Edge sealing steel die capable of guaranteeing setting height requirement of floor reinforcing mesh

Through the design of channel steel and reinforcement mechanism, the problem of unstable connection between the mesh and the steel mold is solved, the firm connection between the mesh and the steel mold is achieved and the sealing of holes is avoided, concrete leakage is improved, and the flatness and stability of the floor are improved.

CN223202684UActive Publication Date: 2025-08-08CHINA CONSTRUCTION THIRD ENGINEERING BUREAU YUNCAI SUPPLY CHAIN CO LTD
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Patent Information

Application Number
CN202422464958.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-12
Publication Date
2025-08-08
Estimated Expiration
2034-10-12

AI Technical Summary

Technical Problem

The connection between traditional steel mesh and steel mold is not stable enough, and is prone to shaking or loosening, resulting in concrete leakage and affecting the flatness of the floor surface and overall quality.

Method used

Channel steel and reinforcement mechanism are used, including reinforcement wire rope, control components and plug-in components. The reinforcement wire rope is wound with the mesh and the positioning rod to ensure a firm connection between the mesh and the channel steel; at the same time, a sealing mechanism is used to fill the hole gap to prevent concrete leakage.

Benefits of technology

It improves the connection stability between the mesh and the steel mold, prevents concrete leakage, ensures the flat surface of the floor, and enhances the overall strength and stability of the floor.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of reinforcing mesh edge banding, and discloses an edge banding steel mould capable of ensuring the setting height requirement of a floor reinforcing mesh, which comprises a channel steel, a plurality of uniformly distributed holes are formed in the channel steel, and a plurality of uniformly distributed connecting bolts are screwed at the bottom in the channel steel; the reinforcing mechanism is located at the top of the channel steel and used for reinforcing the mesh and the channel steel, and the reinforcing mechanism comprises a reinforcing steel wire rope, a control assembly and an inserting assembly; through the arrangement of the reinforcing mechanism, the mesh and the steel mold can be reinforced when connected, falling off of the mesh and the steel mold is avoided, the situation that a gap between the mesh and the steel mold becomes large due to falling off is reduced, concrete is further prevented from seeping out of the large gap, and the service life of the mesh and the steel mold is prolonged. The problems that leakage in a traditional device causes uneven floor surface and even cavities, and the overall attractiveness and quality of the floor are affected are solved, and the overall strength and stability of the device are greatly improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of steel mesh edge sealing, in particular to an edge sealing steel mould which ensures the height requirement of the floor steel mesh. Background Art

[0002] The steel mesh edge sealing steel formwork is a steel formwork used to fix and support the steel mesh in floor construction. Its characteristic is that the steel mesh is tightly combined with the steel formwork through a sealed connection to prevent concrete leakage, enhance structural stability, improve construction efficiency, reduce material waste, improve project quality, extend service life, and enhance the aesthetic effect of the floor surface.

[0003] When using traditional devices, first check the quality and specifications of the steel mesh and steel formwork to ensure that there is no damage or deformation. Then check the quality and specifications of the steel mesh, steel formwork and sealing materials according to the construction to ensure that there is no damage or deformation. Use bolts or welding to fix the steel formwork to the foundation to ensure its stability. Place the steel mesh in the installed steel formwork to ensure that the connection between the mesh and the steel formwork is neat. Pour concrete into the steel formwork and pay attention to the pouring speed and method to avoid damaging the steel mesh. However, during the construction process, the connection between the mesh and the steel formwork is not stable enough and is prone to falling off, causing the gap between the mesh and the steel formwork to become larger, and concrete is prone to leaking from the gap. The leakage will cause the floor surface to be uneven or even have voids, affecting the overall appearance and quality of the floor and greatly reducing the overall strength and stability. Utility Model Content

[0004] The purpose of the utility model is to provide an edge-sealing steel mold that ensures the height requirement of the floor steel mesh, thereby solving the technical problem in the background technology that the mesh and the steel mold are not stable enough when connected, and are prone to shaking or loosening.

[0005] In order to solve the above technical problems, the present invention provides the following technical solutions:

[0006] An edge-sealing steel mold for ensuring the height requirement of the floor steel mesh, comprising:

[0007] Channel steel, wherein a plurality of evenly distributed holes are opened inside the channel steel, and a plurality of evenly distributed connecting bolts are screwed to the bottom of the channel steel;

[0008] A reinforcement mechanism is located on the top of the channel steel and is used to reinforce the mesh and the channel steel. The reinforcement mechanism includes a reinforcing steel wire rope, a control component and a plug-in component. The control component is located on one side of the reinforcing steel wire rope and is used to position the reinforcing steel wire rope. The plug-in component is located on one side of the control component and is used to plug the control component.

