Self-fireproof ultra-high performance concrete composite wallboard
By using light steel keel and locking components in the design of concrete composite wall panels, the problem of structural instability was solved, resulting in high-strength and stable fireproof wall panels, which improved the overall structure's compressive strength, flexural strength, and fireproof isolation effect.
Patent Information
- Application Number
- CN202520224371.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-13
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2035-02-13
AI Technical Summary
Existing fireproof concrete composite wall panels lack effective internal support in their structure, making them prone to concrete deformation and cracks, unstable connections, reduced overall strength and durability, affecting fireproof isolation effect and becoming a safety hazard.
Using light steel keel as the fixed frame and branch frame, combined with the precise matching of locking components, provides a stable support frame and connection structure, enhancing the structural strength and connection stability of the concrete wall.
It improves the compressive and flexural strength of concrete walls, ensuring that the wall panels are not easily displaced or separated under stress, maintaining the stability and strength of the overall structure, and enhancing the fireproof isolation effect.
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Figure CN223738837U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to building material technical field especially relates to a self -fireproof super high performance concrete composite wallboard. BACKGROUND
[0002] With the continuous improvement of the energy saving and safety requirements of the construction industry, in modern buildings, in order to reduce the fire hazard and reduce the loss of building in the fire, the fireproof performance requirement of building material is higher and higher, therefore, the fireproof performance of building material, especially wall is more strictly required.
[0003] However, in practical application, the existing fireproof concrete composite wallboard has many defects, such as: the existing fireproof concrete composite wallboard lacks effective internal support structure in structure, and the problems such as concrete deformation and crack are prone to occur, and the existing concrete composite wallboard may be unstable when splicing and connecting, and displacement or separation is prone to occur, the above defects often lead to the deformation of concrete after stress, even crack, seriously affect the overall strength and durability of the wall, not only reduce the fireproof isolation effect of the wall, but also may become a safety hazard. UTILITY MODEL CONTENTS
[0004] To solve the above technical problems, the utility model provides a self -fireproof super high performance concrete composite wallboard.
[0005] The utility model adopts the following technical scheme: a self -fireproof super high performance concrete composite wallboard, including wallboard assembly, concrete forming assembly and locking assembly,
[0006] The pouring cavity is arranged in the inside of the wallboard assembly, and the concrete forming assembly is fixedly installed in the pouring cavity.
[0007] A plurality of locking assemblies are located on the peripheral side of the wallboard assembly, and the locking assembly is used for connecting two adjacent wallboard assemblies.
[0008] Further, the wallboard assembly includes a wallboard frame and a moisture-proof plate.
[0009] The pouring hole is arranged in one side surface of the wallboard frame, and the pouring cavity is arranged in the inside of the wallboard frame.
[0010] The moisture-proof plate is fixedly installed on the outer surface of the wallboard frame.
[0011] Further, the concrete forming assembly includes a fixed framework and a plurality of branch frameworks.
[0012] The plurality of branch frameworks are perpendicular to the fixed framework.
[0013] The fixed framework is internally provided with a shunt hole, and the shunt hole is arranged in the same direction as the pouring hole;
[0014] The pouring hole is used to pour concrete into the pouring cavity to form a concrete wall.
[0015] Further, the material of the wallboard frame is EB heat-insulating fireproof paint, and the material of the fixed framework is light steel keel.
[0016] Further, the locking assembly comprises a mounting block, a mounting slot and a connecting assembly;
[0017] The wallboard frame is internally provided with a shunt hole, and the shunt hole is arranged in the same direction as the pouring hole;
[0018] When two adjacent wallboard assemblies are installed, the mounting slot of one wallboard assembly corresponds to the mounting block of another wallboard assembly, and the mounting block of one wallboard assembly is installed in the mounting slot of another wallboard assembly through the connecting assembly.
[0019] Further, the connecting assembly comprises a connecting slot and a connecting block;
[0020] The connecting slot is arranged in the mounting slot, and the connecting block is matched with the connecting slot, and the connecting block is fixed in the mounting slot;
[0021] When the mounting block of one wallboard assembly is installed in the mounting slot of another wallboard assembly, the connecting block is connected to the connecting slot.
