A modular integrated bathroom suitable for rapid construction
Through the modularly designed load-bearing unit and docking unit, the problem of dimensional adjustment and installation complexity of existing modular integrated bathrooms during construction is solved, and rapid and efficient construction and installation are achieved to meet the size and layout needs of different bathrooms.
Patent Information
- Application Number
- CN202510436003.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-09
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2045-04-09
AI Technical Summary
The existing modular integrated bathrooms are difficult to adjust the size during construction, are cumbersome to install, and are difficult to adapt to the size and layout of different bathrooms, resulting in high construction complexity and increased cost.
The modularly designed load-bearing unit, docking unit and installation unit include adjustable wall panels, docking frames, corner frames, load seats and diameter adjustment bolts. It can achieve rapid construction through modular splicing and sliding adjustment to adapt to walls of different sizes and shapes.
Rapid construction is achieved, cutting, drilling and grooved steps are reduced, installation efficiency and adaptability are improved, construction complexity and cost are reduced, and installation needs are adapted to the installation needs of different equipment, ensuring the stability and durability of the overall structure.
Smart Images

Figure CN119981501B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of integrated bathrooms, and particularly to a modular integrated bathroom suitable for rapid construction. Background Art
[0002] A modular integrated bathroom is a design and construction method that decomposes the bathroom space into multiple standardized modules and combines these modules through prefabrication and integration technologies; this method is widely used in building projects such as residential buildings, hotels, hospitals, apartments, etc., and has advantages such as high efficiency, flexibility, and environmental protection; although modular integrated bathrooms have significant advantages in terms of efficiency, quality, and environmental protection, they also have some existing defects and challenges. For example, it is inconvenient to adjust the size of existing modular integrated bathrooms for different bathrooms, and it is mostly necessary to measure the size first and then customize and form them, making it difficult to effectively adjust during the construction process, and the overall installation is cumbersome, which is not conducive to the installation of internal components. Summary of the Invention
[0003] The purpose of the present invention is to provide a modular integrated bathroom suitable for rapid construction to solve the problems raised in the above background art.
[0004] To achieve the above purpose, the present invention provides the following technical solution: A modular integrated bathroom suitable for rapid construction, including a bearing unit, a docking unit, and an installation unit; the bearing unit is used to fit the wall, the docking unit is detachably connected to the bearing unit, the docking unit is used for the corner part where the bearing units are spliced relatively, the installation unit is detachably arranged on the bearing unit, and the installation unit is used to fit water pipes, valves, and water heater hangers.
[0005] Preferably, the bearing unit includes a first wall panel, a second wall panel, a third wall panel, a fourth wall panel, a plurality of docking frames, a plurality of docking plates, a plurality of docking bolts, a plurality of first shielding frames, and a plurality of second shielding frames; a second wall panel is detachably installed above the first wall panel, a third wall panel is detachably installed above the second wall panel, a fourth wall panel is detachably installed above the third wall panel, a transfer groove is formed in the front side wall near the top end of the first wall panel, and first mounting grooves in a T shape are symmetrically formed in the middle of the upper wall of the first wall panel and the lower wall of the second wall panel. A second mounting groove in a trapezoidal shape is formed on the left side of the first mounting groove, and a third mounting groove in a T shape is formed on the right side of the first mounting groove. The third mounting groove communicates with the second mounting groove and the first mounting groove. The upper wall of the second wall panel and the lower wall of the third wall panel, and the upper wall of the third wall panel and the lower wall of the fourth wall panel are symmetrically provided with the first mounting groove, the second mounting groove, and the third mounting groove. A transfer groove identical to that of the first wall panel is formed in the front side wall near the top end of the fourth wall panel. Rectangular sockets are formed through the right side walls of the fourth wall panel and the second wall panel. A plurality of the docking frames are in an I shape, and the upper and lower ends of a plurality of the docking frames are respectively movably inserted into the first mounting grooves. The first wall panel and the second wall panel are docked through the docking frames, the second wall panel and the third wall panel are docked through the docking frames, and the third wall panel and the fourth wall panel are docked through the docking frames. A plurality of the docking plates are movably embedded in the transfer groove, and the docking plates are located between two first wall panels or between two fourth wall panels. One ends of a plurality of the docking bolts are respectively movably embedded in both ends of the docking plates, and the other ends of the docking bolts movably penetrate through the docking plates and are screwed into the first wall panel or the fourth wall panel. A plurality of the first shielding frames are in a T-shaped rod body, and a plurality of the first shielding frames are movably inserted into the third mounting grooves between the first wall panel and the second wall panel, the second wall panel and the third wall panel, and the third wall panel and the fourth wall panel. A plurality of the second shielding frames are movably inserted into the second mounting grooves between the first wall panel and the second wall panel, the second wall panel and the third wall panel, and the third wall panel and the fourth wall panel.
