Formwork support heightening and supporting structure and formwork support system

By installing a support frame and positioning mechanism on the uprights of the template support, the problems of high material consumption and cumbersome disassembly and assembly in the existing technology are solved, achieving stable and reliable support and flexible position adjustment, which is suitable for the load-bearing and support needs of different locations.

CN224259887UActive Publication Date: 2026-05-19HUNAN WUHENG MOULD BASE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUNAN WUHENG MOULD BASE CO LTD
Filing Date
2025-07-02
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

The existing technology for connecting two sets of support beams on the uprights of the formwork support has problems such as high material consumption, complicated disassembly and assembly, and low stability and reliability. Especially when the cross beams need to be raised, the existing method requires laying a large number of short steel sections or timbers.

Method used

The structure adopts a raised frame structure, including a strip main beam and a positioning mechanism. By installing the raised frame on the support beam and inserting the positioning mechanism into the gap, support and positioning are formed. The support mechanism consists of first and second support members. The positioning member is connected to the strip main beam, and the support member is supported on the beam. The upright is fixed by a connecting plate and fasteners.

Benefits of technology

It saves materials, is easy to assemble and disassemble, improves installation stability and reliability, is suitable for different load-bearing and support requirements, and is flexible in use.

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Abstract

The utility model discloses a formwork support block-up supporting structure and a formwork support system, the formwork support block-up supporting structure comprises two vertical rods and two supporting cross beams connected and installed on the two vertical rods, a gap is arranged between the two supporting cross beams, a block-up frame is installed on the two supporting cross beams, and the block-up frame is connected with the two vertical rods. The heightening frame comprises a strip-shaped main beam, a supporting mechanism used for being supported on the two supporting cross beams and a positioning mechanism which is inserted into the gap and can move along the gap. The formwork support system comprises a support body, and a formwork support heightening supporting structure is arranged on the support body. The utility model has the advantages of saving materials, being convenient to disassemble and assemble, stable and reliable to install, convenient and flexible to use and the like.
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Description

Technical Field

[0001] This utility model relates to the field of building construction equipment technology, specifically to a formwork support structure and formwork support system. Background Technology

[0002] Formwork supports are mainly used in the construction industry, and are widely used in industrial plants, logistics parks, municipal public works projects, etc. Due to the modular spacing of the vertical and horizontal columns of formwork support, in many construction situations, it is often necessary to install independent support beams between the columns for load-bearing and support of the building structure, formwork system, etc. In cases where two sets of support beams need to be connected and installed on the same column, such as when a beam understay needs to be installed at the intersection of beams for load-bearing and support, there may be two sets of mutually perpendicular support beams connected on the same column to support the understay. When the two sets of support beams are connected on the same column, they are usually arranged vertically, which means that the height of one set of support beams will be lower than the height of the other set. In this case, the lower support beam needs to be raised to reach the required design elevation. Current technology generally uses short steel or timber beams to raise the beams, but this method requires a large amount of short steel or timber, resulting in high material consumption, cumbersome assembly and disassembly, and low stability and reliability. Utility Model Content

[0003] The technical problem to be solved by this utility model is to overcome the shortcomings of the existing technology and provide a template support structure and template support system that can save materials, is easy to assemble and disassemble, has high stability and reliability in installation, and is convenient and flexible to use.

[0004] To solve the above-mentioned technical problems, the present invention adopts the following technical solution:

[0005] A template support structure includes two uprights and two supporting beams connected and installed on the two uprights. There is a gap between the two supporting beams. A support frame is installed on the two supporting beams. The support frame includes a strip main beam, a support mechanism for supporting the two supporting beams, and a positioning mechanism that is inserted into the gap and can move along the gap.

[0006] As a further improvement to the above-mentioned template support structure:

[0007] The positioning mechanism includes two or more positioning components connected to the same side of the strip main beam and arranged at intervals along the length of the strip main beam.

[0008] The support mechanism includes multiple first support members and multiple second support members. The multiple first support members are located on one side of the strip main beam and supported on one of the support crossbeams, and the multiple second support members are located on the other side of the strip main beam and supported on another support crossbeam.

[0009] All first supports and all second supports are connected to the positioning members, and each positioning member is connected to one first support and one second support.

[0010] The main beam is a rectangular long tube, and the positioning component is a rectangular short tube. One end of the rectangular short tube is welded and fixed to the side of the rectangular long tube.

[0011] The first support member and the second support member are L-shaped plates. One side plate of the L-shaped plate is attached to the positioning member in a surface contact manner and is connected and fixed to the positioning member. One side plate of the L-shaped plate is used to support the support beam.

[0012] The first and second support members connected to each positioning member are arranged symmetrically with respect to the positioning member.

