A formwork reinforcement auxiliary system

Through the support and water spraying mechanism of the formwork reinforcement auxiliary system, the problem of complex operation and low efficiency of the formwork reinforcement device is solved, and the construction speed and the quality and aesthetics of the concrete columns are improved.

CN116771104BActive Publication Date: 2025-08-19CHINA RAILWAY FIFTH GROUP SECOND ENGINEERING CO LTD
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Patent Information

Application Number
CN202310868086.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-07-14
Publication Date
2025-08-19
Estimated Expiration
2043-07-14

AI Technical Summary

Technical Problem

In the prior art, the formwork reinforcement device is complex and inefficient during on-site assembly, which affects the construction progress, especially when pouring multiple concrete columns.

Method used

A formwork reinforcement auxiliary system including a first bracket, a formwork body, a support mechanism and a water spray mechanism is adopted. The support plate is driven close to the formwork through a double-headed screw to provide stable support, and the inner wall of the formwork is wetted through the water spray mechanism to improve the adhesion between the concrete and the steel frame.

Benefits of technology

It improves the stability and construction speed of the formwork, ensures the quality and aesthetics of concrete columns, reduces manual operations, and improves construction efficiency and progress.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a formwork reinforcement auxiliary system, comprising a first bracket and a formwork body, wherein one end of the first bracket is threadedly mounted with a second bracket via a plurality of first bolts, the formwork body is located between the first bracket and the second bracket, and a support mechanism is installed on the top of each of the first bracket and the second bracket, wherein the support mechanism comprises a support plate, an adjustment mechanism is provided on the outer wall of the support plate away from the formwork body, and a water spray mechanism is provided on the top of the support plate. In this invention, through the support mechanism, when the formwork needs to be reinforced, a plurality of double-headed screws can be controlled to drive a plurality of support plates to move toward each other until the plurality of support plates abut against the outer wall of the formwork, and the plurality of support plates can provide auxiliary support and fixation thereto, thereby ensuring the stability of the formwork body after the concrete is injected, thereby improving the quality of the concrete columns after pouring; and no manual installation and tightening by staff is required, thereby improving the overall construction speed.
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Description

Technical Field

[0001] The present invention relates to the technical field of building construction, and in particular to a template reinforcement auxiliary system. Background Art

[0002] Building formwork is a temporary support structure, manufactured according to design requirements, that helps concrete structures and components form to the specified positions and dimensions, maintain their correct position, and withstand the formwork's own weight and external loads. The purpose of formwork engineering is to ensure concrete quality and construction safety, accelerate construction progress, and reduce project costs. During the pouring of concrete columns in subway and municipal construction, the formwork must be assembled according to the column's shape before pouring. Concrete is then poured inside the formwork to form the desired concrete column.

[0003] After the formwork in the prior art is spliced and assembled, multiple reinforcement devices need to be installed on the surface of the formwork to prevent leakage or even collapse of the formwork during the pouring of concrete inside. However, the reinforcement devices in the prior art require multiple workers to assemble on site, which is complicated and slow. For example, when pouring multiple concrete columns, the efficiency is low, which greatly affects the overall construction progress. Summary of the Invention

[0004] In view of the defects in the prior art, the present invention provides a template reinforcement auxiliary system.

[0005] A template reinforcement auxiliary system includes a first bracket and a template body, one end of the first bracket is threadably mounted with a second bracket via a plurality of first bolts, the template body is formed by four templates, the template body is located between the first bracket and the second bracket, two universal wheels are rotatably mounted on the outer walls on both sides of the first bracket, and a support mechanism for reinforcing the template body is installed on the top of the first bracket and the second bracket, the support mechanism includes a support plate abutting against the outer wall of the template body, an adjustment mechanism is provided on the outer wall of the support plate away from the template body, and a water spray mechanism is provided on the top of the support plate for moistening the inner wall of the template body.

[0006] Optionally, the adjustment mechanism includes multiple double-ended screws, and two fixed blocks are installed on the three side outer walls of the first bracket and the one side outer wall of the second bracket. The multiple double-ended screws are rotatably installed on the top of the corresponding fixed blocks.