[0006] Preferably, the docking unit includes a corner bracket, a pair of adapter pipes, a plurality of top blocks, and a plurality of springs; the corner bracket is in an L shape, and fixing holes are equally spaced in the middle of both ends near the top of the corner bracket. Docking sockets corresponding to the rectangular sockets are formed in the side walls near the top end of the corner bracket. The docking sockets are in a countersunk head shape. Both ends of the corner bracket are detachably connected to the right ends of the first wall panel, the second wall panel, the third wall panel, and the fourth wall panel. One ends of a pair of the adapter pipes are detachably inserted into the docking sockets, and the other ends of the adapter pipes are detachably inserted into the rectangular sockets. One ends of a plurality of the top blocks respectively movably penetrate through the upper and lower side walls at both ends of the adapter pipes, and one ends of the top blocks are in contact with the upper and lower side walls in the rectangular sockets and the docking sockets. A plurality of the springs are respectively arranged between the top blocks, and the springs are located inside the adapter pipes.
[0007] Preferably, the installation unit includes a plurality of bearing seats, a plurality of sliding rollers, and a plurality of diameter-adjusting bolts; the plurality of bearing seats are all T-shaped, and a pipe hole is formed through the middle of the bearing seat. The plurality of bearing seats are respectively movably embedded in the second installation groove between the first wall panel and the second wall panel, and the bearing seats correspond to the first shielding frame. The plurality of sliding rollers are respectively equidistantly movably embedded in the upper and lower side walls of the bearing seat, and the sliding rollers are in contact with the upper and lower side walls in the second installation groove. The plurality of diameter-adjusting bolts are respectively detachably screwed into the pipe holes of the bearing seats, and different-diameter conveying holes are formed through the middle of the diameter-adjusting bolts.
[0008] Preferably, the first wall panel, the second wall panel, the third wall panel, and the fourth wall panel have different heights and can be horizontally cut and spliced for installation on walls of different lengths.
[0009] Preferably, the bottom of the first wall panel and the corner frame can be horizontally cut by a certain height for walls of different heights.
[0010] Preferably, the first shielding frame and the second shielding frame are installed on both sides of the bearing seat, and the pipe hole of the bearing seat penetrates through the first installation groove, the second installation groove, and the third installation groove.
[0011] Preferably, the first shielding frame and the second shielding frame can be cut and spliced for use on walls of different positions and different widths.
[0012] A modular integrated bathroom applicable to rapid construction proposed by the present invention has the following beneficial effects:
[0013] 1. It has flexibility and adaptability: The length and height of the wall can be cut and adjusted according to actual space requirements to adapt to bathroom spaces of different sizes. The bearing seat can be slidably adjusted in position, facilitating the installation of water pipes, shower heads, water heaters and other equipment without additional cutting, drilling or grooving, reducing the construction difficulty. The right-angle corner docking is achieved through the docking unit to adapt to different layouts and shapes of the inner walls of the bathroom.
[0014] 2. It has a modular design and convenient installation: Adopting a modular splicing design, it is easy to assemble and disassemble, simplifies the construction process, improves the installation efficiency. Through the first installation groove, the second installation groove and the third installation groove, bathroom equipment such as water pipes and shower heads can be quickly installed, reducing the installation time and cost. It can be disassembled and transported, reducing the logistics difficulty and cost, especially suitable for scenarios with limited space or remote construction.
[0015] 3. It reduces construction complexity and cost: Through the sliding adjustment and installation groove design, the steps of cutting, drilling or grooving in traditional construction are avoided, reducing construction complexity and material waste. It can be prefabricated in the factory to ensure high quality and consistency, reducing on-site construction errors and rework costs. The modular design and standardized interfaces make the installation process fast and efficient, shortening the construction period.
