Assembly type bathroom floor integral splicing structure

The prefabricated bathroom flooring system, which combines tiles, frame profiles, and splicing profiles, solves the problems of leveling and leakage at the joints of bathroom floors, improves installation efficiency and aesthetics, and adapts to diverse bathroom space needs.

CN224213712UActive Publication Date: 2026-05-08HUIDA RESIDENTIAL IND EQUIP (TANGSHAN) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUIDA RESIDENTIAL IND EQUIP (TANGSHAN) CO LTD
Filing Date
2025-04-29
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

Existing prefabricated bathroom flooring products have problems such as inability to level the joints, potential for water leakage, poor aesthetics, and complicated construction, especially in large bathroom spaces where they cannot meet transportation and installation requirements.

Method used

The prefabricated bathroom floor uses a combination of tiles, frame profiles, and splicing profiles to form an integrated splicing structure. Leveling teeth and silicone sealing strips ensure consistent splicing height and waterproofing. Foaming layers and cement fiberboard enhance the connection strength, and splicing buckles and covers improve installation efficiency and aesthetics.

Benefits of technology

It achieves horizontal consistency of the wall panel installation surface after the waterproof tray is spliced, reduces the risk of water leakage, improves installation efficiency and aesthetics, and adapts to the installation needs of different bathroom environments.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of integral bathrooms, and discloses an assembly type bathroom floor integral splicing structure which is characterized in that a large bathroom floor area is reasonably divided to form a plurality of independent waterproof plates, and the waterproof plates are spliced to form an integral structure; a splicing seam is subjected to waterproof sealing through a silica gel sealing strip, a splicing buckle plate is used for locking and leveling, a sawtooth structure of a splicing profile and a sawtooth structure of the buckle plate are meshed, and the sawtooth shape can be adjusted up and down to the same tooth position, so that the consistency of the mounting surface of the waterproof disc is achieved. The utility model aims to solve the problems that the existing splicing structure is difficult to level, insufficient in waterproofness and complex in installation, realizes quick leveling installation, high-strength sealing and aesthetic property, reduces the risk of water leakage and improves the construction efficiency.
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Description

Technical Field

[0001] This utility model relates to the field of integrated bathroom technology, and in particular to an integrated splicing structure for prefabricated bathroom flooring. Background Technology

[0002] In the field of prefabricated bathroom products, bathroom floor products are referred to as waterproof trays.

[0003] When renovating or upgrading old houses, if prefabricated products are used in kitchens and bathrooms, there may be situations where the bathroom space is large, and the elevator space cannot accommodate the transportation of a single prefabricated waterproof tray. In such cases, if a prefabricated chassis is used, it is necessary to divide the waterproof tray into multiple sections according to the functional layout within the bathroom space and assemble them. At the same time, the reliability and aesthetics of the assembled sections are the future development directions of the product.

[0004] The existing product splicing joint structure has the following drawbacks:

[0005] The existing splicing structure of the product and the existing technology cannot level the two waterproof trays through the connector. When installing the wall panel, the gap between the wall panel and the waterproof tray is not the same size. This is mainly because the two waterproof trays are not at the same height, which causes the wall panel to be misaligned.

[0006] The lack of waterproofing at the joints poses a risk of leakage.

[0007] The waterproof height is set too low and cannot meet the needs of special users;

[0008] Existing technologies include C-type structures and barbed products, but these have limited waterproofing options and are relatively complicated to install.

[0009] Although various improvement solutions have been implemented in the industry, the diverse nature of bathroom spaces and the varied placement of components mean that reasonable improvements are needed to adapt to different bathroom environments, which remains a pressing technical challenge. Utility Model Content

[0010] The present invention aims to solve at least one of the technical problems existing in the related art. To this end, the present invention provides a prefabricated bathroom floor integral splicing structure.

[0011] A prefabricated bathroom floor assembly structure, comprising,

[0012] The waterproof tray is composed of tiles, frame profiles, and splicing profiles, with the frame profiles and splicing profiles placed around the perimeter of the tiles;

[0013] The splicing panel is a splicing profile that connects adjacent waterproof trays. The splicing profile and splicing panel are leveled to ensure that the splicing height of adjacent waterproof trays is consistent.