[0007] Optionally, the outer walls of the two double-headed screws located on the same side are symmetrically installed with movable blocks, the ends of the two movable blocks close to the support plate are hinged with connecting plates, and the ends of the two connecting plates away from the movable blocks are rotatably connected to the outer wall of the support plate.

[0008] Optionally, a cavity is provided inside the support plate, and slide grooves connected to the cavity are provided on the outer walls on both sides of the support plate. Two movable plates are symmetrically installed in the cavity, and round rods and screws that can slide up and down in the slide grooves are respectively installed on the outer walls on both sides of the two movable plates. The ends of the two screws away from the movable plates pass through the slide grooves and are threadedly connected with nuts.

[0009] Optionally, two rectangular plates are installed on the outer walls of the two movable plates at the ends away from each other, a mounting plate is installed on the outer wall of the support plate, and two first electric telescopic rods are installed on the upper and lower outer walls of the mounting plate.

[0010] Optionally, the telescopic ends of the plurality of first electric telescopic rods are all installed with connecting seats, and the plurality of connecting seats are all threadedly connected to the rectangular plate adjacent to them through second bolts.

[0011] Optionally, the water spraying mechanism includes two rotating blocks, which are respectively rotatably installed on the ends of the two movable plates away from each other, and a plurality of water spraying holes are opened on the outer wall of one of the rotating blocks close to the support plate, and a connecting end for connecting to an external water outlet pipe is installed on the outer wall of one of the rotating blocks away from the support plate.

[0012] Optionally, a rough surface is provided on an outer wall of one side of the support plate close to the template body, and the other rotating block abuts against the bottom of the template body.

[0013] Optionally, a groove is provided on an outer wall of one side of the rotating blocks close to the multiple water spray holes, and multiple second electric telescopic rods are installed inside the groove, and the telescopic ends of the multiple second electric telescopic rods are commonly connected to blades.

[0014] Optionally, rotating plates are threadedly mounted on both ends of the mounting plate, and limiting plates are rotatably mounted on outer walls of the two rotating plates on adjacent sides.

[0015] The beneficial effects of the present invention are embodied in:

[0016] 1. In this invention, through the support mechanism, when the formwork needs to be supported and reinforced, multiple double-headed screws can be controlled to rotate and drive multiple support plates to move towards each other until the multiple support plates are in contact with the outer wall of the formwork. The multiple support plates located on the outer wall of the formwork body can provide auxiliary support and fixation to it, thereby ensuring the stability of the formwork body after the concrete is injected, thereby improving the quality of the concrete columns after pouring; and there is no need for staff to manually install and tighten multiple fixing devices, thereby improving the overall construction speed and indirectly improving the construction progress of subway and municipal construction projects.

[0017] 2. In the invention, a water spraying mechanism is provided, after a plurality of support plates cooperate to provide support and fixation for the outer wall of the formwork body, the external water outlet pipe can be connected to a plurality of connection ends, so that a plurality of water spraying holes on one side of a plurality of upper rotating blocks can spray water into the interior of the formwork body, and the plurality of upper rotating blocks are controlled to rotate slowly downward, driving the water spraying angles of the plurality of water spraying holes to be adjusted, so that the inner wall of the formwork body and the surface of the steel frame can be wetted together, so that the subsequent bonding between the concrete and the steel frame is tighter, and the contact surface between the concrete and the inner wall of the formwork body can be made smoother, thereby improving the aesthetics of the surface of the concrete column.

[0018] 3. In this invention, when pouring concrete on the inner wall of the formwork body, the telescopic ends of the two first electric telescopic rods above the mounting plate can be controlled to extend, driving multiple upper movable plates to extend from the cavity, thereby shielding and protecting the upper part of the formwork body, preventing the concrete entering the formwork body from splashing out, causing pollution to the surrounding environment and causing waste of this part of the concrete.

