Integrated wall panel quick-mounting structure

By using vertical load-bearing keel and vertical snap-fit ​​keel structure, the problems of material waste and high labor costs caused by the traditional modular installation of integrated wall panels are solved, enabling rapid installation and disassembly, and improving the overall integrity and aesthetics.

CN223824492UActive Publication Date: 2026-01-23CHINA CONSTR EIGHT ENG DIV CORP LTD
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Patent Information

Application Number
CN202520247720.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-17
Publication Date
2026-01-23
Estimated Expiration
2035-02-17

AI Technical Summary

Technical Problem

Traditional monolithic wall panels suffer from problems such as material waste, compromised integrity, increased labor costs, and inefficient disassembly and assembly due to the segmented installation process during construction.

Method used

It adopts a vertical load-bearing keel and a vertical snap-fit ​​keel structure, and realizes the quick installation and disassembly of the integrated wall panel through adapters and positioning parts. The flexible limiting part and the insertion method of the mounting groove ensure the integrity and aesthetics.

Benefits of technology

It enables rapid installation and disassembly of integrated wall panels, reduces construction labor costs, ensures integrity and aesthetics, and improves installation reliability and durability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an integrated wall panel quick-mounting structure which comprises an adapter piece, an embedded plate, a vertical bearing keel, a positioning piece, a vertical clamping keel and an integrated wall panel. The embedded plates are fixedly mounted on the building structure main body, and the multiple embedded plates are arranged on the back of the integrated wall panel at intervals; each embedded plate is connected with a vertical bearing keel through an adapter piece, the vertical bearing keels are vertically arranged, positioning pieces are installed at the bottoms of the vertical bearing keels, and all the positioning pieces are located at the same horizontal height; one end of the vertical clamping keel is fixed to the integrated wall panel, and the other end of the vertical clamping keel is clamped in the vertical bearing keel in a sliding mode, so that the integrated wall panel is detachably and vertically installed on the building structure body and placed on the positioning piece. The utility model relates to the technical field of decoration and can solve the problems that in the prior art, integral wall panels are fixedly installed in a blocked mode, the integrity of the wall panels is affected, labor cost is high, and disassembly and assembly efficiency is low.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of decoration, especially relates to a quick mounting structure of integrated wall panel. BACKGROUND

[0002] In the traditional wall panel construction, the integrated wall panel facing material with the whole type, such as the whole television background wall, bedside background wall and the integrated wall panel facing material with the whole type. In actual construction, these integrated wall panel facing materials with the whole type are mostly divided into small blocks for installation, which not only causes the waste of materials, affects the integrity of the wall panel, but also increases the installation cost of artificial. At the same time, the block wall panel facing material is fixed and installed by bolts and other ways, which is inconvenient and inefficient to disassemble. Therefore, a quick mounting structure of integrated wall panel is needed to solve the problems of the block fixing and installation of the integrated wall panel affecting the integrity of the wall panel, high labor cost and inefficient disassembly in the prior art. SUMMARY

[0003] The utility model aims at providing a quick mounting structure of integrated wall panel, which can solve the problems of the block fixing and installation of the integrated wall panel affecting the integrity of the wall panel, high labor cost and inefficient disassembly in the prior art.

[0004] The utility model is realized as follows:

[0005] A quick mounting structure of integrated wall panel, including adapter, embedded plate, vertical load-bearing keel, positioning piece, vertical clamping keel and integrated wall panel, the embedded plate is fixedly installed on the building structure main part, and a plurality of embedded plates are arranged at the back of the integrated wall panel at intervals, each embedded plate is connected with the vertical load-bearing keel through the adapter, the vertical load-bearing keel is vertically arranged, the positioning piece is installed at the bottom of the vertical load-bearing keel, and each positioning piece is located at the same horizontal height, one end of the vertical clamping keel is fixed on the integrated wall panel, and the other end of the vertical clamping keel is slidably clamped in the vertical load-bearing keel, so that the integrated wall panel is vertically installed on the building structure main part and rests on the positioning piece in a detachable mode.

