High-temperature rapid phosphorus removal equipment

By introducing slots, plug rods and spring structures into the phosphorus removal equipment, the cumbersome cleaning problems caused by the filter frame are solved, and the rapid disassembly and installation of the filter part is realized, which improves the cleaning efficiency and use effect of the equipment.

CN223113835UActive Publication Date: 2025-07-18JIANGSU YINGLIU MACHINERY MFG CO LTD
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Patent Information

Application Number
CN202422036762.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-22
Publication Date
2025-07-18
Estimated Expiration
2034-08-22

AI Technical Summary

Technical Problem

The filter frames of existing phosphorus removal equipment are prone to clogging after long-term use, resulting in cumbersome cleaning and affecting the operation efficiency and equipment usage effect.

Method used

A high-temperature rapid phosphorus removal device is designed. By setting a slot and a plug-in structure between the filter part and the connecting part, the rapid disassembly and installation of the filter part is achieved by using the cooperation of springs and plucks, the cleaning process is simplified, and the stability is increased through the rubber ring and the replacement cost is reduced.

Benefits of technology

It improves the cleaning and replacement efficiency of the filter part, simplifies the operation process, and improves the use effect and reliability of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of dephosphorization equipment, in particular to high-temperature rapid dephosphorization equipment which comprises a dephosphorization equipment body, a discharging frame is installed on the lower portion of the dephosphorization equipment body, a filtering part is connected to the inner wall of the discharging frame in an inserted mode, and a connecting part is installed on the rear side of the filtering part. First inserting grooves are formed in the left side and the right side of the inner wall of the connecting part correspondingly, and mounting blocks are inserted into the inner walls of the first inserting grooves; the device has the beneficial effects that two shifting blocks are extruded to drive two inserting rods to move in opposite directions, so that one ends of the two inserting rods are separated from clamping grooves, limitation on a connecting part is relieved, an operator can conveniently clean a filtering part, the cleaning efficiency can be improved, and after cleaning is completed, the two inserting rods are driven by elastic force of a spring to move in opposite directions; and one end of the connecting part is always inserted into the inner wall of the clamping groove, so that the connecting part and the discharging frame are fixed, subsequent use and cleaning are facilitated, and the use effect of the dephosphorization equipment can be improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of phosphorus removal equipment, in particular to a high-temperature and rapid phosphorus removal equipment. Background Art

[0002] The phosphorus removal equipment is a device specifically used for removing the scale on the surface of steel billets, and is widely used in the iron and steel and forging industries. During the production process of hot-rolled steel, scale will be generated on the surface of the steel billet when it comes out of the furnace. Therefore, through the phosphorus removal equipment, the high-pressure water flow generated by the high-pressure pump forms a high-speed jet through the nozzle and strikes the surface of the steel billet. Under the erosion and thermal explosion effect of the high-pressure water jet, the scale on the surface of the steel billet is quickly peeled off, so as to achieve the purpose of efficient phosphorus removal. And when the high-pressure water jet contacts the surface of the high-temperature steel billet, part of the water will immediately evaporate, producing an effect similar to blasting, further strengthening the peeling effect.

[0003] In the prior art, when the traditional phosphorus removal equipment is in use, the scale on the surface of the high-temperature steel billet is removed by high-pressure water, and then through the setting of a sewage outlet, the waste water and iron sheet debris are directly discharged without filtering and collecting the waste water, resulting in the waste of water resources. And when the existing phosphorus removal equipment is in use, after filtering the debris in the waste water through the setting of a filtering mechanism, it is recycled. Although it can reduce the waste of water resources, after a long time of filtering, more debris will accumulate in its filter frame and block the filter frame, thus causing the phenomenon of filter frame blockage. At this time, since its filter frame is installed on the inner wall of the discharge frame through bolts, when cleaning, the operator needs to use tools to disassemble the bolts before cleaning, thus affecting the cleaning efficiency of the operator and reducing the use effect of the phosphorus removal equipment.

[0004] Therefore, a high-temperature and rapid phosphorus removal equipment is needed to solve the problem that the disassembly operation of the filter frame of the existing phosphorus removal equipment is relatively cumbersome and affects the cleaning efficiency of the operator. Summary of the Utility Model

[0005] The purpose of the utility model is to provide a high-temperature and rapid phosphorus removal equipment to solve the problems put forward in the above background art.

