Wall formwork vertical alignment device and alignment method

By designing a wall formwork vertical alignment device, which combines square plates, telescopic rods, and movable plates, the problem of time-consuming and labor-intensive vertical adjustment of aluminum alloy formwork was solved, enabling fast and convenient vertical alignment and improving construction efficiency and overall support strength.

CN116623944BActive Publication Date: 2026-05-01THE THIRD CONSTR ENG CO LTD OF CHINA CONSTR SECOND ENG BUREAU
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
THE THIRD CONSTR ENG CO LTD OF CHINA CONSTR SECOND ENG BUREAU
Filing Date
2023-06-08
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

In the existing technology, when aluminum alloy formwork needs to be checked and adjusted for verticality after the wall is formed, it is time-consuming and labor-intensive. Moreover, the overall structure of the formwork is relatively strong, and the verticality deviation is mainly offset to the outside at the corner, requiring multiple bolts to fix the diagonal braces for support and adjustment.

Method used

A wall template vertical alignment device is designed, including aluminum template, diagonal bracing components, adjustment components, and reinforcement components. By combining square plates, telescopic rods, hooks, and movable plates, the verticality of the aluminum template can be quickly adjusted, simplifying the alignment process.

Benefits of technology

It improves the efficiency of aluminum formwork verticality calibration, simplifies the operation process, reduces manpower consumption, and ensures the verticality of building walls and overall support strength.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to a wall formwork vertical alignment device and alignment method, and relates to the field of formwork construction. The device comprises an aluminum formwork and an alignment device erected on the right side of the aluminum formwork, the right side of the aluminum formwork is provided with a diagonal bracing assembly, and the alignment device comprises a ground connecting plate fixedly installed on a floor through expansion bolts. The application can erect a square plate, then reinforce the square plate through a reinforcing assembly, insert a square socket at the position of the verticality deviation of the aluminum formwork, then adjust the telescopic rod so that the sleeve block and the abutting rod on the telescopic rod are respectively abutted on the abutting seat and the abutting hook, the support of the diagonal bracing assembly is unlocked, then only the adjusting assembly needs to be operated, the abutting hook is lifted by the moving plate, the position of the verticality deviation can be extruded and adjusted, the verticality of the aluminum formwork can be aligned to meet the construction requirements, then the diagonal bracing assembly is installed on the aluminum formwork, the aluminum formwork can be continuously supported, the whole alignment process is simple and fast, and the alignment efficiency is improved.
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Description

A wall template vertical alignment device and alignment method Technical Field

[0001] This application relates to the field of template construction, and in particular to a vertical alignment device and method for wall templates. Background Technology

[0002] Aluminum alloy formwork, also known as concrete engineering aluminum alloy formwork, is a new generation of formwork system following plywood formwork, combined steel formwork system, steel-framed wood (bamboo) plywood system, large formwork system, and early stripping formwork system. Aluminum alloy formwork uses aluminum alloy profiles as the main material and is made through machining and welding processes. It is suitable for concrete engineering and is designed according to a 50mm module, consisting of panels, ribs, main profiles, flat formwork, corner formwork, and early stripping devices. The design and construction application of aluminum alloy formwork is an innovation in concrete engineering formwork technology, a driving force for prefabricated concrete technology, and a manifestation of the industrialization of construction technology.

[0003] To ensure the verticality of building walls, the verticality of the formwork needs to be checked after the wall formwork is installed, so that adjustments can be made in a timely manner. The overall integrity of the installed formwork structure is relatively strong. Since the verticality deviation of the formwork is usually in the corners and is offset to the outside, users need to drive multiple bolts into the floor and then fix diagonal braces for support and adjustment when correcting it, which is time-consuming and laborious. Therefore, we designed a wall formwork verticality calibration device and calibration method, which can support the position of the verticality deviation of the aluminum formwork and then directly adjust the verticality by adjusting the telescopic screw, which is simple and quick. Summary of the Invention

[0004] To address the existing technical problems, this application provides a wall template vertical alignment device and alignment method.

