Template splicing fixing piece capable of achieving rapid positioning

By using a quick-positioning template splicing fastener, and by combining components such as a fixed base plate, a crossbeam back plate, and a fixed upper frame, the problem of complexity and time-consuming traditional template splicing and fixing methods is solved, thus achieving stable clamping of the template and improving construction efficiency.

CN224078696UActive Publication Date: 2026-04-03徐美娟
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-23
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

Traditional formwork splicing and fixing methods are complex to install, time-consuming, prone to grout leakage and deformation, and repeated use affects accuracy and reliability, resulting in low construction efficiency.

Method used

A quick-positioning template splicing fastener was designed. By combining components such as the fixed base plate, the rear plate of the crossbeam, and the fixed upper frame, it ensures that all four sides of the template are clamped and restricted to prevent deformation and displacement. The front baffle, positioning plate, and front plate of the crossbeam provide front blocking to enhance structural stability.

Benefits of technology

It enables rapid installation and disassembly of formwork, ensuring the stability of the formwork during construction, preventing concrete from splitting, and improving construction quality and efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a formwork splicing fixing piece capable of achieving rapid positioning, and relates to the technical field of building formwork connecting pieces. A tightly-attached fixing bottom plate is installed at the lower end of the rear side wall of the building formwork. The fixing bottom plate, the cross beam rear plate and the fixing upper frame are attached to the rear side of the building formwork, the two side edge plates and the left end and the right end of the fixing upper frame are attached to the two sides of the building formwork, the front baffle, the positioning plate and the cross beam front plate are attached to the front side of the building formwork to stop and limit the front side of the building formwork, and therefore the four edges of the building formwork can be clamped and limited; when the middle of the assembled building formwork is filled with concrete, the assembled building formwork cannot be opened, so that the assembled building formwork is stably clamped, and the problems that the assembled building formwork needs to be fixedly connected due to the fact that concrete needs to be poured after assembly, and if the upper end and the lower end of the building formwork cannot be temporarily fixed and limited, the assembled building formwork cannot be opened are solved. The four building templates are expanded by the poured concrete, so that the concrete is lost and is difficult to clean.
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Description

Technical Field

[0001] This utility model relates to the field of building formwork connectors, and in particular to a quick-positioning formwork splicing and fixing component. Background Technology

[0002] In construction, formwork is a crucial tool for shaping concrete components, and the splicing and fixing of formwork are key factors affecting construction quality and efficiency. Traditional formwork splicing and fixing methods typically rely on mechanical connectors such as bolts and clips. While this method ensures the stability of the formwork to a certain extent, it often faces problems in actual construction, including complex installation, long installation time, and susceptibility to grout leakage and deformation. Furthermore, the repeated use of traditional fasteners can affect their accuracy and reliability, leading to additional time and manpower for adjustments during subsequent construction. To solve these problems, the market demands a construction formwork splicing and fixing component that can be quickly positioned and efficiently fixed. Such a fastener design must balance simplicity and reliability, enabling not only rapid installation and disassembly but also ensuring the stability of the formwork during concrete pouring.

[0003] During the use of splicing fasteners, since four building formwork pieces need to be assembled and then concrete needs to be poured, the assembled building formwork pieces need to be fixed and connected. If the upper and lower ends of the building formwork cannot be temporarily fixed and restrained, the poured concrete will cause the four building formwork pieces to expand apart, resulting in concrete loss that is difficult to clean. Utility Model Content

[0004] This utility model relates to a quick-positioning template splicing and fixing component. During the assembly of four building templates, the fixed base plate, the rear plate of the crossbeam, and the fixed upper frame are attached to the rear side of the building template. The two side plates and the left and right ends of the fixed upper frame are attached to the sides of the building template. The front baffle, the positioning plate, and the front plate of the crossbeam are attached to the front side of the building template to block and restrict it. In this way, all four sides of the building template are clamped and restricted. When concrete is poured into the middle of the assembled building template, it will not spread out, thus providing a stable clamping for the assembled building template. By attaching the fixed base plate, the rear plate of the crossbeam, and the fixed upper frame to the rear side of the template, the structural stability of the assembled template can be effectively enhanced. The design of the front baffle, the positioning plate, and the front plate of the crossbeam provides front-side blocking and restriction, ensuring that the front of the template will not spread outward during concrete pouring. In this way, all four edges of the building template are clamped and restricted, effectively preventing deformation and displacement, thereby ensuring the smooth progress of construction.

