Pouring formwork with high connection stability for municipal building decoration
By designing the insert plates and fasteners for the casting module, the problem of the formwork being unable to be disassembled due to concrete entering the drive device was solved, achieving a stable connection and easy disassembly of the formwork, and improving the stability and reusability of the formwork.
Patent Information
- Application Number
- CN202520016039.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-06
- Publication Date
- 2026-01-23
- Estimated Expiration
- 2035-01-06
AI Technical Summary
Existing construction formwork has a complex drive mechanism, which makes it easy for concrete to seep into the drive mechanism through gaps, making the formwork impossible to remove.
The casting module consists of a first casting frame, a second casting frame, insert plates, splicing frames, splicing components, and a fixing structure. The template is stably connected by inserting the insert plates and splicing components and fixing them with fasteners. The template can be disassembled by loosening the fasteners during demolding.
It simplifies the formwork disassembly process, avoids the problem of formwork not being able to be disassembled due to concrete entering the drive device, and improves the connection stability and reuse rate of the formwork.
Smart Images

Figure CN223824596U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of casting template technology, and in particular to a casting template with strong connection stability for municipal building decoration. Background Technology
[0002] When adding structures to existing municipal buildings, it is often necessary to use casting formwork. Formwork is a temporary support structure that is made according to design requirements to shape concrete structures and components in the specified positions and geometric dimensions. Existing formwork requires manual tapping to separate the concrete.
[0003] The prior art (CN215907416U) discloses a formwork for pouring concrete in building construction, including a first formwork, a second formwork, and a driving device. The first formwork is provided with dovetail blocks, and the second formwork has dovetail grooves for the dovetail blocks to be inserted. The driving device includes a rack, a gear, and a rotating shaft. The rack is located on the dovetail blocks, and the gear is located on the second formwork. The gear meshes with the rack. One end of the rotating shaft is connected to the gear, and the rotating shaft and the gear are coaxially arranged. The rotating shaft is rotatably connected to the second formwork. Through the driving device, it is convenient to disassemble the first formwork and the second formwork, reduce the deformation of the formwork, and thus facilitate the reuse of the formwork.
[0004] However, with the above method, due to the complex structure of the drive device, during the concrete pouring process, concrete may enter the drive device through the gaps in the second formwork, which may render the drive device unusable and cause the formwork to be unable to be disassembled. Utility Model Content
[0005] The purpose of this utility model is to provide a pouring template with strong connection stability for municipal building decoration, aiming to solve the problem that existing building construction pouring templates have complex drive device structures, and during the concrete pouring process, concrete may enter the drive device through the gaps on the second template, which may render the drive device unusable and cause the template to be unable to be disassembled.
[0006] To achieve the above objectives, this utility model provides a casting template with strong connection stability for municipal building decoration, including a first casting frame and a casting module.
[0007] The casting module includes a second casting frame, two insert plates, two splicing frames, two splicing components, and two fixing structures;
[0008] The second casting frame is located on one side of the first casting frame; the two insert plates are respectively fixedly connected to the first casting frame and are located on both sides of the first casting frame; the two splicing frames are respectively fixedly connected to the second casting frame and are located on both sides of the second casting frame; the two splicing components are respectively disposed on one side of the first casting frame; the two fixing structures are respectively located on both sides of the second casting frame; the fixing structure includes a support base, two fixing frames and two fasteners, the support base is fixedly connected to the second casting frame and is located on one side of the second casting frame; the two fixing frames are respectively fixedly connected to the support base and are located on one side of the support base; the two fasteners are respectively disposed on one side of the two fixing frames.
[0009] The splicing component includes a connecting part and two inserts. The connecting part is fixedly connected to the first casting frame and is located on one side of the first casting frame. The two inserts are respectively fixedly connected to the connecting part and are respectively located on one side of the connecting part.
[0010] The fastener includes a locking screw and a pin. The locking screw is threaded to the fixing frame and is located on one side of the fixing frame. The pin is fixedly connected to the locking screw and is located on one side of the locking screw.
[0011] The casting module further includes two reinforcing plates, two reinforcing ribs, and two fasteners. The two reinforcing plates are fixedly connected to the first casting frame and are located on both sides of the first casting frame. The two reinforcing ribs are fixedly connected to the two reinforcing plates and are located on one side of the two reinforcing plates. The two fasteners are respectively located on both sides of the second casting frame.
[0012] The fastener includes a docking seat and a bolt. The docking seat is fixedly connected to the second casting frame and is located on one side of the second casting frame. The bolt is rotatably connected to the docking seat and is located on one side of the docking seat.