[0022] Further, the number of the locking assembly is four, and the four locking assemblies are respectively a top locking assembly, a bottom locking assembly and two side locking assemblies;
[0023] When the wallboard assemblies are spliced, in two adjacent wallboard assemblies, the side locking assemblies correspond to each other, and the bottom locking assembly corresponds to the top locking assembly.
[0024] Compared with the prior art, the beneficial effects of the utility model are as follows:
[0025] The utility model discloses a fixed framework adopts light gauge steel material through setting in the pouring cavity inner wall, and light gauge steel has good strength, can provide the stable support frame for concrete in the pouring cavity, and the fixed framework can bear the weight and pressure of concrete in the concrete pouring and solidification process, prevents the deformation or crack of concrete, thereby improves the compressive strength, the bending strength and other mechanical properties of concrete wall, and further enhances the structural strength of the whole wallboard, through setting branch framework at the both sides and central position of fixed framework, and branch framework further enhances the support capacity of fixed framework, and this makes the reinforcing effect of the whole concrete forming assembly to concrete more remarkable, thereby further improves the structural strength of concrete wall, and finally enhances the structural strength of the whole wallboard.
[0026] The utility model discloses through the accurate cooperation of side edge installation groove, side edge mounting block, bottom installation groove and top mounting block etc. structure, the side edge connecting block in side edge installation groove corresponds with the side edge connecting groove in side edge mounting block, the bottom connecting block in bottom installation groove corresponds with the top connecting groove in top mounting block, when the wallboard is connected, this structure can guarantee that no matter horizontal direction or vertical direction, the connection between wallboard is stable, when the wallboard bears external force such as wind force, earthquake force etc., will not easily displace or separate, thereby maintaining the integrity and stability of the whole wallboard structure, and further improved the strength of the whole wallboard structure. BRIEF DESCRIPTION OF DRAWINGS
[0027] Figure 1 It is the whole structure schematic diagram of the utility model;
[0028] Figure 2 It is the side edge locking assembly structure schematic diagram of the utility model;
[0029] Figure 3 It is the bottom locking assembly structure schematic diagram of the utility model;
[0030] Figure 4 It is the inside structure schematic diagram of the wallboard frame of the utility model;
[0031] Figure 5 It is the concrete wall structure schematic diagram of the utility model.
[0032] Main symbol explanation:
[0033] 1, wallboard assembly;101, wallboard frame;102, pouring hole;103, moisture-proof board;2, concrete forming assembly;201, fixed framework;202, shunt hole;203, branch framework;204, concrete wall;3, locking assembly;301, side edge installation groove;302, side edge connecting block;303, side edge mounting block;304, side edge connecting groove;305, bottom installation groove;306, bottom connecting block;307, top mounting block;308, top connecting groove. DETAILED DESCRIPTION
[0034] The utility model will be described further, combining with the drawings and specific implementation, it is to explain that under the premise of not conflicting, the following described each embodiment or each technical feature between can be combined randomly to form new embodiment.
[0035] Embodiment:
[0036] Please combine Figures 1-5 The self-fireproofing super high performance concrete composite wallboard of the embodiment comprises a wallboard assembly 1, a concrete forming assembly 2 and a locking assembly 3;The inside of the wallboard assembly 1 is provided with a pouring cavity, and the concrete forming assembly 2 is fixedly installed in the pouring cavity;A plurality of locking assemblies 3 are located on the periphery of the wallboard assembly 1, and the locking assembly 3 is used to connect two adjacent wallboard assemblies 1.
[0037] In the utility model, the inside of the wallboard assembly 1 is provided with a pouring cavity, which provides space for the pouring of concrete, and in addition, the concrete forming assembly 2 is arranged in the pouring cavity, which can provide a supporting frame for the concrete and enhance the structural strength of the concrete wall 204 finally poured.
[0038] Further, the wallboard assembly 1 comprises a wallboard frame 101 and a moisture-proof plate 103;The pouring hole 102 is formed in one side of the wallboard frame 101, and the pouring cavity is formed in the inside of the wallboard frame 101;The moisture-proof plate 103 is fixedly installed on the outer surface of the wallboard frame 101.