[0009] Preferably, the reinforcement mechanism further comprises a plurality of reinforcement piles fixed on the top of the channel steel, the reinforcement wire rope is sleeved on the outer wall of the reinforcement pile, and a buckle for limiting the reinforcement wire rope is installed on the top of the channel steel.

[0010] Preferably, the control assembly includes two plug-in plates plugged into one side of the reinforcement pile, a control board is commonly installed on one side of the two plug-in plates, a positioning block is fixed on one side of the control board, and the positioning block corresponds to the reinforcement wire rope.

[0011] Preferably, the plug-in assembly includes two positioning rods plugged into the reinforcement piles, a plurality of positioning holes for inserting the positioning rods are provided inside the two plug-in plates, and a driving assembly for driving the positioning rods is provided between the positioning rods and the reinforcement piles.

[0012] Preferably, the driving assembly includes two extended seats fixed on one side of the reinforcement pile, two receiving grooves are provided between the two extended seats and the reinforcement piles, a movable block is installed inside the receiving groove, one side of the movable block is fixed to the positioning rod, and a linkage rod is fixed to the side of the movable block relative to the positioning rod, the linkage rod extends to one side of the extended seat and is fixed with a movable plate, a spring is connected between the movable block and the receiving groove, and the spring is sleeved on the outer wall of the linkage rod.

[0013] Preferably, a sealing mechanism for sealing the multiple holes is provided between the channel steel and the multiple holes, the sealing mechanism includes a linkage plate and a movable plate arranged inside the channel steel, a sealing seat is fixed between the linkage plate and the movable plate, a connecting block is fixed between the sealing seat and the linkage plate, and sealing cotton matching the holes is provided inside the sealing seat, and a disassembly assembly for disassembling the linkage plate and the movable plate is provided between the linkage plate and the movable plate and the channel steel.

[0014] Preferably, the disassembly and assembly assembly includes a plurality of sliders fixed on the top of the linkage plate, a sliding groove for the sliders to slide is provided at the bottom of the channel steel, two disassembly blocks are fixed on the bottom of the movable plate, a disassembly and assembly groove for the disassembly blocks to slide is provided at the bottom of the channel steel, an inclined portion matching the disassembly and assembly groove is provided on one side of the disassembly block, and a fixing bolt is screwed between the slider and the channel steel.

[0015] Compared with the prior art, the beneficial effects achieved by the present invention are:

[0016] 1. The utility model can reinforce the mesh when it is connected to the steel formwork through the setting of the reinforcement mechanism, thereby preventing it from falling off and reducing the situation where the gap between the mesh and the steel formwork becomes larger due to falling off, further preventing concrete from seeping out of the enlarged gap, and solving the problem that leakage in traditional devices will cause uneven floor surface or even voids, affecting the overall appearance and quality of the floor, thereby greatly improving the overall strength and stability of the device;

[0017] 2. The utility model can fill the excess gaps of multiple holes through the setting of the sealing mechanism, thereby improving the sealing effect of the holes, and can effectively prevent concrete from leaking out from the gap between the mesh and the steel formwork during the pouring process, ensuring the flatness and integrity of the floor surface, while enhancing the fixation between the steel mesh and the steel formwork, reducing the movement or deformation of the mesh during construction, and thus improving the overall structural stability of the floor. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0019] Figure 2 This is a schematic structural diagram of the reinforcement mechanism of the utility model;

[0020] Figure 3 It is a cross-sectional view of the reinforcement pile of the utility model;

[0021] Figure 4 This is a structural diagram of the sealing mechanism of the utility model;

[0022] Figure 5 It is a schematic structural diagram of a part of the sealing mechanism of the utility model.