[0006] To achieve the above purpose, the utility model provides the following technical solution: A high-temperature and rapid phosphorus removal equipment, including a phosphorus removal equipment body, a discharge frame is installed at the lower part of the phosphorus removal equipment body, a filtering part is inserted into the inner wall of the discharge frame, a connecting part is installed at the rear side of the filtering part, slot one is opened on the left and right sides of the inner wall of the connecting part, a mounting block is inserted into the inner wall of the slot one, and both the rear sides of the mounting blocks on the left and right sides are installed with the connecting part, and the front sides are all in contact with the filtering part.

[0007] Preferably, two sliding grooves are formed in the inner rear side of the connecting part. A limiting plate is installed on the inner wall of the sliding groove. A plug rod is inserted in the middle of the limiting plate. A spring is sleeved on the outer side of the plug rod. A dial block is installed at the adjacent ends of the left and right plug rods. A clamping groove is formed in the inner wall at the rear side of the first slot.

[0008] Preferably, the separated ends of the left and right plug rods penetrate through the connecting part and are inserted into the inner wall of the clamping groove. One end of the spring is installed between the limiting plate and the other end is installed between the inner wall of the sliding groove. The left and right dial blocks are both slidably connected to the rear side of the connecting part.

[0009] Preferably, second slots are formed on both the left and right sides of the filtering part. A plugging block is inserted into the inner wall of the second slot. The separated sides of the left and right plugging blocks are both installed with the mounting blocks.

[0010] Preferably, a mounting groove is formed on the front side of the connecting part. A fixing plate is inserted into the inner wall of the mounting groove. A rubber ring is installed on the outer side of the fixing plate. Two moving grooves are formed on the front side of the filtering part. A moving block is installed on the inner wall of the moving groove. The separated sides of the left and right moving blocks are both installed with a clamping head. A clamping groove is formed in the front part of the plugging block.

[0011] Preferably, it is installed between the fixing plate and the rear side of the filtering part. The separated ends of the left and right clamping heads penetrate through the moving groove and are inserted into the inner wall of the clamping groove.

[0012] Preferably, the left and right mounting blocks are symmetrically arranged. The connecting part is inserted into the inner wall at the rear side of the discharge frame.

[0013] Compared with the prior art, the beneficial effects of the present utility model are:

[0014] The high-temperature rapid dephosphorization equipment proposed by the present utility model drives the two plug rods to move towards each other by squeezing the two dial blocks, so that one end of the plug rod disengages from the clamping groove, thereby releasing the restriction on the connecting part, facilitating the operator to clean the filtering part and improving the cleaning efficiency. After cleaning, the elastic force of the spring is used to drive the two plug rods to move away from each other, so that one end of the plug rod is always inserted into the inner wall of the clamping groove, thereby fixing the connecting part and the discharge frame, facilitating subsequent use and cleaning, and improving the use effect of the dephosphorization equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 is a perspective view of the present utility model;

[0016] Figure 2 is a rear view of the present utility model;

[0017] Figure 3 is a schematic structural view of the connecting part of the present utility model;

[0018] Figure 4 This is a schematic diagram of the discharge frame structure of the present utility model;

[0019] Figure 5 is Figure 4 the sectional view of the structure at A-A in

[0020] Figure 6 This is a schematic diagram of the clamping groove structure of the present utility model;

[0021] Figure 7 This is a schematic diagram of the plug-in block structure of the present utility model;

[0022] Figure 8 This is a schematic diagram of the filter part structure of the present utility model;

[0023] Figure 9 is Figure 8 the sectional view of the structure at B-B in

[0024] Figure 10 is Figure 9 the enlarged view of the structure at C in

[0025] Figure 11 This is a schematic diagram of the fixing plate structure of the present utility model.

[0026] In the figure: 1. Phosphorus removal equipment body; 2. Discharge frame; 3. Connection part; 4. Slot 1; 5. Filter part; 6. Installation block; 7. Plug rod; 8. Spring; 9. Dial block; 10. Slide groove; 11. Limiting plate; 12. Clamping groove; 13. Installation groove; 14. Plug-in block; 15. Card slot; 16. Moving groove; 17. Card head; 18. Moving block; 19. Fixing plate; 20. Rubber ring; 21. Slot 2. Specific embodiments

[0027] In order to clearly and completely describe the purpose, technical solution of the present utility model and make the advantages more clear, the following further details the embodiments of the present utility model with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are part of the embodiments of the present utility model, rather than all of the embodiments, and are only used to explain the embodiments of the present utility model, not to limit the embodiments of the present utility model. All other embodiments obtained by those of ordinary skill in the art without creative work fall within the protection scope of the present utility model.