[0005] The following technical solution is adopted: A vertical alignment device for wall templates includes an aluminum template and an alignment device mounted on the right side of the aluminum template. A diagonal bracing assembly is provided on the right side of the aluminum template. The alignment device includes a connecting floor fixed to the floor by expansion bolts. A square plate is welded to the top of the connecting floor. Two rectangular grooves are opened on the square plate. An adjustment assembly is provided in the inner cavity of the rectangular grooves. A movable plate is provided on one side of the adjustment assembly. Four hooks are welded to the side of the movable plate near the aluminum template. Square insertion holes are opened at the four corners of the right side of the aluminum template. Adaptive plugs are provided on the square insertion holes. A telescopic rod is provided on one side of the plug. A sleeve block adapted to the plug is provided on the side of the telescopic rod near the plug. A stop bar that abuts against the inner cavity of the hook is provided at the end of the telescopic rod near the hook. A reinforcement assembly is provided between the top of the right side of the square plate and the beam template support column.

[0006] By adopting the above technical solution, this invention involves erecting a square plate, reinforcing the square plate with a reinforcing component, inserting square holes at the position where the aluminum template's verticality is deviated, and then adjusting the telescopic rod so that the sleeve block and the abutment rod on the telescopic rod abut against the abutment and the abutment hook respectively, unlocking the support of the diagonal bracing component. Then, simply operate the adjusting component to make the moving plate drive the abutment hook to rise and fall, which can squeeze and adjust the position of the verticality deviation, so that the verticality of the aluminum template is aligned to meet the construction requirements. Then, the diagonal bracing component is installed on the aluminum template to continue supporting the aluminum template. The entire alignment process is simple and quick, improving alignment efficiency.

[0007] Preferably, the plug-in includes a directional pin that is adapted to the square socket, a connecting plate is fixedly connected to the right side of the directional pin, a stop is welded to the right side of the connecting plate, and a sleeve block is fitted onto the surface of the stop.

[0008] Preferably, the telescopic rod includes a fixed tube fixedly connected to the lower part of the sleeve block, a threaded long rod slidably connected to the inner cavity of the fixed tube, the bottom of the threaded long rod being fixedly connected to the abutment rod, a threaded rotating block rotatably connected to the surface of the fixed tube and threadedly connected to the threaded long rod, an auxiliary rotating hole II being provided on the threaded rotating block, and slide bars being fixedly connected to both sides of the inner cavity of the fixed tube, and long sliding grooves sliding on the surface of the slide bars being provided on both sides of the threaded long rod.

[0009] Preferably, the adjustment component includes a threaded column rotatably connected to the inner cavity of the rectangular groove, a rotating seat fixedly connected to the surface of the threaded column, a plurality of auxiliary rotating holes arranged in a ring array on the surface of the rotating seat, a threaded plate threadedly connected to the surface of the threaded column, and the right side of the movable plate fixedly connected to the threaded plate.

[0010] By adopting the above technical solution, and by setting auxiliary rotating holes two and one, the user can insert a steel bar into the inner cavity of auxiliary rotating holes two and one for the effortless rotation of the threaded rotating block and the rotating seat, providing convenience for the user.

[0011] Preferably, the front and rear sides of the threaded plate are fixedly connected to limit sliders, and the front and rear sides of the rectangular groove cavity are provided with limit grooves for the limit sliders to slide.

[0012] By adopting the above technical solution, through the combined use of the limiting slider and the limiting groove, the limiting slider slides in the inner cavity of the limiting groove, which can limit the movement of the threaded plate, prevent the threaded plate from rotating with the rotation of the threaded column, improve the stability of the threaded plate when moving, and also support the lateral force of the threaded plate, thereby improving the support strength of the threaded plate.

[0013] Preferably, the diagonal bracing assembly includes a ground-connecting base fixed to the floor by expansion bolts, and multiple locking holes are provided on two ribs of the aluminum formwork. A U-shaped sleeve is fitted on each of the two ribs of the aluminum formwork, and a locking pin is provided through the top of the U-shaped sleeve, which passes through the inner cavity of one of the locking holes.

[0014] Preferably, the inner side of the base and one side of the U-shaped sleeve are rotatably connected to threaded tubes via a pivot, and a threaded rod is threadedly connected between the inner cavities of the two threaded tubes, with a handle fixedly connected to the surface of the threaded rod.

[0015] Preferably, two triangular steel plates are welded between the bottom right side of the square plate and the connecting floor, and the hook has an movable notch for the threaded rod to move.

