Assembled concrete pouring formwork

CN224228240UActive Publication Date: 2026-05-12ANHUI SHOUFENG CONSTR CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ANHUI SHOUFENG CONSTR CO LTD
Filing Date
2025-06-05
Publication Date
2026-05-12

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Abstract

The utility model discloses an assembled concrete pouring formwork which comprises a plurality of formwork bodies, the four formwork bodies can be spliced in a quadrangle shape to enable the inner sides to form a pouring cavity, and the outer sides of the formwork bodies are connected with supporting rod assemblies. The formwork comprises a plurality of assembly plates connected in sequence and an end plate arranged on one side of the assembly plates, flanges are arranged on the edges of the outer sides of the assembly plates and the end plate, side holes are formed in the flanges on the side edges, stacking holes are formed in the flanges on the upper side and the lower side, a series connection rod is inserted into the side holes, and installation nuts are arranged on the two sides of the series connection rod and correspond to the flanges. A plurality of butt joint grooves matched with the flanges are vertically formed in the inner sides of the end plates, and one butt joint groove is connected with the flange of the adjacent assembly plate. The concrete pouring formwork is novel in design and simple in structure, the compatibility of the concrete pouring formwork is well improved, pouring requirements of different sizes can be met, construction and use are convenient, the structural strength of the pouring formwork is well guaranteed, and the pouring shaping effect of concrete is guaranteed.
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Description

Technical Field

[0001] This utility model relates to the field of concrete pouring technology, and in particular to an assembled concrete pouring template. Background Technology

[0002] In civil engineering, concrete and other materials are poured into formwork, and after the materials are poured into the formwork and plasticized, they can be formed into a predetermined shape within the formwork, thus facilitating construction. Concrete casting formwork is usually made of steel, wood, or plastic, and there are many types of concrete casting formwork, which are made according to the shape and size of the concrete structure.

[0003] Most existing templates require customization to match different pouring dimensions, resulting in high production costs and difficulty in reuse. For non-customized templates, a significant amount of time is required for adjustment during construction, making them inconvenient to use. Utility Model Content

[0004] The purpose of this utility model is to solve the shortcomings of existing technologies, such as high production cost of customized templates, difficulty in reuse, and complex construction adjustments and inconvenience of non-customized templates. Therefore, an assembled concrete pouring template is proposed.

[0005] To achieve the above objectives, the present invention adopts the following technical solution:

[0006] An assembled concrete pouring formwork includes multiple formworks, four of which can be assembled in a quadrilateral shape to form a pouring cavity on the inner side, and a support rod assembly is connected to the outer side of the formwork.

[0007] The template includes multiple sequentially connected assembly plates and an end plate set on one side of them. The assembly plates and end plates are provided with flanges at their outer edges. Side holes are opened on the side flanges. Stacking holes are opened on the upper and lower flanges. A connecting rod is inserted into the side hole. Mounting nuts are provided on both sides of the connecting rod corresponding to the flanges.

[0008] The end plate has multiple vertically formed mating grooves on its inner side that match the flange. One of the mating grooves is connected to the flange of the adjacent assembly plate. The remaining mating grooves are provided with cover plates. Multiple positioning bolts are provided on the outer side of the cover plates. The positioning bolts extend out of the end plate and are threadedly connected to fixing nuts.

[0009] Preferably, the connecting rods on two adjacent templates are installed in side holes at different heights.

[0010] Preferably, the strut assembly includes a strut, a rotating seat rotatably connected to the strut, a locking claw on the rotating seat corresponding to the flange, and a pin inserted on the locking claw, wherein the pin is inserted into the side holes of two adjacent flanges.

[0011] More preferably, the pin is threaded with locking nuts on both sides, and the locking claws are engaged with the outer sides of two adjacent flanges.

[0012] More preferably, the lower end of the support rod is rotatably connected to a base plate.

[0013] Compared with the prior art, the beneficial effects of this utility model are:

[0014] 1. In this utility model, the template is assembled by multiple assembly plates and end plates. With the adjustable design of multiple docking grooves on the end plates, the size of the template can be easily adjusted according to the size of the pouring cavity, which greatly improves the compatibility of the pouring template and reduces the template cost.