[0028] Embodiment 1: Please refer to Figures 1 to 11, the present utility model provides a technical solution: a high-temperature rapid dephosphorization device, including a dephosphorization device body 1. A discharge frame 2 is installed at the lower part of the dephosphorization device body 1. A filtering part 5 is inserted into the inner wall of the discharge frame 2. A connecting part 3 is installed at the rear side of the filtering part 5. On both left and right sides of the inner wall of the connecting part 3, a first slot 4 is opened. An installation block 6 is inserted into the inner wall of the first slot 4. On the rear sides of the installation blocks 6 on both left and right sides, they are installed with the connecting part 3, and on the front sides, they are all in contact with the filtering part 5; the installation blocks 6 on both left and right sides are symmetrically arranged. The connecting part 3 is inserted into the rear side inner wall of the discharge frame 2. Thus, when the connecting part 3 is pulled backward, the filtering part 5 is synchronously driven to disengage from the discharge frame 2, so as to facilitate its cleaning, and make the two set in modules, so as to separately replace the filtering part 5 subsequently, reducing the use cost.

[0029] First, pull the connecting part 3 backward, and drive the installation blocks 6 on both of its sides to slide backward along the inner wall of the first slot 4, thereby driving the filtering part 5 to disengage from the discharge frame 2. At this time, the filtering part 5 can be cleaned. After completion, push the connecting part 3 to drive the installation blocks 6 on both of its sides to be inserted into the inner wall of the first slot 4, and at the same time drive the connecting part 3 to be inserted into the rear side inner wall of the discharge frame 2, thus facilitating the operator to clean the filtering part 5 and improving the cleaning efficiency.

[0030] Embodiment 2: On the basis of Embodiment 1, in order to realize clamping between the connecting part 3 and the discharge frame 2 for subsequent disassembly and cleaning, two chutes 10 are opened at the rear side inside the connecting part 3. A limiting plate 11 is installed on the inner wall of the chute 10, and the limiting plate 11 plays a limiting role to prevent the insertion rod 7 from being pushed out of the chute 10. An insertion rod 7 is inserted into the middle of the limiting plate 11. A spring 8 is sleeved on the outer side of the insertion rod 7. On the adjacent ends of the insertion rods 7 on both left and right sides, a dial block 9 is installed. A clamping groove 12 is opened at the rear side inner wall of the first slot 4; the separated ends of the insertion rods 7 on both left and right sides penetrate through the connecting part 3 and are inserted into the inner wall of the clamping groove 12. One end of the spring 8 is installed with the limiting plate 11, and the other end is installed with the inner wall of the chute 10. The two dial blocks 9 are both slidably connected to the rear side of the connecting part 3. Thus, by pinching the two dial blocks 9, driving the two limiting plates 11 to move towards each other, and driving the two insertion rods 7 to disengage from the clamping groove 12, it is convenient for the operator to draw out the filtering part 5 for cleaning to improve the cleaning efficiency.

[0031] First, squeeze the two shifting blocks 9 to move them towards each other along the rear side of the connecting part 3, thereby driving the limiting plate 11 to slide along the inner wall of the sliding groove 10. At the same time, drive the two inserting rods 7 to move towards each other, so that one end of them disengages from the inner wall of the clamping groove 12, and squeeze the spring 8 to make it in a compressed state on the inner wall of the sliding groove 10. At this time, the connecting part 3 can be pulled backward, driving the filtering part 5 to disengage from the discharge frame 2. At this time, the filtering part 5 can be cleaned. After completion, reset it, and insert the connecting part 3 into the rear side of the inner wall of the discharge frame 2. At the same time, release the two shifting blocks 9, thereby using the elastic force of the spring 8 to drive the limiting plate 11 to move back to its original position, and drive the two inserting rods 7 to move away from each other, so that one end of them is inserted into the inner wall of the clamping groove 12, thereby clamping the connecting part 3 and the discharge frame 2 together, so that the operator can disassemble and clean without the aid of tools, thereby improving the cleaning efficiency and the use effect of the dephosphorization equipment body 1.

[0032] Embodiment 3: On the basis of Embodiment 2, in order to realize the modular design between the connecting part 3 and the filtering part 5, so as to replace the filtering part 5 separately and reduce the replacement cost, slot two 21 is provided on both the left and right sides of the filtering part 5, and the inner wall of the slot two 21 is inserted with the inserting block 14, and the separating sides of the inserting blocks 14 on both the left and right sides are installed with the mounting blocks 6.

[0033] When used for a long time and the filtering part 5 cannot achieve a good filtering effect, at this time, pinch the two shifting blocks 9, pull the connecting part 3 backward, and drive the filtering part 5 to disengage from the discharge frame 2. Then, pull the filtering part 5 forward, so that the slot two 21 on both sides of it slides forward and disengages from the outside of the inserting block 14. At this time, the filtering part 5 can be replaced. After completion, push the filtering part 5 to slide backward, and make the slot two 21 on both sides of it be inserted into the outside of the inserting block 14, so as to facilitate the separate replacement of the filtering part 5 and reduce the replacement cost.

