Fabricated fracture-resistant light partition board

Through the design of prefabricated anti-flexible lightweight partition panels, the combination of bottom sealing plates, top sealing plates, wall panels, skeletons and adsorption mechanisms, the problems of complex construction and insufficient bending performance of traditional partition panels are solved, and efficient construction and enhanced impact resistance are achieved.

CN120211436AActive Publication Date: 2025-06-27THE THIRD ENG CO LTD OF THE HIGHWAY ENG BUREAU OF CCCC

Patent Information

Application Number
CN202510683137.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-26
Publication Date
2025-06-27
Estimated Expiration
2045-05-26

AI Technical Summary

Technical Problem

Traditional partition panels are complex in construction, with insufficient bending and impact resistance, making it difficult to meet the needs of modern buildings for silent environments.

Method used

The prefabricated anti-fold lightweight partition panel is adopted, and the combination design of the bottom sealing plate, the top sealing plate, the wall panel, the frame and the adsorption mechanism is achieved quickly and accurately splicing and structural strengthening.

Benefits of technology

The installation steps are simplified, construction efficiency and structural stability are improved, bending and impact resistance are enhanced, and the demand for silent environments of modern buildings is met.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an assembly type fracture-resistant light partition wall board, and relates to the technical field of partition wall boards. Comprising a bottom sealing plate and a top sealing plate, two sets of wall plates are arranged between the bottom sealing plate and the top sealing plate, each set of wall plates comprises a plurality of assembling plates, the two sets of wall plates are arranged in parallel, and every two corresponding assembling plates are connected through an adsorption mechanism to improve the strength after assembling; one end of the bottom sealing plate and one end of the top sealing plate are provided with sealing partition plates, and grouting is conducted on the sealing partition plates to achieve partition plate assembly. According to the invention, the tenon-and-mortise type occlusion of the grooves and the protruding parts is matched with the negative pressure adsorption mechanism, so that the quick and accurate splicing of the assembly plates is realized, and the mounting steps are simplified; the framework and the supporting plate which are modularly designed are mounted in a plug-in manner, so that structural reinforcement can be completed without complicated tools; the top pouring opening is designed to facilitate efficient grouting and filling to form an integral reinforcing layer; and meanwhile, the transportation and construction difficulty is greatly reduced through light materials and standardized assemblies.
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Description

Technical Field

[0001] The present invention relates to the technical field of partition boards, and particularly to an assembled folding-resistant lightweight partition board. Background Art

[0002] In the field of building construction, as an important component, the performance and installation efficiency of partition boards have a crucial impact on the overall project progress and building quality. Traditional partition boards have many limitations. For example, the on-site construction process is complex, requiring a large amount of manpower and material resources for cutting, splicing, and fixing, which is time-consuming and error-prone, resulting in an extended construction period.

[0003] Traditional partition boards have poor folding resistance and impact resistance, and are difficult to withstand large external force impacts, prone to problems such as cracking and deformation, shortening the service life, affecting the use function and aesthetics of the indoor space, and unable to meet the requirements of modern buildings for a quiet environment in living and office spaces.

[0004] Chinese Patent with application number 202110252110.X discloses a lightweight partition board with integrally formed protrusions and a core layer, where the inside of the protrusions is hollow, the thickness of the protrusions is the same as that of the core layer, and the top of the protrusions is closely attached and fixed to the inner surface of the partition board body, with high strength, low bulk density, and high solid waste utilization rate.

[0005] The above-mentioned partition board is long. If the length is reduced, it is difficult to ensure the strength at the gap between two partition boards, and the folding resistance performance may not meet higher requirements. Therefore, we propose an assembled folding-resistant lightweight partition board. Summary of the Invention

[0006] The purpose of the present invention is to provide an assembled folding-resistant lightweight partition board to solve the problems raised in the above background art.

[0007] To achieve the above purpose, the present invention provides the following technical solution: An assembled folding-resistant lightweight partition board, comprising: A bottom sealing plate and a top sealing plate, and two groups of wall panels are arranged between the bottom sealing plate and the top sealing plate. Each group of wall panels includes a plurality of assembly plates; The two groups of wall panels are arranged in parallel, and the two corresponding assembly plates are connected by an adsorption mechanism to improve the strength after assembly; One end of the bottom sealing plate and the top sealing plate is provided with a sealing partition board, and grouting is carried out at the sealing partition board to achieve the assembly of the partition board; A skeleton is arranged between the two groups of wall panels to improve the strength of the partition board.

[0008] Furthermore, regarding this solution, the bottom sealing plate includes a track base, the track base is in a "C" shape with an upward opening, the skeleton includes a frame plate and a positioning base fixed to the bottom of the frame plate, and a receiving track is arranged in the middle of the track base and is adapted to the positioning base for installing the skeleton.