[0013] This utility model discloses a pouring template with strong connection stability for municipal building decoration. During pouring, the first pouring frame and the second pouring frame are spliced together, so that two insert plates are inserted into the two spliced frames. At the same time, two splicing parts are also inserted into the two fixed frames of the two fixed structures. Then, they are fixed by two fasteners, thus completing the model assembly of the first pouring frame and the second pouring frame. Concrete is then poured. When demolding is required after pouring, the fasteners are operated to loosen the splicing parts in the fixed frames. The first pouring frame and the second pouring frame lose their restraint, and then the first pouring frame and the second pouring frame are removed respectively. The simple splicing and restraint solves the problem of existing building construction pouring templates where, due to the complex structure of the driving device, concrete may seep into the driving device through the gaps on the second template during concrete pouring, which may render the driving device unusable and cause the template to be unable to be disassembled. Attached Figure Description
[0014] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.
[0015] Figure 1 This is a schematic diagram of the overall structure of this utility model.
[0016] Figure 2 This is a front view of the entire utility model.
[0017] Figure 3 This is a structural schematic diagram of the entire utility model from another angle.
[0018] Figure 4 This is a cross-sectional view of the entire utility model.
[0019] 101-First casting frame, 102-Second casting frame, 103-Insertion plate, 104-Splicing frame, 105-Splicing component, 106-Fixed structure, 107-Support base, 108-Fixed frame, 109-Fastener, 110-Connecting part, 111-Insertion block, 112-Locking screw, 113-Pin, 114-Reinforcing plate, 115-Reinforcing rib, 116-Fixed component, 117-Diamond seat, 118-Bolt. Detailed Implementation
[0020] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, but should not be construed as limiting the present invention.
[0021] Please see Figures 1-4 ,in, Figure 1 This is a schematic diagram of the overall structure of this utility model. Figure 2 This is a front view of the entire utility model. Figure 3 This is a structural schematic diagram of the entire utility model from another angle. Figure 4 This is a cross-sectional view of the entire utility model.
[0022] This utility model discloses a pouring template with strong connection stability for municipal building decoration, comprising a first pouring frame 101 and a pouring module. The pouring module includes a second pouring frame 102, two insert plates 103, two splicing frames 104, two splicing parts 105, two fixing structures 106, two reinforcing plates 114, two reinforcing ribs 115, and two fixing parts 116. The fixing structure 106 includes a support base 107, two fixing frames 108, and two fasteners 109. The splicing parts 105 include a connecting part 110 and two inserts 111. The fasteners 109 include a locking screw 112 and a pin 113. The fixing parts 116 include a docking seat 117 and a bolt 118. The aforementioned solution solves the problem that existing building construction pouring templates have complex drive device structures, and during concrete pouring, concrete may seep through the gaps in the second template into the drive device, potentially rendering the drive device unusable and causing the template to be unable to be disassembled.
[0023] In this specific embodiment, the first pouring frame 101, together with the pouring module, forms a pouring template for pouring concrete.
[0024] The second casting frame 102 is located on one side of the first casting frame 101; two insert plates 103 are fixedly connected to the first casting frame 101 and are located on both sides of the first casting frame 101; two splicing frames 104 are fixedly connected to the second casting frame 102 and are located on both sides of the second casting frame 102; two fixing structures 106 are located on both sides of the second casting frame 102; a support base 107 is fixedly connected to the second casting frame 102 and is located on one side of the second casting frame 102; two fixing frames 108 are fixedly connected to the support base 107 and are located on one side of the support base 107; two fasteners 109 are respectively disposed on one side of the two fixing frames 108, splicing the first casting frame 101 and the second casting frame 102 so that the two insert plates 103 are inserted into the two splicing frames. Within frame 104, simultaneously with insertion, the two splicing pieces 105 are also inserted into the two fixed frames 108 of the two fixed structures 106, and then fixed by the two fasteners 109. This completes the model assembly of the first casting frame 101 and the second casting frame 102. Concrete is then poured. When demolding is required after pouring, the fasteners 109 are operated to loosen the splicing pieces 105 within the fixed frames 108. The first casting frame 101 and the second casting frame 102 lose their limiting position, and then the first casting frame 101 and the second casting frame 102 are removed respectively. This simple splicing and limiting method solves the problem that existing building construction casting templates, due to the complex structure of the driving device, may allow concrete to enter the driving device through the gaps on the second template during concrete pouring, potentially rendering the driving device unusable and causing the template to be unable to be disassembled.
[0025] Secondly, the connecting part 110 is fixedly connected to the first casting frame 101 and is located on one side of the first casting frame 101; the two inserts 111 are respectively fixedly connected to the connecting part 110 and are respectively located on one side of the connecting part 110. The connecting part 110 is used to support the assembly of the two inserts 111, and the two inserts 111 are used to be inserted into the two fixed frames 108.
[0026] Furthermore, the locking screw 112 is threadedly connected to the fixing frame 108 and is located on one side of the fixing frame 108; the pin 113 is fixedly connected to the locking screw 112 and is located on one side of the locking screw 112. When the insert block 111 is inserted into the fixing frame 108, twisting the locking screw 112 causes the pin 113 to be inserted into the insert block 111, thus completing the fixing of the insert block 111.