[0023] Including: 1. Channel steel; 2. Reinforcement mechanism; 3. Sealing mechanism; 4. Connecting bolts;

[0024] 21. Reinforcement pile; 22. Control panel; 23. Reinforcement wire rope; 24. Buckle; 25. Insert plate; 26. Spring; 27. Moving plate; 28. Positioning block; 29. Positioning rod;

[0025] 31. Linkage plate; 32. Movable plate; 33. Slider; 34. Fixing bolt; 35. Connecting block; 36. Sealing cotton; 37. Sealing seat; 38. Disassembly block. DETAILED DESCRIPTION

[0026] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0027] Please refer to Figure 1 , a steel edge-sealing formwork that ensures the required height of the floor steel mesh, including:

[0028] Channel steel 1, a plurality of evenly distributed holes are opened inside the channel steel 1, and a plurality of evenly distributed connecting bolts 4 are screwed to the bottom of the channel steel 1. Through the setting of the connecting bolts 4, it can be ensured that the floor steel mesh meets the required setting height.

[0029] Please refer to Figure 2 and Figure 3 , reinforcement mechanism 2, the reinforcement mechanism 2 is located at the top of the channel steel 1 and is used to reinforce the mesh and the channel steel 1, the reinforcement mechanism 2 includes a reinforcing steel wire rope 23, a control component and a plug-in component, the control component is located on one side of the reinforcing steel wire rope 23 and is used to position the reinforcing steel wire rope 23, the plug-in component is located on one side of the control component and is used to plug the control component; the reinforcement mechanism 2 also includes a plurality of reinforcement piles 21 fixed to the top of the channel steel 1, the reinforcement steel wire rope 23 is sleeved on the outer wall of the reinforcement pile 21, and a buckle 24 for limiting the reinforcement steel wire rope 23 is installed on the top of the channel steel 1. The control component includes two plug-ins 25 plugged into one side of the reinforcement pile 21, and a control board 22 is installed on one side of the two plug-ins 25. A positioning block 28 is fixed to one side of the control board 22 The positioning block 28 corresponds to the reinforcement wire rope 23. The plug-in assembly includes two positioning rods 29 inserted into the reinforcement pile 21. A plurality of positioning holes for inserting the positioning rods 29 are provided inside the two plug plates 25. A driving assembly for driving the positioning rod 29 is provided between the positioning rod 29 and the reinforcement pile 21. The driving assembly includes two extension seats fixed on one side of the reinforcement pile 21. Two receiving grooves are provided between the two extension seats and the reinforcement pile 21. A movable block is installed inside the receiving groove. One side of the movable block is fixed to the positioning rod 29, and a linkage rod is fixed to one side of the movable block relative to the positioning rod 29. The linkage rod extends to one side of the extension seat and is fixed with a movable plate 27. A spring 26 is connected between the movable block and the receiving groove, and the spring 26 is sleeved on the outer wall of the linkage rod.

[0030] The mesh is inserted into the hole, and the reinforcing wire rope 23 is wound around the mesh, and the movable plate 27 is pulled to move the linkage rod, and the movement of the linkage rod drives the movable block to move, and the movement of the movable block drives the spring 26 to form a contraction. The contraction of the spring 26 causes the positioning rod 29 to move, and the positioning rod 29 is separated from the positioning hole. After the positioning rod 29 is separated from the positioning hole, the control plate 22 is pushed to drive the two plugging plates 25 to move. The movement of the two plugging plates 25 causes the control plate 22 to drive the positioning block 28 to move until the positioning block 28 is fitted with the reinforcing wire rope 23. The movable plate 27 is released, and the positioning rod 29 is reset by the elastic force of the spring 26. The positioning rod 29 is reset to form a plug-in with the positioning hole, thereby realizing the positioning of the plugging plate 25. The setting of the reinforcing wire rope 23 makes the connection between the mesh and the channel steel 1 more secure.

[0031] Please also refer to Figure 4 and Figure 5 The cam 32 is provided with a plurality of locking plates 31 and 32 and a plurality of locking plates 32 is provided with a plurality of locking plates 31. The cam 32 is provided with a plurality of locking plates 31 and 32 and a plurality of locking plates 32 is provided with a plurality of locking plates 31. The cam 32 is provided with a plurality of locking plates 31 and a plurality of locking plates 32.

[0032] When the mesh is inserted into the hole, it is simultaneously inserted into the sealing seat 37. The setting of the sealing cotton 36 can effectively fill the gap between the mesh and the hole, thereby effectively preventing concrete from leaking from the gap between the mesh and the hole during the pouring process. When the sealing cotton 36 needs to be replaced, the slider 33 is separated from the slide groove by the fixing bolt 34, and then the linkage plate 31 and the movable plate 32 are pulled to drive multiple sealing seats 37 to move. Through the movement of the linkage plate 31 and the movable plate 32, the slider 33 slides in the slide groove, and the disassembly block 38 cooperates with the disassembly groove. Through the setting of the inclined portion, the disassembly block 38 can scrape the dust inside the disassembly groove during the movement, thereby achieving the effect of automatic cleaning.

