Hanging-free welding fire bucket fixing device

By designing a suspension-free fire bucket fixing device in steel structure construction, the problem of lack of suspension position of steel columns at high places is solved by using magnets and reinforced structures, and the stable collection and safety improvement of welding slag is achieved.

CN223070705UActive Publication Date: 2025-07-08THE CONSTR DECORATION OF CHINA CONSTR NO 7 ENG BUREAU
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Patent Information

Application Number
CN202421511431.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-28
Publication Date
2025-07-08
Estimated Expiration
2034-06-28

AI Technical Summary

Technical Problem

In steel structure construction, when the steel columns at high places lack suspended positions, the fire bucket cannot be effectively fixed, resulting in the inability to collect welding slag generated by welding at high places, which poses a fire hazard.

Method used

A suspension-free fire bucket fixing device is designed. By setting grooves and installation structures on the bucket body, connecting magnets with steel columns, combining reinforced structures and fire-resistant cotton, the stable fixation of the fire bucket and welding slag collection are achieved.

Benefits of technology

The stable connection of the fire bucket is achieved when the suspension position is missing, the applicability and safety of welding slag collection is improved, and the risk of damage to the staff by high temperature is reduced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a suspension-free fire welding bucket fixing device, which relates to the technical field of steel structure welding, and comprises a bucket body, a groove is arranged on the bucket body, a mounting structure is connected to the groove of the bucket body, the mounting structure is horizontally arranged on the bucket body, the mounting structure comprises two mounting plates and two magnets, the two mounting plates are oppositely arranged on two sides of the groove, and the magnets are arranged on the two mounting plates. The two magnets are respectively mounted on the mounting plates, reinforcing structures are arranged at the positions of the hopper body and the grooves, and the reinforcing structures are perpendicular to the mounting structures; the groove is formed, so that the steel column is inserted into the groove when the fire welding bucket is used, the mounting plate is connected with the steel column through the magnet, and when the steel column without a hanging position at a high position is welded, the fire welding bucket is connected with the steel column through the mounting structure, so that the fire welding bucket can be fixed on the steel column without a hanging device; the connection between the bucket body and the steel column is reinforced through the reinforcing structure, so that welding generated by welding of the steel column is collected through the fire welding bucket, and meanwhile, the applicability of the fire welding bucket is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of steel structure welding, in particular to a fixed device for a non-suspended fire receiving hopper. Background Technique

[0002] At present, the application of steel structure construction in the construction industry is becoming more and more extensive. In the construction process of steel structures, high-altitude welding and cutting lugs and other processes are involved. A large amount of welding slag will be generated during the construction process. In order to reduce other disasters such as fires caused by welding slag, workers will lap a fire receiving hopper at the welding place to collect the generated welding slag.

[0003] However, at present, most of the fire receiving hoppers are suspended at the welding place by hanging methods to collect the welding slag generated by electric welding. When there is no hanging position on the high steel column, the fire receiving hopper cannot be installed and fixed, and subsequently, the welding slag generated by the high-altitude welding work cannot be effectively collected. Summary of the Invention

[0004] The purpose of the utility model is to provide a fixed device for a non-suspended fire receiving hopper, aiming to solve the problem that when there is no hanging position on the high steel column in the general technology, the fire receiving hopper cannot be installed and fixed, and subsequently, the welding generated by the high-altitude welding work cannot be effectively collected.

[0005] To achieve the above purpose, the utility model adopts the following technical scheme: The fixed device for a non-suspended fire receiving hopper includes a hopper body. A groove is opened on the hopper body. An installation structure is connected to the hopper body at the groove. The installation structure is horizontally arranged on the hopper body. The installation structure includes two installation plates and two magnets. The two installation plates are oppositely arranged on both sides of the groove. The two magnets are respectively installed on the installation plates. A strengthening structure is arranged at the groove of the hopper body. The strengthening structure is perpendicular to the installation structure.

[0006] The beneficial effects are as follows: By opening the groove, the steel column is inserted into the groove when the fire receiving hopper is used. The magnets arranged on the installation plates are used to connect the installation plates and the steel column, so that the hopper body is connected to the steel column through the installation plates. When welding a steel column with no hanging position at a high place, the fire receiving hopper is connected to the steel column through the installation structure, so that the fire receiving hopper can be fixed on the steel column without setting a hanging device; The connection between the hopper body and the steel column is strengthened through the strengthening structure, so that the fire receiving hopper collects the welding generated by the steel column welding, and at the same time improves the applicability of the fire receiving hopper.

