Assembly type integrated toilet

By adopting modular installation of non-composite ceramic tile or rock slab wall waterproof finishing materials in prefabricated bathrooms, combined with dry and wet partition chassis and keel structure, the problem of complex composite of traditional ceramic tile or rock slab walls is solved, and fast, stable and efficient installation is achieved, which improves space utilization.

CN223410553UActive Publication Date: 2025-10-03GUIZHOU QUNZHIYING HOUSING TECH CO LTD
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Patent Information

Application Number
CN202422846677.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-21
Publication Date
2025-10-03
Estimated Expiration
2034-11-21

AI Technical Summary

Technical Problem

In traditional prefabricated bathrooms, ceramic tiles or rock slab walls are complicated to install after being composited with baseboards in the factory, which is costly, easy to fall off, and takes up a lot of space, affecting their widespread application.

Method used

The waterproof wall finishing material without composite tiles or rock slabs is installed modularly with other structural components at the project site. The dry and wet partition chassis, keel structure and polyurethane foam filling are used to achieve fast installation and improved precision.

Benefits of technology

It reduces production and installation costs, improves installation speed and accuracy, enhances wall stability, and expands building space utilization.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an assembly type integrated toilet, and mainly aims to solve the problems that a traditional building toilet needs to pave wall and ground ceramic tiles in a wet method, the paving difficulty is high, the period is long, a base plate needs to be compounded in a factory firstly when rock plates or large-plate ceramic tiles are adopted as veneers, the production process is complex, the cost is high, and the mounting difficulty is high. According to the main technical scheme, a waterproof base plate without vertical holes is installed on a structural building through leveling cushion blocks and polyurethane foam, and waterproof wallboards are connected through flush joint keels, internal corner keels and external corner keels and fixed to the structural wall face through transverse keels and wall face adjustment. Polyurethane foam is filled between the waterproof wallboard and the structural wall surface, a top plate keel is arranged at the top of the waterproof wallboard, and a top plate is placed on the top plate keel, so that the wall-floor top structure of the integrated toilet is formed. The assembly type integrated toilet is simple in production and installation process, the installation speed and precision are improved, and the utilization rate of building space is improved.
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Description

Technical Field

[0001] The utility model relates to a toilet, in particular to an assembled integrated toilet. Background Art

[0002] When traditional buildings use ceramic tiles for bathroom walls, wet concrete paving is adopted. When high-quality large-plate ceramic tiles or rock slabs with low water absorption are used, the walls are easy to fall off and difficult to lay. For existing prefabricated bathrooms that use ceramic tiles or rock slabs as waterproof wall finishes, the backs of the ceramic tiles or rock slabs need to be compounded with substrates of the same specifications in the factory before being transported to the construction site. The compounded overall wall (waterproof wall panel) is fixed and installed to the structural wall with connectors. This results in complex production processes and high production costs in the production process, complex installation processes, heavy wall panels, and high installation costs in the installation process, and after installation, the walls occupy a large plane space of the building, which restricts the application and popularization of prefabricated bathrooms that use ceramic or rock slabs as walls. Summary of the Invention

[0003] The utility model aims to overcome the defects of the prior art and provide a kind of prefabricated integrated toilet which is applied in buildings and adopts large-plate ceramic or rock slab as the wall waterproof finish of prefabricated toilet. The compounding link of the ceramic or rock slab wall waterproof finish with other substrates in the factory can be eliminated. The wall waterproof finishing material made of non-compounded ceramic tile or rock slab can be directly modularly installed with other structural components of the prefabricated toilet at the project site, so that the weight of the wall waterproof finishing material to be installed is reduced and the wall is not easy to fall off. The production and installation process is simple, the installation speed and installation accuracy of the walls, floors and ceilings of the prefabricated toilet can be improved, the production and installation costs can be reduced, and the utilization rate of the building space can be improved.