[0009] Further to this solution, a positioning groove is provided at the bottom of the positioning base, the positioning groove is matched with the protruding edge of the receiving rail, and the positioning base is inserted into the receiving rail through the positioning groove.

[0010] Further to this solution, a groove is provided on one side of the assembly plate and a protrusion is provided on the other side, the groove and the protrusion are matched with each other, and the splicing of two adjacent assembly plates is achieved through the groove and the protrusion.

[0011] Further regarding this scheme, the adsorption mechanism includes a hollow suction cup and a solid plug, the hollow suction cup is installed on one of two adjacent assembly plates, and the solid plug is installed on the other assembly plate, wherein the assembly plate on which the hollow suction cup is installed is provided with a threaded groove corresponding to the hollow suction cup, the threaded groove runs through both ends of the assembly plate, the hollow suction cup is connected to the threaded groove, and a sealing cover is screwed on the side of the assembly plate away from the hollow suction cup.

[0012] Further to this solution, when the height of the assembly plate is ≤1m, one adsorption mechanism is provided between every two assembly plates, and when the height of the assembly plate is greater than 1m, two adsorption mechanisms are provided between every two assembly plates.

[0013] Further to this solution, the top and bottom of the assembly plate are both thinned, and the thinned parts of the assembly plate form a right-angle structure to fit the two sides of the bottom sealing plate.

[0014] Further to this solution, the shelf is provided with a hollow portion corresponding to each adsorption mechanism, and a plurality of slots are opened on the shelf, and the slots are plugged with support plates.

[0015] Further to this solution, the support plate is in a "Z" shape, and the planes at both ends of the support plate are located exactly in the gap between two adjacent assembly plates on each side to improve the support strength in the gap.

[0016] Further to this solution, a grouting port is provided on the baffle plate for grouting, and the grouting port is arranged at the top of the baffle plate.

[0017] Compared with the prior art, the present invention has the following beneficial effects: The assembled anti-bending lightweight partition boards use the mortise and tenon joints of the grooves and protrusions in conjunction with the negative pressure adsorption mechanism to achieve fast and accurate splicing of the assembly boards, simplifying the installation steps; the modularly designed frame and support plates are installed by plug-in, and structural reinforcement can be completed without complex tools; the top pouring port design facilitates efficient grouting to form an overall reinforcement layer; at the same time, lightweight materials and standardized components greatly reduce the difficulty of transportation and construction, and combined with the detachable adsorption connection design, it supports both rapid assembly and flexible disassembly and modification, taking into account construction efficiency, structural stability and scene adaptability.

[0018] Meanwhile, modular rapid assembly is achieved through the mortise-and-tenon joint of the groove and the protrusion and the negative pressure adsorption mechanism. At the same time, relying on the triple strengthening mechanism of the longitudinal load-bearing of the skeleton, the lateral reinforcement of the joint by the Z-shaped support plate, and the filling of the cavity by the grouting layer to form an overall shear-resistant surface, combined with the use of lightweight materials and the hollow structure to reduce weight, the synergetic improvement of assembly efficiency and anti-bending and anti-impact performance is finally achieved. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 is a schematic diagram of the overall structure of the present invention; Figure 2 is a schematic diagram of the disassembled structure of the present invention; Figure 3 is a schematic diagram of the skeleton structure of the present invention; Figure 4 is a schematic diagram of the connection structure of the adsorption mechanism of the present invention; Figure 5 is a schematic diagram of the sectional structure of the partition wall panel of the present invention.

[0020] In the figure: 1, wall panel; 101, assembly plate; 102, hollow suction cup; 103, solid plug; 104, sealing cover; 105, groove; 106, protrusion; 2, bottom sealing plate; 201, track base; 202, receiving rail; 3, top sealing plate; 4, sealing partition; 401, pouring port; 5, skeleton; 501, shelf plate; 502, support plate; 503, hollow; 504, slot; 505, positioning base; 506, positioning groove. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0021] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0022] As Figure 1 and Figure 2 shown, the present invention provides a technical solution: an assembled anti-bending lightweight partition wall panel, including: A bottom sealing plate 2 and a top sealing plate 3 are provided. There are two groups of wall panels 1 between the bottom sealing plate 2 and the top sealing plate 3. Each group of wall panels 1 includes a plurality of assembly plates 101. The two groups of wall panels 1 are arranged in parallel and the two corresponding assembly plates 101 are connected by an adsorption mechanism to improve the strength after assembly; a sealing partition 4 is provided at one end of the bottom sealing plate 2 and the top sealing plate 3, and grouting is carried out at the sealing partition 4 to achieve the assembly of the partition wall panel, and a skeleton 5 is provided between the two groups of wall panels 1 to improve the strength of the partition wall panel.