[0013] The upright is a rod with a connecting plate suitable for disc-lock scaffolding. The two supporting beams are placed on the connecting plates of the two uprights and connected by fasteners to clamp and fix the two uprights. The space between the two supporting beams is the gap.

[0014] This utility model also provides a template support system, including a support body, on which the above-mentioned template support elevation support structure is provided.

[0015] Compared with the prior art, the advantages of this utility model are:

[0016] This utility model's template support structure uses a raised support frame installed on the support beams for load-bearing and support. This eliminates the need to lay a large amount of short steel or timber, saving materials. The raised support frame is supported by a support mechanism on two support beams, and a positioning mechanism is inserted into the gap to form a position. This not only makes disassembly and assembly convenient but also improves the stability and reliability of the installation. Furthermore, the positioning mechanism can move along the gap, allowing the raised support frame to be moved and adjusted in position to suit different load-bearing and support needs. It is convenient and flexible to use.

[0017] The template support system of this utility model is equipped with the template support elevation support structure of this utility model, which also has the advantages of the template support elevation support structure. Attached Figure Description

[0018] Figure 1 A first-person perspective three-dimensional structural diagram of the support structure for elevating the template bracket.

[0019] Figure 2A second-view three-dimensional structural diagram of the support structure for elevating the template bracket.

[0020] Figure 3 A top view of the support structure for raising the template bracket.

[0021] Figure 4 This is a first-person perspective three-dimensional structural diagram of the raised platform.

[0022] Figure 5 This is a schematic diagram of the second-view three-dimensional structure of the raised platform.

[0023] Legend:

[0024] 1. Upright pole; 11. Connecting plate; 2. Support beam; 21. Gap; 3. Elevation frame; 31. Strip main beam; 32. Positioning component; 33. First support component; 34. Second support component; 4. Fastener. Detailed Implementation

[0025] The present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments.

[0026] Example 1

[0027] like Figures 1 to 3 As shown, the template support structure of this embodiment includes two uprights 1 and two supporting beams 2 connected and installed on the two uprights 1. A gap 21 exists between the two supporting beams 2. A support frame 3 is installed on the two supporting beams 2. The support frame 3 includes a strip main beam 31, a support mechanism for supporting the two supporting beams 2, and a positioning mechanism that inserts into the gap 21 and can move along the gap 21. This template support structure uses the support frame 3 installed on the supporting beams 2 for load-bearing and support, eliminating the need for laying a large amount of short steel or timber, thus saving materials. The support frame 3 is supported on the two supporting beams 2 by the support mechanism, and the positioning mechanism is inserted into the gap 21 to form a position. This not only facilitates assembly and disassembly but also improves installation stability and reliability. Furthermore, the positioning mechanism can move along the gap 21, allowing the support frame 3 to be adjusted in position along the gap 21, thus adapting to different load-bearing and support requirements. Its use is convenient and flexible.

[0028] In a preferred embodiment, such as Figure 4 and Figure 5 As shown, the positioning mechanism includes two or more positioning elements 32 connected to the same side of the strip main beam 31. The two or more positioning elements 32 are arranged at intervals along the length of the strip main beam 31. The positioning mechanism uses two or more positioning elements 32 that are spaced apart on the strip main beam 31, which not only provides a good positioning effect when inserted into the gap 21, improving the installation stability and reliability of the support frame 3, but also makes the support frame 3 simple in structure, low in manufacturing cost, and light in weight.

[0029] In a preferred embodiment, the support mechanism includes multiple first support members 33 and multiple second support members 34. The multiple first support members 33 are located on one side of the strip main beam 31 and supported on a support crossbeam 2, while the multiple second support members 34 are located on the other side of the strip main beam 31 and supported on another support crossbeam 2. The multiple first support members 33 and multiple second support members 34 are respectively located on both sides of the strip main beam 31 and respectively supported on two support crossbeams 2. The two support crossbeams 2 simultaneously support the raised frame 3 on both sides, resulting in good installation stability and high load-bearing capacity of the raised frame 3.

[0030] In a preferred embodiment, all first support members 33 and all second support members 34 are connected to positioning members 32, and each positioning member 32 is connected to one first support member 33 and one second support member 34. This allows a portion of the positioning member 32 to be higher than the supporting beam 2 for elevation, while the other portion is used to insert into the gap 21 for positioning, rather than relying entirely on the strip main beam 31 for elevation. This simplifies the structure, saves materials, and reduces manufacturing costs while achieving the same elevation height and support capacity.