[0006] The vertical load-bearing keel is in C-shaped structure, the end of the vertical load-bearing keel away from the building structure main part is provided with an opening, and the vertical load-bearing keel is provided with an embedding groove, so that the other end of the vertical clamping keel is inserted into the embedding groove through the opening of the vertical load-bearing keel.

[0007] The vertical snap-fit ​​keel includes an edge-trimming vertical snap-fit ​​keel disposed on the side end of the integrated wall panel. The edge-trimming vertical snap-fit ​​keel includes an edge-trimming snap-fit ​​part, a connecting strip, and a first flexible limiting part. The edge-trimming snap-fit ​​part has an L-shaped cross-section, allowing it to fit snugly on the back, side end, and front of the side end of the integrated wall panel. The first flexible limiting part has a V-shaped cross-section, and the connecting strip connects the tip of the first flexible limiting part to the edge-trimming snap-fit ​​part located on the back of the integrated wall panel. The opening width of the first flexible limiting part is greater than the opening width of the vertical load-bearing keel.

[0008] The edge-sealing and snap-fit ​​portion has a first recessed portion at one end of the front of the integrated wall panel, and the first recessed portion abuts against the front of the integrated wall panel.

[0009] The vertical snap-fit ​​keel also includes a first flat-joint vertical snap-fit ​​keel disposed in the middle of the integrated wall panel. The first flat-joint vertical snap-fit ​​keel includes a first flat-joint part, a connecting strip, and a first flexible limiting part. The cross-section of the first flat-joint part is T-shaped, with one end of the first flat-joint part penetrating through the middle of the integrated wall panel and the other end of the flat-joint part adhering to the back of the integrated wall panel. The cross-section of the first flexible limiting part is V-shaped, and the connecting strip connects the tip of the first flexible limiting part to the first flat-joint part located on the back of the integrated wall panel. The opening width of the first flexible limiting part is greater than the opening width of the vertical load-bearing keel.

[0010] The first flat joint is located at one end of the front of the integrated wall panel and has an anti-detachment protrusion that abuts against the front of the integrated wall panel.

[0011] The vertical snap-fit ​​keel also includes a second flat vertical snap-fit ​​keel disposed in the middle of the integrated wall panel. The second flat vertical snap-fit ​​keel includes a second flat part and a second flexible limiting part. The cross-section of the second flat part is a C-shaped structure with one end open, and the other end of the second flat part is fixedly connected to the back of the integrated wall panel. The cross-section of the second flexible limiting part is a V-shaped structure. One end of a pair of second flexible limiting parts is symmetrically connected to the open end of the second flat part, and the distance between the other ends of the pair of second flexible limiting parts is greater than the opening width of the vertical load-bearing keel.

[0012] The opening of the vertical load-bearing keel forms a limiting protrusion, which extends into the mounting groove; the opening ends of the first flexible limiting part and the second flexible limiting part are engaged with the limiting protrusion, and the tips of the first flexible limiting part and the second flexible limiting part abut against the inner wall of the end of the vertical load-bearing keel closest to the main building structure.

[0013] The vertical load-bearing keel has concave openings on both sides, and the positioning member has convex openings. The convex openings are fitted into the concave openings, so that the positioning member is fitted onto the side of the vertical load-bearing keel.

[0014] The positioning member has an L-shaped support portion on the side near the integrated wall panel, so that the bottom of the integrated wall panel rests on the horizontal section of the support portion.

[0015] Compared with the prior art, this utility model has the following advantages:

[0016] 1. This utility model features a vertical load-bearing keel and a vertical clip-on keel. The vertical clip-on keel is installed on the integrated wall panel and is movably inserted into the mounting groove of the vertical load-bearing keel through the first flexible limiting part / second flexible limiting part. The insertion method ensures the rapid installation of the integrated wall panel, and the vertical clip-on keel can slide upward relative to the vertical load-bearing keel to facilitate the rapid disassembly of the integrated wall panel, thereby improving the efficiency of the installation and disassembly of the integrated wall panel and reducing the labor cost of construction.