[0014] The cement fiber board is arranged at the bottom of the integral splicing structure and is connected to the frame profile and the splicing profile;

[0015] The foaming layer is arranged between the waterproof tray and the cement fiber board, and the foaming layer connects the frame profile and the splicing profile into one body.

[0016] Furthermore, both the frame profile and the splicing profile are strip-shaped and both include a base box. Fiber board fitting parts, waterproof tray adjusting hooks and foaming connecting parts are arranged at the lower parts of the base boxes;

[0017] The fiber board fitting part is in a "卜" shape and extends out of the base box for connecting with the cement fiber board;

[0018] The waterproof tray adjusting hook is in an I shape and extends out of the base box for adjusting the frame profile and the splicing profile during construction;

[0019] The foaming connecting part is in an L shape and extends horizontally out of the base box and penetrates into the foaming layer. The L-shaped setting enables the frame profile and the splicing profile to have transverse and longitudinal connecting forces with the foaming layer.

[0020] Furthermore, the frame profile is provided with a frame base box, and a side socket part and a first ceramic tile fitting part are arranged at the upper part of the frame base box. The side socket part is connected to the first ceramic tile fitting part,

[0021] The side socket part is a cavity structure, and the first ceramic tile fitting part extends out of the frame base box and is in an L shape;

[0022] A first tear opening is arranged between the frame base box and the first ceramic tile fitting part. The first tear opening is used to support the first ceramic tile fitting part during transportation to prevent the first ceramic tile fitting part from deforming and affecting the assembly of the subsequent overall splicing structure of the bathroom floor;

[0023] When assembling, the frame profile after removing the first tear opening is used for assembly.

[0024] Furthermore, the splicing profile is provided with a splicing base box, and a leveling component is arranged at the upper part of the splicing base box. An external leveling tooth is arranged on one side of the leveling component;

[0025] The leveling component is a cavity structure.

[0026] Furthermore, more than one leveling component is provided, and a separation groove is arranged between the connected leveling components; it is convenient to determine the number of leveling components used according to the on-site construction conditions and specific usage requirements during use, and the splicing profile can be adjusted.

[0027] Furthermore, a second ceramic tile fitting part, which is in an L shape, is arranged on the leveling component directly connected to the splicing base box;

[0028] A second tear opening is provided between the splicing base box and the second tile fitting part. The second tear opening is used to support the second tile fitting part during transportation to prevent the deformation of the second tile fitting part, which may affect the assembly of the overall splicing structure of the subsequent bathroom floor.

[0029] When assembling, the splicing profile after removing the second tear opening is used for assembly.

[0030] Furthermore, the splicing buckle plate is C-shaped and has two connecting arms. Inner leveling teeth are provided on the inner side of each connecting arm. The inner leveling teeth are used to cooperate with the outer leveling teeth of the splicing profile to connect the two splicing profiles.

[0031] Furthermore, a silicone sealing strip is provided between the splicing buckle plate and the splicing profile.

[0032] The silicone sealing strip is integrally T-shaped. The short arm part of the T-shape covers the leveling components of two adjacent splicing profiles. The long arm part of the T-shape is the sealing part, which is inserted between the leveling components of two adjacent splicing profiles. A waterproof protrusion pointing to the short part is also provided on the sealing part.

[0033] Furthermore, the splicing cover plate is strip-shaped or L-shaped, and its side sectional view is "卩"-shaped. It has an inner fitting edge and an outer fitting edge, and a socket is formed between the inner fitting edge and the outer fitting edge.

[0034] Furthermore, the splicing cover plate covers the junction of the side socket parts of two adjacent frame profiles. A waterproof material is also provided between the splicing cover plate and the side socket part.

[0035] A floor drain is also provided in the overall splicing structure of the prefabricated bathroom floor. The floor drain is provided at the connection between the tile and the frame profile or the splicing profile.