[0034] Embodiment 4: On the basis of embodiment 3, in order to realize the installation of the filter part 5 and the connecting part 3 together, so as to facilitate the subsequent replacement of the filter part 5, a mounting groove 13 is provided on the front side of the connecting part 3, and a fixing plate 19 is inserted into the inner wall of the mounting groove 13. A rubber ring 20 is installed on the outer side of the fixing plate 19. When the rubber ring 20 is inserted into the inner wall of the mounting groove 13, it is in an extruded deformation state, so that the friction between the filter part 5 and the connecting part 3 is indirectly increased by using the rubber ring 20, thereby improving the stability of its installation. Two movable grooves 16 are provided on the front side of the filter part 5. The movable grooves 16 are provided on the front side of the filter part 5. A moving block 18 is installed on the inner wall of 16, and a clamping head 17 is installed on the separated sides of the moving blocks 18 on the left and right sides. A clamping slot 15 is opened at the front of the plug-in block 14; a fixed plate 19 is installed between the rear side of the filter unit 5, and the separated ends of the clamping heads 17 on the left and right sides pass through the moving slot 16 and are plugged into the inner wall of the clamping slot 15, so that the clamping head 17 can be disengaged from the clamping slot 15 and the moving slot 16 by sliding the moving block 18 on the inner wall of the moving slot 16, thereby releasing the restriction between the connecting portion 3 and the filter unit 5, so that the filter unit 5 can be replaced separately, thereby reducing the cost of replacement.

[0035] When the filter 5 cannot achieve a good filtering effect after long-term use, pinch the two pull blocks 9, pull the connecting part 3 backward, and drive the filter 5 out of the discharge frame 2, then push the two moving blocks 18 to move toward each other along the inner wall of the moving groove 16, and drive the clamping head 17 out of the clamping groove 15, and pull the moving block 18 forward to drive the clamping head 17 out of the moving groove 16. At this time, pull the filter 5 forward to let the slots 21 on both sides slide forward and disengage on the outer side of the plug-in block 14, while driving the fixing plate 19 on the rear side to disengage from the mounting groove 13, and at the same time drive the rubber ring 20 to disengage from the mounting groove 13, and then the filter 5 can be replaced. After completion, the filter 5 Reset, and allow the fixed plate 19 on the rear side to be plugged into the inner wall of the mounting groove 13, and at the same time drive the rubber ring 20 to be plugged into the inner wall of the mounting groove 13, and let it be in an extruded deformation state to increase the friction between the fixed plate 19 and the mounting groove 13. When the two plug-in blocks 14 are fully plugged into the inner wall of the slot 2 21, the previously disassembled moving block 18 is installed to the inner wall of the two moving grooves 16 on the front side of the new filter part 5, and the two moving blocks 18 are moved back to back, driving the clamping head 17 on one side thereof to be plugged into the inner wall of the clamping groove 15, thereby improving the stability of the installation between the filter part 5 and the two plug-in blocks 14, and facilitating the subsequent use when replacing the filter part 5 separately, thereby reducing the cost of replacement.

[0036] During actual use, first squeeze the two dial blocks 9 to move them towards each other along the rear side of the connecting portion 3, thereby driving the limiting plate 11 to slide along the inner wall of the sliding groove 10. At the same time, drive the two insertion rods 7 to move towards each other, so that one end of them disengages from the inner wall of the clamping groove 12, and squeeze the spring 8 to make it in a compressed state along the inner wall of the sliding groove 10. At this time, the connecting portion 3 can be pulled backward, and drive the mounting blocks 6 on both sides of it to slide backward along the inner wall of the first slot 4, thereby driving the filtering portion 5 to disengage from the discharge frame 2. At this time, the filtering portion 5 can be cleaned. After completion, reset it, and insert the connecting portion 3 into the rear side of the inner wall of the discharge frame 2. At the same time, release the two dial blocks 9, so as to utilize the elastic force of the spring 8 to drive the limiting plate 11 to move back to its original position, and drive the two insertion rods 7 to move away from each other, so that one end of them is inserted into the inner wall of the clamping groove 12, thereby clamping the connecting portion 3 and the discharge frame 2 together, so that the operator can disassemble and clean without the aid of tools, thereby improving the cleaning efficiency and the use effect of the dephosphorization equipment body 1;