[0004] The assembled integrated toilet described in the utility model includes a waterproof chassis, waterproof wall panels, a roof, a structural floor, a structural wall, a female angle keel, a flat keel, a male angle keel, a transverse keel, a wall adjustment, and a leveling pad; the characteristic is that the waterproof chassis is composed of a dry area chassis and a wet area chassis, thereby forming dry and wet partitions of the waterproof chassis, including a water-facing surface, a waterproof flange, a wall panel slot and a floor drain in an integrated structure; the dry area chassis and the wet area chassis can be formed as a connected piece or as a separate piece; when the water-facing surface of the dry area is higher than the water-facing surface of the wet area and there is a drainage connecting channel, the dry area chassis may not be provided with a floor drain When the dry and wet area chassis are separated by a waterproof flange that is higher than the water-facing surface of the chassis, the dry area chassis should be equipped with a floor drain, and the wet area chassis must be equipped with a floor drain; the edge of the waterproof flange around the waterproof chassis is higher than the water-facing surface, and there is a height difference sloping towards the floor drain on the water-facing surface. Therefore, the waterproof flange that is higher than the water-facing surface will prevent the water collected on the water-facing surface from overflowing, and the collected water will flow along the height difference of the water-facing surface to the floor drain at a lower position for discharge; the floor drain is located at the lower part of the water-facing surface on the inner side of the wall panel slot (generally set on the inner side of the waterproof wall panel next to the wall panel slot) and is lower than the water-facing surface, thereby facilitating the discharge of water collected on the water-facing surface to the floor drain at a lower position;The floor drain of the dry area chassis is a strip trough with a height difference of not less than 10mm (generally the best height difference is between 20mm-40mm), of which at least one strip trough is not less than 30% of the width of the dry area chassis (the best length of the strip trough with a height difference direction different from that of the water-facing surface is not shorter than the inner width of the wet area chassis). The height difference direction is different from that of the water-facing surface (the best angle is close to 90 degrees). This structure, combined with the height difference of the water-facing surface, can form a fault-tolerant structure, so that when the waterproof chassis is deformed due to thermal expansion and contraction during installation, production or seasonal changes, or when the waterproof chassis is installed incorrectly, or the floor structure is uneven, or the leveling error is large, the water collection on the water-facing surface can be extended as long as it can extend the height difference of the water-facing surface. The height difference of the water surface will flow into the nearest strip trough floor drain, and will flow along the height difference of the strip trough to the lower floor drain outlet for discharge. The height difference of the floor drain is different from the height difference of the water-facing surface, which can increase the fault tolerance allowable error value. The maximum allowable error range can be slightly lower than the superposition value of the height difference of the water-facing surface and the height difference of the floor drain. When the length of the floor drain is a certain length (such as the same as the width of the wet area chassis or connected around two, three or four sides of the wet area chassis), errors can be allowed in any direction, resulting in a phenomenon that water will not accumulate on the water-facing surface. However, when the height difference direction of the floor drain is the same as the height difference direction of the water-facing surface, errors cannot be allowed in any direction, and water may be concentrated in one place on the water-facing surface and cannot be discharged into the floor drain. The phenomenon of leakage causes the drainage of the water-facing surface to be blocked, and the length of the strip trough floor drain is greater than 30% of the width of the wet area chassis. This is because the strip floor drain trough has a height difference value higher than 20mm. Under the condition of good ground leveling, the waterproof chassis is deformed during production or thermal expansion and contraction, resulting in the minimum required value of the drainage slope error of the water-facing surface. Of course, the longer the length of the strip trough floor drain, which has a different height difference direction from the water-facing surface, and the deeper the height difference depth, the greater the tolerance allowed for the production and installation of the water-facing surface and the waterproof chassis, thereby ensuring that there is no water accumulation on the water-facing surface of the waterproof chassis, and the drainage is quickly discharged in the strip trough floor drain. In addition, the floor drain is a strip trough, which is at the low part of the water-facing surface. Therefore, when the water-facing surface When the material is large slate or ceramic tile, the floor drain can be set on the side of the lower end of the slate or ceramic tile, and the chassis base of the composite water-facing surface can be produced into a one-way height difference. After the ceramic tile or slate is composited, there will be no hollows or suspended gaps on the back of the ceramic tile or slate that cannot fit with the back of the ceramic tile or slate; the wall panel slot is on the inner side of the waterproof flange, so that after the bottom of the waterproof wall panel is inserted into the wall panel slot, it can prevent the scattered water collected by the waterproof wall panel surface from crossing the chassis waterproof flange and causing water leakage on the wall and floor. Under normal circumstances, the bottom of the wall panel slot is not higher than the water-facing surface. Therefore, after the waterproof wall panel is inserted, a decorative effect of the horizontal decorative surface covering the vertical decorative surface can be formed, preventing the vertical undecorated seam phenomenon at the low position due to the height difference of the water-facing surface;The floor drain is on the inner side of the wall panel slot and lower than the water-facing surface. This structure enables the floor drain below the water-facing surface to collect the scattered water on the water-facing surface. After the wall panel slot is inserted into the waterproof wall panel, the scattered water collected on the waterproof wall panel surface can only be discharged at the floor drain where the height difference of the water-facing surface is collected inside the waterproof flange. The structural floor is at the bottom of the waterproof chassis. There is a leveling pad between the structural floor and the bottom of the waterproof chassis. The leveling pad is made of hard material (such as calcium silicate board, broken tiles, plastic board, cement board, steel plate, etc.). In this structure, when the ground is leveled, it is only necessary to The tops of several leveling pads supporting the waterproof chassis are leveled at the same horizontal plane, changing the traditional concrete surface leveling method to improve the leveling accuracy and speed. Furthermore, after the bottom of the waterproof chassis is placed on the leveling pad, the gap between the bottom of the waterproof chassis and the structural floor is filled with a fluid filling layer. After the filling layer is sprayed, the filling layer can be made of micro-expanding concrete, concrete or polyurethane foam. By utilizing the expansion and curing properties of the filling layer, under the constraint of the bottom of the waterproof chassis