[0007] A further technical scheme of the utility model is that installation rods are fixedly connected to the opposite sides of the installation plates. A plurality of connecting pieces are arranged on the installation rods. The plurality of connecting pieces are used to connect the installation rods and the hopper body.

[0008] The beneficial effect is that the mounting plate is fixedly connected to the mounting rod, and the connecting piece connects the mounting rod and the bucket body, so that the relative distance between the mounting plate and the steel column can be adjusted through the mounting rod, thereby making the connection between the mounting plate and the steel column tighter.

[0009] A further technical solution of the utility model is that the reinforcing structure includes a rotating rod and a fixing plate fixedly connected to the rotating rod, one end of the rotating rod in the length direction is arranged at the bottom of the bucket body, and a reinforcing magnet is arranged on the fixing plate.

[0010] The beneficial effects are: the connection strength between the bucket body and the steel column is improved by abutting the steel column with the fixed plate, and the connection between the bucket body and the steel column is strengthened by arranging reinforcing magnets on the fixed plate, so that the fixed plate and the two mounting plates form a triangular connection between the bucket body and the steel column, making the connection between the bucket body and the steel column more stable.

[0011] A further technical solution of the utility model is that the end of the rotating rod away from the fixed plate is connected to a connecting rod, the connecting rod is arranged at the bottom of the bucket body, and a plurality of connecting parts are also arranged on the connecting rod, and the plurality of connecting parts are used to connect the connecting rod and the bucket body.

[0012] The beneficial effect is that the connection between the rotating rod and the bucket body is achieved through the connecting rod and the connecting piece, so that the reinforcement structure is connected to the bucket body through the connecting rod. When the reinforcement structure needs to be replaced or is damaged, there is no need to replace the entire fire receiving bucket.

[0013] A further technical solution of the utility model is that a mounting ring is sleeved on the connecting rod, and the rotating rod is fixedly connected to the sleeve ring.

[0014] The beneficial effect is that the rotating rod can be fine-tuned according to the size of the steel column by setting the mounting ring, so that the fixing plate connected to the rotating rod is located at the relative center position of the steel column.

[0015] A further technical solution of the utility model is that the connecting piece is detachably connected to the bucket body.

[0016] The beneficial effect is that the detachable connection between the connecting piece and the bucket body makes it convenient for workers to repair and replace the installation structure and the reinforcement structure.

[0017] A further technical solution of the utility model is that both ends of the installation rod and the connecting rod in the length direction are threadedly connected with cross bars.

[0018] The beneficial effect is that the cross bar connected by threads facilitates the installation and replacement of the connecting parts, and reduces the probability of the connecting parts falling off when they are stored.

[0019] A further technical solution of the utility model is that fireproof cotton is arranged on the surface of the bucket body.

[0020] The beneficial effects are as follows: The fireproof cotton absorbs the heat generated by the welding slag of the steel column, reducing the probability of harm to the staff caused by the overheating of the fire-catching bucket after long-term use. Description of the Drawings

[0021] Figure 1 It is a schematic diagram of the overall structure.

[0022] Figure 2 It is a schematic diagram of the installation structure of the strengthening structure.

[0023] Figure 3 It is a schematic diagram of the installation structure.

[0024] Figure 4 It is a schematic diagram of the strengthening structure.

[0025] In the figure: 1, the bucket body; 2, the groove; 3, the installation structure; 31, the installation plate; 32, the magnet; 4, the strengthening structure; 41, the rotating rod; 42, the fixing plate; 5, the installation rod; 6, the connecting piece; 7, the strengthening magnet; 8, the connecting rod; 9, the installation ring; 10, the cross bar; 11, the fireproof cotton; 12, the bolt; 13, the nut. Detailed Implementation Modes

[0026] The following further describes the detailed implementation modes of the present utility model with reference to the drawings.

[0027] As Figures 1-4 shown, a fixed device for a fire-catching bucket without suspension includes a bucket body 1, and the bucket body 1 is used for collecting the welding slag generated by the welding of the steel column; a groove 2 is opened on the bucket body 1, and the groove 2 is used for embedding the steel column so that the fire-catching bucket has a better effect of collecting the welding slag generated by the welding of the steel column; an installation structure 3 is horizontally installed on the bucket body 1 at the groove 2, and the installation structure 3 is used for connecting the bucket body 1 and the steel column; the installation structure 3 includes two installation plates 31 and two magnets 32, the two installation plates 31 are oppositely installed on both sides of the groove 2, the two magnets 32 are respectively installed on the installation plates 31, in this embodiment, the magnet 32 uses a high-strength high-temperature-resistant magnet, and the installation plate 31 is connected to the steel column through the magnetic force of the magnet 32, so that the bucket body 1 can be connected and fixed to the steel column without suspension, thereby collecting the welding slag generated by the welding, and at the same time improving the applicability of the fire-catching bucket, so that the fire-catching bucket can still be used normally when there is a lack of suspension position.