[0016] 4. Functionality and practicality: The groove design supports the installation of a variety of bathroom equipment, such as water pipes, showers, water heaters, etc., to meet the functional requirements of the bathroom. The bearing seat can be slid and adjusted to adapt to the installation position and width of different equipment, improving practicality. The splicing wall and docking unit design ensure the stability and durability of the overall structure. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 This is a schematic diagram of the main assembly structure of the present invention;
[0018] Figure 2 This is a schematic diagram of the assembled rear view structure of the present invention;
[0019] Figure 3 This is a schematic diagram of the main split structure of the load-bearing unit;
[0020] Figure 4 This is a schematic diagram of the split structure of the load-bearing unit from the rear;
[0021] Figure 5 Schematic diagram of the docking unit structure;
[0022] Figure 6 Schematic diagram of the installation unit structure;
[0023] Figure 7 This is a schematic diagram of the transfer pipe planing structure;
[0024] Figure 8 for Figure 4 A partial enlarged view of point A in the figure.
[0025] In the figure: 1. load-bearing unit; 11. first wall panel; 12. second wall panel; 13. third wall panel; 14. fourth wall panel; 15. docking frame; 16. docking plate; 17. docking bolt; 18. first shielding frame; 19. second shielding frame; 2. docking unit; 21. corner frame; 22. adapter tube; 23. top block; 24. spring; 3. mounting unit; 31. load-bearing seat; 32. slide roller; 33. diameter-adjusting bolt; 4. first mounting slot; 5. second mounting slot; 6. third mounting slot; 7. adapter slot; 8. rectangular socket; 9. docking socket. DETAILED DESCRIPTION
[0026] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0027] See also Figures 1-8, the present invention provides a technical solution: a modular integrated bathroom suitable for rapid construction, including a bearing unit 1, a docking unit 2, and an installation unit 3; the bearing unit 1 is used to fit the wall, the docking unit 2 is detachably connected to the bearing unit 1, the docking unit 2 is used for the corner part where the bearing units 1 are spliced relatively, and the installation unit 3 is detachably arranged on the bearing unit 1, and the installation unit 3 is used to fit water pipes, valves, and water heater hangers.
[0028] Furthermore, as Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 8As shown in the figure, the bearing unit 1 includes a first wall panel 11, a second wall panel 12, a third wall panel 13, a fourth wall panel 14, a number of docking frames 15, a number of docking plates 16, a number of docking bolts 17, a number of first shielding frames 18 and a number of second shielding frames 19; a second wall panel 12 is detachably installed above the first wall panel 11, a third wall panel 13 is detachably installed above the second wall panel 12, a fourth wall panel 14 is detachably installed above the third wall panel 13, a transfer groove 7 is provided on the front side wall near the top of the first wall panel 11, and first mounting grooves 4 in the shape of a T are symmetrically provided in the middle of the upper wall of the first wall panel 11 and the lower wall of the second wall panel 12. A second mounting groove 5 that is opposite and trapezoidal is provided on the left side of the first mounting groove 4, and a third mounting groove 6 that is opposite and T-shaped is provided on the right side of the first mounting groove 4. The third mounting groove 6 is connected to the second mounting groove 5 and the first mounting groove 4. The upper wall of the second wall panel 12 and the lower wall of the third wall panel 13, and the upper wall of the third wall panel 13 and the lower wall of the fourth wall panel 14 are symmetrically provided with the first mounting groove 4, the second mounting groove 5 and the third mounting groove 6. A transfer groove 7 identical to that of the first wall panel 11 is provided on the front side wall near the top of the fourth wall panel 14. Rectangular sockets 8 are provided through the right side walls of the fourth wall panel 14 and the second wall panel 12. A number of docking frames 15 are all in the shape of an I. The upper and lower ends of a number of docking frames 15 are respectively movably inserted into the first mounting groove 4. The first wall panel 11 and the second wall panel 12 are docked through the docking frames 15. The second wall panel 12 and the third wall panel 13 are docked through the docking frames 15. The third wall panel 13 and the fourth wall panel 14 are docked through the docking frames 15. A number of docking plates 16 are movably embedded in the transfer groove 7, and the docking plates 16 are located between two first wall panels 11 or between two fourth wall panels 14. One ends of a number of docking bolts 17 are respectively movably embedded in both ends of the docking plates 16, and the other ends of the docking bolts 17 movably penetrate through the docking plates 16 and are screwed into the first wall panel 11 or the fourth wall panel 14. A number of first shielding frames 18 are all in the shape of a T-shaped rod. A number of first shielding frames 18 are movably inserted into the third mounting groove 6 between the first wall panel 11 and the second wall panel 12, between the second wall panel 12 and the third wall panel 13, and between the third wall panel 13 and the fourth wall panel 14. A number of second shielding frames 19 are movably inserted into the second mounting groove 5 between the first wall panel 11 and the second wall panel 12, between the second wall panel 12 and the third wall panel 13, and between the third wall panel 13 and the fourth wall panel 14. The first wall panel 11 and the second wall panel 12, the second wall panel 12 and the third wall panel 13, and the third wall panel 13 and the fourth wall panel 14 are docked and assembled through the docking frames 15. After being cut according to different wall lengths and heights for assembly, that is, it can be spliced horizontally by means of the docking plates 16 and the docking bolts 17, and the docking frames 15 are used to assist in splicing. The transfer space gaps are fitted by the first shielding frames 18 and the second shielding frames 19, so that the spliced wall forms a plane.