[0036] One or more of the above technical solutions in the embodiments of the present utility model have at least one of the following technical effects:

[0037] 1. Applied in the integral tile bathroom, the splicing waterproof tray adopts a closely combined structure with serrations, achieving the horizontal consistency of the wall panel installation surface after the splicing of the waterproof tray, effectively reducing the height difference of the waterproof tray, and improving the aesthetics after installation and the quickness of adjusting the installation wall panel.

[0038] 2. A new type of silicone sealing strip is added, and soft rubber barbs are added to the sealing strip, reducing the risk of water leakage.

[0039] 3. The double chassis is locked by using profiles, shortening the installation period and saving labor costs.

[0040] 4. Applying the splicing cover plate designed by the present utility model can effectively reduce the risk of water leakage at the splicing side and achieve the aesthetics after splicing.

[0041] Additional aspects and advantages of this invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description

[0042] To more clearly illustrate the technical solutions in this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.

[0043] Figure 1 This is a plan view of the prefabricated bathroom floor integral splicing structure in this utility model;

[0044] Figure 2 This is a cross-sectional view of the prefabricated bathroom floor integral splicing structure in this utility model;

[0045] Figure 3 This is a partially enlarged view of the frame profile connection of the prefabricated bathroom floor integral splicing structure in this utility model;

[0046] Figure 4 This is a partially enlarged view of the splicing profile connection of the prefabricated bathroom floor integral splicing structure in this utility model;

[0047] Figure 5 This is a schematic diagram of the cross-sectional structure of the frame profile in this utility model;

[0048] Figure 6 This is a schematic diagram of the cross-sectional structure of the spliced ​​profile in this utility model;

[0049] Figure 7 This is a schematic diagram of the cross-sectional structure of the splicing buckle plate in this utility model;

[0050] Figure 8 This is a schematic diagram of the cross-sectional structure of the silicone sealing strip in this utility model;

[0051] Figure 9 This is a schematic diagram of the cross-sectional structure of the splicing cover plate in this utility model.

[0052] in:

[0053] 1. Frame profile; 1-1. Side socket; 1-2. First tile bonding part; 1-3. First tear-out; 1-4. First fiberboard bonding part; 1-5. First waterproof tray adjustment hook; 1-6. First foam connection part; 1-8. Frame base box;

[0054] 2. Splicing profile; 2-1. Leveling component; 2-2. Second tile bonding part; 2-3. Second tear joint; 2-4. Second fiberboard bonding part; 2-5. Second waterproof tray adjustment hook; 2-6. Second foam connection part; 2-7. Separation groove; 2-8. Splicing base box;

[0055] 3. Splicing panels; 3-1. Connecting arm; 3-2. Internal adjusting teeth;

[0056] 4. Silicone sealing strip; 4-1. Sealing part; 4-2. Waterproof protrusion;

[0057] 5. Splicing cover plate; 5-1. Inner fitting edge; 5-2. Insertion port; 5-3. Outer fitting edge;

[0058] 6. Tiles; 7. Cement fiberboard; 8. Foam layer; 9. Waterproofing material; 10. Floor drain. Detailed Implementation

[0059] To make the objectives, technical solutions, and advantages of this utility model clearer, the technical solutions of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. All other embodiments obtained by those skilled in the art based on the embodiments of this utility model without creative effort are within the scope of protection of this utility model. The following embodiments are used to illustrate this utility model but should not be used to limit its scope.

[0060] The following will combine Figures 1 to 9 This invention provides a detailed description of the prefabricated bathroom floor assembly structure.

[0061] like Figure 1 and Figure 2 As shown, the structure of the components of the prefabricated bathroom floor assembly structure and the overall structure after assembly are illustrated.

[0062] A prefabricated bathroom floor assembly structure, comprising,

[0063] The waterproof tray is composed of tile 6, frame profile 1 and splicing profile 2, with frame profile 1 and splicing profile 2 set around the perimeter of tile 6;

[0064] 3 is a splicing panel, and 2 is a splicing profile that connects adjacent waterproof trays;

[0065] Cement fiberboard 7 is set at the bottom of the overall splicing structure and connected to the frame profile 1 and the splicing profile 2;

[0066] The foam layer 8 is placed between the waterproof tray and the cement fiberboard 7, and the foam layer 8 connects the frame profile 1 and the splicing profile 2 into one piece.