and the structural floor, the gap between the waterproof chassis and the structural floor is filled with a fluid filling layer. Under the support of the filling layer, after the expansion and solidification, the automatic surface leveling support and fixed waterproof chassis are realized, which improves the leveling accuracy and installation speed of the waterproof chassis installation; the sides of the two adjacent waterproof wall panels on the same plane have keel slots, and the plugs of the flat keel are inserted into the keel slots. In this structure, the keel slots of the waterproof wall panel are inserted into the plugs of the flat keel to form a concave and convex riveted structure to prevent water leakage in the joints of the waterproof wall panels on the same plane; there are wall panel adjustment grooves and wall panel plugs with a depth of not less than 3mm on the internal angle keel, and different sides of the internal angle keel have different levels of keel. Two waterproof wall panels intersecting at an angle, one side of which is inserted into the wall panel adjustment groove, and the other side of which has a keel slot inserted into the wall panel plug, form a waterproof structure for the joints of waterproof wall panels at the inner corners of different planes, preventing water leakage at the inner corner joints of waterproof wall panels. At the same time, the wall panel adjustment groove with a depth of not less than 3mm can adjust the installation and production errors of waterproof wall panels on the same plane and the production and installation errors of waterproof chassis, thereby realizing fast installation of wall panels, improving product yield, improving production efficiency and reducing production costs;The wall is adjusted and fixed to the structural wall. The bottom of the internal corner keel, external corner keel and butt-joint keel are adjusted and fixed to the waterproof flange or the wall near the bottom of the waterproof chassis within the inner side of the waterproof flange. This structure, the vertical keels (external corner keel, internal corner keel, butt-joint keel) within the inner side of the bottom waterproof flange, can prevent the wall water drained from the joints of the waterproof wall panels connected by each vertical keel from flowing outside the waterproof flange, causing water leakage on the wall and floor. At the same time, the wall fixed on the structural wall adjusts and fixes the vertical keels, so that the waterproof wall panels form the overall interior surface structure of the prefabricated bathroom. When the waterproof wall panels are made of ceramic tiles or rock panels, there is no need to conform to other composite layers on the back of the ceramic tiles or rock panels. The concave and convex riveting structure of the internal corner keel, butt-joint keel and waterproof wall panels can make the keel very thin (the total thickness can be between 1mm-6mm), thereby reducing the complex surface on the back of the waterproof wall panels of traditional prefabricated bathrooms. The composite material and the thick keel material can be used to lay water supply pipelines and electric pipelines in the space of the material, so that the water supply pipelines and electric pipelines do not need to be laid in the structural wall grooves, thereby improving the plane utilization space of the bathroom, and also expanding the application methods and application places of ceramic tiles and rock slabs. Furthermore, when the back of the waterproof wall panel is filled with wall polyurethane foam, the wall adjustment and the fixed structure of the structural wall and each vertical keel will restrain the waterproof wall panel to prevent the waterproof wall panel from deformation and lodging. At the same time, the expansion and curing of the wall polyurethane foam can fill the joints between each vertical keel and the waterproof wall panel and the joints between the waterproof wall panel and the waterproof flange of the chassis to form a waterproof and moisture-proof layer to prevent the wall from leaking. The structure is combined with the waterproof chassis fixed to the structural floor, and the top of the waterproof wall panel is fixed with a top plate keel. The top plate and the top plate keel are fixed and overlapped to form a stable inner tank structure of the assembled bathroom with the ground, wall and top fixed to each other. The upper parts of the external angle keels and the flat keels are adjusted and fixed to the wall surface; the pipe well area is formed by adjusting and fixing the two sides of the angle of the external angle keel to the wall surfaces of different structural walls through the cross keels. The cross keels of the structure are fixedly connected to the two sides of the angle of the external angle keel and the structural walls of different surfaces to form a frame structure of the pipe well area. After the waterproof wallboard is fixed to the front end of the frame structure, the pipe well enclosure structure is formed, which reduces the need for traditional pipe well enclosure structures to use block masonry, saves the space occupied by blocks in the building plane, reduces the cost, and improves the installation speed;The top of the waterproof wall panel is fixed with a top plate keel, and the top plates are fixed and overlapped with the top plate keels. Furthermore, the wall adjustment outside the pipe well area includes an L-shaped fixing surface and two fixing strips. One side of the fixing surface is fixed to the structural wall surface, and the protruding part of the other side can be movably fixed to one end of the two fixing strips at the same point. There is a protruding internal angle fixing strip on the back of the plug surface of the internal angle keel wall panel, and a protruding flat-joint fixing strip on the back of the flat-joint keel. The other ends of the two fixing strips are fixed to the internal angle fixing strip and the flat-joint fixing strip at two points. After the internal angle keel, the flat-joint keel and the inner side of the waterproof flange of the waterproof chassis are fixed, the two fixing strips are adjusted after the structural wall surface on the back of the internal angle keel and the flat-joint keel are fixed to the fixed surface of the wall adjustment. After the internal angle keel and the flat-joint keel are perpendicular to the horizontal plane, the two fixing strips are fixed to two different points of the same internal angle fixing strip and the flat-joint fixing strip respectively. Thus, the two fixing points on the internal angle fixing strip and the flat-joint fixing strip form a triangular stable fixation with a fixed point on the fixing surface to prevent The waterproof wall panels fixed on the internal angle keel and the butt-joint keel fall over and deform. When there are multiple wall adjustment fixations on the same internal angle keel or butt-joint keel, the waterproof wall panels can also be stably erected on the front end of the structural wall when the gap between the waterproof wall panels and the structural wall is not filled with wall polyurethane foam, forming the inner liner structure of the integrated bathroom. When the back of the waterproof wall panels and the structural wall are filled with wall polyurethane foam, the waterproof wall panels can be prevented from being deformed due to the expansion of the wall polyurethane foam. The protruding internal angle fixing strip is on the back of the plug surface of the internal angle keel wall panel. When the wall panel adjustment groove of the internal angle keel is inserted into the side of the waterproof wall panel, due to the thin space between the back of the waterproof wall panel and the structural wall, there is no fixed space between the back of the wall panel adjustment groove and the inner side of the waterproof flange and the wall adjustment. The only fixed space for adjustment with the wall surface is the back of the wall panel plug surface. This structure can improve the utilization of the building plane space.

