Whole bathroom wall plate assembling structure

By splicing the entire bathroom wall panel using decorative panel snap-fit ​​and frame sealing strip bonding, the problem of needing to drill holes for wall panel splicing in existing technologies is solved, achieving efficient installation and firm connection, reducing costs and improving sealing and structural stability.

CN224092781UActive Publication Date: 2026-04-07TRANSBLOCK (BEIJING) TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-08
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

Existing integrated bathroom wall panels require drilling holes during assembly, resulting in high processing costs and low efficiency.

Method used

The wall panels are assembled by using decorative panel clips and a frame bonded with sealing strips. The wall panels are fixed to the wall and then to the chassis, avoiding the need for drilling.

Benefits of technology

It improves installation efficiency, reduces processing time, lowers production costs, and enhances the sealing between wall panels and the stability of the overall structure.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224092781U_ABST
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Abstract

The utility model relates to a whole bathroom wall plate assembling structure, and relates to the technical field of constructions.The whole bathroom wall plate assembling structure comprises a plurality of wall plates and a base plate, each wall plate comprises a frame and a veneer, the frames are fixed to a wall through fixing pieces, and the veneer is fixed to the base plate. A sealing strip is arranged between every two adjacent frames, the two adjacent frames are fixed through the sealing strips, the veneers are arranged on the sides, away from the wall body, of the frames, and every two adjacent veneers are connected in a clamped mode. And the chassis is arranged at the lower ends of the wall plates and is fixed with each wall plate. The problems that the processing cost is high and the efficiency is low due to the fact that holes need to be formed when wall plates are spliced at present are solved.
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Description

Technical Field

[0001] This application relates to the field of building technology, and in particular to an integrated bathroom wall panel assembly structure. Background Technology

[0002] Prefabricated bathroom panel structures are widely used in modern architectural decoration, primarily for the rapid installation and aesthetic decoration of bathroom spaces. With increasing public concern for the comfort and safety of living environments, prefabricated bathrooms are gradually becoming a popular choice for home renovations. In existing technologies, prefabricated bathroom installation typically involves first installing the lower end of one panel onto a base, then joining the next panel to it before fixing its lower end to the base, and so on, sequentially fixing the panels. During assembly, the surface of each panel facing other panels is the splicing surface. Each panel has two splicing surfaces, each with holes. One hole houses a hanger, while the other is left pre-drilled. The splicing of two panels is achieved through the holes and hangers on the opposing splicing surfaces of adjacent panels.

[0003] However, the high precision required when drilling holes on the splicing surfaces of the wall panels results in higher costs and slower processing efficiency, which affects the subsequent installation process. Utility Model Content

[0004] This application provides an integrated bathroom wall panel assembly structure to solve the problems of high processing costs and slow efficiency caused by the need to drill holes when splicing wall panels.

[0005] An integrated bathroom wall panel assembly structure includes:

[0006] The wall panel is provided in multiple ways. Each wall panel includes a frame and a decorative panel. The frame is fixed to the wall by fasteners. A sealing strip is provided between two adjacent frames and the frame is fixed by the sealing strip. The decorative panel is located on the side of the frame away from the wall. Two adjacent decorative panels are snapped together.

[0007] A chassis is located at the lower end of the wall panels and fixed to each of the wall panels.

[0008] By adopting the above technical solution, when splicing two adjacent wall panels, the decorative panels are first interlocked and aligned, then the two frames are fixed by sealing strips, then the wall panels are fixed to the wall to ensure flatness, and finally fixed to the base. The overall installation is efficient and firm. The wall panels do not require drilling or other fine processing, which reduces processing time, thereby speeding up the installation process and saving production costs.

[0009] In one embodiment, the decorative panel is provided with a first locking portion and a second locking portion, the first locking portion and the second locking portion being respectively provided on opposite sides of the decorative panel along the horizontal direction, and the first locking portion and the corresponding second locking portion engaging and sealing.

[0010] By adopting the above technical solution, the locking part between two adjacent decorative panels is locked in place, and the sealing strip between two adjacent frames enhances the sealing performance between adjacent wall panels, reducing the penetration of water and moisture. In addition, the locking part can also abut against the sealing strip to prevent the sealing strip from falling off.