[0027] In addition, the two reinforcing plates 114 are fixedly connected to the first casting frame 101 and located on both sides of the first casting frame 101; the two reinforcing ribs 115 are fixedly connected to the two reinforcing plates 114 and located on one side of the two reinforcing plates 114; the two fasteners 116 are respectively disposed on both sides of the second casting frame 102, the two reinforcing plates 114 are used to support the assembly of the two reinforcing ribs 115, and the reinforcing ribs 115 are used to insert into the fasteners 116 on the second casting frame 102 and are fixed by the fasteners 116, thereby strengthening the assembly stability of the first casting frame 101 and the second casting frame 102.
[0028] Furthermore, the docking seat 117 is fixedly connected to the second casting frame 102 and is located on one side of the second casting frame 102; the bolt 118 is rotatably connected to the docking seat 117 and is located on one side of the docking seat 117. When the docking seat 117 is used to dock with the reinforcing rib 115, the bolt 118 is then turned to rotate and threadedly connect with the reinforcing rib 115 to fix the reinforcing rib 115, thereby strengthening the assembly stability of the first casting frame 101 and the second casting frame 102.
[0029] When using this utility model, the first casting frame 101 and the second casting frame 102 are spliced together, so that the two insert plates 103 are inserted into the two splicing frames 104. At the same time, the two insert blocks 111 are also inserted into the two fixing frames 108. When the insert block 111 is inserted into the fixing frame 108, the locking screw 112 is turned to drive the pin 113 into the insert block 111, thus fixing the insert block 111. When the docking seat 117 is used to dock with the reinforcing rib 115, the bolt 118 is then turned to rotate and connect with the threaded connection of the reinforcing rib 115, thus fixing the reinforcing rib 115. This strengthens the assembly stability of the first casting frame 101 and the second casting frame 102, thereby completing the assembly of the casting frame 101. The model of the first casting frame 101 and the second casting frame 102 is assembled, and then concrete is poured. When demolding is required after pouring, the locking screw 112 is operated to drive the pin 113 to loosen the insert block 111 in the fixed frame 108. Then the bolt 118 is twisted to loosen the reinforcing rib 115, so that the first casting frame 101 and the second casting frame 102 lose their limit. Then the first casting frame 101 and the second casting frame 102 are removed respectively. The simple splicing limit solves the problem of existing building construction pouring formwork. Due to the complex structure of the driving device, during the concrete pouring process, concrete may enter the driving device through the gap on the second formwork, which may make the driving device unusable and cause the formwork to be unable to be disassembled.
[0030] The above-disclosed embodiments are merely one or more preferred embodiments of this application and should not be construed as limiting the scope of this application. Those skilled in the art can understand that all or part of the processes for implementing the above embodiments and equivalent changes made in accordance with the claims of this application still fall within the scope of this application.
Claims
1. A casting formwork with strong connection stability for municipal building decoration, comprising a first casting frame, characterized in that, It also includes casting modules, The casting module includes a second casting frame, two insert plates, two splicing frames, two splicing components, and two fixing structures; The second casting frame is located on one side of the first casting frame; the two insert plates are respectively fixedly connected to the first casting frame and are located on both sides of the first casting frame; the two splicing frames are respectively fixedly connected to the second casting frame and are located on both sides of the second casting frame; the two splicing components are respectively disposed on one side of the first casting frame; the two fixing structures are respectively located on both sides of the second casting frame; the fixing structure includes a support base, two fixing frames and two fasteners, the support base is fixedly connected to the second casting frame and is located on one side of the second casting frame; the two fixing frames are respectively fixedly connected to the support base and are located on one side of the support base; the two fasteners are respectively disposed on one side of the two fixing frames.
2. The casting formwork with strong connection stability for municipal building decoration as described in claim 1, characterized in that, The splicing component includes a connecting part and two inserts. The connecting part is fixedly connected to the first casting frame and is located on one side of the first casting frame. The two inserts are respectively fixedly connected to the connecting part and are respectively located on one side of the connecting part.
3. A casting formwork with strong connection stability for municipal building decoration as described in claim 2, characterized in that, The fastener includes a locking screw and a pin. The locking screw is threaded to the fixing frame and is located on one side of the fixing frame. The pin is fixedly connected to the locking screw and is located on one side of the locking screw.
4. A casting formwork with strong connection stability for municipal building decoration as described in claim 3, characterized in that, The casting module further includes two reinforcing plates, two reinforcing ribs, and two fasteners. The two reinforcing plates are fixedly connected to the first casting frame and are located on both sides of the first casting frame. The two reinforcing ribs are fixedly connected to the two reinforcing plates and are located on one side of the two reinforcing plates. The two fasteners are respectively located on both sides of the second casting frame.
5. A casting formwork with strong connection stability for municipal building decoration as described in claim 4, characterized in that, The fastener includes a docking seat and a bolt. The docking seat is fixedly connected to the second casting frame and is located on one side of the second casting frame. The bolt is rotatably connected to the docking seat and is located on one side of the docking seat.
Citation Information
Patent Citations
Building construction pouring formwork
CN215907416U