[0031] In a preferred embodiment, the strip main beam 31 is a rectangular long tube, and the positioning member 32 is a rectangular short tube, with one end of the rectangular short tube welded and fixed to the side of the rectangular long tube. The use of a rectangular long tube for the strip main beam 31 allows for the formation of a large supporting plane, facilitating stable and reliable support for building structures, formwork systems, etc. The use of a rectangular short tube for the positioning member 32 not only facilitates a secure connection with the strip main beam 31 profile but also allows for easy insertion into the gap 21 to form a stable position.

[0032] In a preferred embodiment, the first support member 33 and the second support member 34 are L-shaped plates with the same structural dimensions. One side plate of the L-shaped plate is attached to and fixedly connected to the positioning member 32 in a surface contact manner. The other side plate of the L-shaped plate is used to support the support beam 2. This type of first support member 33 and second support member 34 has a simple structure, is easy to manufacture and assemble, and has good load-bearing capacity.

[0033] In a preferred embodiment, the first support member 33 and the second support member 34 connected to each positioning member 32 are arranged symmetrically with respect to the positioning member 32, so that the force on the positioning member 32 is more balanced and the installation stability and load-bearing capacity of the raised frame 3 are better.

[0034] In a preferred embodiment, the upright 1 is a member with a connecting plate 11 suitable for disc-lock scaffolding. Two supporting beams 2 are placed and supported on the connecting plates 11 of the two uprights 1 and connected by fasteners 4 to clamp and fix the two uprights 1. The fasteners 4 are bolts. The two supporting beams 2 clamp the two uprights 1 by pulling the two supporting beams 2 together. The space between the two supporting beams 2 is a gap 21. The above-described installation structure of the uprights 1 and supporting beams 2 is the same as the installation of two supporting beams 2 on the uprights 1 of disc-lock scaffolding in the prior art. In other embodiments, other installation structures of the uprights 1 and supporting beams 2 can also be used, as long as there is a gap 21 between the two supporting beams 2.

[0035] Example 2

[0036] A template support system includes a support body, on which a template support elevation support structure as described in Embodiment 1 is provided. Because this template support system incorporates the template support elevation support structure as described in Embodiment 1, it also possesses the advantages of that template support elevation support structure.

[0037] The above description is merely a preferred embodiment of this utility model, and the protection scope of this utility model is not limited to the above embodiments. For those skilled in the art, improvements and modifications obtained without departing from the technical concept of this utility model should also be considered within the protection scope of this utility model.

Claims

1. A template support structure, comprising two uprights (1) and two supporting beams (2) connected and installed on the two uprights (1), wherein there is a gap (21) between the two supporting beams (2), characterized in that: Elevation frame (3) is installed on the two support beams (2). The elevation frame (3) includes a strip main beam (31), a support mechanism for supporting the two support beams (2), and a positioning mechanism that is inserted into the gap (21) and can move along the gap (21).

2. The template support structure according to claim 1, characterized in that: The positioning mechanism includes two or more positioning elements (32) connected to the same side of the strip main beam (31) and arranged at intervals along the length of the strip main beam (31).

3. The template support structure according to claim 2, characterized in that: The support mechanism includes multiple first support members (33) and multiple second support members (34). The multiple first support members (33) are located on one side of the strip main beam (31) and supported on one of the support beams (2). The multiple second support members (34) are located on the other side of the strip main beam (31) and supported on another support beam (2).

4. The template support structure according to claim 3, characterized in that: All first support members (33) and all second support members (34) are connected to the positioning member (32), and each positioning member (32) is connected to a first support member (33) and a second support member (34).

5. The template support structure according to claim 4, characterized in that: The strip main beam (31) is a rectangular long tube, and the positioning component (32) is a rectangular short tube. One end of the rectangular short tube is welded and fixed to the side of the rectangular long tube.

6. The template support structure according to claim 5, characterized in that: The first support member (33) and the second support member (34) are L-shaped plates. One side plate of the L-shaped plate is attached to the positioning member (32) in a surface contact manner and is connected and fixed to the positioning member (32). One side plate of the L-shaped plate is used to support the support beam (2).

7. The template support structure according to claim 6, characterized in that: The first support member (33) and the second support member (34) connected to each positioning member (32) are arranged symmetrically with respect to the positioning member (32).

8. The template support structure according to any one of claims 1 to 7, characterized in that: The upright (1) is a rod with a connecting plate (11) suitable for disc-lock scaffolding. The two supporting beams (2) are placed on the connecting plate (11) of the two uprights (1) and connected by fasteners (4) to clamp and fix the two uprights (1). The space between the two supporting beams (2) is the gap (21).

9. A template support system, comprising a support body, characterized in that: The main body of the support is provided with the template support padding structure as described in any one of claims 1 to 8.