[0028] Referring to Figure 2 and Figure 3, mounting rods 5 are connected to the opposite sides of the mounting plate 31. The mounting rods 5 are installed at the bottom of the bucket body 1. One end of the mounting rod 5 in the length direction is fixedly connected to the mounting plate 31. A number of connecting members 6 are installed along the length direction of the mounting rod 5. In this embodiment, the connecting member 6 uses a Ω-shaped hoop. The mounting rod 5 is slidably installed in the Ω-shaped hoop. The upper surface of the mounting rod 5 is lower than the upper surface of the Ω-shaped hoop, so that the mounting rod 5 can move in the Ω-shaped hoop without affecting the installation of the Ω-shaped hoop. The Ω-shaped hoop is connected to the bucket body 1 through bolts 12 and nuts 13, thereby fixing the mounting rod 5 on the bucket body 1. The detachable connection of the Ω-shaped hoop to the bucket body 1 through bolts 12 and nuts 13 also facilitates the maintenance and replacement of the mounting structure 3 by the staff.

[0029] Refer to Figure 1 , the mounting plate 31 is an L-shaped plate, and one side of the L-shaped plate overlaps each other, making the connection between the mounting plate 31 and the steel column closer.

[0030] Refer to Figure 2 and Figure 4 , a strengthening structure 4 is also installed at the groove 2 of the bucket body 1. The strengthening structure 4 is installed at the bottom of the bucket body 1, so that the installation of the strengthening structure 4 will not affect the effect of the bucket body 1 collecting welding slag; the strengthening structure 4 is perpendicular to the mounting structure 3. The strengthening structure 4 includes a rotating rod 41 and a fixing plate 42 fixedly connected to the rotating rod 41. One end of the rotating rod 41 in the length direction is installed at the bottom of the bucket body 1, and the fixing plate 42 is fixedly installed at the end of the rotating rod 41 in the length direction away from the bottom of the bucket body 1. A strengthening magnet 7 is installed on the fixing plate 42. The strengthening magnet 7 is a high-strength high-temperature-resistant magnet. Through the setting of the rotating rod 41, the fixing plate 42 rotates with the rotation of the rotating rod 41. When using the fire-catching bucket, the fixing plate 42 is connected to the steel column by rotating the rotating rod 41, so that the strengthening magnet 7 adsorbs the steel column to make the connection between the bucket body 1 and the steel column more stable. The perpendicularity of the strengthening structure 4 and the mounting structure 3 forms a triangular support structure between the strengthening structure 4 and the mounting structure 3, making the connection between the bucket body 1 and the steel column more stable.

[0031] Refer to Figure 2 and Figure 4 , a connecting rod 8 is arranged at the bottom of the bucket body 1. An installation ring 9 is sleeved on the connecting rod 8. The rotating rod 41 is fixedly connected to the installation ring 9. The rotation of the rotating rod 41 is realized through the rotation of the installation ring 9; a number of connecting members 6 are also installed on the connecting rod 8. A number of connecting members 6 are also Ω-shaped hoops. The Ω-shaped hoop is connected to the bucket body 1 through bolts 12 and nuts 13, so that the Ω-shaped hoop and the bucket body 1 are detachably connected, facilitating the staff to replace the strengthening structure 4.

[0032] Refer to Figure 2The end of the mounting rod 5 facing away from the mounting plate 31 is threadedly connected to both ends of the connecting rod 8 in the length direction with a cross bar 10. The setting of the cross bar 10 prevents the Ω-shaped clamp installed on the mounting rod 5 and the connecting rod 8 from falling off, making it convenient for the staff to subsequently connect the bucket body 1 through the connecting piece 6.

[0033] Reference Figure 1 Fireproof cotton 11 is arranged at the bottom of the bucket body 1. The fireproof cotton 11 allows the welding slag generated by welding to enter the fire bucket during welding. Since the welding slag carries heat, if it accumulates too much, the temperature of the fire bucket will increase. The fireproof cotton 11 is set to absorb the heat of the welding slag, reduce the speed of heat rise in the fire bucket, and reduce the damage to the staff caused by the high temperature of the fire bucket.