[0005] Furthermore, the bottom of the internal angle keel and the butt-joint keel is fixed on the inner side of the waterproof flange, and the top is fixed to the top plate keel. When the structural wall surface cannot be stably fixed for wall adjustment (such as when calcium silicate board or gypsum board is used as the structural wall surface on the back of the waterproof wall panel), there is no need (or reduction) to fix the wall surface adjustment on the structural wall surface below the top plate keel and above the waterproof flange. The bottom of the internal angle keel, the butt-joint keel and the external angle keel are fixed to the waterproof flange of the waterproof chassis, the sides clamp the sides of the waterproof wall panel, and the top is fixed to the top plate keel, so that the waterproof chassis, internal angle keel, waterproof wall panel, butt-joint keel, external angle keel and top plate keel are framed together to form an independent and stable inner liner structure, which can reduce the thickness from the inner surface of the waterproof wall panel to the outer wall of the structural wall.

[0006] Furthermore, the back of the waterproof wallboard has a composite layer of glass fiber and unsaturated resin solidified, and the thickness of the composite layer is less than 3mm; this structure can increase the impact resistance of the waterproof wallboard made of ceramic or rock board materials, prevent the wall from breaking, and can be used in areas where there is no polyurethane foam or little polyurethane foam in the gap between the back of the waterproof wallboard and the structural wall, such as the back of the pipe well, etc. The small thickness is considered to reduce the composite cost and reduce the occupied building space while meeting the impact resistance.

[0007] Furthermore, the thickness from the highest point of the water-facing surface of the waterproof chassis to the structural floor surface is less than 160mm. This structure reduces the installation height of the chassis and improves the utilization rate of the building height space while meeting the requirements of the water seal height of the drainage device (such as floor drain) being not less than 50mm and the minimum flow channel width being not less than 20mm; the thickness of the waterproof wall panel decorative surface outside the pipe well area to the structural wall surface is less than 70mm. This structure can improve the utilization rate of the building's plane space.

[0008] In the described assembled integrated toilet, the bottoms of the flat keel and the internal corner keel are fixed to the inner side of the waterproof flange; the back sides of the external corners of the two waterproof wall panels intersecting on different sides are provided with external corner keels; the inner and outer walls of the top of the waterproof wall panels are sleeved in the downward slots of the top plate keels; the two adjacent top plate keels on different sides are sleeved in the corner sleeve grooves of the corner fixing piece and fixed to the corner fixing piece.

[0009] In the assembled integrated toilet described in the utility model, the inner and outer walls of the top of the waterproof wall panel are sleeved in the downward slots of the top plate keel; two adjacent top plate keels on different sides are sleeved in the corner sleeve grooves of the corner fixing piece and fixed to the corner fixing piece.

[0010] In the assembled integrated toilet described in the utility model, the bottoms of the internal corner keel, the flat-joint keel and the external corner keel are fixed on the inner side of the waterproof flange, and the tops are fixed to the top plate keel.