[0019] 4. In this invention, after the concrete inside the formwork body is poured, in order to prevent the moisture inside the concrete from evaporating quickly, resulting in poor quality of the concrete column after pouring, one of the upper movable plates can be rotated toward the formwork body with the round rod as the center until the movable plate is covered on the top of the formwork body. In this way, the movable plate can cover and seal the concrete inside the formwork body, preventing the moisture inside the concrete from evaporating quickly, and preventing other debris from above from falling into the interior of the formwork body, affecting the final formation of the concrete column, and protecting the drying concrete. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] To more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the following briefly describes the drawings required for the specific embodiments or the description of the prior art. Similar elements or parts are generally identified by similar reference numerals throughout the drawings. Elements or parts in the drawings are not necessarily drawn to scale.

[0021] Figure 1 This is a schematic diagram of the overall structure of a template reinforcement auxiliary system proposed by the present invention;

[0022] Figure 2 for Figure 1 Structural diagram from another angle;

[0023] Figure 3 It is a structural schematic diagram of the template body and one of the supporting mechanisms in the present invention;

[0024] Figure 4This is a schematic structural diagram of one of the support plates in the present invention;

[0025] Figure 5 for Figure 4 Schematic diagram of the structure after the two movable plates move away from each other;

[0026] Figure 6 for Figure 4 Structural diagram from another angle;

[0027] Figure 7 for Figure 6 Schematic diagram of the structure in which the two movable plates are separated from the support plate;

[0028] Figure 8 This is a schematic structural diagram of one of the rotating blocks and blades in the present invention.

[0029] In the accompanying drawings, 1. first bracket; 2. second bracket; 3. fixed block; 4. universal wheel; 5. double-headed screw; 6. movable block; 7. connecting plate; 8. support plate; 9. first electric telescopic rod; 10. template body; 11. rotating block; 12. first bolt; 13. water spray hole; 14. connecting end; 15. slide groove; 16. rotating plate; 17. limit plate; 18. movable plate; 19. mounting plate; 20. connecting seat; 21. second bolt; 22. rectangular plate; 23. rough surface; 24. groove; 25. round rod; 26. screw; 27. second electric telescopic rod; 28. blade. DETAILED DESCRIPTION

[0030] The following embodiments of the technical solution of the present invention will be described in detail with reference to the accompanying drawings. The following embodiments are only used to more clearly illustrate the technical solution of the present invention and are therefore only examples and are not intended to limit the scope of protection of the present invention.

[0031] It should be noted that, unless otherwise specified, the technical or scientific terms used in this application should have the common meanings understood by those skilled in the art to which the present invention belongs.

[0032] like Figures 1-8 As shown, a formwork reinforcement auxiliary system includes a first bracket 1 and a formwork body 10, one end of the first bracket 1 is threadedly installed with a second bracket 2 through a plurality of first bolts 12, the formwork body 10 is surrounded by four formworks, and the formwork body 10 is located between the first bracket 1 and the second bracket 2. Two universal wheels 4 are rotatably installed on the outer walls on both sides of the first bracket 1, and the tops of the first bracket 1 and the second bracket 2 are both installed with support mechanisms for reinforcing the formwork body 10, and the support mechanisms include a support plate 8 abutting against the outer wall of the formwork body 10, and an adjustment mechanism is provided on the outer wall of the support plate 8 away from the formwork body 10, and a water spray mechanism is provided on the top of the support plate 8 for moistening the inner wall of the formwork body 10.

[0033] As a technical optimization solution of the present invention, the adjustment mechanism includes multiple double-ended screws 5. Two fixed blocks 3 are installed on the three side outer walls of the first bracket 1 and one side outer wall of the second bracket 2. The multiple double-ended screws 5 are rotatably mounted on the top of the corresponding fixed blocks 3. Drive motors are pre-installed inside the multiple fixed blocks 3. When the drive motors are started, they can drive the double-ended screws 5 to rotate.

[0034] As a technical optimization solution of the present invention, the outer walls of the two double-ended screws 5 located on the same side are symmetrically mounted with movable blocks 6, and the ends of the two movable blocks 6 close to the support plate 8 are hinged to the connecting plates 7, and the ends of the two connecting plates 7 away from the movable blocks 6 are rotatably connected to the outer walls of the support plate 8. During the rotation of the double-ended screw 5, the two movable blocks 6 can be driven to move toward or away from each other, thereby driving the two connecting plates 7 to rotate synchronously, driving the support plate 8 to move toward or away from the template body 10.