[0011] In one embodiment, the decorative panel is bonded to the frame, which is formed by splicing and fixing multiple metal tubes and multiple connectors, with each connector connecting two adjacent metal tubes.

[0012] By adopting the above technical solution, the metal pipes possess high strength and durability, capable of withstanding significant external forces. Connectors securely link adjacent metal pipes, ensuring the stability of the frame structure, providing reliable support for the wall panels, and extending their service life. The decorative panels are bonded to the frame, simplifying installation and enabling rapid wall panel assembly.

[0013] In one embodiment, a polyurethane non-foaming adhesive is provided between the decorative panel and the frame.

[0014] By adopting the above technical solution, the polyurethane non-foaming adhesive has excellent bonding properties, enabling a tight bond between the decorative panel and the frame, thus enhancing the stability of the wall panel structure. This connection method can also effectively buffer external impacts, reducing loosening and deformation between the decorative panel and the frame.

[0015] In one embodiment, each of the wall panels further includes sound insulation material disposed within the frame.

[0016] By adopting the above technical solutions, noise generated in the bathroom, such as the sound of running water and showering, can be effectively absorbed and blocked, reducing interference to other spaces and providing users with a quieter living environment. The sound insulation cotton also has certain heat insulation properties, helping to maintain a stable temperature in the bathroom, reducing energy consumption, and improving energy efficiency.

[0017] In one embodiment, the chassis is provided with a mounting groove, the width of the frame is smaller than the width of the mounting groove, and the frame and the end of the mounting groove away from the wall are sealed together.

[0018] By adopting the above technical solution, this design makes the connection between the wall panel and the chassis more stable, enhancing the overall structural stability. At the same time, the mounting groove design conceals the connection between the wall panel and the chassis, improving the overall aesthetics. The wider mounting groove prevents the wall panel from expanding due to temperature and humidity changes and compressing the chassis, and also provides some adjustment space for the wall panel.

[0019] In one embodiment, the fastener includes a keel and bolts, the keel being provided in multiples and located on the side of the wall panel close to the wall, the keel being fixed to the frame and fixed to the wall by the bolts.

[0020] By adopting the above technical solution, multiple keels are installed on the side of the wall panel closest to the wall and fixed to the wall with bolts, providing a reliable fixing method for the wall panel. This fixing method can withstand greater weight and external forces, ensuring that the wall panel will not loosen or fall off during use.

[0021] In one embodiment, the fastener further includes an angle bracket disposed between the keel and the wall panel, and between the wall and the wall panel.

[0022] By adopting the above technical solutions, the connection stability between the wall panels, the keel, and the wall is further enhanced. The corner brackets can distribute forces, reducing deformation and damage to the wall panels caused by uneven stress during use; at the same time, they improve the overall integrity and seismic performance of the bathroom wall panel assembly structure, ensuring user safety. The keel and corner brackets located on the sides of the wall panels effectively prevent the sealing strips from falling off and ensure the wall panels are flush; the corner brackets located at the top of the wall panels and connected to the wall provide further fixation.

[0023] In one embodiment, the keel is provided with a buffer.

[0024] By adopting the above technical solutions, the internal buffer of the keel can absorb vibration energy, reduce the transmission of vibration caused by collisions, water flow impacts, etc. during use, reduce noise, protect the wall panels and fixed structures, and extend service life.

[0025] In one embodiment, the keel is provided with reinforcing ribs.

[0026] By adopting the above technical solution, the internal reinforcing ribs of the keel enhance the strength and rigidity of the keel itself, enabling it to better withstand the weight of the wall panel and external forces, prevent keel deformation, and ensure the stable installation of the wall panel.

[0027] In summary, this application includes at least one beneficial effect:

[0028] 1. When splicing two adjacent wall panels, first use the decorative panels to interlock and align their positions, then fix the two frames together with the sealing strip, then fix the wall panels to the wall to ensure that the wall panels are flat, and finally fix them to the base. The overall installation is efficient and sturdy. The wall panels do not require drilling or other fine processing, which reduces processing time, thereby speeding up the installation process and saving production costs.

[0029] 2. The first and second locking parts on the decorative panel are locked together for a seal, and the sealing strip between two adjacent frames enhances the sealing between adjacent wall panels, reducing the penetration of water and moisture. Additionally, the locking parts abut against the sealing strip to prevent it from falling off.