[0005] In a first aspect, this utility model provides a quick-positioning template splicing and fixing component, specifically comprising: a building template; a fixed base plate tightly fitted to the lower end of the rear side wall of the building template; symmetrical side plates fixedly installed on the front side of the fixed base plate, and positioning holes provided on the front side walls of the side plates; front baffles slidably installed on the two side plates, and slots provided at both ends of the front baffles.

[0006] The front side of the front baffle is fixedly installed with symmetrical threaded extension rods, and a limiting disc is rotatably mounted on the threaded extension rod. A fixing member is fixedly installed on the front side of the limiting disc, and short columns are evenly fixedly installed on the annular sidewall of the fixing member. The upper end of the front baffle is fixedly installed with symmetrical threaded rods B, and symmetrical limiting cylinders B are rotatably mounted on the threaded rods B.

[0007] A vertically upward positioning plate is fixedly installed in the middle of the upper part of the front baffle, and a crossbeam front plate is slidably installed on the positioning plate; through round holes are opened at both ends of the crossbeam front plate; and a plate groove hole is opened in the middle of the crossbeam front plate.

[0008] Furthermore, vertically upward guide rods are fixedly installed at both ends of the upper end of the fixed base plate, and symmetrical threaded rods A are fixedly installed at the upper end of the fixed base plate, while symmetrical limiting cylinders A are rotatably installed on the threaded rods A.

[0009] Furthermore, a through-beam rear plate is fitted onto the two threaded rods A, and through-guide holes are respectively opened at both ends of the through-beam rear plate. A through-fixed upper frame is fitted onto the upper end of the two threaded rods A, and through-guide holes are respectively opened at both ends of the fixed upper frame. A fixing strip frame is fixedly installed on the inner side wall of the fixed upper frame.

[0010] Furthermore, the middle part of the sidewalls of the two side plates is provided with a pivot groove, and a pivot is rotatably inserted in the pivot groove. The annular sidewalls at the front ends of the two pivots are respectively provided with annular grooves.

[0011] Furthermore, rotating rings are rotatably installed at the annular grooves of the two rotating shafts, and a through rod hole is opened at the left end of the rotating ring. Limiting plates are fixedly installed on the annular sidewalls of the two rotating rings respectively.

[0012] Furthermore, cantilever plates are fixedly installed at the left ends of the front ends of the two side plates, and through positioning spring rods are inserted in the middle of the cantilever plates. Stops are fixedly installed at the front ends of the two positioning spring rods.

[0013] This utility model provides a template splicing and fixing component for quick positioning, which has the following beneficial effects:

[0014] In this utility model, during the assembly of four building formwork panels, the fixed base plate, the rear plate of the crossbeam, and the fixed upper frame are attached to the rear side of the building formwork. The two side plates and the left and right ends of the fixed upper frame are attached to the sides of the building formwork. The front baffle, the positioning plate, and the front plate of the crossbeam block and restrict the front side of the building formwork. In this way, all four sides of the building formwork are clamped and restricted, and the formwork will not be stretched when concrete is poured in the middle. This provides a stable clamping effect on the assembled building formwork. By attaching the fixed base plate, the rear plate of the crossbeam, and the fixed upper frame to the rear side of the formwork, the structural stability of the assembled formwork can be effectively enhanced. The design of the front baffle, the positioning plate, and the front plate of the crossbeam provides front-side blocking and restriction, ensuring that the front of the formwork will not be stretched outward during concrete pouring. In this way, all four edges of the building formwork are clamped and restricted, effectively preventing deformation and displacement, thus ensuring the smooth progress of construction.

[0015] By attaching the front side of the fixed base plate to the back side of the building formwork, attaching the two side plates to the sides of the building formwork, and attaching the back wall of the front baffle to the front side of the building formwork, the front baffle moves backward to firmly clamp the building formwork. The backward movement of the front baffle can provide a better clamping effect, making the building formwork more stable during construction and reducing the possibility of displacement or tilting. Attached Figure Description

[0016] To more clearly illustrate the technical solution of this utility model, the accompanying drawings of the embodiments will be briefly described below.

[0017] In the attached diagram:

[0018] Figure 1 A schematic diagram of the left front upper axis view structure of this application is shown;

[0019] Figure 2 A schematic diagram of the left rear upper axis view structure of this application is shown;

[0020] Figure 3 A cross-sectional view of the side panel portion of this application is shown;

[0021] Figure 4 A schematic diagram of the exploded structure of this application after removing the template portion is shown.