[0017] 2. This utility model features vertical clip-on keel and positioning components. The vertical clip-on keel is installed on both sides of the integrated wall panel through edge trimming, and the first flat-joint vertical clip-on keel / second flat-joint vertical clip-on keel is installed in the middle of the integrated wall panel. This allows the integrated wall panel to be installed as a whole onto the vertical load-bearing keel without the need for segmented installation, saving on the amount of steel used for the keel. Furthermore, the positioning components located at the same horizontal height support the bottom of the integrated wall panel, which can improve construction efficiency while ensuring the integrity, aesthetics, and safety of the integrated wall panel.

[0018] 3. Because this utility model is equipped with an embedded plate, a connecting piece, and a vertical load-bearing keel, it can transfer the weight of the integrated wall panel to the main building structure, resulting in high installation reliability and durability of the integrated wall panel. Attached Figure Description

[0019] Figure 1 This is a perspective view of the integrated wall panel quick-installation structure of this utility model;

[0020] Figure 2 This is a side view of the integrated wall panel quick-installation structure of this utility model;

[0021] Figure 3 This is a schematic diagram of the installation of the vertical clip-type keel on the integrated wall panel in the quick-installation structure of the integrated wall panel of this utility model;

[0022] Figure 4 This is a cross-sectional view of the edge-sealing vertical snap-fit ​​keel in the integrated wall panel quick-installation structure of this utility model;

[0023] Figure 5 This is a cross-sectional view of the first flat-joint vertical snap-fit ​​keel in the integrated wall panel quick-installation structure of this utility model;

[0024] Figure 6 This is a cross-sectional view of the second flat-joint vertical snap-fit ​​keel in the integrated wall panel quick-installation structure of this utility model.

[0025] In the diagram, 1. Fixing component; 2. Adapter component; 3. Embedded plate; 4. Vertical load-bearing keel; 41. Embedding groove; 42. Limiting protrusion; 43. Inner recess; 5. Positioning component; 51. Bearing part; 6. Connecting component; 7. Vertical clip-on keel; 71. Edge-finishing vertical clip-on keel; 72. Edge-finishing clip-on part; 721. First inner recess; 73. Connecting strip; 74. First flexible limiting part; 75. First flat-joint vertical clip-on keel; 76. First flat-joint part; 761. Anti-detachment protrusion; 77. Second flat-joint vertical clip-on keel; 78. Second flat-joint part; 79. Second flexible limiting part; 8. Integrated wall panel. Detailed Implementation

[0026] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.

[0027] Please see the appendix Figure 1 and attached Figure 2 An integrated wall panel quick-installation structure includes a fixing component 1, a connecting component 2, an embedded plate 3, a vertical load-bearing keel 4, a positioning component 5, a connecting component 6, a vertical snap-fit ​​keel 7, and an integrated wall panel 8. The embedded plate 3 is fixedly installed on the main building structure through the fixing component 1, and several embedded plates 3 are spaced apart behind the integrated wall panel 8. Each embedded plate 3 is connected to the vertical load-bearing keel 4 through the connecting component 2. The vertical load-bearing keel 4 is vertically set, and the positioning component 5 is installed at the bottom of the vertical load-bearing keel 4 through the connecting component 6, and each positioning component 5 is located at the same horizontal height. One end of the vertical snap-fit ​​keel 7 is fixed to the integrated wall panel 8, and the other end of the vertical snap-fit ​​keel 7 is slidably snapped into the vertical load-bearing keel 4, so that the integrated wall panel 8 can be detachably and vertically installed on the main building structure and rested on the positioning component 5.