[0029] More specifically, the first wall panel 11, the second wall panel 12, the third wall panel 13, and the fourth wall panel 14 have different heights and can be horizontally truncated and spliced for wall installations of different lengths. The bottom of the first wall panel 11 and the corner bracket 21 can be horizontally cut by a certain height for walls of different heights. The first shielding bracket 18 and the second shielding bracket 19 can be truncated and spliced for use on walls of different positions and widths.
[0030] Furthermore, as Figure 1 , Figure 5 and Figure 7 shown, the docking unit 2 includes a corner bracket 21, a pair of adapter pipes 22, several top blocks 23, and several springs 24. The corner bracket 21 is L-shaped, and fixing holes are evenly arranged in the middle of both ends near the top of the corner bracket 21. Docking sockets 9 corresponding to the rectangular sockets 8 are arranged on the side walls near the top ends of the corner bracket 21. The docking sockets 9 are countersunk head-shaped. Both ends of the corner bracket 21 are detachably connected to the right ends of the first wall panel 11, the second wall panel 12, the third wall panel 13, and the fourth wall panel 14. One end of a pair of adapter pipes 22 is detachably inserted into the docking socket 9, and the other end of the adapter pipe 22 is detachably inserted into the rectangular socket 8. One end of several top blocks 23 respectively passes through the upper and lower side walls at both ends of the adapter pipe 22 movably, and one end of the top block 23 is in contact with the upper and lower side walls in the rectangular socket 8 and the docking socket 9. Several springs 24 are respectively arranged between the top blocks 23, and the springs 24 are located inside the adapter pipe 22. The corner bracket 21 is used for the right-angle fitting and transfer of the wall body. By inserting both ends of the adapter pipe 22 into the corner bracket 21 and the fourth wall panel 14 and the second wall panel 12 respectively, the top block 23 is pressed against the inner walls of the rectangular socket 8 and the docking socket 9 by the acting force of the spring 24 for limiting.
[0031] Furthermore, as Figure 1 and Figure 6As shown in the figure, the installation unit 3 includes a number of bearing seats 31, a number of sliding rollers 32 and a number of diameter-adjusting bolts 33; a number of bearing seats 31 are all T-shaped, and a pipe hole is penetrated through the middle of the bearing seat 31. A number of bearing seats 31 are respectively movably embedded in the second installation groove 5 between the first wall panel 11 and the second wall panel 12, and the bearing seat 31 corresponds to the first shielding frame 18. A number of sliding rollers 32 are respectively equidistantly movably embedded in the upper and lower side walls of the bearing seat 31, and the sliding rollers 32 are in contact with the upper and lower side walls in the second installation groove 5. A number of diameter-adjusting bolts 33 are respectively detachably screwed into the pipe holes of the bearing seats 31, and different-diameter conveying holes are penetrated through the middle of the diameter-adjusting bolts 33; the corresponding installation position can be adjusted by sliding the bearing seat 31 in the second installation groove 5 to fit the interfaces of the water pipes, shower heads, water heaters, etc. reserved in the wall. The sliding rollers 32 help the bearing seat 31 to slide. The diameter-adjusting bolts 33 are adjusted and fitted according to water pipes or interfaces of different diameters. The first shielding frame 18 and the second shielding frame 19 are installed on both sides of the bearing seat 31, and the pipe hole of the bearing seat 31 penetrates through the first installation groove 4, the second installation groove 5 and the third installation groove 6.