[0035] As a technical optimization solution of the present invention, a cavity is defined within the support plate 8. A chute 15 communicating with the cavity is defined on both outer walls of the support plate 8. Two movable plates 18 are symmetrically mounted within the cavity. A round rod 25 and a screw 26 are mounted on the outer walls of the two movable plates 18, respectively, which can slide up and down within the chute 15. The ends of the screws 26, away from the movable plates 18, pass through the chute 15 and are threadedly connected to nuts. The two movable plates 18 move up and down within the chute 15 via the round rods 25 and screws 26 mounted on the outer walls, respectively, providing limited guidance for the movement of the two movable plates 18 within the cavity.

[0036] As a technical optimization solution of the present invention, two rectangular plates 22 are installed on the outer walls of the two movable plates 18 at one end away from each other, a mounting plate 19 is installed on the outer wall of the support plate 8, and two first electric telescopic rods 9 are installed on the upper and lower outer walls of the mounting plate 19.

[0037] As a technical optimization of the present invention, each of the telescopic ends of the multiple first electric telescopic rods 9 is equipped with a connecting base 20, which is threadedly connected to a rectangular plate 22 adjacent to the connecting base 20 via a second bolt 21. The telescopic ends of the first electric telescopic rods 9, mounted on the upper and lower sides of the mounting plate 19, are connected to the rectangular plate 22 located away from the ends of the two movable plates 18. This allows the telescopic ends of the first electric telescopic rods 9 to simultaneously move the corresponding movable plates 18 within the cavity up and down as they extend and retract.

[0038] As a technical optimization solution of the present invention, the water spray mechanism includes two rotating blocks 11, which are rotatably mounted on the ends of the two movable plates 18 that are separated from each other. A plurality of water spray holes 13 are formed on the outer wall of one rotating block 11 on the side close to the support plate 8, and a connecting end 14 for connecting to an external water outlet pipe is installed on the outer wall of one rotating block 11 on the side away from the support plate 8. After the water outlet pipe of the external water outlet mechanism is connected to the connecting end 14, the plurality of water spray holes 13 can spray water outward, synchronously wetting the inner wall of the formwork body 10 and the steel frame inside the formwork body 10, thereby improving the subsequent adhesion between the concrete and the steel frame.

[0039] As a technical optimization solution of the present invention, a rough surface 23 is provided on the outer wall of the support plate 8 on one side close to the formwork body 10, and the other rotating block 11 abuts the bottom of the formwork body 10. When in use, the top of the other rotating block 11 abuts the bottom of the formwork body 10, which can block the bottom of the formwork body 10 and prevent the bottom of the formwork body 10 from contacting uneven ground and causing subsequent concrete overflow from the gap.

[0040] As a technical optimization solution of the present invention, a groove 24 is formed on the outer wall of one of the rotating blocks 11 near the multiple water spray holes 13. Multiple second electric telescopic rods 27 are installed within the groove 24. The telescopic ends of the multiple second electric telescopic rods 27 are connected to blades 28. After the concrete inside the formwork body 10 dries and hardens, one of the rotating blocks 11 can be controlled to rotate downward, and then the telescopic ends of the multiple second electric telescopic rods 27 can be controlled to extend the blades 28. These blades are inserted into the gap between the formwork body 10 and the concrete column, facilitating subsequent separation of the formwork body 10 from the concrete column.

[0041] As a technical optimization solution of the present invention, rotating plates 16 are threadedly installed on both ends of the mounting plate 19, and limiting plates 17 are rotatably installed on the outer walls of the adjacent sides of the two rotating plates 16.