[0011] The assembled integrated toilet described in the present invention has a filling layer in the gap between the bottom of the waterproof chassis and the structural floor, and a filling layer is filled between the waterproof flange of the waterproof chassis and the structural wall; the width of the wall adjustment is not less than 15mm, the length is not less than 50mm, the structural wall and the flat keel are fixed horizontally, thus, when the polyurethane foam is sprayed into the gap between the structural wall and the waterproof wallboard, the wall adjustment with the horizontal fixed wall and the flat keel, the length of not less than 50mm and the width of not less than 15mm can hang the fluidized polyurethane foam before solidification to prevent it from flowing to the bottom of the waterproof wallboard, ensure that the waterproof wallboard around the wall adjustment has polyurethane foam solidified and adhered to the structural wall and the structural wall, prevent the waterproof wallboard from falling off, and ensure that the bottom of the waterproof wallboard will not be deformed by the accumulation of too much wall polyurethane foam, resulting in a large amount of expansion, and the gap between the waterproof wallboard and the structural wall is filled with wall polyurethane foam.

[0012] In the assembled integrated toilet described in the utility model, the back of the waterproof wallboard is provided with a composite layer of glass fiber and unsaturated resin solidification, and the thickness of the composite layer is less than 3 mm.

[0013] In the assembled integrated toilet described in the utility model, the water-facing surface of the waterproof chassis does not have a vertical hole passing through the bottom of the waterproof chassis; the floor drain includes a water-facing surface and a floor drain drainage outlet; the bottom of the water-facing surface of the floor drain is lower than the water-facing surface; and the floor drain drainage outlet is on the outside of the waterproof flange.

[0014] In the assembled integrated toilet described in the present invention, the thickness from the highest point of the water-facing surface of the waterproof chassis to the structural floor surface is less than 160 mm, and the thickness from the decorative surface of the waterproof wall panel outside the pipe well area to the structural wall surface is less than 70 mm.

[0015] The assembled integrated bathroom described in the utility model has at least three leveling pads above the structural floor whose highest surfaces are at the same horizontal plane or close to the same horizontal plane, the bottoms of the wall panel slots are also at the same horizontal plane or close to the same horizontal plane, and the bottoms of the internal angle keel and the butt keel are fixed to the waterproof flange on the inner side of the waterproof flange of the waterproof chassis.

[0016] The wall adjustment fixed flat keel on the wall of the assembled integrated bathroom structure described in the utility model, the outer facade of the middle or upper part of the internal angle keel and the inner side of the waterproof flange of the waterproof chassis at the bottom of the fixed flat keel are vertical or nearly vertical, and the bottom of the wall panel slot is parallel or nearly parallel to the leveling pad. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 This is a structural diagram of the utility model with the top removed.

[0018] Figure 2 It is a schematic cross-sectional view of the local structure of the utility model.

[0019] Figure 3 This is a schematic diagram of the height difference of the strip-shaped floor drain trough in the wet area chassis of the utility model.

[0020] Figure 4 This is a structural diagram for adjusting the flat-jointed keels and wall surfaces outside the pipe well area of ​​the utility model, as well as for fixing the waterproof wall panels and structural walls.

[0021] Figure 5 This is the structural diagram of the internal angle keel of this utility model.

[0022] Figure 6 This is the structural diagram of the flat-jointed keel of the utility model.

[0023] Figure 7 This is a structural diagram of the waterproof wall panel of the utility model being fixed to the structural wall surface through the internal angle keel.

[0024] Figure 8 This is a structural diagram of the waterproof wall panel of the utility model being fixed to the structural wall surface through a flat keel.

[0025] Figure 9 This is a diagram of the wall adjustment structure outside the pipe well area of ​​the utility model.

[0026] Figure 10 This is a structural diagram of the wall panels of the utility model connected through external angle keels.

[0027] Figure 11 This is a structural diagram of the connection between the upper and lower waterproof wall panels of the utility model.

[0028] Figure 12 This is an exploded view of the connection structure of the wall panel and top panel of the utility model.

[0029] Figure 13 This is a combined diagram of the wall panel and top panel connection structure of the utility model.

[0030] Figure 14 This is a three-dimensional diagram of the connection structure of the wall panel and top panel of the utility model.

[0031] In the figure: 1- waterproof chassis, 2- waterproof wall panel; 3- top plate; 4- structural floor; 5- structural wall; 6- internal corner keel; 7- flat keel; 8- wall adjustment; 9- leveling pad; 11- water-facing surface; 12- waterproof flange; 13- wall panel slot; 14- floor drain; 15- filling layer; 17- floor drain water-facing surface; 18- floor drain outlet; 21- wall polyurethane foam; 22- waterproof wall panel keel slot; 25- external corner keel; 31- top plate keel; 32- slot; 33 -Corner sleeve; 34-screw; 35-corner fixing; 60-pipe shaft area; 61-wall panel adjustment slot; 62-wall panel plug for internal corner keel; 64-composite layer; 71-plug for flat joint keel; 72-horizontal flat joint keel; 73-horizontal plug; 70-dry area chassis; 80-wet area chassis; 83-horizontal keel; 90-floor drain cover; 10-fixing surface for wall adjustment; 20-fixing strip for wall adjustment; 30-internal corner fixing strip; 40-flush fixing strip; 50-sealant. DETAILED DESCRIPTION

[0032] The present invention is further described below with reference to the accompanying drawings, but is not limited to the embodiments.