[0032] Working principle:
[0033] S1. First, both ends of the I-shaped docking frame 15 are respectively inserted into the first installation groove 4, so as to promote the docking of the first wall panel 11 and the second wall panel 12, the docking of the second wall panel 12 and the third wall panel 13, and the docking of the third wall panel 13 and the fourth wall panel 14 in the bearing unit 1.
[0034] S2. After the first wall panel 11 and the second wall panel 12 are docked, and after the second wall panel 12 and the third wall panel 13 are docked and the third wall panel 13 and the fourth wall panel 14 are docked, the corresponding second installation groove 5 and the third installation groove 6 are formed. At the same time, the docking bolt 17 penetrates through the docking plate 16, and the docking plate 16 is embedded in the transfer groove 7 for horizontal splicing and fitting.
[0035] S3. Fit the assembled part to the inner wall of the bathroom, and set the corner bracket 21 in the docking unit 2 at the right-angle corner. Insert one end of the adapter pipe 22 into the docking socket 9 of the corner bracket 21, and press the top block 23 against the inner wall of the docking socket 9 by the force of the spring 24. Then, fit the rectangular sockets 8 of the corresponding assembled fourth wall panel 14 and second wall panel 12 over the other end of the adapter pipe 22 for splicing and limiting. During the splicing process, set and install the first shielding bracket 18 and the second shielding bracket 19 according to the positions of the water pipe interfaces reserved in the bathroom, and install the corresponding bearing seat 31. The pipe hole of the bearing seat 31 needs to pass through the first installation groove 4, the second installation groove 5, and the third installation groove 6 without obstruction. Move the bearing seat 31 by means of the roller 32 in the installation unit 3 according to actual needs to adjust the installation position and spacing, so that the corresponding reserved pipeline passes through the pipe hole of the bearing seat 31. After assembly, fix the corner bracket 21 on the bathroom wall by bolts. The unused first installation groove 4, second installation groove 5, and third installation groove 6 on both sides of the bearing seat 31 are all fitted and shielded by the docking bracket 15, the first shielding bracket 18, and the second shielding bracket 19 to form a flat surface for the overall wall.
[0036] S4. After assembly and fixation, install the corresponding diameter-adjusting bolts 33 according to the diameters of different reserved water pipes, that is, fit the diameter-adjusting bolts 33 on the water pipes and screw them onto the bearing seat 31 to limit the pipeline.
[0037] Although the embodiments of the present invention have been shown and described, it will be understood by those of ordinary skill in the art that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A modular integrated bathroom suitable for rapid construction, characterized in that, It includes a bearing unit (1), a docking unit (2) and a mounting unit (3); the bearing unit (1) is used to fit the wall, the docking unit (2) is detachably connected to the bearing unit (1), the docking unit (2) is used for the corner part where the bearing units (1) are spliced relatively, the mounting unit (3) is detachably arranged on the bearing unit (1), and the mounting unit (3) is used to fit water pipes, valves and water heater hangers; The bearing unit (1) includes a first wall panel (11), a second wall panel (12), a third wall panel (13), a fourth wall panel (14), a plurality of docking frames (15), a plurality of docking plates (16), a plurality of docking bolts (17), a plurality of first shielding frames (18) and a plurality of second shielding frames (19); A second wall panel (12) is detachably arranged above the first wall panel (11), a third wall panel (13) is detachably installed above the second wall panel (12), a fourth wall panel (14) is detachably installed above the third wall panel (13). A transfer groove (7) is formed in the front side wall near the top end of the first wall panel (11). First mounting grooves (4) in a T shape are symmetrically formed in the middle of the upper wall of the first wall panel (11) and the lower wall of the second wall panel (12). A second mounting groove (5) which is opposite and trapezoidal is formed on the left side of the first mounting groove (4). A third mounting groove (6) which is opposite and in a T shape is formed on the right side of the first mounting groove (4). The third mounting groove (6) is communicated with the second mounting groove (5) and the first mounting groove (4). First mounting grooves (4), second mounting grooves (5) and third mounting grooves (6) are symmetrically arranged on the upper wall of the second wall panel (12) and the lower wall of the third wall panel (13) and on the upper wall of the third wall panel (13) and the lower wall of the fourth wall panel (14). A transfer groove (7) identical to that of the first wall panel (11) is formed in the front side wall near the top end of the fourth wall panel (14). Rectangular sockets (8) are formed through the right side walls of the fourth wall panel (14) and the second wall panel (12). A plurality of docking frames (15) are all in an I shape. The upper and lower ends of the plurality of docking frames (15) are respectively movably inserted into the first mounting grooves (4). The first wall panel (11) and the second wall panel (12) are docked through the docking frames (15). The second wall panel (12) and the third wall panel (13) are docked through the docking frames (15). The third wall panel (13) and the fourth wall panel (14) are docked through the docking frames (15). A plurality of docking plates (16) are movably embedded in the transfer groove (7), and the docking plates (16) are located between two first wall panels (11) or between two fourth wall panels (14). One ends of a plurality of docking bolts (17) are respectively movably embedded in the two ends of the docking plates (16), and the other ends of the docking bolts (17) movably penetrate through the docking plates (16) and are screwed into the first wall panel (11) or the fourth wall panel (14). A plurality of first shielding frames (18) are all in a T-shaped rod body. The plurality of first shielding frames (18) are movably inserted into the third mounting grooves (6) between the first wall panel (11) and the second wall panel (12), between the second wall panel (12) and the third wall panel (13), and between the third wall panel (13) and the fourth wall panel (14). A plurality of second shielding frames (19) are movably inserted into the second mounting grooves (5) between the first wall panel (11) and the second wall panel (12), between the second wall panel (12) and the third wall panel (13), and between the third wall panel (13) and the fourth wall panel (14).