[0034] The implementation principle of this embodiment is that before installing the fire-connecting bucket, check whether the fireproof cotton 11 laid on the bottom of the bucket body 1 is intact, check whether the rotating rod 41 can rotate normally, check whether the mounting ring 9 can slide on the connecting rod 8, whether the installation of the cross bar 10 is stable, whether the magnetism of the magnet 32 ​​and the reinforcing magnet 732 is normal, install bolts 12 and nuts 13 on the connecting piece 6 on the connecting rod 8 to connect the bucket body 1; after confirming that there are no problems with the above, install and fix the fire-connecting bucket; install bolts 12 and nuts 13 at the bottom of the bucket body 1 to connect the connecting piece 6 to the bucket body 1. At this time, there is no need to tighten the bolts 12 and nuts 13, adjust the relative distance of the mounting plate 31 according to the size of the steel column to be welded, adjust it by sliding the mounting rod 5 and make the mounting plate 31 fit the side of the steel column. At this time, the mounting plate 31 is magnetically fixed. Under the action of the magnetic force of iron 32, the mounting plate 31 is fixed to the steel column, and then the bucket body 1 is fixed to the steel column, and then the bolts 12 and nuts 13 on the mounting rod 5 are tightened; the fixing plate 42 is rotated so that the fixing plate 42 fits the steel column and the fixing plate 42 is connected to the steel column through the reinforcing magnet 7. At this time, the bolts 12 and nuts 13 installed on the connecting rod 8 are tightened, and the staff performs welding work; after the welding work is completed, the bolts 12 and nuts 13 on the connecting rod 8 are loosened, and the rotating rod is rotated to release the fixation between the fixing plate 42 and the steel column, and the bolts 12 and nuts 13 on the connecting rod 8 are loosened, and the connecting rod 8 is removed from the bucket body 1 and the mounting plate 31 is moved toward the bottom of the bucket body 1 to remove the mounting plate 31, the welding slag in the bucket body 1 is processed, and then the fire bucket is stored and waits for the next use.

Claims

1. A fixed device for a fire-catching hopper without hanging, characterized in that, The invention comprises a bucket body (1), wherein a groove (2) is formed on the bucket body (1), wherein the bucket body (1) is connected to a mounting structure (3) at the groove (2), wherein the mounting structure (3) is horizontally arranged on the bucket body (1), wherein the mounting structure (3) comprises two mounting plates (31) and two magnets (32), wherein the two mounting plates (31) are arranged oppositely at two sides of the groove (2), and the two magnets (32) are respectively mounted on the mounting plates (31), and wherein a reinforcement structure (4) is arranged between the bucket body (1) and the groove (2), wherein the reinforcement structure (4) and the mounting structure (3) are perpendicular to each other.

2. The fixed device for a fire-catching hopper without suspension according to claim 1, characterized in that, The mounting plates (31) are fixedly connected to mounting rods (5) on opposite sides thereof, and a plurality of connecting members (6) are provided on the mounting rods (5). The plurality of connecting members (6) are used to connect the mounting rods (5) and the bucket body (1).

3. The fixed device for a fire-catching bucket without suspension according to claim 1, characterized in that, The reinforcing structure (4) comprises a rotating rod (41) and a fixing plate (42) fixedly connected to the rotating rod (41); one end of the rotating rod (41) in the length direction is arranged at the bottom of the bucket body (1); and a reinforcing magnet (7) is arranged on the fixing plate (42).

4. The fixed device for a fire-catching bucket without hanging according to claim 3, characterized in that, The end of the rotating rod (41) facing away from the fixed plate (42) is connected to a connecting rod (8), the connecting rod (8) is arranged at the bottom of the bucket body (1), and a plurality of connecting members (6) are also arranged on the connecting rod (8), and the plurality of connecting members (6) are used to connect the connecting rod (8) and the bucket body (1).

5. The fixed device for a fire-catching hopper without suspension according to claim 4, characterized in that, A mounting ring (9) is sleeved on the connecting rod (8), and the rotating rod (41) is fixedly connected to the mounting ring (9).

6. The fixed device for a fire-catching bucket without suspension according to claim 2 or 4, characterized in that, The connecting piece (6) is detachably connected to the bucket body (1).

7. The fixed device for a fire receiving hopper without hanging according to claim 2, characterized in that, One end of the mounting rod (5) facing away from the mounting plate (31) is threadedly connected to a cross rod (10) at both ends of the connecting rod (8) in the length direction.

8. The fixed device for a fire-catching hopper without suspension according to claim 1, characterized in that, The surface of the bucket body (1) is provided with fireproof cotton (11).