner pin hole, and the iron plate 2 on one side of each guide column 6 is provided with an outer pin hole. When the guide column 6 moves downward to the blocking boss 7 and abuts against the iron plate 2, the inner pin hole and the outer pin hole can be aligned inside and outside, so that the corresponding pin shaft 8 can be inserted into the inner pin hole and the outer pin hole, so that the guide column 6 and the iron plate 2 can be connected and fixed. At this time, when the stainless steel adsorption seat 1 is lowered, the four guide columns 6 can support the iron plate 2 and make the iron plate 2 and the stainless steel adsorption seat 1 move away from each other, so that the iron filings adsorbed on the lower surface of the stainless steel adsorption seat 1 can fall due to the weakening of the magnetic force. After the four pin shafts 8 are pulled out, the four guide columns 6 are not connected and fixed to the iron plate 2, so that the four guide columns 6 can move upward relative to the iron plate 2 without affecting the magnetic attraction of iron filings by the stainless steel adsorption seat 1.

[0012] In this embodiment, an iron chip recovery box 9 is also provided, and a support edge 10 is welded on the inner wall at the entrance of the iron chip recovery box 9. The stainless steel adsorption seat 1 can be placed in the iron chip recovery box 9 and can be supported by the support edge 10. When the stainless steel adsorption seat 1 is placed into the iron chip recovery box 9, the four guide columns 6 can be placed on the support edges 10 in the iron chip recovery box 9 respectively. As the stainless steel adsorption seat 1 continues to be lowered, the four guide columns 6 can support the iron plate 2 and make the iron plate 2 and the stainless steel adsorption seat 1 move away from each other, so that the iron chips adsorbed on the lower surface of the stainless steel adsorption seat 1 can fall into the iron chip recovery box 9 due to the weakening of the magnetic force.

[0013] A magnet positioning edge 11 is welded to each magnet block 3 on the iron plate 2. Lifting ears 12 are provided on both ends of the iron plate 2 so that the iron plate 2 can be lifted.

Claims

1. The furnace iron scrap cleaning device is characterized by: include: A stainless steel adsorption seat, an iron plate, and several magnet blocks that cannot be adsorbed by magnets. A hanging column is set on each of the four corners of the stainless steel adsorption seat. A hanging ring is set on the top of each hanging column. The stainless steel adsorption seat can be lifted by the four hanging rings. The iron plate is placed on the stainless steel adsorption seat. The various magnet blocks are adsorbed on the upper surface of the iron plate at intervals. The iron plate is used to increase the magnetic attraction area. Under the magnetic force of each magnet block, the iron filings on the furnace can be magnetically attracted to the lower surface of the stainless steel adsorption seat. A guide column is respectively provided on the four corners of the iron plate. Each guide column is equipped with a corresponding pin shaft. The top of each guide column is provided with a blocking boss that can prevent the guide column from passing through the iron plate downward. An inner pin hole is provided on the guide column, and an outer pin hole is provided on the iron plate on one side of each guide column. When the guide column is lowered to the blocking boss and abuts against the iron plate, the inner pin hole and the outer pin hole can be aligned inside and outside, so that the corresponding pin shaft can be inserted into the inner pin hole and the outer pin hole, so that the guide column and the iron plate can be connected and fixed. At this time, when the stainless steel adsorption seat is lowered, the four guide columns can support the iron plate and make the iron plate and the stainless steel adsorption seat move away from each other, so that the iron filings adsorbed on the lower surface of the stainless steel adsorption seat can fall due to the weakening of the magnetic force. After the four pin shafts are pulled out, the four guide columns are not connected and fixed to the iron plate, so that the four guide columns can move upward relative to the iron plate without affecting the magnetic attraction of iron filings by the stainless steel adsorption seat.

2. The furnace iron scrap cleaning device according to claim 1, characterized in that: An iron chip recovery box is also provided. A supporting edge is welded on the inner wall at the entrance of the iron chip recovery box. The stainless steel adsorption seat can be placed in the iron chip recovery box and can be supported by the supporting edge. When the stainless steel adsorption seat is placed in the iron chip recovery box, the four guide pillars can be placed on the supporting edges in the iron chip recovery box respectively. As the stainless steel adsorption seat continues to be lowered, the four guide pillars can support the iron plate and make the iron plate and the stainless steel adsorption seat move away from each other, so that the iron chips adsorbed on the lower surface of the stainless steel adsorption seat can fall into the iron chip recovery box due to the weakening of the magnetic force.

3. The furnace iron scrap cleaning device according to claim 1, characterized in that: A magnet positioning edge is welded on the iron plate for each magnet block.

4. The furnace iron scrap cleaning device according to claim 1, characterized in that: Lifting ears are provided on both ends of the iron plate so that the iron plate can be lifted.