2. The modular integrated bathroom applicable to rapid construction according to claim 1, characterized in that, The docking unit (2) includes a corner frame (21), a pair of adapter pipes (22), a plurality of top blocks (23) and a plurality of springs (24); The corner bracket (21) is L-shaped, and fixing holes are equally spaced in the middle of both ends near the top of the corner bracket (21). Docking sockets (9) corresponding to the rectangular sockets (8) are provided on the side walls near the top ends of the corner bracket (21). The docking sockets (9) are countersunk. Both ends of the corner bracket (21) are detachably connected to the right ends of the first wall panel (11), the second wall panel (12), the third wall panel (13), and the fourth wall panel (14). One end of a pair of the rotary connecting pipes (22) is detachably inserted into the docking socket (9), and the other end of the rotary connecting pipe (22) is detachably inserted into the rectangular socket (8). One end of several of the top blocks (23) respectively penetrates through the upper and lower side walls at both ends of the rotary connecting pipe (22), and one end of the top block (23) is in contact with the upper and lower side walls in the rectangular socket (8) and the docking socket (9). Several of the springs (24) are respectively arranged between the top blocks (23), and the springs (24) are located inside the rotary connecting pipe (22).
3. The modular integrated bathroom applicable to rapid construction according to claim 2, characterized in that, The installation unit (3) includes several bearing seats (31), several sliding rollers (32), and several adjusting bolts (33); Several of the bearing seats (31) are all T-shaped, and pipe holes are penetratingly provided in the middle of the bearing seats (31). Several of the bearing seats (31) are respectively movably embedded in the second installation groove (5) between the first wall panel (11) and the second wall panel (12), and the bearing seats (31) correspond to the first shielding frame (18). Several of the sliding rollers (32) are respectively equidistantly movably embedded in the upper and lower side walls of the bearing seats (31), and the sliding rollers (32) are in contact with the upper and lower side walls in the second installation groove (5). Several of the adjusting bolts (33) are respectively detachably screwed into the pipe holes of the bearing seats (31), and conveying holes with different diameters are penetratingly provided in the middle of the adjusting bolts (33).
4. The modular integrated bathroom applicable to rapid construction according to claim 3, characterized in that, The first wall panel (1,1), the second wall panel (12), the third wall panel (13), and the fourth wall panel (14) have different heights and can be horizontally truncated and spliced for installation on walls of different lengths.
5. The modular integrated bathroom applicable to rapid construction according to claim 4, characterized in that, The bottom of the first wall panel (11) and the corner bracket (21) can be horizontally cut by a certain height for walls of different heights.
6. The modular integrated bathroom applicable to rapid construction according to claim 5, characterized in that, The first shielding frame (18) and the second shielding frame (19) are installed on both sides of the bearing seat (31), and the pipe hole of the bearing seat (31) penetrates through the first installation groove (4), the second installation groove (5), and the third installation groove (6).
7. A modular integrated bathroom applicable to rapid construction according to claim 6, characterized in that, The first shielding frame (18) and the second shielding frame (19) can be truncated and spliced for use on walls at different positions and with different widths.
Citation Information
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