[0037] When used for a long time and the filtering portion 5 cannot achieve a good filtering effect, at this time, pinch the two dial blocks 9, pull out the connecting portion 3 backward, and drive the filtering portion 5 to disengage from the discharge frame 2. Then push the two moving blocks 18 to move towards each other along the inner wall of the moving groove 16, and drive the clamping heads 17 to disengage from the clamping grooves 15. At the same time, pull the moving blocks 18 forward and drive the clamping heads 17 to disengage from the moving groove 16. At this time, pull the filtering portion 5 forward, so that the second slots 21 on both sides of it slide forward and disengage from the outside of the plugging blocks 14, while driving the fixing plate 19 at the rear side of it to disengage from the mounting groove 13, and at the same time driving the rubber ring 20 to disengage from the mounting groove 13. At this time, the filtering portion 5 can be replaced. After completion, reset the filtering portion 5, and insert the fixing plate 19 at the rear side of it into the inner wall of the mounting groove 13, and at the same time drive the rubber ring 20 to be inserted into the inner wall of the mounting groove 13 and make it in a squeezed and deformed state to increase the friction force between the fixing plate 19 and the mounting groove 13. When the two plugging blocks 14 are completely inserted into the inner wall of the second slots 21, install the previously disassembled moving blocks 18 into the inner walls of the two moving grooves 16 on the front side of the new filtering portion 5, and move the two moving blocks 18 away from each other, driving the clamping heads 17 on one side of them to be inserted into the inner wall of the clamping grooves 15, thereby improving the stability of the installation between the filtering portion 5 and the two plugging blocks 14, and being convenient for subsequent use when replacing the filtering portion 5 alone, thereby reducing the replacement cost.

[0038] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A high-temperature rapid phosphorus removal device, comprising a phosphorus removal device body (1), a discharge frame (2) is installed at the lower part of the phosphorus removal device body (1), a filtering part (5) is inserted into the inner wall of the discharge frame (2), and a connecting part (3) is installed at the rear side of the filtering part (5), characterized in that: On both the left and right sides of the inner wall of the connecting part (3), a first slot (4) is provided. An installation block (6) is inserted into the inner wall of the first slot (4). On the rear sides of the installation blocks (6) on both the left and right sides, they are installed to the connecting part (3), and on the front sides, they are in contact with the filtering part (5).

2. The high-temperature rapid phosphorus removal device according to claim 1, characterized in that: On the rear side inside the connecting part (3), two sliding grooves (10) are provided. A limiting plate (11) is installed on the inner wall of the sliding groove (10). A plug rod (7) is inserted into the middle of the limiting plate (11). A spring (8) is sleeved on the outer side of the plug rod (7). On the adjacent ends of the plug rods (7) on both the left and right sides, a dial block (9) is installed. On the rear side of the inner wall of the first slot (4), a clamping groove (12) is provided.

3. A high-temperature rapid phosphorus removal device according to claim 2, characterized in that: On the separated ends of the plug rods (7) on both the left and right sides, they penetrate through the connecting part (3) and are inserted into the inner wall of the clamping groove (12). One end of the spring (8) is installed to the limiting plate (11), and the other end is installed to the inner wall of the sliding groove (10). The dial blocks (9) on both the left and right sides are slidably connected to the rear side of the connecting part (3).

4. A high-temperature rapid phosphorus removal device according to claim 1, characterized in that: On both the left and right sides of the filtering part (5), a second slot (21) is provided. A plug-in block (14) is inserted into the inner wall of the second slot (21). On the separated sides of the plug-in blocks (14) on both the left and right sides, they are installed to the installation blocks (6).

5. The high-temperature and rapid phosphorus removal device according to claim 4, wherein: On the front side of the connecting part (3), an installation groove (13) is provided. A fixing plate (19) is inserted into the inner wall of the installation groove (13). A rubber ring (20) is installed on the outer side of the fixing plate (19). On the front side of the filtering part (5), two moving grooves (16) are provided. A moving block (18) is installed on the inner wall of the moving groove (16). On the separated sides of the moving blocks (18) on both the left and right sides, a clamping head (17) is installed. On the front part of the plug-in block (14), a clamping slot (15) is provided.

6. The high-temperature rapid phosphorus removal device according to claim 5, characterized in that: The fixing plate (19) is installed to the rear side of the filtering part (5). On the separated ends of the clamping heads (17) on both the left and right sides, they penetrate through the moving groove (16) and are inserted into the inner wall of the clamping slot (15).

7. The high-temperature rapid phosphorus removal device according to claim 1, characterized in that: The installation blocks (6) on both the left and right sides are symmetrically arranged. The connecting part (3) is inserted into the inner wall of the rear side of the discharge frame (2).