[0015] 2. In this utility model, the two adjacent templates are also connected and assembled in series by the connecting rods during the template assembly. At the same time, the bonding strength between adjacent templates is improved by the connecting groove. The structural strength of the casting template can also be greatly improved by adjusting the number of connecting rods.

[0016] 3. In this utility model, the design of the strut assembly not only provides support for the template but also significantly improves the structural strength of the casting template.

[0017] This utility model features a novel design and simple structure, which greatly improves the compatibility of concrete pouring formwork, enabling it to adapt to different size pouring requirements. It is convenient to construct and use, and effectively ensures the structural strength of the pouring formwork, thus guaranteeing the concrete pouring and shaping effect. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the appearance structure of this utility model.

[0019] Figure 2 This is a schematic diagram of the template mounting surface structure of this utility model.

[0020] Figure 3 This is a schematic diagram of the template casting surface structure of this utility model.

[0021] Figure 4 This is a schematic diagram of the cover plate structure of this utility model.

[0022] Figure 5 This is a schematic diagram of the strut assembly structure of this utility model.

[0023] In the diagram: Template 1, Assembly plate 11, End plate 12, Connecting groove 121, Flange 2, Side hole 21, Stacking hole 22, Connecting rod 3, Mounting nut 31, Cover plate 4, Positioning bolt 41, Fixing nut 42, Support rod assembly 5, Support rod 51, Rotating seat 52, Clamping claw 53, Pin 54, Locking nut 55, Base plate 56. Detailed Implementation

[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.

[0025] Reference Figure 1-5 An assembled concrete pouring formwork includes multiple formworks 1, four of which can be assembled in a quadrilateral shape to form a pouring cavity on the inside. A support rod assembly 5 is connected to the outside of the formwork 1. Pouring is carried out through the pouring cavity formed by the four formworks 1. During pouring, the support rod assembly 5 on the outside provides support force to improve the stability of the pouring formwork.

[0026] The template 1 includes multiple sequentially connected panel 11 and an end plate 12 on one side. Flanges 2 are provided at the outer edges of the panel 11 and end plate 12. Side holes 21 are provided on the side flanges 2, and stacking holes 22 are provided on the upper and lower flanges 2. Connecting rods 3 are inserted into the side holes 21, and mounting nuts 31 are provided on both sides of the connecting rods 3 corresponding to the flanges 2. The design of multiple panel 11 allows for adjustment of the number of panel 11 according to different casting size requirements, improving the compatibility of the casting template. The connecting rods 3 securely connect the sequentially connected panel 11, end plate 12, and flanges 2 of adjacent templates 1, and fix them with mounting nuts 31 to ensure the strength of the template 1. The stacking holes 22 on the upper and lower sides, along with screws and other fasteners, facilitate the assembly of multiple layers of template 1, making the stacking of template 1 convenient.

[0027] The end plate 12 has multiple vertically formed mating grooves 121 on its inner side that match the flange 2. One of the mating grooves 121 connects to the flange 2 of the adjacent assembly plate 11, and the remaining mating grooves 121 are provided with cover plates 4. Multiple positioning bolts 41 are provided on the outer side of the cover plates 4, and the positioning bolts 41 extend out of the end plate 12 and are threadedly connected to fixing nuts 42. The design of the mating grooves 121 improves the tightness of the splicing of two adjacent templates 1, enhances the structural strength, and ensures the splicing effect of the casting template. On the other hand, the design of multiple mating grooves 121 makes it easy to adjust the side wall width of the casting cavity according to different casting requirements, so as to adapt to the casting requirements of different sizes of buildings. With the adjustment of the number of assembly plates 11, it can well adapt to the casting requirements of different sizes, eliminating the need to customize casting templates according to different sizes, greatly improving the compatibility of casting templates and reducing the cost of building templates.