[0030] 3. The connection stability between the wall panels, the keel, and the wall is further enhanced. Corner brackets can distribute forces, reducing deformation and damage to the wall panels caused by uneven stress during use; at the same time, they improve the overall integrity and seismic performance of the bathroom wall panel assembly structure, ensuring user safety. The keel and corner brackets located on the sides of the wall panels effectively prevent the sealing strip from falling off and ensure the wall panels are flush; the corner brackets located at the top of the wall panels and connected to the wall provide further fixation. Attached Figure Description

[0031] Figure 1 This is a schematic diagram of an integrated bathroom wall panel assembly structure provided in an embodiment of this application;

[0032] Figure 2 This is a schematic diagram of a structure in which multiple wall panels are spliced ​​together, as provided in an embodiment of this application;

[0033] Figure 3 yes Figure 2 Enlarged view of A in the middle;

[0034] Figure 4 yes Figure 1 Enlarged view of B in the middle;

[0035] Figure 5 yes Figure 1 Enlarged view of C;

[0036] Figure 6 This is a schematic diagram of a corner bracket and wall panel fixing structure provided in an embodiment of this application.

[0037] Explanation of reference numerals in the attached drawings: 1. Assembled structure of integrated bathroom wall panels; 11. Wall panel; 111. Frame; 1111. Metal pipe; 1112. Connector; 112. Decorative panel; 1121. First mounting part; 1122. Second mounting part; 113. Sound insulation cotton; 12. Fastener; 121. Keel; 122. Bolt; 123. Angle bracket; 13. Base; 131. Mounting groove; 14. Sealing strip; 15. Wall. Detailed Implementation

[0038] The following is in conjunction with the appendix Figure 1-6 This application provides a further detailed description of the integrated bathroom wall panel assembly structure.

[0039] Example 1

[0040] Please see Figure 1-6 The integrated bathroom wall panel assembly structure 1 provided in this application embodiment includes a wall panel 11, a chassis 13, and a fastener 12.

[0041] like Figures 1 to 3 As shown, multiple wall panels 11 are provided, each wall panel 11 including a frame 111 and a decorative panel 112. The frame 111 is fixed to the wall 15 by fasteners 12, and the decorative panel 112 is located on the side of the frame 111 away from the wall 15. A sealing strip 14 is provided between two adjacent frames 111 and the frames are fixed by the sealing strip 14. Two adjacent decorative panels 112 are snap-fitted together. Specifically, the frame 111 is formed by splicing and assembling multiple metal pipes 1111 and multiple connectors 1112. Each connector 1112 connects two adjacent metal pipes 1111. The metal pipes 1111 can be aluminum alloy pipes, galvanized pipes, or stainless steel pipes, and their cross-sectional shape can be rectangular or circular. The connectors 1112 can be plastic connectors 1112 or metal connectors 1112. The plastic connectors 1112 are made of polyoxymethylene material, which has the characteristics of good elasticity and easy installation. The metal connectors 1112 can be made of zinc alloy material, which has high strength and durability. The combination logic of the metal tube 1111 and the connector 1112 is that the metal tube 1111 provides rigid support, while the connector 1112 plays a connecting and buffering role, thereby ensuring the stability and strength of the frame 111. In this embodiment, the metal tube 1111 is a galvanized square tube with a hollow interior, and the connector 1112 is a plastic connector 1112 in an L-shape. Two galvanized square tubes are arranged horizontally opposite each other, and two are arranged vertically opposite each other. The plastic connector 1112 extends into the interior of two adjacent galvanized square tubes for fixation, making the frame 111 in a U-shape.

[0042] The sealing strip 14 can be a rubber sealing strip or a silicone sealing strip. Its structural features include good elasticity and compression resilience, effectively filling the tiny gaps between the frames 111. For example, the rubber sealing strip 14 has the advantages of strong aging resistance and weather resistance, while the silicone sealing strip 14 has excellent high-temperature and low-temperature resistance. In this embodiment, the sealing strip 14 is located on one side of one frame 111. The sealing strip 14 has an adhesive backing, which bonds and fixes it to the other frame 111. The adhesive backing can be a pressure-sensitive adhesive or a hot melt adhesive, providing a strong bond and preventing it from easily falling off. The shape of the sealing strip 14 can be designed as rectangular or trapezoidal according to actual needs to adapt to different connection methods between wall panels 11. In this embodiment, the sealing strip 14 is rectangular, so when the sealing strip 14 between the two frames 111 is compressed, its contact area with the galvanized square tube is larger, making it easier to waterproof. The sealing strip 14 also abuts against the locking part, thus preventing it from falling off.