[0028] Embedded plates 3 are installed on the walls or other parts of the main building structure via fasteners 1. The number and installation positions of embedded plates 3 can be determined according to the actual installation requirements of the integrated wall panel 8. Adapters 2 are used to fix and connect the vertical load-bearing keel 4 and embedded plates 3, ensuring reliable installation of the vertical load-bearing keel 4 and serving as a detachable connection point for the vertical snap-fit ​​keel 7. This facilitates the convenient installation and disassembly of the integrated wall panel 8, reducing construction labor costs.

[0029] Positioning components 5 are installed on the vertical load-bearing keel 4 to support the bottom of the integrated wall panel 8, and all positioning components 5 are installed at the same horizontal height to ensure that the installation level of the integrated wall panel 8 meets the construction requirements.

[0030] By using the adapter 2, embedded plate 3, vertical load-bearing keel 4, positioning piece 5, and vertical snap-fit ​​keel 7, the weight of the integrated wall panel 8 can be transferred to the main building structure, ensuring the overall installation reliability of the integrated wall panel 8. There is no need for segmented installation. After installation, the adapter 2, embedded plate 3, vertical load-bearing keel 4, positioning piece 5, and vertical snap-fit ​​keel 7 are hidden behind the integrated wall panel 8, which has good integrity and aesthetics, and the installation is firm and reliable.

[0031] Please see the appendix Figure 3 To be continued Figure 6 The vertical load-bearing keel 4 has a C-shaped cross-section, with an opening at one end of the vertical load-bearing keel 4 away from the main building structure. An insert groove 41 is formed inside the vertical load-bearing keel 4, so that the other end of the vertical snap-fit ​​keel 7 is inserted into the insert groove 41 through the opening of the vertical load-bearing keel 4.

[0032] The top opening of the vertical load-bearing keel 4 makes it easy to insert the vertical snap-fit ​​keel 7 into the mounting groove 41 from top to bottom. When disassembling, simply move the integrated wall panel 8 upwards, and the vertical snap-fit ​​keel 7 will move upwards relative to the vertical load-bearing keel 4, making the disassembly of the integrated wall panel 8 more convenient and quick.

[0033] Please see the appendix Figure 3 and attached Figure 4 The vertical snap-fit ​​keel 7 includes an edge-trimming vertical snap-fit ​​keel 71 disposed on the side end of the integrated wall panel 8. The edge-trimming vertical snap-fit ​​keel 71 includes an edge-trimming snap-fit ​​part 72, a connecting strip 73, and a first flexible limiting part 74. The edge-trimming snap-fit ​​part 72 has an L-shaped cross-section, allowing it to fit snugly on the back, side end, and front of the side end of the integrated wall panel 8. The first flexible limiting part 74 has a V-shaped cross-section, and the connecting strip 73 connects the tip of the first flexible limiting part 74 to the edge-trimming snap-fit ​​part 72 located on the back of the integrated wall panel 8. The opening width of the first flexible limiting part 74 is slightly larger than the opening width of the vertical load-bearing keel 4.

[0034] Preferably, the edge-sealing snap-fit ​​part 72, the connecting strip 73, and the first flexible limiting part 74 are integrally formed, resulting in high structural strength. The first flexible limiting part 74 can be made of flexible steel plate, flexible aluminum alloy plate, or other materials, possessing a certain degree of deformation capability and being resistant to deformation and damage. The tip of the first flexible limiting part 74 is gradually inserted into the mounting groove 41 through the opening. The opening width of the first flexible limiting part 74 can be reduced by compression at the opening of the vertical load-bearing keel 4, thereby placing the first flexible limiting part 74 into the mounting groove 41. After insertion, the first flexible limiting part 74 utilizes its own elasticity to restore its original shape, thus preventing it from falling out of the mounting groove 41.

[0035] The L-shaped edge-trimming connector 72 can fit the front, side, and back of the integrated wall panel 8. The edge-trimming connector 72 can be fixed to the integrated wall panel 8 with special adhesive or reinforced with screws to ensure a firm and reliable installation of the edge-trimming connector 72 on the integrated wall panel 8. Thus, with the connection of the connecting strip 73, the vertical edge-trimming keel 71 is fixedly installed at the side edge of the integrated wall panel 8.