[0023] As Figure 2 andFigure 3 As shown, in order to ensure the smooth implementation of this embodiment, it is necessary to understand that the bottom sealing plate 2 includes a rail base 201, which is in the shape of a "匚" and has an opening facing upward. The skeleton 5 includes a frame plate 501 and a positioning base 505 fixed to the bottom of the frame plate 501. A receiving rail 202 is provided in the middle of the rail base 201 and is adapted to the positioning base 505 for installing the skeleton 5. A positioning groove 506 is provided at the bottom of the positioning base 505. The positioning groove 506 is adapted to the protruding edge of the receiving rail 202. The positioning base 505 is inserted into the receiving rail 202 through the positioning groove 506. The 匚-shaped design of the rail base 201 provides a stable base. The receiving rail 202 inside it and the positioning base 505 at the bottom of the skeleton 5 are precisely fitted together through the positioning groove 506 and the protruding edge to achieve vertical positioning of the skeleton 5. After the skeleton 5 is installed, the hollowing out 503 on the frame plate 501 can reduce the weight. At the same time, the reserved slot 504 provides a channel for the subsequent insertion of the support plate 502 like Figure 2 As shown, to ensure the smooth implementation of this embodiment, it is necessary to understand that a groove 105 is provided on one side of the assembly plate 101 and a protrusion 106 is provided on the other side, the groove 105 is adapted to the protrusion 106, and the groove 105 and the protrusion 106 are used to realize the splicing of two adjacent assembly plates 101.

[0024] like Figure 3 and Figure 4 As shown, in order to ensure the smooth implementation of this embodiment, it is necessary to understand that the adsorption mechanism includes a hollow suction cup 102 and a solid plug 103, the hollow suction cup 102 is installed on one of the two adjacent assembly plates 101, and the solid plug 103 is installed on the other assembly plate 101, wherein the assembly plate 101 on which the hollow suction cup 102 is installed is provided with a threaded groove corresponding to the hollow suction cup 102, the threaded groove runs through both ends of the assembly plate 101, the hollow suction cup 102 is connected to the threaded groove, and a sealing cover 104 is screwed on the side of the assembly plate 101 away from the hollow suction cup 102.

[0025] like Figure 4 As shown, to ensure the smooth implementation of this embodiment, it should be understood that when the height of the assembly plate 101 is ≤1m, one adsorption mechanism is provided between every two assembly plates 101, and when the height of the assembly plate 101 is greater than 1m, two adsorption mechanisms are provided between every two assembly plates 101.

[0026] like Figure 3 and Figure 4As shown, in order to ensure the smooth implementation of this embodiment, it is necessary to understand that the top and bottom of the assembly plate 101 are thinned, and the thinned parts of the assembly plate 101 form a right-angle structure to adapt to the two sides of the bottom sealing plate 2. The right-angle thinned structures at the top and bottom of the assembly plate 101 fit tightly with the inner edges of the bottom sealing plate 2 and the top sealing plate 3, which not only ensures the contact of the vertical pressure-bearing surfaces, but also avoids misalignment.

[0027] In order to ensure the smooth implementation of this embodiment, it should be understood that a hollow 503 is provided on the frame plate 501 corresponding to each adsorption mechanism, and a plurality of slots 504 are provided on the frame plate 501 , and the slots 504 are plugged with support plates 502 .

[0028] like Figure 3 As shown, in order to ensure the smooth implementation of this embodiment, it is necessary to understand that the support plate 502 is in a "Z" shape, and the planes at both ends of the support plate 502 are just in the gap between the two adjacent assembly plates 101 on each side to improve the support strength at the gap. The Z-shaped bending design of the support plate 502 enables the planes at both ends to be accurately embedded in the gaps between the adjacent assembly plates 101 to form cross-support nodes and disperse local stress. After the support plate 502 is inserted into the slot 504, it forms a grid-like skeleton 5 with the frame plate 501, which significantly improves the bending resistance of the wall panel 1. The partition board realizes modular rapid assembly through the mortise and tenon joints and negative pressure adsorption mechanism of the groove 105 and the protrusion 106. At the same time, relying on the longitudinal load-bearing of the skeleton 5, the transverse reinforcement joints of the Z-shaped support plate 502, and the grouting layer filling the cavity to form an overall shear-resistant surface, the triple strengthening mechanism, combined with lightweight materials and the hollow 503 structure to reduce weight, ultimately achieves a coordinated improvement in assembly efficiency and bending and impact resistance.

[0029] Replay Figure 1 and Figure 2 In order to ensure the smooth implementation of this embodiment, it is necessary to understand that a pouring port 401 is provided on the baffle plate 4 for grouting, and the pouring port 401 is arranged at the top of the baffle plate 4. The pouring port 401 arranged on the top of the baffle plate 4 is convenient for filling a fluid slurry such as lightweight foamed cement from top to bottom, and gravity is used to achieve dead-angle filling. The slurry penetrates into the cavity between the two sets of wall panels 1 and the hollow 503 of the skeleton 5, and forms a continuous inner core after hardening, which together with the assembly plate 101 and the skeleton 5 constitutes a composite structure, greatly improving the impact resistance and sound insulation performance of the partition wall. At the same time, the solidified slurry wraps the adsorption mechanism to prevent vacuum failure due to vibration.