[0042] In the present invention, when the user uses the device, the user moves the entire device to a position close to the position where the concrete column needs to be poured through the universal wheel 4, first removes the multiple first bolts 12, and then removes the second bracket 2 from the first bracket 1, and then pushes the end of the first bracket 1 with the notch around the steel frame, and finally installs the second bracket 2 and the first bracket 1 again through the multiple first bolts 12, so that the first bracket 1 and the second bracket 2 are matched and arranged around the steel frame.

[0043] Then, the multiple double-headed screws 5 can be controlled to rotate, and through the two cooperating movable blocks 6 and connecting plates 7, the multiple support plates 8 can be driven to move in the direction of approaching each other, and the telescopic ends of the two first electric telescopic rods 9 under the multiple mounting plates 19 can be synchronously controlled to extend, driving the movable plates 18 below to extend from the cavity, and then the multiple rotating blocks 11 below are controlled to rotate 90 degrees in the direction of approaching each other to be horizontal. Finally, the multiple templates can be placed on the side close to the multiple support plates 8, and the bottom end of the template is abutted against the top of the rotating block 11 below. The multiple templates are enclosed to form a template body 10. The multiple support plates 8 located on the outer wall of the template body 10 can provide auxiliary support and fixation to it, thereby ensuring the stability of the template body 10 after the concrete is injected, thereby improving the quality of the concrete column after pouring.

[0044] After the multiple support plates 8 cooperate to provide support and fixation for the outer wall of the formwork body 10, the external water outlet pipe can be connected to the multiple connection ends 14, so that the multiple water spray holes 13 on the side close to the multiple rotating blocks 11 above can spray water into the interior of the formwork body 10, and the multiple upper rotating blocks 11 are controlled to rotate slowly downward, driving the water spray angles of the multiple water spray holes 13 to adjust, so that the inner wall of the formwork body 10 and the surface of the steel frame can be wetted together, so that the subsequent bonding between the concrete and the steel frame is tighter, and the contact surface between the concrete and the inner wall of the formwork body 10 can be made smoother, thereby improving the aesthetics of the surface of the concrete column.

[0045] When pouring concrete on the inner wall of the formwork body 10, the telescopic ends of the two first electric telescopic rods 9 above the mounting plate 19 can be controlled to extend, driving multiple upper movable plates 18 to extend from the cavity, thereby shielding and protecting the upper part of the formwork body 10, preventing the concrete entering the formwork body 10 from splashing out, causing pollution to the surrounding environment and causing waste of this part of the concrete.

[0046] After the concrete pouring inside the formwork body 10 is completed, in order to prevent the water inside the concrete from evaporating quickly, resulting in poor quality of the concrete column after pouring, the two rectangular plates 22 on the outer wall of one of the upper movable plates 18 and the second bolts 21 between the telescopic ends of the two upper first electric telescopic rods 9 can be removed, and the movable plate 18 can be rotated toward the formwork body 10 with the round rod 25 as the center of the circle until the movable plate 18 is covered on the top of the formwork body 10, so that the movable plate 18 can cover and seal the concrete inside the formwork body 10, preventing the water inside the concrete from evaporating quickly, and also It can prevent other debris from falling into the interior of the formwork body 10 and affecting the final formation of the concrete column, and can protect the drying concrete; and after the concrete is dried, in order to ensure the final quality of the concrete column, it is necessary to spray water on the surface of the concrete column in time. When the concrete column needs to be moistened, one of the movable plates 18 covering the top of the formwork body 10 can be rotated and reset, and the multiple water spray holes 13 on the side close to the other several rotating blocks 11 above are controlled to spray water on the concrete surface for moistening, without the need for subsequent staff to hold a water pipe or scoop water for moistening.

[0047] After the concrete columns inside the formwork body 10 are dried, the formwork body 10 needs to be disassembled. In order to facilitate the disassembly of the formwork body 10, the multiple rotating blocks 11 located above can be controlled to rotate downward 90 degrees toward the formwork body 10, so that the multiple rotating blocks 11 above are in contact with the formwork body 10 and the concrete columns. At this time, the grooves 24 of the outer wall of the multiple rotating blocks 11 above are close to the gap between the formwork body 10 and the concrete columns. The telescopic ends of the multiple second electric telescopic rods 27 can be controlled to extend, driving the blades 28 to extend from the grooves 24 and insert into the gap between the formwork body 10 and the concrete columns, thereby facilitating the separation between the formwork body 10 and the concrete columns; and after the blades 28 are inserted into the gap, the multiple water spray holes 13 facing downward can be controlled to spray water downward into the gap between the formwork body 10 and the concrete columns to pre-wet the gap, thereby further improving the efficiency of subsequent disassembly of the formwork body 10.