[0016] By adopting the above technical solution and setting the triangular steel plate, the connection strength between the floor panel and the square panel can be improved, and the breakage at the connection between the square panel and the floor panel can be avoided.

[0017] Preferably, the reinforcement component includes a scaffolding steel pipe fixed to the crossbeam formwork support column by a cross coupler, with a rubber pad fitted at one end of the scaffolding steel pipe, and the left side of the rubber pad abutting against the right side of the top of the square plate.

[0018] A calibration method for a wall template vertical calibration device, the calibration steps are as follows:

[0019] Step 1: Measure the erected aluminum formwork using a laser measuring instrument. If a corner of the aluminum formwork deviates vertically, install expansion bolts at appropriate locations on the floor slab. Then, fix the square panel using the floor slab. Next, erect the reinforcement components as follows: Pick up the cross coupler and fix it to the beam formwork support column. Secure the scaffolding steel pipe to another clamp on the cross coupler. Put a rubber sleeve on the end of the scaffolding steel pipe and adjust it to rest against the top right side of the square panel to reinforce the square panel and prevent it from breaking at the base. (Note: The last sentence appears to be incomplete and possibly refers to a separate step regarding the aluminum formwork's vertical deviation.) Insert the directional pin into the square socket on the top, and then adjust the telescopic rod to the appropriate length. The operation process is as follows: Hold the fixed tube with one hand and manually hold the threaded rotating block with the other hand and rotate it. With the cooperation of the long slide and the slide bar, the part of the threaded long rod that is exposed in the inner cavity of the fixed tube will extend and shorten. Then, the sleeve block at one end of the telescopic rod will be fitted onto the surface of the abutment, and the abutment rod at the other end of the telescopic rod will abut against the inner cavity of the hook. The user inserts a steel bar into the inner cavity of the auxiliary rotating hole two and rotates the threaded rotating block with force to extend the threaded long rod and make the sleeve blocks and abutment rod at both ends of the telescopic rod firmly abut against each other.

[0020] Step Two: Unlock the support of the diagonal brace assembly. The operation process is as follows: Turn the handle to rotate the threaded rod, causing the two threaded tubes to move a small distance towards each other. Pick up the locking pin and disengage it from the U-shaped sleeve and the locking hole. Then operate the adjustment assembly as follows: Pick up the reinforcing bar and insert it into the inner cavity of the auxiliary rotating hole one. Turn the rotating seat to rotate, which in turn drives the threaded column to rotate. The threaded column then drives the threaded plate to move up and down, which in turn drives the moving plate to rise and fall. This causes the moving plate to drive the hook to rise and fall. The hook, through the hook rod, telescopic rod, and hook seat, drives the connecting plate to press the position of the aluminum template verticality deviation. The degree of pressing adjustment is determined by the laser measuring instrument. After adjusting to the appropriate level, the user turns the handle so that the U-shaped sleeve can be fitted onto the rib plate with the locking hole on the aluminum template. Then, insert the locking pin and turn the handle again to put the threaded tube and threaded rod in a tensioned state.

[0021] In summary, this application includes at least one of the following beneficial technical effects:

[0022] 1. This invention involves erecting a square plate, reinforcing it with a reinforcement component, inserting square holes at the location of the verticality deviation in the aluminum formwork, adjusting the telescopic rod so that the sleeve block and the abutment rod on the telescopic rod abut against the abutment and the abutment hook respectively, unlocking the support of the diagonal bracing component. Then, simply operate the adjustment component to move the moving plate and drive the abutment hook to rise and fall, thereby squeezing and adjusting the verticality deviation to ensure that the verticality of the aluminum formwork meets the construction requirements. Then, install the diagonal bracing component on the aluminum formwork to continue supporting it. The entire calibration process is simple and quick, improving calibration efficiency. It solves the problem that after the wall formwork is built, it is necessary to check the verticality of the formwork to ensure the verticality of the building wall and make timely adjustments. The installed formwork structure has strong overall integrity. Since the verticality deviation of the formwork is usually in the corner and is offset to the outside, users need to drive multiple bolts on the floor and fix the diagonal bracing for support and adjustment, which is time-consuming and laborious.