[0022] List of reference numerals

[0023] 1. Fixed base plate; 101. Guide rod; 102. Threaded rod A; 103. Limiting cylinder A; 104. Rear plate of crossbeam; 105. Fixed upper frame; 106. Fixed strip frame; 2. Side plate; 201. Rotary shaft groove; 202. Rotary shaft; 203. Rotary ring; 204. Limiting plate; 205. Cantilever plate; 206. Positioning spring rod; 3. Front baffle; 301. Threaded extension rod; 302. Limiting disc; 303. Fixing component; 304. Threaded rod B; 305. Limiting cylinder B; 306. Positioning plate; 307. Front plate of crossbeam; 4. Building formwork. Detailed Implementation

[0024] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. Based on the described embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0025] Example 1: Please refer to Figures 1 to 4 :

[0026] This utility model proposes a quick-positioning template splicing and fixing component, including: a building template 4; a fixed base plate 1 tightly attached to the lower end of the rear side wall of the building template 4; four building templates 4 are assembled into a column template, and symmetrical side plates 2 are fixedly installed on the front side of the fixed base plate 1, with positioning holes on the front side wall of the side plates 2; a pivot groove 201 is respectively opened in the middle part of the side wall of the two side plates 2, and a pivot 202 is rotatably inserted into the pivot groove 201; annular grooves are respectively opened on the annular side wall of the front end of the two pivots 202, and a rotating ring 203 is rotatably installed in the annular groove of the two pivots 202, with a through rod hole opened at the left end of the rotating ring 203, and the limiting plate 204 facing upwards on the rotating ring 203. The rod holes on the upper part of the two rotating rings 203 correspond to the positioning holes on the side plate 2. Limiting plates 204 are fixedly installed on the annular side walls of the two rotating rings 203 respectively. Cantilever plates 205 are fixedly installed on the left ends of the front ends of the two side plates 2 respectively. A through positioning spring rod 206 is inserted into the middle of the cantilever plate 205. Pull the rear end of the positioning spring rod 206 out of the positioning holes of the rotating ring 203 and the side plate 2. At this time, the rotating ring 203 is unrestricted. The rotating ring 203 rotates and the limiting plate 204 faces downward. At this time, grasp the front baffle 3 and move it forward to remove the front baffle 3 from the side plate 2. The front ends of the two positioning spring rods 206 are fixedly installed with stop heads. Pull rings are fixedly installed on the side walls of the stop heads. Grabbing the pull rings facilitates forward and backward movement. Pulling the positioning spring rod 206 aligns it with the positioning hole on the side plate 2. The positioning spring rod 206 passes through the cantilever plate 205, and its rear end passes through the rod hole of the rotating ring 203 and is inserted into the positioning hole of the side plate 2. The positioning spring rod 206 temporarily fixes and restricts the rotating ring 203. When the rotating ring 203 is touched, it will not rotate. At this time, the limiting plate 204 faces upward and is attached to the side wall of the limiting plate 302, temporarily blocking and restricting the limiting plate 302. The limiting plate 302 temporarily fixes and restricts the threaded extension rod 301 and the front baffle 3. The front baffle 3 cannot move forward when subjected to force. The front extension rod 301 and the front baffle 3 are slidably installed on the two side plates 2. The front baffle 3 has slots at both ends. The front ends of the two side plates 2 pass through the slots at both ends of the front baffle 3. The front side of the front baffle 3 is fixedly installed with symmetrical threaded extension rods 301. A limiting disc 302 is rotatably mounted on the threaded extension rods 301. A fixing member 303 is fixedly installed on the front side of the limiting disc 302. Short columns are evenly fixedly installed on the annular sidewall of the fixing member 303. Grasping the short columns on the fixing member 303 makes it easy to rotate. The fixing member 303 will move back and forth when rotating on the threaded extension rods 301. The upper end of the front baffle 3 is fixedly installed with symmetrical threaded rods B304. A symmetrical limiting cylinder B305 is rotatably mounted on the threaded rods B304.Push the front baffle 3 backward, and the positioning plate 306 will also move backward to contact the front side of the formwork 4. The rear wall of the front baffle 3 will then contact the front side of the formwork 4. Grasp the fixing piece 303 and rotate it backward to move the limiting plate 302. The limiting plate 302 will move backward to contact the front end of the side plate 2. A vertically upward positioning plate 306 is fixedly installed in the middle of the upper part of the front baffle 3, and a crossbeam front plate 307 is slidably installed on the positioning plate 306. Adjust the position of the crossbeam front plate 307 by moving it up and down according to the height of the formwork 4. The rear side of 307 blocks and restricts the front side of the building formwork 4, then grasps the limiting cylinders B305 at both ends and rotates them in opposite directions to clamp and restrict the front plate 307 of the crossbeam. The front plate 307 will not move up or down when touched. Two threaded rods B304 pass through the round holes at both ends of the front plate 307. The front plate 307 has through round holes at both ends. A slot hole is formed in the middle of the front plate 307, and a positioning plate 306 passes through the slot hole.