[0048] After spraying water to moisten the gap between the formwork body 10 and the concrete column, the blade 28 can be controlled to retract and return to its original position, and the telescopic ends of the first electric telescopic rod 9 on the upper and lower sides of the mounting plate 19 can be controlled to retract, driving the two rotating blocks 11 to tightly abut against the upper and lower ends of the formwork body 10. By controlling the reversal of multiple double-headed screws 5, multiple support plates 8 are driven to move in a direction away from the formwork body 10. Since the two rotating blocks 11 abut against the upper and lower ends of the formwork body 10 and cooperate to form a clamping effect on the formwork, the two rotating blocks 11 can drive the separation between the formwork and the concrete column during the movement of the support plate 8, and there is no need for subsequent staff to use handheld tools to disassemble the formwork, thereby improving the efficiency of formwork disassembly.

[0049] After the formwork body 10 is completely removed from the surface of the concrete column, the multiple water spray holes 13 located above can be controlled to spray water downwards, which can wet the four sides of the concrete column on the one hand, and wet the concrete block attached to the side where the formwork contacts the concrete column on the other hand. After wetting, the entire device is moved from around the concrete column to a position away from the concrete column. In order to facilitate the subsequent use of the formwork, the side of the moistened formwork attached to the concrete block can be brought into contact with the outer wall of the side with the rough surface 23 of the support plate 8, and the rotating blocks 11 at the upper and lower ends of the support plate 8 are controlled to rotate downward to contact the formwork. The upper and lower ends of the plate are abutted against each other, and then the two rotating plates 16 are rotated toward the direction of the rough surface 23, and the limiting plates 17 on the side close to the two rotating plates 16 are rotated and extended to abut against the outer wall of the template clamped and fixed by the two rotating blocks 11, so as to limit the template between the two rotating blocks 11. At this time, the telescopic ends of the first electric telescopic rods 9 at the upper and lower ends of the mounting plate 19 can be controlled to extend and shorten in turn, driving the template to move up and down on the outer wall of the rough surface 23 of the support plate 8, so that the attached cement blocks can be removed during the friction between the template and the rough surface 23, thereby facilitating the subsequent use of the template without the need for manual removal by staff.

[0050] After the cement blocks on the outer wall of the formwork are removed, one of the movable plates 18 located below can be controlled to extend downward to its longest state, and then the rectangular plate 22 of the outer wall of the movable plate 18 and the second bolt 21 between the telescopic ends of the two first electric telescopic rods 9 can be removed, so that the movable plate 18 can be rotated below the support plate 8 to the top of the first bracket 1 and be in a horizontal state. Then, the position of the movable plate 18 is limited and fixed by threading the two nuts and the two screws 26, and the other support plate 8 symmetrical to the support plate 8 is controlled to move toward the movable plate 18 so that the other support plate 8 abuts against the end of the movable plate 18 away from the screw 26. At this time, since there is a horizontal movable plate 18 below the multiple support plates 8, the removed formwork can be placed on the top of the movable plate 18, and the multiple formwork can be transported with the help of the universal wheels 4 on both sides of the first bracket 1, without the need for subsequent staff to use additional transportation tools such as carts to transport multiple formwork.

[0051] When transporting multiple templates to a designated location for storage, if a small number of templates are found to be deformed, in order not to affect the subsequent use of this part of the template, this part of the template can be neatly placed inside the first bracket 1 and between two symmetrical support plates 8. Then, the multiple double-headed screws 5 can be controlled to rotate, driving the two symmetrical support plates 8 to move toward each other, so that the multiple templates between the two support plates 8 can be squeezed and shaped so that this part of the template can continue to be used later.