[0033] Example 1

[0034] like Figure 1 、 2, 3, 4, 5, 8, 9, 10, 11, the assembled integrated toilet comprises a waterproof chassis 1, a waterproof wall panel 2, a top plate 3, a structural floor 4, a structural wall 5, a female angle keel 6, a male angle keel 25, a transverse keel 83, a flat keel 7, a wall adjustment 8, a leveling pad 9, and a pipe well area 60; it is characterized in that: the waterproof chassis 1 is composed of a dry area chassis 70 and a wet area chassis 80, including a water-facing surface 11, a waterproof flange 12, a wall panel slot 13 and a floor drain 14 in an integrated structure; the waterproof flange 12 surrounds the waterproof chassis 1 The edge is higher than the water-facing surface 11; there is a height difference on the water-facing surface 11 that slopes toward the floor drain 14, and the wall panel slot 13 is at the inner bottom of the waterproof flange 12; the floor drain 14 is at the lower part of the water-facing surface 11 on the inner side of the wall panel slot 13, lower than the water-facing surface 11; the floor drain 14 on the wet area chassis 80 is a strip trough with a height difference of not less than 10 mm, of which at least one strip trough with a length of not less than 30% of the width of the wet area chassis has a height difference direction different from the height difference direction of the water-facing surface 11, and whether the strip trough has a floor drain cover 90; the structural floor 4 At the bottom of the waterproof chassis 1, there is a leveling pad 9 between the structural floor 4 and the bottom of the waterproof chassis 1; the bottom of the waterproof wallboard 2 is inserted into the wallboard slot 13; the sides of the two adjacent waterproof wallboards 2 on the same plane have keel slots 22, and the plug 71 of the flat keel 7 is inserted into the keel slot 22; the internal angle keel 6 has a wallboard adjustment groove 61 and a wallboard plug 62 with a depth of not less than 3mm. The two waterproof wallboards 2 intersecting at different internal angles, one side is inserted into the wallboard adjustment groove 61, and the other side has a keel slot 22 inserted into the wallboard plug Inside the head 62; the wall adjustment 8 is fixed to the structural wall 5, and the bottoms of the internal angle keel 6, the external angle keel 25, and the butt-joint keel 7 are fixed to the waterproof flange 12 or the wall adjustment 8 near the bottom of the waterproof chassis within the inner side of the waterproof flange 12; the upper parts of the external angle keel 25 and the butt-joint keel 7 are fixed to the wall adjustment 8; the pipe well area 60 is formed by the two side edges of the angle of the external angle keel 25 being fixed to the wall adjustment 8 of different structural walls 5 through the transverse keel 83; the top of the waterproof wall panel 2 is fixed with the top plate keel 31, and the top plate 3 is fixedly overlapped with the top plate keel 31.

[0035] Example 2

[0036] like Figure 2 、 3 As shown in Figures 13 and 14, the bottom of the wall panel slot 13 is not higher than the water-facing surface 11, and there is a downward slot 32 with a depth of 5-50mm on the top plate keel 2. The inner and outer walls of the top of the waterproof wall panel 2 are sleeved in the downward slot 32 of the top plate keel 31.

[0037] Example 3

[0038] like Figure 2As shown, the gap between the bottom of the waterproof chassis 1 and the structural floor 4 is filled with a filling layer 15; the gap between the waterproof flange 12 of the waterproof chassis and the structural wall 5 is filled with wall polyurethane foam 21, and the gap between the waterproof wall panel 2 and the structural wall 5 is filled with wall polyurethane foam 21.

[0039] Example 4

[0040] like Figure 1 、 2 As shown in Figures 1 and 12, the material of the waterproof wall panels 2 is 7mm-12mm ceramic tiles or rock panels, and there is no composite substrate material on the back of the ceramic tiles or rock panels; the waterproof wall panels 2 at the front end of the same structural wall surface 5 are arranged in no less than two vertical rows, and the waterproof wall panels 2 in the same row and on the same plane are composed of two upper and lower ceramic wall panels; the overlapping surfaces of the two upper and lower adjacent waterproof wall panels 2 in the same plane have keel slots 22, and the upper and lower adjacent keel slots 22 have horizontal plugs 73 that are horizontally connected to the keel 72; the water-facing surface 11 of the waterproof chassis 1 is a ceramic tile finish.