[0043] The decorative panel 112 is bonded and fixed to the frame 111. Specifically, the decorative panel 112 can be made of PVC board or fiberglass board, and the adhesive material between it and the frame 111 can be polyurethane non-foam adhesive or silicone sealant. Polyurethane non-foam adhesive has excellent adhesion and weather resistance, and can effectively prevent moisture penetration. In addition, the decorative panel 112 is also provided with a first locking part 1121 and a second locking part 1122, which are respectively provided on opposite sides of the decorative panel 112 along the horizontal direction, and the first locking part 1121 and the second locking part 1122 are locked and sealed. This locking and sealing design not only improves the sealing performance between the wall panels 11, but also facilitates disassembly and maintenance. In this embodiment, the first locking part 1121 and the second locking part 1122 are both locking grooves, and the two locking grooves are locked and sealed together.

[0044] To further improve the overall sound insulation effect, each wall panel 11 also includes sound insulation cotton 113, which is installed inside the frame 111. The sound insulation cotton 113 can be polyester fiber cotton or rock wool. After being filled inside the frame 111, it can not only effectively isolate external noise, but also play a certain role in heat insulation. For example, polyester fiber cotton has the characteristics of softness and good sound absorption performance, while rock wool has the advantages of excellent fire resistance and heat insulation.

[0045] Therefore, the production process of each wall panel 11 in the factory is as follows: First, the metal tubes 1111 are connected into a frame 111 using connectors 1112. Then, the decorative panel 112 is placed on the frame 111 and glued with polyurethane non-foaming adhesive. Next, a layer of sound insulation cotton 113 is glued inside the frame 111 to form the wall panel 11. Finally, a sealing strip 14 is glued on the same side of each wall panel 11.

[0046] like Figure 4As shown, the chassis 13 is located at the lower end of the wall panel 11 and fixed to the wall panel 11. Specifically, the side of the chassis 13 closest to the wall 15 has a recessed mounting groove 131. The width of the frame 111 in the horizontal direction is smaller than the width of the mounting groove 131, and the frame 111 and the end of the mounting groove 131 away from the wall 15 are sealed together. The mounting groove 131 can be an aluminum alloy groove or a stainless steel groove, and its sealing design with the frame 111 ensures the waterproof performance at the connection between the wall panel 11 and the chassis 13. For example, an aluminum alloy groove has good thermal conductivity and corrosion resistance, which can effectively prevent the accumulation of condensate. The end of the mounting groove 131 and the chassis 13 can both be equipped with floor drains to avoid water accumulation.

[0047] like Figures 5 to 6 As shown, the fastener 12 includes a keel 121 and bolts 122. Multiple keels 121 are provided and located on the side of the wall panel 11 near the wall 15. The keels 121 are fixed to the frame 111 and to the wall 15 by the bolts 122. Specifically, the keel 121 can be an M38 light steel keel or a wooden keel, and the bolts 122 can be stainless steel bolts or self-tapping screws. Light steel keels have the advantages of high strength and light weight, while stainless steel bolts have the characteristics of corrosion resistance and easy installation. The keels 121 extend horizontally and are fixed to the wall panel 11. Multiple keels 121 are spaced vertically and parallel to each other. Bolts 122 are spaced on the keels 121 and pass through the wall 15. The fastener 12 also includes angle brackets 123, which are located between the keels 121 and the wall panel 11, and between the wall 15 and the wall panel 11. The corner bracket 123 can be L-shaped or U-shaped, and its function is to enhance the stability of the fastener 12 and prevent the wall panel 11 from loosening. In this embodiment, the corner bracket 123 is L-shaped and can be set on one side of the wall panel 11 in the horizontal direction. One side of the corner bracket 123 is fixed to the keel 121 with screws, and the other side is fixed to the side of the wall panel 11 with screws. The corner bracket 123 and the keel 121 can also prevent the sealing strip 14 from falling off from this side and ensure the flatness of the wall panel 11. In addition, the corner bracket 123 is also set at the upper end of the wall panel 11 in the vertical direction and fixed to the wall 15.