[0023] 2. The present invention uses the combination of a limiting slider and a limiting groove. The limiting slider slides in the inner cavity of the limiting groove, which can limit the movement of the threaded plate, prevent the threaded plate from rotating with the rotation of the threaded column, improve the stability of the threaded plate when moving, and also support the lateral force of the threaded plate, thereby improving the support strength of the threaded plate.

[0024] 3. By setting up auxiliary rotating holes two and one, the user can insert a steel bar into the inner cavity of auxiliary rotating holes two and one, which is used for the effortless rotation of the threaded rotating block and the rotating seat, providing convenience for the user.

[0025] 4. By incorporating triangular steel plates, this invention improves the connection strength between the floor panel and the square panel, preventing breakage at the connection point. Attached Figure Description

[0026] The accompanying drawings, which form part of this application, are used to provide a further understanding of the application and to make other features, objects, and advantages of the application more apparent. The illustrative embodiments and descriptions of this application are used to explain the application and do not constitute an undue limitation of the application. In the drawings:

[0027] Figure 1 is a schematic diagram of the structure of the present invention.

[0028] Figure 2 is a three-dimensional schematic diagram of the aluminum template and diagonal bracing assembly of the present invention.

[0029] Figure 3 is a three-dimensional disassembly diagram of the square plate and the movable plate of the present invention.

[0030] Figure 4 is a three-dimensional disassembled schematic diagram of the sleeve block, telescopic rod and abutment of the present invention.

[0031] Figure 5 is an enlarged schematic diagram of point A in Figure 4 of this invention.

[0032] Explanation of reference numerals in the attached drawings: 1. Aluminum formwork; 2. Diagonal brace assembly; 21. Ground base; 22. Lock hole; 23. U-shaped sleeve; 24. Locking pin; 25. Threaded pipe; 26. Threaded rod; 27. Handle; 3. Floor connecting; 4. Square plate; 5. Rectangular groove; 6. Adjustment assembly; 61. Threaded column; 62. Rotating seat; 63. Threaded plate; 64. Limiting slider; 65. Limiting slide groove; 66. Auxiliary rotating hole one; 7. Moving plate; 8. 12. Hook; 9. Square insertion hole; 10. Directional pin; 11. Connecting plate; 12. Reinforcing component; 121. Cross coupler; 122. Scaffolding steel pipe; 123. Rubber pad; 13. Abutment seat; 14. Sleeve block; 15. Telescopic rod; 151. Fixed pipe; 152. Threaded long rod; 153. Threaded rotating block; 154. Auxiliary rotating hole two; 155. Long sliding groove; 16. Abutment rod; 17. Movable notch; 18. Triangular steel plate. Detailed Implementation

[0033] To enable those skilled in the art to better understand the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present application, and not all embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative effort should fall within the scope of protection of the present application.

[0034] It should be noted that the terms "first," "second," etc., in the specification, claims, and accompanying drawings of this application are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged where appropriate for the embodiments of this application described herein. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion; for example, a process, method, system, product, or apparatus that comprises a series of steps or units is not necessarily limited to those steps or units explicitly listed, but may include other steps or units not explicitly listed or inherent to such processes, methods, products, or apparatus.

[0035] In this application, the terms "upper," "lower," "left," "right," "front," "rear," "top," "bottom," "inner," "outer," "middle," "vertical," "horizontal," "lateral," and "longitudinal" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. These terms are primarily for the purpose of better describing this application and its embodiments, and are not intended to limit the indicated device, element, or component to having a specific orientation, or to be constructed and operated in a specific orientation.

[0036] Furthermore, in addition to indicating location or positional relationship, some of the aforementioned terms may also have other meanings. For example, the term "above" may also be used in some cases to indicate a certain dependency or connection relationship. Those skilled in the art can understand the specific meaning of these terms in this application based on the specific circumstances.

[0037] In addition, the term "multiple" should mean two or more.

[0038] It should be noted that, unless otherwise specified, the embodiments and features described in this application can be combined with each other. This application will now be described in detail with reference to the accompanying drawings and embodiments.

[0039] The present application will be further described in detail below with reference to Figures 1-5.