[0041] Example 5

[0042] like Figure 2 、 12 As shown in Figures 13 and 14, the back of the waterproof wall panel 2 has a composite layer 64 of glass fiber and unsaturated resin solidified, and the thickness of the composite layer 64 is less than 3 mm; the two adjacent top plate keels 31 on different sides are sleeved in the corner sleeve groove 33 of the corner fixing piece 35, and are laterally fixed to the corner fixing piece 35 on the inside of the bathroom by screws 34.

[0043] Example 6

[0044] like Figure 1 、 2 As shown in FIG. 3 , in the assembled integrated toilet, the water-facing surface 11 of the waterproof chassis 1 does not have a vertical hole extending through the bottom of the waterproof chassis. The floor drain 14 includes a water-facing surface 17 and a drain outlet 18 . The water-facing surface 17 is lower than the water-facing surface 11 ; the drain outlet 18 is located outside the waterproof flange 12 .

[0045] Example 7

[0046] like Figure 2 As shown, the thickness of the assembled integrated toilet from the highest point of the water-facing surface 11 of the waterproof chassis 1 to the structural floor surface is 120 mm, and the thickness of the waterproof wall panel decorative surface outside the pipe well area 60 to the structural wall surface is 40 mm.

[0047] Example 8

[0048] like Figure 2As shown, in the described prefabricated integrated toilet, the highest surfaces of at least three leveling pads 9 above the structural floor are at the same horizontal plane or close to the same horizontal plane, and the bottom of the wall panel slot 13 and the overlapping surface of the waterproof chassis bottom and the leveling pad 9 are also at the same horizontal plane or close to the same horizontal plane; the bottom of the wall panel slot 13 is parallel or close to parallel to the leveling pad 9.

[0049] Example 9

[0050] As shown in Figures 1, 2, 5, 6, 7, 8, 9 and 10, the wall adjustment 8 outside the pipe well area 60 of the prefabricated integrated toilet includes an L-shaped fixing surface 10 and two fixing strips 20. One side of the fixing surface 10 is fixed to the structural wall, and the protruding portion of the other side can be movably fixed to one end of the two fixing strips 20 at the same point; there is a protruding internal angle fixing strip 30 on the back side of the wall panel plug 62 of the internal angle keel 6, and a protruding flat-joint fixing strip 40 on the back side of the flat-joint keel 7; the other ends of the two fixing strips 20 are fixed to the internal angle fixing strip 30 and the flat-joint fixing strip 40 at two points.

[0051] Example 10

[0052] As shown in Figures 2, 5, 8 and 9, in the assembled integrated toilet, the same flat keel 7, internal corner keel 6 and external corner keel 25 are fixed with at least two wall adjustments 8, and the joints between two adjacent waterproof wall panels are filled with sealant 50.

Claims

1. An assembled integrated toilet, comprising a waterproof chassis (1), a waterproof wall panel (2), a roof panel (3), a structural floor panel (4), a structural wall surface (5), a female corner keel (6), a male corner keel (25), a transverse keel (83), a flat keel (7), a wall adjustment (8), a leveling pad (9), and a pipe well area (60); characterized in that: The waterproof chassis (1) is composed of a dry area chassis (70) and a wet area chassis (80), and includes a water-facing surface (11), a waterproof flange (12), a wall panel slot (13) and a floor drain (14) in an integrated structure; the waterproof flange (12) surrounds the edge of the waterproof chassis (1) and is higher than the water-facing surface (11); the water-facing surface (11) has a height difference that slopes toward the floor drain (14); the wall panel slot (13) is located at the bottom inner side of the waterproof flange (12); the floor drain (14) is located at the lower part of the water-facing surface (11) inside the wall panel slot (13) and is lower than the water-facing surface (11). 1); the floor drain (14) on the wet area chassis (80) is a strip trough with a height difference of not less than 10 mm, wherein at least one strip trough with a length not less than 30% of the width of the wet area chassis has a height difference direction different from the height difference direction of the water-facing surface (11), and whether the strip trough has a floor drain cover (90); the structural floor (4) is at the bottom of the waterproof chassis (1), and a leveling pad (9) is provided between the structural floor (4) and the bottom of the waterproof chassis (1); the bottom of the waterproof wall panel (2) is inserted into the wall panel slot (13); the adjacent left and right sides of the same plane The sides of the two waterproof wall panels (2) are provided with keel slots (22), and the plugs (71) of the flat keels (7) are inserted into the keel slots (22); the inner corner keels (6) are provided with wall panel adjustment slots (61) and wall panel plugs (62) with a depth of not less than 3 mm, and the two waterproof wall panels (2) intersecting with inner corners on different sides, the side of one is inserted into the wall panel adjustment slot (61), and the side of the other has a keel slot (22) inserted into the wall panel plug (62); the wall surface adjustment (8) is fixed to the structural wall surface (5), and the inner corner keels (6), the outer corner keels (2) are fixed to the structural wall surface (5), and the inner corner keels (6), the outer corner keels (2) are fixed to the structural wall surface (5), and the inner corner keels (6), the outer corner keels (2) are fixed to the structural wall surface (5), and the inner corner keels (6) and the outer corner keels (2) are fixed to the structural wall surface (5). 5), the bottom of the flat keel (7) is fixed to the waterproof flange (12) or the wall adjustment (8) near the bottom of the waterproof chassis within the inner side of the waterproof flange (12); the upper part of the external angle keel (25) and the flat keel (7) is fixed to the wall adjustment (8); the pipe well area (60) is formed by fixing the two sides of the angle of the external angle keel (25) to the wall adjustment (8) of the wall surface (5) with different structures through the transverse keel (83); the top of the waterproof wall panel (2) is fixed with a top plate keel (31), and the top plate (3) is fixedly overlapped with the top plate keel (31).