[0048] The keel 121 is equipped with a buffer, which can be a rubber pad or a spring structure, to absorb external impact and protect the wall panel structure. The keel 121 is also equipped with reinforcing ribs, which can be in the form of rectangular steel pipes or I-beams, to enhance the load-bearing capacity of the keel 121.

[0049] The implementation principle of this embodiment is as follows: First, the keel 121 is used to level the surface of the wall 15. Then, starting from the left or right side of the bathroom door opening, the wall panel 11 is installed. The first wall panel 11 is placed into the pre-reserved installation groove 131 of the base 13. The wall panel 11 is connected and fixed to the keel 121 using corner brackets 123 on the side. At the same time, the wall panel 11 is connected to the wall 15 using corner brackets 123 at the top. Then, the next wall panel 11 is placed into the installation groove 131 and engages with the locking part of the previous wall panel 11. At this time, the sealing strip 14 further fixes and seals the two adjacent wall panels 11. Then, the corner brackets 123 are used to connect the wall panel 11 to the keel 121 on the other side. Next, the wall panel 11 is fixedly connected to the wall 15 at the top using corner brackets 123. This process is repeated to assemble multiple wall panels 11. Finally, all wall panels 11 are fixed in the installation groove 131.

[0050] This installation method, which integrates the entire structure, makes installation convenient, efficient, and robust. It also eliminates the need for precision machining of the wall panels 11, accelerating the installation process and reducing production costs. Furthermore, the improved sealing between the two wall panels 11 reduces water and moisture penetration.

[0051] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A modular bathroom wall panel assembly structure, characterized in that, include: The wall panel (11) is provided in multiple ways. Each wall panel (11) includes a frame (111) and a decorative panel (112). The frames (111) are fixed to the wall (15) by fasteners (12). A sealing strip (14) is provided between two adjacent frames (111) and fixed by the sealing strip (14). The decorative panel (112) is located on the side of the frame (111) away from the wall (15). Two adjacent decorative panels (112) are snapped together. A chassis (13) is disposed at the lower end of the wall panel (11) and fixed to each of the wall panels (11).

2. The integrated bathroom wall panel assembly structure according to claim 1, characterized in that, The decorative panel (112) is provided with a first locking part (1121) and a second locking part (1122). The first locking part (1121) and the second locking part (1122) are respectively provided on opposite sides of the decorative panel (112) in the horizontal direction. The first locking part (1121) and the corresponding second locking part (1122) are locked and sealed.

3. The integrated bathroom wall panel assembly structure according to claim 1, characterized in that, The decorative panel (112) is bonded and fixed to the frame (111). The frame (111) is formed by splicing and assembling multiple metal tubes (1111) and multiple connectors (1112). Each connector (1112) connects two adjacent metal tubes (1111).

4. The integrated bathroom wall panel assembly structure according to claim 3, characterized in that, A polyurethane non-foaming adhesive is provided between the decorative panel (112) and the frame (111).

5. The integrated bathroom wall panel assembly structure according to claim 1, characterized in that, Each of the wall panels (11) also includes sound insulation cotton (113) disposed within the frame (111).

6. The integrated bathroom wall panel assembly structure according to claim 1, characterized in that, The chassis (13) is provided with a mounting groove (131), the width of the frame (111) is smaller than the width of the mounting groove (131), and the frame (111) and the end of the mounting groove (131) away from the wall (15) are sealed together.

7. The integrated bathroom wall panel assembly structure according to claim 1, characterized in that, The fastener (12) includes a keel (121) and a bolt (122). The keel (121) is provided in multiple parts and is located on the side of the wall panel (11) near the wall (15). The keel (121) is fixed to the frame (111) and fixed to the wall (15) by the bolt (122).

8. The integrated bathroom wall panel assembly structure according to claim 7, characterized in that, The fastener (12) also includes a corner bracket (123), which is disposed between the keel (121) and the wall panel (11) and between the wall (15) and the wall panel (11).

9. The integrated bathroom wall panel assembly structure according to claim 7, characterized in that, The keel (121) is equipped with a buffer.

10. The integrated bathroom wall panel assembly structure according to claim 7, characterized in that, The keel (121) is provided with reinforcing ribs.