[0036] Preferably, the height of the edge trim vertical snap-fit ​​keel 71 can be the same as or less than the height of the integrated wall panel 8; when the height of the edge trim vertical snap-fit ​​keel 71 is less than the height of the integrated wall panel 8, multiple edge trim vertical snap-fit ​​keels 71 can be installed at intervals on the side edge of the integrated wall panel 8.

[0037] Please see the appendix Figure 4 The edge-sealing and snap-fit ​​portion 72 has a first recessed portion 721 formed at one end of the front side of the integrated wall panel 8, and the first recessed portion 721 abuts against the front side of the integrated wall panel 8.

[0038] By providing the first recessed portion 721 and pressing it against the integrated wall panel 8, the installation reliability of the edge-sealing snap-fit ​​portion 72 on the integrated wall panel 8 can be improved.

[0039] Please see the appendix Figure 3 and attached Figure 5 The vertical snap-fit ​​keel 7 further includes a first flat vertical snap-fit ​​keel 75 disposed in the middle of the integrated wall panel 8. The first flat vertical snap-fit ​​keel 75 includes a first flat part 76, a connecting strip 73, and a first flexible limiting part 74. The cross-section of the first flat part 76 is T-shaped, one end of the first flat part 76 is disposed through the middle of the integrated wall panel 8, and the other end of the flat part 76 is attached to the back of the integrated wall panel 8. The cross-section of the first flexible limiting part 74 is V-shaped, and the connecting strip 73 connects the tip of the first flexible limiting part 74 and the first flat part 76 located on the back of the integrated wall panel 8. The opening width of the first flexible limiting part 74 is slightly larger than the opening width of the vertical load-bearing keel 4.

[0040] The structure of the connecting strip 73 and the first flexible limiting part 74 in the first flat vertical snap-fit ​​keel 75 and the method of connecting them to the vertical load-bearing keel 4 are the same as those in the edge-trimming vertical snap-fit ​​keel 71, and will not be described again here.

[0041] The first flush joint 76 has a T-shaped structure. One end of it is used to penetrate and connect the middle of the integrated wall panel 8. The reliability of the penetration connection between the first flush joint 76 and the integrated wall panel 8 can be ensured by special adhesive. The other end of the first flush joint 76 is attached between the open end face of the vertical load-bearing keel 4 and the back of the integrated wall panel 8, so that the integrated wall panel 8 is firmly and reliably installed on the vertical load-bearing keel 4.

[0042] The height of the first flat vertical snap-fit ​​keel 75 is less than the height of the integrated wall panel 8. Multiple first flat vertical snap-fit ​​keels 75 can be arranged at intervals along the height direction of the integrated wall panel 8, so that the middle part of the integrated wall panel 8 can be reliably installed on the vertical load-bearing keel 4.

[0043] Please see the appendix Figure 5 The first flat joint 76 has an anti-detachment protrusion 761 formed at one end of the front side of the integrated wall panel 8, and the anti-detachment protrusion 761 abuts against the front side of the integrated wall panel 8.

[0044] By protruding and abutting against the front of the integrated wall panel 8, the first flat joint 76 can be effectively prevented from falling off the integrated wall panel 8.

[0045] Please see the appendix Figure 3 and attached Figure 6 The vertical snap-fit ​​keel 7 further includes a second flat vertical snap-fit ​​keel 77 disposed in the middle of the integrated wall panel 8. The second flat vertical snap-fit ​​keel 77 includes a second flat part 78 and a second flexible limiting part 79. The cross-section of the second flat part 78 is a C-shaped structure with one end open, and the other end of the second flat part 78 is fixedly connected to the back of the integrated wall panel 8. The cross-section of the second flexible limiting part 79 is a V-shaped structure. One end of a pair of second flexible limiting parts 79 is symmetrically connected to the open end of the second flat part 78, and the distance between the other ends of the pair of second flexible limiting parts 79 is slightly larger than the opening width of the vertical load-bearing keel 4.