2. The assembled integrated toilet according to claim 1, characterized in that: The bottom of the wall panel slot (13) is not higher than the water-facing surface (11), and a downward slot (32) with a depth of 5-50 mm is provided on the top plate keel (31). The inner and outer walls of the top of the waterproof wall panel (2) are sleeved in the downward slot (32) of the top plate keel (31).

3. The assembled integrated toilet according to claim 1 or 2, characterized in that: The gap between the bottom of the waterproof chassis (1) and the structural floor (4) is filled with a filling layer (15); the gap between the waterproof flange (12) of the waterproof chassis and the structural wall (5) is filled with a filling layer (15); and the gap between the waterproof wallboard (2) and the structural wall (5) is filled with wall polyurethane foam (21).

4. The assembled integrated toilet according to claim 3, characterized in that: The waterproof wall panels (2) are made of 7mm-12mm ceramic tiles or rock panels, and there is no composite substrate material on the back of the ceramic tiles or rock panels; the waterproof wall panels (2) at the front end of the same structural wall surface (5) are arranged in no less than two vertical rows, and the waterproof wall panels (2) in the same row and on the same plane are composed of two upper and lower ceramic wall panels; the overlapping surfaces of the two upper and lower adjacent waterproof wall panels (2) on the same plane have keel slots (22), and the upper and lower adjacent keel slots (22) have horizontal plugs (73) that are horizontally connected to the keel (72); the water-facing surface (11) of the waterproof chassis (1) is a ceramic tile surface.

5. The assembled integrated toilet according to claim 4, characterized in that: The back of the waterproof wallboard (2) is provided with a composite layer (64) of glass fiber and unsaturated resin solidification, and the thickness of the composite layer (64) is less than 3 mm; two adjacent top plate keels (31) on different sides are sleeved in the corner sleeve groove (33) of the corner fixing member (35), and are transversely fixed to the corner fixing member (35) on the inner side of the bathroom by screws (34).

6. The assembled integrated toilet according to claim 4 or 5, characterized in that: The water-facing surface (11) of the waterproof chassis (1) has no vertical holes penetrating the bottom of the waterproof chassis; the floor drain (14) comprises a floor drain water-facing surface (17) and a floor drain drainage outlet (18); the bottom of the floor drain water-facing surface (17) is lower than the water-facing surface (11); and the floor drain drainage outlet (18) is located outside the waterproof flange (12).

7. The assembled integrated toilet according to claim 6, characterized in that: The thickness from the highest point of the water-facing surface (11) of the waterproof chassis (1) to the structural floor surface is less than 160 mm, and the thickness from the decorative surface of the waterproof wallboard outside the pipe well area to the structural wall surface is less than 70 mm.

8. The assembled integrated toilet according to claim 7, characterized in that: The highest surfaces of at least three leveling pads (9) above the structural floor are in the same horizontal plane or close to the same horizontal plane, and the bottom of the wall panel slot (13) and the overlapping surface of the waterproof chassis bottom and the leveling pad (9) are also in the same horizontal plane or close to the same horizontal plane; the bottom of the wall panel slot (13) is parallel or close to parallel to the leveling pad (9).

9. The assembled integrated toilet according to claim 1, 2 or 7, characterized in that: The wall adjustment (8) outside the pipe well area (60) includes an L-shaped fixing surface (10) and two fixing strips (20), one side of the fixing surface (10) is fixed to the structural wall surface, and the protruding portion of the other side is movably fixed to one end of the two fixing strips (20) at the same point; a protruding internal angle fixing strip (30) is provided on the back side of the wall panel plug (62) of the internal angle keel (6), and a protruding flat connection fixing strip (40) is provided on the back side of the flat connection keel (7); the other ends of the two fixing strips (20) are fixed to the internal angle fixing strip (30) and the flat connection fixing strip (40) at two points.

10. The assembled integrated toilet according to claim 9, characterized in that: The same flat joint keel (7), inner corner keel (6), and outer corner keel (25) are fixed by wall adjustment (8) at no less than two locations, and the joints between two adjacent waterproof wallboards are filled with sealant (50).