[0027] The fixed base plate 1 has vertically upward guide rods 101 fixedly installed at both ends of its upper end. Symmetrical threaded rods A102 are fixedly installed at the upper end of the fixed base plate 1, and symmetrical limiting cylinders A103 are rotatably installed on the threaded rods A102. A through-beam rear plate 104 is fitted onto the two threaded rods A102, and through guide holes are opened at both ends of the crossbeam rear plate 104. The front side of the fixed base plate 1 is then placed against the rear side of the building formwork 4. The position of the crossbeam rear plate 104 is then adjusted vertically. The limiting cylinders A103 are then grasped and rotated upwards to support the crossbeam rear plate 104 and prevent it from shifting downwards. The front side of the fixed upper frame 105 is then placed against the upper rear end of the building formwork 4, while the bottom of the fixed frame 106 presses down on the edge of the top of the building formwork 4. The upper end of 4 is restricted, and the upper ends of the two threaded rods A102 are fitted with through fixed upper frames 105. The back plate of the crossbeam 104 and the fixed upper frame 105 are attached to the rear side of the building formwork 4. The two ends of the fixed upper frame 105 are respectively provided with through guide holes. The guide rod 101 slides through the guide holes of the back plate of the crossbeam 104 and the fixed upper frame 105. When the back plate of the crossbeam 104 and the fixed upper frame 105 slide up and down, the guide rod 101 is restricted by the guide holes of the back plate of the crossbeam 104 and the fixed upper frame 105. The back plate of the crossbeam 104 and the fixed upper frame 105 can only slide up and down to prevent the back plate of the crossbeam 104 and the fixed upper frame 105 from tilting when sliding up and down. The side walls of the back plate of the crossbeam 104 and the fixed upper frame 105 cannot be smoothly attached to the side walls of the building formwork 4. A fixed strip frame 106 is fixedly installed on the inner side wall of the fixed upper frame 105.

[0028] Example 2, based on Example 1, such as Figure 1 and Figure 4As shown, mutually symmetrical limiting cylinders A103 are rotatably mounted on the threaded rods A102. A through crossbeam rear plate 104 is fitted onto the two threaded rods A102. If the limiting cylinders A103 are removed, and then the crossbeam rear plate 104 is fixedly installed on the two threaded rods A102, the crossbeam rear plate 104 will not move when touched, thus preventing the limiting cylinders A103 at both ends from failing to securely clamp the crossbeam rear plate 104, and also saving on component costs.

[0029] The working principle of this embodiment is as follows: In use, push the front baffle 3 backward, so that the rear wall of the front baffle 3 is in contact with the front side of the building template 4. The positioning plate 306 will also move backward and be in contact with the front side of the building template 4. Then, grasp the fixing member 303 and rotate it backward to move the limiting plate 302. The limiting plate 302 moves backward and is in contact with the front end of the side plate 2. Then, insert the positioning spring rod 206 through the cantilever plate 205. The rear end of the positioning spring rod 206 is inserted into the positioning hole of the rotating ring 203 through the rod hole, temporarily fixing and limiting the rotating ring 203. When the rotating ring 203 is touched, it will not rotate. At this time, the limiting plate 204 faces upward and is in contact with the side wall of the limiting plate 302, temporarily blocking and limiting the limiting plate 302. The limiting plate 302 temporarily fixes and limits the threaded extension rod 301 and the front baffle 3. The front baffle 3 is... Even when subjected to force, it cannot move forward. Based on the height of the building template 4, the position of the front beam 307 is adjusted by moving it up and down. The rear side of the front beam 307 is used to block and restrict the front side of the building template 4. Then, the limiting cylinders B305 at both ends are grasped and rotated to move in opposite directions. The limiting cylinders B305 at both ends are used to clamp and restrict the front beam 307. When the front beam 307 is touched, it will not move up and down. The front side of the fixed base plate 1 is attached to the rear side of the building template 4. Then, the position of the rear beam 104 is adjusted up and down. Then, the limiting cylinder A103 is grasped and rotated upward. The limiting cylinder A103 is used to support the rear beam 104 to prevent it from moving downward. Then, the front side of the fixed upper frame 105 is attached to the opening at the upper rear side of the building template 4. At the same time, the bottom of the fixed frame 106 is pressed down on the edge of the top of the building template 4 to restrict the upper end of the building template 4.