[0040] Example 1: Referring to Figures 1-5, this application discloses a wall template vertical alignment device, including an aluminum template 1 and an alignment device mounted on the right side of the aluminum template 1. A diagonal bracing assembly 2 is provided on the right side of the aluminum template 1. The alignment device includes a connecting floor 3 fixed to the floor by expansion bolts. A square plate 4 is welded to the top of the connecting floor 3. Two rectangular grooves 5 are formed on the square plate 4. An adjustment assembly 6 is provided inside the rectangular grooves 5. A movable plate 7 is provided on one side of the adjustment assembly 6. Four hooks 8 are welded to the side of the movable plate 7 closest to the aluminum template 1. Four corners on the right side of the aluminum template 1 are provided with... A square socket 9 is provided with a matching plug-in. The plug-in includes a directional pin 10 that matches the square socket 9. A connecting plate 11 is fixedly connected to the right side of the directional pin 10. A stop 13 is welded to the right side of the connecting plate 11. A sleeve block 14 is fitted onto the surface of the stop 13. A telescopic rod 15 is provided on one side of the plug-in. A sleeve block 14 that matches the plug-in is provided on the side of the telescopic rod 15 near the plug-in. A stop rod 16 that abuts against the inner cavity of the stop hook 8 is provided at the end of the telescopic rod 15 near the stop hook 8. A reinforcing component 12 is provided between the top right side of the square plate 4 and the crossbeam template support column.

[0041] Example 2: Referring to Figures 1-5, it is basically the same as Example 1, but further: the telescopic rod 15 includes a fixed tube 151 fixedly connected to the lower part of the sleeve block 14. A threaded long rod 152 is slidably connected to the inner cavity of the fixed tube 151. The bottom of the threaded long rod 152 is fixedly connected to the abutment rod 16. A threaded rotating block 153 is rotatably connected to the surface of the fixed tube 151 and threadedly connected to the threaded long rod 152. An auxiliary rotating hole 154 is opened on the threaded rotating block 153. Both sides of the inner cavity of the fixed tube 151 are fixedly connected to... The slide bar has a long threaded rod 152 with long grooves 155 on both sides for sliding on the surface of the slide bar. The adjusting assembly 6 includes a threaded post 61 rotatably connected to the inner cavity of the rectangular groove 5. A rotating seat 62 is fixedly connected to the surface of the threaded post 61. Multiple auxiliary rotating holes 66 are arranged in a ring array on the surface of the rotating seat 62. A threaded plate 63 is threadedly connected to the surface of the threaded post 61. The right side of the moving plate 7 is fixedly connected to the threaded plate 63. Limiting sliders 64 are fixedly connected to the front and rear sides of the threaded plate 63. The inner cavity of the rectangular groove 5... Both the front and rear sides are provided with limiting grooves 65 for the sliding of the limiting slider 64. Two triangular steel plates 18 are welded between the bottom right side of the square plate 4 and the connecting floor 3. The hook 8 is provided with a movable notch 17 for the threaded rod 152 to move. The triangular steel plates 18 improve the connection strength between the connecting floor 3 and the square plate 4, preventing the connection between the square plate 4 and the connecting floor 3 from breaking. With the auxiliary rotating hole 2 154 and the auxiliary rotating hole 1 66, the user can insert a steel bar into the auxiliary rotating hole 2 154. The inner cavity of the auxiliary rotating hole 66 is used for the effortless rotation of the threaded rotating block 153 and the rotating seat 62, providing convenience for the user. Through the cooperation of the limiting slider 64 and the limiting groove 65, the limiting slider 64 slides in the inner cavity of the limiting groove 65, which can limit the movement of the threaded plate 63, prevent the threaded plate 63 from rotating with the rotation of the threaded column 61, improve the stability of the threaded plate 63 when moving, and also support the lateral force of the threaded plate 63, thereby improving the support strength of the threaded plate 63.

[0042] Example 3: Referring to Figures 1 and 2, it is basically the same as Example 1, but further: The diagonal bracing assembly 2 includes a ground-connecting base 21 fixed to the floor by expansion bolts. The aluminum formwork 1 has multiple locking holes 22 on two ribs. The aluminum formwork 1 has a U-shaped sleeve plate 23 on each of the two ribs. A locking pin 24 is provided through the top of the U-shaped sleeve plate 23. The locking pin 24 passes through the inner cavity of one of the locking holes 22. The inner side of the ground-connecting base 21 and one side of the U-shaped sleeve plate 23 are rotatably connected by a threaded tube 25 through a rotating shaft. A threaded rod 26 is threaded between the inner cavities of the two threaded tubes 25. A handle 27 is fixedly connected to the surface of the threaded rod 26.