[0067] like Figure 1 , Figure 3 and Figure 5 As shown, the structure of the frame profile is illustrated.

[0068] The frame profile 1 is strip-shaped and includes a frame base box 1-8. The frame base box has a hollow structure, and its cross-sectional shape can be rectangular, chamfered rectangular, circular, or elliptical. A side socket 1-1 and a first tile bonding part 1-2 are provided on its upper part, and the side socket 1-1 is connected to the first tile bonding part 1-2.

[0069] The side socket 1-1 has a hollow structure, and the first ceramic tile bonding part 1-2 extends out of the frame base box 1-8, which is L-shaped;

[0070] A first tear 1-3 is provided between the frame base box 1-8 and the first tile bonding part 1-2. The first tear 1-3 is used to support the first tile bonding part 1-2 during transportation to prevent the first tile bonding part 1-2 from deforming and affecting the subsequent assembly of the overall bathroom floor splicing structure.

[0071] When assembling, use the frame profile 1 after removing the first tear 1-3.

[0072] The lower part of the frame base box 1-8 is also provided with a first fiberboard bonding part 1-4, a first waterproof plate adjustment hook 1-5 and a first foam connection part 1-6;

[0073] The first fiberboard bonding part 1-4 is "U"-shaped, extending into a frame base box 1-8 for connection with the cement fiberboard 7.

[0074] The first waterproofing disc adjustment hook 1-5 is I-shaped, extending out to the frame base box 1-8, which is used to facilitate the adjustment of the frame profile 1 during construction.

[0075] The first foamed connecting part 1-6 is L-shaped, extending laterally out of the frame base box 1-8 and penetrating into the foam layer 8; the L-shaped setting enables the splicing profile 2 and the foam layer 8 to have lateral and longitudinal connection forces.

[0076] like Figure 1 , Figure 4 and Figure 6 As shown, the structure of the spliced ​​profile is illustrated.

[0077] The splicing profile 2 is strip-shaped and includes splicing base boxes 2-8. The splicing base boxes are hollow structures, and the cross-sectional shape can be rectangular, chamfered rectangular, circular, or elliptical.

[0078] The upper part of the splicing base box 2-8 is provided with one or more leveling components 2-1, and one side of the leveling component 2-1 is provided with external leveling teeth; the leveling component 2-1 has a cavity structure.

[0079] When multiple leveling components 2-1 are provided, a separation groove 2-7 is provided between the multiple connected leveling components 2-1; this makes it easy to determine the number of leveling components 2-1 to use according to the on-site construction conditions and specific usage requirements, and construction personnel can easily adjust the spliced ​​profile 2.

[0080] A second tile bonding part 2-2, which is L-shaped, is provided on the leveling component 2-1 that is directly connected to the splicing base box 2-8;

[0081] A second tear 2-3 is provided between the splicing base box 2-8 and the second tile bonding part 2-2. The second tear 2-3 is used to support the second tile bonding part 2-2 during transportation to prevent the second tile bonding part 2-2 from deforming and affecting the subsequent assembly of the overall splicing structure of the bathroom floor.

[0082] When assembling, use the spliced ​​profile 2 after removing the second tear 2-3.

[0083] The lower part of the splicing base box 2-8 is also provided with a second fiberboard bonding part 2-4, a second waterproof disc adjustment hook 2-5, and a second foam connection part 2-6;

[0084] The second fiberboard bonding part 2-4 is "T"-shaped, extending into a splicing base box 2-8 for connection with the cement fiberboard 7.

[0085] The second waterproofing disc adjustment hook 2-5 is I-shaped, extending into the splicing base box 2-8, which is used to facilitate the adjustment of the frame profile 1 during construction.

[0086] The second foamed connection part 2-6 is L-shaped, extending laterally into the splicing base box 2-8 and penetrating into the foam layer 8; the L-shaped design enables the splicing profile 2 and the foam layer 8 to have both lateral and longitudinal connection forces.