[0030] The following points should be noted in this article:

[0031] 1. The accompanying drawings of this utility model embodiment only involve the structure involved in this utility model embodiment; other structures can refer to general designs.

[0032] 2. Where there is no conflict, the embodiments of this utility model and the features in the embodiments can be combined with each other to obtain new embodiments.

[0033] The above are merely specific embodiments of this utility model, but the protection scope of this utility model is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this utility model should be included within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the scope of the claims.

Claims

1. A template splicing fixture for rapid positioning, comprising: The utility model provides a building template (4), the lower end of rear side wall of building template (4) is equipped with close fixed bottom plate (1), the front side of fixed bottom plate (1) is fixedly installed with mutually symmetrical side edge board (2), and the front side wall of side edge board (2) is equipped with positioning hole, characterized by, the front baffle (3) of sliding installation is equipped on two side edge boards (2), and the both ends of front baffle (3) are equipped with notched, the upper end of front baffle (3) is fixedly installed with mutually symmetrical threaded rod B (304), and the threaded rod B (304) is rotatably sleeved with mutually symmetrical limiting cylinder B (305), the middle part of the upper end of front baffle (3) is fixedly installed with the vertical positioning plate (306), and the horizontal beam front plate (307) is slidably installed on the positioning plate (306), the both ends of horizontal beam front plate (307) are equipped with the through circular hole respectively, and the middle part of horizontal beam front plate (307) is equipped with the plate slot hole.

2. The rapid positioning template splicing fixing piece according to claim 1, characterized in that: The both ends of the upper end of fixed bottom plate (1) are fixedly installed with the vertical guide rod (101), and the upper end of fixed bottom plate (1) is fixedly installed with mutually symmetrical threaded rod A (102), and the threaded rod A (102) is rotatably installed with mutually symmetrical limiting cylinder A (103).

3. The rapid positioning template splicing fixing piece according to claim 2, characterized in that: The upper end of two threaded rods A (102) is sleeved with the through horizontal beam rear plate (104), and the both ends of horizontal beam rear plate (104) are equipped with the through guide hole respectively, the upper end of two threaded rods A (102) is sleeved with the through fixed upper frame (105), and the both ends of fixed upper frame (105) are equipped with the through guide hole respectively, and the inner side wall of fixed upper frame (105) is fixedly installed with fixed strip frame (106).

4. The rapid positioning template splicing fixing piece according to claim 1, characterized in that: The middle part of the side wall of two side edge boards (2) is equipped with shaft slot (201) respectively, and the shaft slot (201) is rotatably inserted with shaft (202), and the annular side wall of the front end of two shafts (202) is equipped with ring groove respectively.

5. The rapid positioning template splicing fixing piece according to claim 4, characterized in that: The ring groove of two shafts (202) is rotatably installed with rotating ring (203) respectively, and the left end of rotating ring (203) is equipped with the through rod hole, and the annular side wall of two rotating rings (203) is fixedly installed with limiting plate (204) respectively.

6. The rapid positioning template splicing fixing piece according to claim 1, characterized in that: The left end of the front end of two side edge boards (2) is fixedly installed with cantilever plate (205) respectively, and the middle part of cantilever plate (205) is inserted with the through positioning spring rod (206), and the front end of two positioning spring rods (206) is fixedly installed with stopper respectively.

7. The rapid positioning template splicing fixing piece according to claim 1, characterized in that: The front side of front baffle (3) is fixedly installed with mutually symmetrical threaded extension rod (301), and threaded extension rod (301) is rotatably sleeved with limiting disc (302), and the front side of limiting disc (302) is fixedly installed with fixed part (303), and the annular side wall of fixed part (303) is uniformly fixedly installed with short column.