[0033] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A steel edge-sealing mold that ensures the required height of the floor steel mesh, characterized in that: include: A channel steel (1), wherein a plurality of evenly distributed holes are provided inside the channel steel (1), and a plurality of evenly distributed connecting bolts (4) are screwed to the bottom of the channel steel (1); A reinforcement mechanism (2), the reinforcement mechanism (2) being located on the top of the channel steel (1) and being used to reinforce the mesh and the channel steel (1), the reinforcement mechanism (2) comprising a reinforcement steel wire rope (23), a control component and a plug-in component, the control component being located on one side of the reinforcement steel wire rope (23) and being used to position the reinforcement steel wire rope (23), the plug-in component being located on one side of the control component and being used to plug the control component.

2. The edge-sealing steel mold for ensuring the height requirement of the floor steel mesh according to claim 1 is characterized in that: The reinforcement mechanism (2) further comprises a plurality of reinforcement piles (21) fixed to the top of the channel steel (1), the reinforcement wire rope (23) is sleeved on the outer wall of the reinforcement pile (21), and a buckle (24) for limiting the reinforcement wire rope (23) is installed on the top of the channel steel (1).

3. The edge-sealing steel mold for ensuring the height requirement of the floor steel mesh according to claim 2 is characterized in that: The control assembly comprises two plug-in plates (25) plugged into one side of the reinforcement pile (21), a control board (22) being mounted on one side of the two plug-in plates (25), a positioning block (28) being fixed to one side of the control board (22), and the positioning block (28) corresponding to the reinforcement wire rope (23).

4. The edge-sealing steel mold for ensuring the height requirement of the floor steel mesh according to claim 3 is characterized in that: The plug-in assembly comprises two positioning rods (29) plugged into the interior of the reinforcement pile (21); a plurality of positioning holes for inserting the positioning rods (29) are provided inside the two plug-in plates (25); and a driving assembly for driving the positioning rods (29) is provided between the positioning rods (29) and the reinforcement pile (21).

5. The edge-sealing steel mold for ensuring the height requirement of the floor steel mesh according to claim 4 is characterized in that: The driving assembly includes two extension seats fixed on one side of the reinforcement pile (21), two receiving grooves are opened between the two extension seats and the reinforcement pile (21), and a movable block is installed inside the receiving groove. One side of the movable block is fixed to the positioning rod (29), and a linkage rod is fixed on the side of the movable block relative to the positioning rod (29). The linkage rod extends to one side of the extension seat and is fixed with a movable plate (27). A spring (26) is connected between the movable block and the receiving groove, and the spring (26) is sleeved on the outer wall of the linkage rod.

6. The edge-sealing steel mold for ensuring the height requirement of the floor steel mesh according to claim 1 is characterized in that: A sealing mechanism (3) for sealing the plurality of holes is provided between the channel steel (1) and the plurality of holes, the sealing mechanism (3) comprising a linkage plate (31) and a movable plate (32) provided inside the channel steel (1), a sealing seat (37) being fixed between the linkage plate (31) and the movable plate (32), a connecting block (35) being fixed between the sealing seat (37) and the linkage plate (31), and sealing cotton (36) matching the holes being provided inside the sealing seat (37), and a disassembly assembly for disassembling the linkage plate (31) and the movable plate (32) being provided between the linkage plate (31) and the movable plate (32) and the channel steel (1).

7. The edge-sealing steel mold for ensuring the height requirement of the floor steel mesh according to claim 6 is characterized in that: The disassembly assembly comprises a plurality of sliders (33) fixed on the top of the linkage plate (31); a sliding groove for the sliders (33) to slide is provided at the bottom of the channel steel (1); two disassembly blocks (38) are fixed to the bottom of the movable plate (32); a disassembly groove for the disassembly blocks (38) to slide is provided at the bottom of the channel steel (1); an inclined portion matching the disassembly groove is provided on one side of the disassembly block (38); and a fixing bolt (34) is screwed between the slider (33) and the channel steel (1).