[0039] It can be understood that the wallboard frame 101 in the wallboard assembly 1 is the basic frame structure of the whole wallboard, and the wallboard frame 101 has six sides, as shown in Figure 1 Two moisture-proof plates 103 are fixed on the two sides with larger surface area of the wallboard frame 101 respectively, which can prevent external moisture from entering the inside of the wallboard and play a role in moisture-proofing.
[0040] Further, the concrete forming assembly 2 comprises a fixed skeleton 201 and a plurality of branch skeletons 203;A plurality of branch skeletons 203 are perpendicular to the fixed skeleton 201;The inside of the fixed skeleton 201 is provided with a shunt hole 202, and the opening direction of the shunt hole 202 is the same as that of the pouring hole 102;The pouring cavity is poured through the pouring hole 102 to form a concrete wall 204.
[0041] Specifically, as shown in Figure 4As shown, the number of branch skeletons 203 is three, two of which are installed vertically on both sides of the fixed skeleton 201, and the other is installed vertically at the central position of the fixed skeleton 201. The fixed skeleton 201 provides a support frame for the concrete and enhances the structural strength of the concrete wall 204. The branch skeleton 203 further enhances the support and fixation of the fixed skeleton 201 to the concrete, so that the concrete can better maintain its shape and improve its overall strength during the solidification process through the concrete forming assembly 2.
[0042] When pouring concrete, the opening direction of the shunt hole 202 is the same as that of the pouring hole 102, so that the concrete can be uniformly poured into the pouring cavity through the shunt hole 202 and the pouring hole 102. Specifically, the shunt hole 202 can make the concrete flow better and be distributed uniformly in the pouring cavity.
[0043] In addition, before pouring the concrete, high-efficiency fireproof materials such as magnesium oxide, aluminum oxide, and calcium oxide are added to the concrete to improve the fireproof performance of the concrete. The above-mentioned materials are configured according to 5% to 8% of the total weight of the ordinary concrete raw materials.
[0044] Further, the material of the wallboard frame 101 is EB heat-insulating fireproof paint, and the material of the fixed skeleton 201 is light steel keel.
[0045] Specifically, the outer surface material of the wallboard frame 101 is EB heat-insulating fireproof paint, which can provide heat insulation and fireproof performance for the wallboard. The fixed skeleton 201 is made of light steel keel, which has a certain strength and can provide a support frame for the concrete to enhance the structural strength of the concrete wall 204. Through cooperation with the branch skeleton 203, the support and fixation of the fixed skeleton 201 to the concrete are further enhanced, so that the concrete can better maintain its shape and improve its overall strength during the solidification process through the concrete forming assembly 2.
[0046] Further, the locking assembly 3 includes a mounting block, a mounting slot, and a connecting assembly. The side surface of the wallboard frame 101 is provided with a mounting slot, the mounting block is fixed to the wallboard frame 101, and the size of the mounting block is adapted to the size of the mounting slot. When installing adjacent two wallboard assemblies 1, the mounting slot of one wallboard assembly 1 corresponds in position to the mounting block of the other wallboard assembly 1, and the mounting block of one wallboard assembly 1 is installed in the mounting slot of the other wallboard assembly 1 through the connecting assembly.
[0047] Further, the connecting assembly comprises a connecting groove and a connecting block; the connecting groove is arranged in the mounting groove, and the connecting block is matched with the connecting groove, and the connecting block is fixed in the mounting groove; when the mounting block of one wallboard assembly 1 is mounted in the mounting groove of another wallboard assembly 1, the connecting block is connected to the connecting groove.
[0048] Further, the number of the locking assemblies 3 is four, and the four locking assemblies 3 are respectively a top locking assembly, a bottom locking assembly and two side locking assemblies; when the wallboard assemblies 1 are spliced, in two adjacent wallboard assemblies 1, the side locking assemblies correspond to each other, and the bottom locking assembly corresponds to the top locking assembly.
[0049] Specifically, as shown in Figure 2 the side locking assembly comprises a side mounting groove 301, a side connecting block 302, a side mounting block 303 and a side connecting groove 304, wherein the side connecting block 302 is fixedly mounted in the inside of the side mounting groove 301, the inside of the side mounting block 303 is arranged with the side connecting groove 304, the side mounting block 303 corresponds to the side mounting groove 301, and the side connecting groove 304 corresponds to the side connecting block 302. The side mounting groove 301 cooperates with the side mounting block 303, the side connecting block 302 in the side mounting groove 301 corresponds to the side connecting groove 304 in the side mounting block 303, when two wallboards are connected at the side, the side mounting block 303 of one wallboard assembly is inserted into the side mounting groove 301 of another wallboard assembly, correspondingly, the side connecting block 302 is clamped into the side connecting groove 304, accurate connection and limiting at the side are realized, and the stability of the connection is ensured.