[0046] Preferably, the second flat joint 78 and the second flexible limiting part 79 are integrally formed, resulting in high structural strength. The second flexible limiting part 79 can be made of flexible steel plate, flexible aluminum alloy plate, or other materials, possessing a certain degree of deformation capability and being resistant to deformation and damage. The tips of the pair of second flexible limiting parts 79 are gradually inserted into the mounting groove 41 through the opening. The distance between the pair of second flexible limiting parts 79 can be reduced by compression at the opening of the vertical load-bearing keel 4, thereby placing the pair of second flexible limiting parts 79 into the mounting groove 41. After placement, the pair of second flexible limiting parts 79 utilize their own elasticity to restore the original distance, thus preventing them from falling out of the mounting groove 41.

[0047] The second flat joint 78 of the C-shaped structure is attached to the back of the integrated wall panel 8. The second flat joint 78 can be fixed to the back of the integrated wall panel 8 with special glue or reinforced with screws to ensure that the second flat joint 78 is firmly and reliably installed in the middle of the back of the integrated wall panel 8.

[0048] The height of the second flat vertical snap-fit ​​keel 77 is less than the height of the integrated wall panel 8. Multiple second flat vertical snap-fit ​​keels 77 can be arranged at intervals along the height direction of the integrated wall panel 8, so that the middle part of the integrated wall panel 8 can be reliably installed on the vertical load-bearing keel 4.

[0049] Please see the appendix Figure 4 To be continued Figure 6 The opening of the vertical load-bearing keel 4 forms a limiting protrusion 42, which extends into the mounting groove 41; the opening ends of the first flexible limiting part 74 and the second flexible limiting part 79 are engaged with the limiting protrusion 42, and the tips of the first flexible limiting part 74 and the second flexible limiting part 79 abut against the inner wall of the end of the vertical load-bearing keel 4 closest to the main building structure.

[0050] By extending the concave portion of the limiting protrusion 42, the tips of the first flexible limiting portion 74 and the second flexible limiting portion 79 can be limited inward, preventing the vertical clip-type keel from coming out of the mounting groove 41.

[0051] Please see the appendix Figure 4 To be continued Figure 6 The vertical load-bearing keel 4 has concave openings 43 on both sides, and the positioning member 5 has an outward protrusion (not shown in the figure). The outward protrusion is fitted into the concave opening 43, so that the positioning member 5 is fitted onto the side of the vertical load-bearing keel 4.

[0052] The positioning element 5 can be quickly installed using the matching concave opening 43 and convex opening.

[0053] Please see the appendix Figure 2 The positioning member 5 has an L-shaped support portion 51 on the side near the integrated wall panel 8, so that the bottom of the integrated wall panel 8 rests on the horizontal section of the support portion 51.

[0054] Preferably, the size of the support part 51 can be determined according to the thickness of the integrated wall panel 8, so as to ensure that the support part 51 can support the bottom surface of the integrated wall panel 8 without being exposed, thus ensuring the structural aesthetics and safety.

[0055] Please see the appendix Figure 1 To be continued Figure 6 The construction method of this utility model is as follows:

[0056] Select the appropriate number of embedded plates 3 according to the size and weight of the integrated wall panel 8. The following is a detailed description of the construction process using three embedded plates 3 as an example. According to the installation position of the integrated wall panel 8, fix the three embedded plates 3 to the main building structure (wall) using expansion bolts, i.e., fasteners 1, and position them at the upper middle and both sides of the integrated wall panel 8.

[0057] Angle steel is used as the adapter 2. One side of the angle steel is welded to the embedded plate 3, and the other side of the angle steel is set perpendicular to the wall. The side of the vertical load-bearing keel 4 is welded to the other side of the angle steel. Each embedded plate 3 is equipped with a vertical load-bearing keel 4 through the adapter 2.