[0043] Example 4: Referring to Figure 1, it is basically the same as Example 1, but further: the reinforcement component 12 includes a scaffolding steel pipe 122 fixedly installed on the cross beam template support column by a cross coupler 121. One end of the scaffolding steel pipe 122 is fitted with a rubber pad 123, and the left side of the rubber pad 123 abuts against the right side of the top of the square plate 4.

[0044] A calibration method for a wall template vertical calibration device, the calibration steps are as follows:

[0045] Step 1: Measure the erected aluminum formwork 1 using a laser measuring instrument. If a corner of the aluminum formwork 1 has a vertical deviation, install expansion bolts at appropriate positions on the floor slab. Then, fix the square plate 4 using the floor connecting plate 3. Next, erect the reinforcement component 12. The erection process is as follows: Pick up the cross coupler 121 and fix it to the beam formwork support column. Fix the scaffolding steel pipe to another clamp on the cross coupler 121. Put a rubber sleeve on the end of the scaffolding steel pipe and adjust it to rest against the top right side of the square plate 4 to reinforce the square plate 4 and prevent it from breaking from the root. Insert the directional pin 1 into the square insertion hole 9 at the corner where the aluminum formwork 1 has a vertical deviation. Insert the telescopic rod 15 into the square socket 9, and then adjust the telescopic rod 15 to a suitable length. The operation process is as follows: Hold the fixed tube 151 with one hand and manually hold the threaded rotating block 153 with the other hand and rotate it. With the cooperation of the long slide groove 155 and the slide bar, the part of the threaded long rod 152 that is exposed in the inner cavity of the fixed tube 151 will extend and shorten. Then, the sleeve block 14 at one end of the telescopic rod 15 will be fitted onto the surface of the abutment 13, and the abutment rod 16 at the other end of the telescopic rod 15 will abut against the inner cavity of the hook 8. The user inserts a steel bar into the inner cavity of the auxiliary rotating hole 154 and rotates the threaded rotating block 153 with force, so that the threaded long rod 152 extends and the sleeve block 14 and the abutment rod 16 at both ends of the telescopic rod 15 are firmly abutted.

[0046] Step 2: Unlock the support of the diagonal brace assembly 2. The operation process is as follows: Turn the handle 27 to rotate the threaded rod 26, causing the two threaded tubes 25 to move a small distance towards each other. Pick up the locking pin 24 and disengage it from the U-shaped sleeve 23 and the locking hole 22. Then operate the adjustment assembly 6. The operation process is as follows: Pick up the steel bar and insert it into the inner cavity of the auxiliary rotating hole 66. Turn the rotating seat 62 to rotate, which in turn drives the threaded column 61 to rotate. The threaded column 61 drives the threaded plate 63 to move up and down, which in turn drives the moving plate 7 to rise and fall. The moving plate 7 drives the hook 8 to rise and fall. The hook 8, through the abutment rod 16, the telescopic rod 15 and the abutment seat 13, drives the connecting plate 11 to press the position of the verticality deviation of the aluminum template 1. The degree of compression adjustment is determined by the laser measuring instrument. After adjusting to the appropriate position, the user turns the handle 27 so that the U-shaped sleeve 23 can be fitted onto the rib plate with the locking hole 22 on the aluminum template 1. Then insert the locking pin 24. Then turn the handle 27 to put the threaded tube 25 and the threaded rod 26 into a tensioned state.