[0087] like Figure 2 , Figure 4 , Figure 7 , Figure 8 The diagram shows the connection method between adjacent waterproof pans and the structure of the components used.

[0088] 3 is a splicing panel, and 2 is a splicing profile that connects adjacent waterproof trays;

[0089] The splicing plate 3 is C-shaped and has two connecting arms 3-1. Each connecting arm 3-1 has an inner adjusting tooth 3-2 on its inner side. In use, the inner adjusting tooth 3-2 is used to cooperate with the outer adjusting tooth of the splicing profile 2 to connect the two splicing profiles 2. Due to its C-shaped design, it can play a certain role in waterproofing.

[0090] In order to further prevent water leakage between adjacent waterproof trays, a silicone sealing strip 4 is also designed, and the silicone sealing strip 4 is arranged between the splicing buckle plate 3 and the splicing profile 2;

[0091] The overall shape of the silicone sealing strip 4 is T-shaped. When in use, the short arm part of the T shape covers the leveling components 2-1 of two adjacent splicing profiles 2,

[0092] The long arm part of the T shape is the sealing part 4-1, which is inserted between the leveling components 2-1 of two adjacent splicing profiles 2. A waterproof protrusion 4-2 pointing to the short part is also arranged on the sealing part 4-1.

[0093] As Figure 2 、 Figure 3 、 Figure 7 and Figure 9 shown, the structure of the splicing cover plate and the sealing use state are shown.

[0094] The splicing cover plate 5 is strip-shaped or L-shaped, and the side sectional view is in the shape of "卩"; it has an internal fitting edge 5-1 and an external fitting edge 5-3, and a socket 5-2 is formed between the internal fitting edge 5-1 and the external fitting edge 5-3.

[0095] When in use, the splicing cover plate covers the junction of the side socket parts 1-1 of two adjacent frame profiles 1. In order to further improve the waterproof performance, a waterproof material 9 is also arranged between the splicing cover plate 5 and the side socket part 1-1. The waterproof material 9 can use waterproof tape or waterproof glue.

[0096] A floor drain 10 can also be arranged in the overall splicing structure of the assembled bathroom floor. The floor drain 10 is preferably arranged at the connection between the ceramic tile 6 and the frame profile 1 or the splicing profile 2.

[0097] The frame profile 1 and the splicing profile 2 form the profile structure of the splicing waterproof tray. These two profiles adopt a tear-open design, effectively preventing deformation during the transportation of the profiles,

[0098] The fiber board fitting parts of the frame profile 1 and the splicing profile 2 are the fiber board bearing surfaces, avoiding overflowing foaming materials, ensuring the strength of the chassis. At the same time, the ceramic tile fitting parts of the frame profile 1 and the splicing profile 2 can limit the ceramic tiles and avoid gaps.

[0099] The leveling teeth of the splicing profile 2 are set in multiple segments, which can adapt to different waterproof height requirements.

[0100] The adjustment hooks of the frame profile 1 and the splicing profile 2 facilitate the leveling of the chassis during the installation process.配合专用的调平型材,能够快速实现防水盘的安装位置调整;With a special leveling profile, the installation position of the waterproof tray can be quickly adjusted;

[0101] The leveling teeth of the splicing profile 2 and the leveling teeth of the splicing buckle 3 are used to ensure the consistency of the splicing height of the waterproof panel. By using the serrated structure of the profiles with consistent dimensions, not only can the waterproof sealing strip be pressed tightly to achieve good sealing performance, but the height of the spliced ​​profiles can also be made consistent. This provides a consistent installation plane for the wall panel installation, avoiding uneven height differences and gaps between the wall panels, thereby improving installation efficiency and the aesthetics of the finished product.

[0102] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model, and not to limit it. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this utility model.

Claims

1. A prefabricated bathroom floor integral splicing structure, characterized in that, including, a waterproof tray, which is composed of tiles, border profiles and splicing profiles, and the border profiles and splicing profiles are arranged around the tiles; splicing buckle plates, which connect the splicing profiles of adjacent waterproof trays, and the splicing profiles and splicing buckle plates make the splicing heights of adjacent waterproof trays consistent through leveling teeth; cement fiber boards, which are arranged at the bottom of the overall splicing structure and are connected to the border profiles and splicing profiles; a foaming layer, which is arranged between the waterproof tray and the cement fiber board, and the foaming layer connects the border profiles and splicing profiles into an integral body.