[0050] Specifically, as shown in Figure 3 the top locking assembly comprises a top mounting groove, a top connecting block, a top mounting block 307 and a top connecting groove 308, and the bottom locking assembly comprises a bottom mounting groove 305, a bottom connecting block 306, a bottom mounting block and a bottom connecting groove; in the vertical direction, when the top of one wallboard is connected with the bottom of another wallboard, the top mounting block 307 of one wallboard assembly corresponds to the bottom mounting groove 305 of another wallboard assembly, correspondingly, the top connecting groove 308 corresponds to the bottom connecting block 306, so that the top mounting block 307 is inserted into the bottom mounting groove 305, and the bottom connecting block 306 is clamped into the top connecting groove 308, thereby realizing stable connection of the upper and lower wallboards.
[0051] The above embodiment is only a preferred embodiment of the present application, and cannot be used to limit the scope of protection of the present application, and any non-substantial change and replacement made by the person skilled in the art on the basis of the present application belongs to the scope of protection of the present application.
Claims
1. A self-fireproofing ultra-high performance concrete composite wall panel, characterized in that, The wallboard assembly, the concrete forming assembly and the locking assembly are included; The pouring cavity is arranged in the interior of the wallboard assembly, and the concrete forming assembly is fixedly installed in the pouring cavity; A plurality of locking assemblies are arranged on the peripheral side of the wallboard assembly, and the locking assemblies are used for connecting two adjacent wallboard assemblies.
2. A self-protecting ultra high performance concrete composite wall panel as claimed in claim 1, wherein: The wallboard assembly includes a wallboard frame and a moisture-proof plate; The pouring hole is arranged on one side of the wallboard frame, and the pouring cavity is arranged in the interior of the wallboard frame; The moisture-proof plate is fixedly installed on the outer surface of the wallboard frame.
3. A self-protecting ultra-high performance concrete composite wall panel as claimed in claim 2, wherein: The concrete forming assembly includes a fixed framework and a plurality of branch frameworks; The branch frameworks are perpendicular to the fixed framework; The shunt hole is arranged in the interior of the fixed framework, and the arrangement direction of the shunt hole is the same as the arrangement direction of the pouring hole; The pouring cavity is poured through the pouring hole to form a concrete wall.
4. A self-protecting ultra high performance concrete composite wall panel as claimed in claim 3, wherein: The material of the wallboard frame is EB heat-insulating fireproof paint, and the material of the fixed framework is light steel keel.
5. A self-protecting ultra high performance concrete composite wall panel as claimed in claim 4, wherein: The locking assembly includes a mounting block, a mounting groove and a connecting assembly; The mounting groove is arranged on the side of the wallboard frame, the mounting block is fixed to the wallboard frame, and the size of the mounting block is matched with the size of the mounting groove; When two adjacent wallboard assemblies are installed, the mounting groove of one wallboard assembly corresponds to the position of the mounting block of the other wallboard assembly, and the mounting block of one wallboard assembly is installed in the mounting groove of the other wallboard assembly through the connecting assembly.
6. A self-protecting ultra high performance concrete composite wall panel as claimed in claim 5, wherein: The connecting assembly includes a connecting groove and a connecting block; The connecting groove is arranged in the mounting groove, and the connecting block is matched with the connecting groove, and the connecting block is fixed to the mounting groove; When the mounting block of one wallboard assembly is installed in the mounting groove of the other wallboard assembly, the connecting block is connected to the connecting groove.
7. A self-protecting ultra high performance concrete composite wall panel as claimed in claim 6, wherein: The number of the locking assemblies is four, and the four locking assemblies are a top locking assembly, a bottom locking assembly and two side edge locking assemblies; When the wallboard assemblies are spliced, in two adjacent wallboard assemblies, the side edge locking assemblies correspond to each other, and the bottom locking assembly corresponds to the top locking assembly.