[0047] In summary, this wall template vertical alignment device and method involves erecting a square plate 4, reinforcing it with a reinforcing component 12, inserting square holes 9 at the verticality deviation points of the aluminum template 1, adjusting the telescopic rod 15 so that the sleeve block 14 and the abutment rod 16 on the telescopic rod 15 abut against the abutment seat 13 and the abutment hook 8 respectively, unlocking the support of the diagonal brace component 2, and then simply operating the adjusting component 6 to move the moving plate 7 and drive the abutment hook 8 to rise and fall, thereby squeezing and adjusting the verticality deviation points to align the aluminum template 1 vertically to the required standard. The construction requirements are as follows: Next, install the diagonal brace component 2 on the aluminum formwork 1 and continue to support the aluminum formwork 1. The entire calibration process is simple and quick, improving calibration efficiency. It solves the problem that in order to ensure the verticality of the building wall, it is necessary to check the verticality of the formwork after the wall is formed, so as to make timely adjustments. The installed formwork structure has strong overall integrity. Since the deviation of the verticality of the formwork is usually in the corner and is offset to the outside, the user needs to drive multiple bolts on the floor and then fix the diagonal brace for support and adjustment when correcting it, which is time-consuming and laborious.

[0048] The above description is merely a preferred embodiment of this application and is not intended to limit this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the protection scope of this application.

Claims

1. A wall template vertical alignment device, characterized in that: Includes an aluminum formwork (1) and a calibration device mounted on the right side of the aluminum formwork (1). A diagonal bracing assembly (2) is provided on the right side of the aluminum formwork (1). The calibration device includes a connecting floor (3) fixed to the floor by expansion bolts. A square plate (4) is welded to the top of the connecting floor (3). Two rectangular grooves (5) are opened on the square plate (4). An adjustment assembly (6) is provided inside the rectangular grooves (5). A movable plate (7) is provided on one side of the adjustment assembly (6). 7) Four hooks (8) are welded on one side of the aluminum template (1). Square insertion holes (9) are opened at the four corners of the right side of the aluminum template (1). Inserts that are compatible with the square insertion holes (9) are provided on the square insertion holes (9). A telescopic rod (15) is provided on one side of the insert. A sleeve block (14) that is compatible with the insert is provided on the side of the telescopic rod (15) near the insert. A stop rod (16) that abuts against the inner cavity of the hook (8) is provided at the end of the telescopic rod (15) near the hook (8). The right side of the square plate (4) A reinforcing component (12) is provided between the top of the side and the crossbeam formwork support column. The plug includes a directional pin (10) that is adapted to the square insertion hole (9). A connecting plate (11) is fixedly connected to the right side of the directional pin (10). A stop (13) is welded to the right side of the connecting plate (11). The sleeve block (14) is fitted onto the surface of the stop (13). The telescopic rod (15) includes a fixing tube (151) fixedly connected to the bottom of the sleeve block (14). The inner cavity of the fixing tube (151) A threaded rod (152) is slidably connected. The bottom of the threaded rod (152) is fixedly connected to the abutment (16). A threaded rotating block (153) is rotatably connected to the surface of the fixed tube (151) and threadedly connected to the threaded rod (152). An auxiliary rotating hole (154) is provided on the threaded rotating block (153). Sliding strips are fixedly connected to both sides of the inner cavity of the fixed tube (151). Long sliding grooves (155) that slide on the surface of the sliding strips are provided on both sides of the threaded rod (152).

2. The wall template vertical alignment device according to claim 1, characterized in that: The adjustment component (6) includes a threaded column (61) rotatably connected to the inner cavity of the rectangular groove (5). A rotating seat (62) is fixedly connected to the surface of the threaded column (61). A plurality of auxiliary rotating holes (66) are arranged in an annular array on the surface of the rotating seat (62). A threaded plate (63) is threadedly connected to the surface of the threaded column (61). The right side of the moving plate (7) is fixedly connected to the threaded plate (63).

3. The wall template vertical alignment device according to claim 2, characterized in that: The front and rear sides of the threaded plate (63) are fixedly connected to limit sliders (64), and the front and rear sides of the inner cavity of the rectangular groove (5) are provided with limit grooves (65) for the limit sliders (64) to slide.

4. A wall template vertical alignment device according to claim 3, characterized in that: The diagonal bracing assembly (2) includes a ground support (21) fixed to the floor by expansion bolts. The aluminum template (1) has multiple locking holes (22) on two ribs. The aluminum template (1) has a U-shaped sleeve plate (23) on each of the two ribs. A locking pin (24) is provided through the top of the U-shaped sleeve plate (23). The locking pin (24) passes through the inner cavity of one of the locking holes (22).