2. The overall splicing structure of the assembled bathroom floor according to claim 1, wherein both the border profiles and the splicing profiles are strip-shaped and both include base boxes, and fiber board fitting parts, waterproof tray adjusting hooks and foaming connecting parts are arranged at the lower parts of the base boxes; the fiber board fitting part is in a "卜" shape and extends out of the base box for connecting with the cement fiber board; the waterproof tray adjusting hook is in an I shape and extends out of the base box for adjusting the border profiles and splicing profiles during construction; the foaming connecting part is in an L shape and extends horizontally out of the base box and penetrates into the foaming layer, and the L-shaped setting enables the border profiles and splicing profiles to have horizontal and vertical connection forces with the foaming layer.

3. The overall splicing structure of the assembled bathroom floor according to claim 2, wherein the border profile is provided with a border base box, and a side socket part and a first tile fitting part are arranged at the upper part thereof, and the side socket part is connected to the first tile fitting part, the side socket part is a cavity structure, and the first tile fitting part extends out of the border base box and is in an L shape; a first tear opening is arranged between the border base box and the first tile fitting part, and the first tear opening is used to support the first tile fitting part during transportation to prevent the first tile fitting part from deforming and affecting the assembly of the subsequent overall splicing structure of the bathroom floor; when assembling, the border profile after removing the first tear opening is used for assembly.

4. The overall splicing structure of the assembled bathroom floor according to claim 2, wherein the splicing profile is provided with a splicing base box, and a leveling component is arranged at the upper part of the splicing base box, and an external leveling tooth is arranged on one side of the leveling component; the leveling component is a cavity structure.

5. The overall splicing structure of the assembled bathroom floor according to claim 4, wherein more than one leveling component is provided, and a separation groove is arranged between the connected leveling components; it is convenient to determine the number of leveling components used according to the on-site construction conditions and specific usage requirements during use, and the splicing profile can be adjusted.

6. The overall splicing structure of the assembled bathroom floor according to claim 4, wherein a second tile fitting part is arranged on the leveling component directly connected to the splicing base box and is in an L shape; a second tear opening is arranged between the splicing base box and the second tile fitting part, and the second tear opening is used to support the second tile fitting part during transportation to prevent the second tile fitting part from deforming and affecting the assembly of the subsequent overall splicing structure of the bathroom floor; when assembling, the splicing profile after removing the second tear opening is used for assembly. [[ID= The splicing buckle plate is C-shaped and has two connecting arms. Inner leveling teeth are provided on the inner side of each connecting arm; the inner leveling teeth are used to cooperate with the outer leveling teeth of the splicing profile to connect two splicing profiles.

8. The integral splicing structure of the assembled bathroom floor according to claim 7, wherein a silica gel sealing strip is provided between the splicing buckle plate and the splicing profile; the silica gel sealing strip is T-shaped as a whole. The short arm part of the T shape covers the leveling components of two adjacent splicing profiles, and the long arm part of the T shape is the sealing part and is inserted between the leveling components of two adjacent splicing profiles. Waterproof protrusions pointing to the short part are further provided on the sealing part.

9. The prefabricated bathroom floor integral splicing structure according to claim 7, characterized in that, It further includes a splicing cover plate, the splicing cover plate is strip-shaped or L-shaped, and the side sectional view is "卩"-shaped; it has an inner fitting edge and an outer fitting edge, and a socket is formed between the inner fitting edge and the outer fitting edge.

10. The integral splicing structure of the assembled bathroom floor according to claim 9, wherein the splicing cover plate covers the junction of the side socket parts of two adjacent frame profiles, and a waterproof material is further provided between the splicing cover plate and the side socket part; a floor drain is further provided in the integral splicing structure of the assembled bathroom floor, and the floor drain is provided at the connection of the ceramic tile and the frame profile or the splicing profile.