[0058] The stainless steel positioning pieces 5 are installed onto the vertical load-bearing keel 4 using stainless steel screws, i.e., connectors 6, ensuring that the horizontal sections of the bearing portions 51 of the positioning pieces 5 on the three vertical load-bearing keels 4 are at the same horizontal height, facilitating the support of the integrated wall panel 8. During installation, the protruding opening of the positioning piece 5 is aligned with the recessed opening 43 on the outer side of the vertical load-bearing keel 4, facilitating quick and accurate installation of the positioning piece 5 and ensuring that the height of the bearing portions 51 of the three positioning pieces 5 is consistent with the bottom elevation of the integrated wall panel 8.

[0059] The edge-trimming vertical snap-fit ​​keel 71 is attached to the front, side and back of the side edge of the integrated wall panel 8. The edge-trimming vertical snap-fit ​​keel 71 on both sides of the integrated wall panel 8 is installed symmetrically using the same installation method.

[0060] When using the first flat-joint vertical snap-fit ​​keel 75, the first flat-joint part 76 of the first flat-joint vertical snap-fit ​​keel 75 is installed through the middle of the integrated wall panel 8. When using the second flat-joint vertical snap-fit ​​keel 77, the second flat-joint part 78 is fitted and installed against the middle of the back of the integrated wall panel 8.

[0061] When installing the integrated wall panel 8, the first flexible limiting part 74 / second flexible limiting part 79 is inserted into the mounting groove 41 through the opening of the vertical load-bearing keel 4, and the bottom surface of the integrated wall panel 8 rests on the horizontal section of the three bearing parts 51.

[0062] Specifically, the first flexible limiting part 74 is inserted into the mounting groove 41 through deformation. The tip of the first flexible limiting part 74 abuts against the inner wall of the vertical load-bearing keel 4 near the wall. The open end of the first flexible limiting part 74 is locked and limited by the limiting protrusion 42 at the opening of the vertical load-bearing keel 4. A pair of second flexible limiting parts 79 are inserted into the mounting groove 41 through deformation. The tips of the pair of second flexible limiting parts 79 abut against the inner wall of the vertical load-bearing keel 4 near the wall. The open ends of the pair of second flexible limiting parts 79 are locked and limited by the limiting protrusion 42 at the opening of the vertical load-bearing keel 4.

[0063] The above are merely preferred embodiments of the present utility model and are not intended to limit the scope of protection of the present utility model. Therefore, any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the scope of protection of the present utility model.

Claims

1. A quick-installation structure for an integrated wall panel, characterized in that: It includes a connector (2), an embedded plate (3), a vertical load-bearing keel (4), a positioning component (5), a vertical snap-fit ​​keel (7), and an integrated wall panel (8); the embedded plate (3) is fixedly installed on the main body of the building structure, and several embedded plates (3) are spaced apart behind the integrated wall panel (8); each embedded plate (3) is connected to the vertical load-bearing keel (4) through the connector (2), the vertical load-bearing keel (4) is set vertically, the positioning component (5) is installed at the bottom of the vertical load-bearing keel (4), and each positioning component (5) is located at the same horizontal height; one end of the vertical snap-fit ​​keel (7) is fixed on the integrated wall panel (8), and the other end of the vertical snap-fit ​​keel (7) is slidably snapped into the vertical load-bearing keel (4), so that the integrated wall panel (8) can be detachably and vertically installed on the main body of the building structure and placed on the positioning component (5).

2. The integrated wall panel quick-installation structure according to claim 1, characterized in that: The vertical load-bearing keel (4) has a C-shaped cross section, with an opening at one end of the vertical load-bearing keel (4) away from the main building structure. An insert groove (41) is formed inside the vertical load-bearing keel (4), so that the other end of the vertical snap-fit ​​keel (7) can be inserted into the insert groove (41) through the opening of the vertical load-bearing keel (4).