[0028] Based on the above technical solution, during concrete pouring, the number of panels 11 in template 1 is adjusted according to the actual dimensions, and suitable connecting slots 121 are selected. The remaining connecting slots 121 are closed with cover plates 4, and connecting rods 3 of appropriate length are used to connect and assemble the panels 11, end plates 12, and flanges 2 of the panels 11 of adjacent templates 1. Finally, the multi-layer pouring templates are stacked and fixed through stacking holes 22 to achieve the assembly of the pouring template. After assembly, according to actual usage requirements, support rod assemblies 5 are used on the outside to support the template 1, ensuring the pouring strength of the template.

[0029] In this technical solution, such as Figure 1-3 As shown, the connecting rods 3 on two adjacent templates 1 are installed in side holes 21 at different heights. This avoids interference between adjacent connecting rods 3 and facilitates avoidance during template 1 assembly. For casting cavities of different sizes, the number of connecting rods 3 can be appropriately increased or decreased to improve the structural strength of the casting template.

[0030] In this technical solution, such as Figure 1-5 As shown, the strut assembly 5 includes a strut 51, a rotating seat 52 rotatably connected to the strut 51, a locking claw 53 on the rotating seat 52 corresponding to the flange 2, and a pin 54 inserted into the locking claw 53. The pin 54 is inserted into the side holes 21 of two adjacent flanges 2. The locking claw 53 is fixed to the flange 2 of the assembly plate 11 by the pin 54 and the side holes 21. The rotating seat 52 facilitates the adjustment of the strut 51 to a suitable angle, which is convenient for supporting the template 1.

[0031] In this technical solution, such as Figure 1-5 As shown, locking nuts 55 are threaded onto both sides of the pin 54, and the locking claws 53 are engaged with the outer sides of two adjacent flanges 2. The locking claws 53 are used to engage and fix the two flanges 2, thereby increasing the connection strength between the assembly plates 11. The locking nuts 55 further enhance the locking effect of the locking claws 53, ensuring the connection strength between the strut assembly 5 and the template 1.

[0032] In this technical solution, such as Figure 1-5 As shown, the lower end of the support rod 51 is rotatably connected to the base plate 56. This facilitates the force distribution at the lower end of the support rod 51, ensures the supporting effect of the support rod assembly 5, and improves the structural strength of the casting template.

[0033] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. An assembled concrete pouring formwork, characterized in that, It includes multiple templates (1), and four of the templates (1) can be assembled in a quadrilateral shape to form a casting cavity on the inner side. The templates (1) are connected to a strut assembly (5) on the outer side. The template (1) includes multiple sequentially connected assembly plates (11) and an end plate (12) provided on one side. The outer edges of the assembly plates (11) and end plates (12) are provided with flanges (2). Side holes (21) are provided on the side flanges (2). Stacking holes (22) are provided on the upper and lower flanges (2). A connecting rod (3) is inserted into the side hole (21). Mounting nuts (31) are provided on both sides of the connecting rod (3) corresponding to the flanges (2). The end plate (12) has a plurality of vertically opened mating grooves (121) that match the flange (2). One of the mating grooves (121) is connected to the flange (2) of the adjacent assembly plate (11). The remaining mating grooves (121) are provided with cover plates (4). The cover plates (4) are provided with a plurality of positioning bolts (41) on the outside. The positioning bolts (41) extend out of the end plate (12) and are threadedly connected with fixing nuts (42).

2. The assembled concrete casting formwork according to claim 1, characterized in that, The connecting rods (3) on two adjacent templates (1) are installed in side holes (21) at different heights.

3. The assembled concrete casting formwork according to claim 1, characterized in that, The strut assembly (5) includes a strut (51), a rotating seat (52) rotatably connected to the strut (51), a snap-fit ​​claw (53) provided on the rotating seat (52) corresponding to the flange (2), and a pin (54) inserted on the snap-fit ​​claw (53). The pin (54) is inserted into the side holes (21) of two adjacent flanges (2).

4. The assembled concrete pouring formwork according to claim 3, characterized in that, The pin (54) is threaded with locking nuts (55) on both sides, and the locking claws (53) are engaged with the outer sides of two adjacent flanges (2).

5. The assembled concrete pouring formwork according to claim 3, characterized in that, The lower end of the support rod (51) is rotatably connected to the base plate (56).