5. A wall template vertical alignment device according to claim 4, characterized in that: The inner side of the connecting base (21) and one side of the U-shaped sleeve plate (23) are rotatably connected to threaded tubes (25) via a rotating shaft. A threaded rod (26) is threaded between the inner cavities of the two threaded tubes (25), and a handle (27) is fixedly connected to the surface of the threaded rod (26).

6. A wall template vertical alignment device according to claim 5, characterized in that: Two triangular steel plates (18) are welded between the bottom right side of the square plate (4) and the connecting floor (3). The hook (8) has an movable notch (17) for the threaded rod (152) to move.

7. A wall template vertical alignment device according to claim 6, characterized in that: The reinforcement component (12) includes a scaffolding steel pipe (122) fixedly installed on the crossbeam template support column by a cross coupler (121). One end of the scaffolding steel pipe (122) is fitted with a rubber pad (123), and the left side of the rubber pad (123) abuts against the right side of the top of the square plate (4).

8. A calibration method for a wall formwork vertical calibration device, which is applied to the wall formwork vertical calibration device described in 7, characterized in that, The calibration steps are as follows: Step 1: Measure the erected aluminum formwork (1) using a laser measuring instrument. If a certain corner of the aluminum formwork (1) has a vertical deviation, install expansion bolts at appropriate positions on the floor slab. Then fix the square plate (4) by connecting the floor (3). Next, erect the reinforcement component (12). The erection process is as follows: Pick up the cross coupler (121) and fix the cross coupler (121) on the beam formwork support column. Fix the scaffolding steel pipe with another clamp on the cross coupler (121). Put a rubber sleeve on the end of the scaffolding steel pipe and adjust it to abut the top right side of the square plate (4) to reinforce the square plate (4) and prevent the square plate (4) from breaking from the root. The square insertion hole (9) at the vertical deviation angle of the plate (1) is used to insert the directional pin (10) into the square insertion hole (9). Then, the telescopic rod (15) is adjusted to a suitable length. The operation process is as follows: Hold the fixed tube (151) with one hand and manually hold the threaded rotating block (153) with the other hand and rotate it. With the cooperation of the long slide groove (155) and the slide bar, the part of the threaded long rod (152) that is exposed in the inner cavity of the fixed tube (151) is lengthened and shortened. Then, the sleeve block (14) at one end of the telescopic rod (15) is fitted onto the surface of the abutment (13), and the abutment rod (16) at the other end of the telescopic rod (15) abuts against the inner cavity of the abutment hook (8). The user inserts a steel bar into the inner cavity of the auxiliary rotating hole two (154). In the cavity, forcefully rotate the threaded rotating block (153) to extend the threaded rod (152), so that the sleeve blocks (14) and the abutment rod (16) at both ends of the telescopic rod (15) are firmly abutted; Step 2: Unlock the support of the diagonal brace assembly (2), the operation process is as follows: rotate the handle (27) to drive the threaded rod (26) to rotate, so that the two threaded tubes (25) move a small distance towards each other, pick up the locking pin (24) and make the locking pin (24) disengage from the U-shaped sleeve plate (23) and the locking hole (22), then operate the adjustment assembly (6), the operation process is as follows: pick up the steel bar and insert it into the inner cavity of the auxiliary rotating hole one (66), turn the rotating seat (62) to rotate, and then drive the threaded column (61) to rotate. When the threaded column (61) moves, the threaded plate (63) moves up and down, which in turn moves the moving plate (7) up and down, so that the moving plate (7) moves the hook (8) up and down. The hook (8) moves the connecting plate (11) through the abutment rod (16), the telescopic rod (15) and the abutment seat (13) to squeeze the position of the verticality deviation of the aluminum template (1). The degree of compression adjustment is determined according to the laser measuring instrument. After adjusting to the appropriate position, the user turns the handle (27) so that the U-shaped sleeve (23) can be fitted onto the rib plate with the locking hole (22) on the aluminum template (1). Then, the locking pin (24) is inserted. Then, the handle (27) is turned so that the threaded tube (25) and the threaded rod (26) are in a tensioned state.

Citation Information

Patent Citations

  • Aluminum alloy template bracing correcting unit

    CN206545394U

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    CN208996446U