[0030] The tenon-mortise type engagement and cooperation of the negative pressure adsorption mechanism through the groove 105 and the protrusion 106 realizes the rapid and precise splicing of the assembly plate 101, simplifying the installation steps; the modular designed skeleton 5 and the support plate 502 are installed by plugging, and the structure can be strengthened without complex tools; the design of the top pouring port 401 facilitates efficient grouting and filling to form an overall reinforcement layer; at the same time, the lightweight materials and standardized components greatly reduce the transportation and construction difficulties. Combined with the detachable adsorption connection design, it not only supports rapid assembly but also flexible disassembly and modification, taking into account construction efficiency, structural stability and scene adaptability.

[0031] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. Prefabricated flexural lightweight partition panel, characterized in that, include: A bottom sealing plate (2) and a top sealing plate (3), two groups of wall panels (1) are arranged between the bottom sealing plate (2) and the top sealing plate (3), and each group of wall panels (1) includes a plurality of assembly plates (101); The two sets of wall panels (1) are arranged in parallel and the two corresponding assembly panels (101) are connected via an adsorption mechanism to improve the strength after assembly; A sealing plate (4) is provided at one end of the bottom sealing plate (2) and the top sealing plate (3), and grouting is performed at the sealing plate (4) to realize the assembly of the partition wall panels; A frame (5) is provided between the two groups of wall panels (1) to improve the strength of the partition wall panels.

2. The prefabricated flexural lightweight partition board according to claim 1, wherein: The bottom sealing plate (2) comprises a track base (201), the track base (201) is in a "匚" shape and has an opening facing upwards, the frame (5) comprises a frame plate (501) and a positioning base (505) fixed to the bottom of the frame plate (501), and a receiving rail (202) is provided in the middle of the track base (201) and is adapted to the positioning base (505) for mounting the frame (5).

3. The prefabricated flexural lightweight partition panel according to claim 2, characterized in that: The bottom of the positioning base (505) is provided with a positioning groove (506), the positioning groove (506) is matched with the protruding edge of the receiving rail (202), and the positioning base (505) is inserted into the receiving rail (202) through the positioning groove (506).

4. The prefabricated flexural lightweight partition panel according to claim 1, wherein: The assembly plate (101) is provided with a groove (105) on one side and a protrusion (106) on the other side, the groove (105) and the protrusion (106) are matched, and the splicing of two adjacent assembly plates (101) is achieved through the groove (105) and the protrusion (106).

5. The prefabricated flexural lightweight partition panel according to claim 1, wherein: The adsorption mechanism comprises a hollow suction cup (102) and a solid plug (103), wherein the hollow suction cup (102) is mounted on one of two adjacent assembly plates (101), and the solid plug (103) is mounted on the other assembly plate (101), wherein a thread groove is provided at a position corresponding to the hollow suction cup (102) of the assembly plate (101) on which the hollow suction cup (102) is mounted, the thread groove passes through both ends of the assembly plate (101), the hollow suction cup (102) is connected to the thread groove, and a sealing cover (104) is screwed on a side of the assembly plate (101) away from the hollow suction cup (102).

6. The prefabricated flexural lightweight partition panel according to claim 1, characterized in that: When the height of the assembly plate (101) is ≤1 m, one adsorption mechanism is provided between every two assembly plates (101); and when the height of the assembly plate (101) is greater than 1 m, two adsorption mechanisms are provided between every two assembly plates (101).

7. The prefabricated flexural lightweight partition panel according to claim 1, characterized in that: The top and bottom of the assembly plate (101) are both thinned, and the thinned portion of the assembly plate (101) forms a right-angle structure to fit the two sides of the bottom sealing plate (2).

8. The prefabricated folding-resistant lightweight partition panel according to claim 2, wherein: The frame plate (501) is provided with a hollow (503) corresponding to each adsorption mechanism, and a plurality of slots (504) are provided on the frame plate (501), and the slots (504) are plugged with support plates (502).

9. The prefabricated flexural lightweight partition panel according to claim 8, wherein: The support plate (502) is in a "Z" shape, and the planes at both ends of the support plate (502) are located exactly in the gap between two adjacent assembly plates (101) on each side to improve the support strength at the gap.

10. The prefabricated flexural lightweight partition board according to claim 1, wherein: The pouring port (401) is provided on the sealing partition plate (4) for grouting, and the pouring port (401) is arranged at the top of the sealing partition plate (4).

Citation Information

Patent Citations

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