3. The integrated wall panel quick-installation structure according to claim 2, characterized in that: The vertical snap-fit ​​keel (7) includes a finishing vertical snap-fit ​​keel (71) set on the side end of the integrated wall panel (8). The finishing vertical snap-fit ​​keel (71) includes a finishing snap-fit ​​part (72), a connecting strip (73) and a first flexible limiting part (74). The finishing snap-fit ​​part (72) has an L-shaped cross-section, so that the finishing snap-fit ​​part (72) can fit on the back, side end face and front of the side end of the integrated wall panel (8). The first flexible limiting part (74) has a V-shaped cross-section. The connecting strip (73) is connected between the tip of the first flexible limiting part (74) and the finishing snap-fit ​​part (72) located on the back of the integrated wall panel (8). The opening width of the first flexible limiting part (74) is greater than the opening width of the vertical load-bearing keel (4).

4. The integrated wall panel quick-installation structure according to claim 3, characterized in that: The edge-sealing snap-fit ​​part (72) is located at one end of the front of the integrated wall panel (8) and has a first recess (721) that abuts against the front of the integrated wall panel (8).

5. The integrated wall panel quick-installation structure according to claim 2, characterized in that: The vertical snap-fit ​​keel (7) further includes a first flat vertical snap-fit ​​keel (75) disposed in the middle of the integrated wall panel (8). The first flat vertical snap-fit ​​keel (75) includes a first flat part (76), a connecting strip (73) and a first flexible limiting part (74). The cross-section of the first flat part (76) is T-shaped. One end of the first flat part (76) is disposed through the middle of the integrated wall panel (8), and the other end of the flat part (76) is attached to the back of the integrated wall panel (8). The cross-section of the first flexible limiting part (74) is V-shaped. The connecting strip (73) is connected between the tip of the first flexible limiting part (74) and the first flat part (76) located on the back of the integrated wall panel (8). The opening width of the first flexible limiting part (74) is greater than the opening width of the vertical load-bearing keel (4).

6. The integrated wall panel quick-installation structure according to claim 5, characterized in that: The first flat joint (76) has an anti-detachment protrusion (761) at one end of the front side of the integrated wall panel (8), and the anti-detachment protrusion (761) abuts against the front side of the integrated wall panel (8).

7. The integrated wall panel quick-installation structure according to claim 2, characterized in that: The vertical snap-fit ​​keel (7) further includes a second flat vertical snap-fit ​​keel (77) disposed in the middle of the integrated wall panel (8). The second flat vertical snap-fit ​​keel (77) includes a second flat part (78) and a second flexible limiting part (79). The cross-section of the second flat part (78) is a C-shaped structure with one end open, and the other end of the second flat part (78) is fixedly connected to the back of the integrated wall panel (8). The cross-section of the second flexible limiting part (79) is a V-shaped structure. One end of a pair of second flexible limiting parts (79) is symmetrically connected to the open end of the second flat part (78), and the distance between the other ends of a pair of second flexible limiting parts (79) is greater than the opening width of the vertical load-bearing keel (4).

8. The integrated wall panel quick-installation structure according to claim 5 or 7, characterized in that: The opening of the vertical load-bearing keel (4) forms a limiting protrusion (42), which extends into the mounting groove (41); the opening ends of the first flexible limiting part (74) and the second flexible limiting part (79) are engaged with the limiting protrusion (42), and the tips of the first flexible limiting part (74) and the second flexible limiting part (79) abut against the inner wall of the end of the vertical load-bearing keel (4) near the main body of the building structure.

9. The integrated wall panel quick-installation structure according to claim 8, characterized in that: The vertical load-bearing keel (4) has concave openings (43) on both sides, and the positioning member (5) has convex openings. The convex openings are fitted into the concave openings (43) so that the positioning member (5) is fitted onto the side of the vertical load-bearing keel (4).

10. The integrated wall panel quick-installation structure according to claim 1, characterized in that: The positioning member (5) has an L-shaped support part (51) on the side near the integrated wall panel (8), so that the bottom of the integrated wall panel (8) rests on the horizontal section of the support part (51).