[0052] The preferred embodiments of the present invention disclosed above are intended only to help illustrate the present invention. These preferred embodiments do not exhaustively describe all details, nor do they limit the present invention to the specific embodiments described. Obviously, many modifications and variations are possible based on the content of this specification. These embodiments are selected and described in detail in this specification to better explain the principles and practical applications of the present invention, thereby enabling those skilled in the art to better understand and utilize the present invention. The present invention is limited only by the claims and their full scope and equivalents.

Claims

1. A template reinforcement auxiliary system, comprising a first bracket (1) and a template body (10), characterized in that: One end of the first bracket (1) is threadedly mounted with a second bracket (2) via a plurality of first bolts (12); the template body (10) is formed by four templates enclosed together; the template body (10) is located between the first bracket (1) and the second bracket (2); two universal wheels (4) are rotatably mounted on both side outer walls of the first bracket (1); the tops of the first bracket (1) and the second bracket (2) are both mounted with a support mechanism for reinforcing the template body (10); the support mechanism comprises a support plate (8) abutting against the outer wall of the template body (10); an adjustment mechanism is provided on the outer wall of the support plate (8) away from the template body (10); and a water spray mechanism is provided on the top of the support plate (8) for moistening the inner wall of the template body (10); The support plate (8) is provided with a cavity inside, and the outer walls on both sides of the support plate (8) are provided with a slide groove (15) connected to the cavity. Two movable plates (18) are symmetrically installed in the cavity. The outer walls on both sides of the two movable plates (18) are respectively provided with a round rod (25) and a screw (26) that can slide up and down in the slide groove (15). The ends of the two screws (26) away from the movable plate (18) pass through the slide groove (15) and are threadedly connected with nuts. Two rectangular plates (22) are installed on the outer walls of the two movable plates (18) at the ends away from each other, a mounting plate (19) is installed on the outer wall of the support plate (8), and two first electric telescopic rods (9) are installed on the upper and lower outer walls of the mounting plate (19); The telescopic ends of the plurality of first electric telescopic rods (9) are all installed with connecting seats (20), and the plurality of connecting seats (20) are all threadedly connected to the adjacent rectangular plates (22) via second bolts (21); The water spray mechanism comprises two rotating blocks (11), the two rotating blocks (11) being rotatably mounted on ends of the two movable plates (18) that are away from each other, a plurality of water spray holes (13) being provided on an outer wall of one of the rotating blocks (11) on a side close to the support plate (8), and a connection end (14) for connecting to an external water outlet pipe being installed on an outer wall of one of the rotating blocks (11) on a side away from the support plate (8); The outer wall of one side of the support plate (8) close to the template body (10) is provided with a rough surface (23), and the other rotating block (11) is in contact with the bottom of the template body (10); A groove (24) is formed on the outer wall of one of the rotating blocks (11) near the plurality of water spray holes (13), and a plurality of second electric telescopic rods (27) are installed inside the groove (24), and the telescopic ends of the plurality of second electric telescopic rods (27) are commonly connected to a blade (28); Rotating plates (16) are threadedly mounted on both ends of the mounting plate (19), and limiting plates (17) are rotatably mounted on the outer walls of the two rotating plates (16) adjacent to each other.

2. A formwork reinforcement auxiliary system according to claim 1, characterized in that: The adjustment mechanism comprises a plurality of double-ended screw rods (5), three side outer walls of the first bracket (1) and one side outer wall of the second bracket (2) are each equipped with two fixed blocks (3), and the plurality of double-ended screw rods (5) are rotatably mounted on the tops of the corresponding fixed blocks (3).

3. A formwork reinforcement auxiliary system according to claim 2, characterized in that: The outer walls of the two double-headed screw rods (5) located on the same side are symmetrically mounted with movable blocks (6), one end of the two movable blocks (6) close to the support plate (8) is hingedly connected to a connecting plate (7), and the ends of the two connecting plates (7) away from the movable blocks (6) are rotatably connected to the outer wall of the support plate (8).

Citation Information

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