An assembled toilet partition wall
Through the assembly and filling layer design of rock slabs and profile skeletons, the problem of mold and swelling in humid environments is solved, and the stability and rapid installation of bathroom partition walls are achieved, the door lock structure is simplified and the service life is improved.
Patent Information
- Application Number
- CN202211686395.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-12-27
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2042-12-27
AI Technical Summary
Traditional wooden boards or composite materials are prone to mold, swelling, and convex in humid environments, which cannot meet the needs of water resistance and high-quality. The door lock structure is easy to be damaged, which cannot meet the requirements of fast installation and structural stability of prefabricated bathrooms.
The frame-like structure is assembled by rock slabs and profile frames, combined with the door lock structure and fixing strips, fixed by screws, and the filling layer is used to prevent mildew, so as to achieve a stable connection between the rock slabs and profile frames, and simplify the clamping design of the door lock structure.
It achieves good waterproof performance, quick installation and high efficiency of the rock slab structure, avoids mold and swelling, and improves the service life and stability of the door lock structure.
Smart Images

Figure CN116240998B_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of building decoration, and particularly relates to a prefabricated sanitary partition wall. Background Art
[0002] With the continuous development of society, the rising labor cost, and the increasing demand for the quality of indoor living space, prefabricated toilets are becoming increasingly widely used due to their advantages such as fast and time-saving installation and good product quality. In public toilets, common partitions are usually used to divide the toilet cubicle to form an independent small space.
[0003] Problems existing in the prior art:
[0004] In traditional practices, wooden boards or other composite materials are used. However, in the relatively humid environment of the toilet, these materials are prone to quality problems such as mildew, swelling, and bulging, and cannot meet the requirements of water resistance and high-quality sense. As a new material and new technology, rock slabs have the characteristics of hard texture, wear resistance, stain resistance, water resistance, and large panel size, and are most suitable for prefabricated toilets. However, the traditional construction technology does not meet the requirements for the prefabricated installation of new materials, and in terms of the door lock structure, it is also prone to damage due to excessive use. Summary of the Invention
[0005] The purpose of the present invention is to provide a prefabricated sanitary partition wall that can use the new material rock slab as a partition method, adapt to various different sanitary partition scenarios, avoid quality problems such as mildew, swelling, and bulging, and achieve prefabricated, stable structure, good waterproof performance, fast installation, high efficiency, and difficult damage to the door lock structure of the sanitary partition.
[0006] The technical solution adopted by the present invention is specifically as follows:
[0007] A prefabricated sanitary partition wall includes assembled and inserted rock slabs and profile skeletons, and
[0008] A frame structure assembled by multiple rock slabs and profile skeletons;
[0009] The rock slab and profile skeleton on one side form a plate structure, the plate structure is hinged to an adjacent plate structure, and the plate structure on one side is movably clamped to the adjacent plate structure on the other side through a set door lock structure;
[0010] Wherein, a fixed card strip is inserted through the door lock structure, a second card strip is provided on one side of the fixed card strip for insertion on one side of the profile skeleton, corresponding second accommodation grooves and first accommodation grooves are provided on the profile skeleton and one side of the rock slab for the movable clamping of the door lock structure, wrench grooves are provided on both sides of one side surface of the door lock structure, and a vertical positioning card slot is provided on one side surface inside the door lock structure;
[0011] On the side of the profile frame on the other side of the plate-like structure, a plate fastener is snap-connected. On one side of the plate fastener adjacent to the door lock structure, there is a clamping plate. On one side of the clamping plate adjacent to the positioning card slot, there is an elastic hinge. At the end of the clamping plate, there is a positioning card strip for movably snap-connecting inside the positioning card slot.
[0012] The frame-like structure includes at least four plate-like structures and at least three plate-like structures and a wall structure.
[0013] On one side of the profile frame, a "convex"-shaped connection card slot is provided. Inside the connection card slot, a screw, a second card strip, and a first card strip are respectively snap-connected;
[0014] Among them, the first card strip is fixed on the outside of the "L" shape and is used to snap-connect the plate fastener on one side of the profile frame;
[0015] The second card strip is used to snap-connect the fixed card strip on one side of the profile frame, and the fixed card strip is located between the plate fastener of the adjacent plate-like structure and the profile frame;
[0016] The screw is used to fixedly install the profile frame on the side of the wall structure and the side of the spliced rock board plate-like structure.
[0017] On the other side of the profile frame, there are two side positioning clamping plates in the shape of a "U". In the middle of the two side positioning clamping plates, there is a positioning strip;
[0018] At the connection between the outside of the rock board and the side positioning clamping plate, a first filling layer is clamped. Inside the two sides of the rock board, a second filling layer is embedded. The positioning strip is press-fitted and inserted inside one side of the second filling layer.
[0019] On both sides of the positioning strip and the inner sides of the two side positioning clamping plates, there are wavy anti-slip surfaces.
[0020] The plate fastener is snap-connected at the end of one side of the plate-like structure to snap-connect the end of the plate-like structure in the articulated state on the other side, and the side of the profile frame is movably connected to the inner side of the plate fastener.
[0021] The door lock structure is hinged inside the first accommodating groove and the second accommodating groove through the fixed card strip, and the wrench grooves on both sides of the door lock structure are respectively hinged and alternately protrude from the surface of the second filling layer.
[0022] The door lock structure is fan-shaped;
[0023] The inner positioning card slot is movably clamped with the adjacent card board. The inner side of the door lock structure is used to squeeze the positioning card strip, so that the elastic sheet arranged between the card board and the plate member deforms. The positioning card strip slides on the inner side of the door lock structure and is slidably clamped into the positioning card slot, realizing the clamping between the plate member and the door lock structure. At this time, the wrench slot on the inner side protrudes from the surface of the second filling layer, and the outer side surface of the door lock structure is parallel to the surface of the second filling layer on the outer side.
[0024] When the positioning card strip is located on the outer side of the door lock structure and is slidably connected with it, the elastic sheet elastically flips the positioning card strip to push the door lock structure to hinge around the fixed card strip. At this time, the inner side surface of the door lock structure is parallel to the surface of the second filling layer on the inner side, and the wrench slot on the outer side of the door lock structure protrudes from the outer surface of the second filling layer.
[0025] When the two plate-like structures are joined, a floor spring is arranged at their joint for hinging, and the number of the floor springs is not less than two. The floor springs are respectively fixedly connected with the two plate-like structures on both sides.
[0026] The technical effects achieved by the present invention are as follows:
[0027] In the present invention, by arranging the rock slab and the first filling layer and the positioning strip clamped inside it, the stability of the structure installation can be increased. Through the installation of the first filling layer and the second filling layer, it can be used to avoid mildew inside, and the rock slab structure can also avoid the phenomenon of wet expansion.
[0028] In the present invention, through the assembly of the rock slab and the profile skeleton, simple on-site assembly can be realized. Through the installation cooperation of the screw and the profile skeleton, and through the combined installation of the profile skeleton and the plate-like structure, the installation can be convenient and the installation efficiency is high.
[0029] In the present invention, through the mutual clamping of the door lock structure and the plate member, the simplification of the door lock structure can be realized. During use, it is convenient to use, and it can prevent damage and improve the service life. Description of the Drawings
[0030] Figure 1 is the structural assembly schematic diagram of the present invention;
[0031] Figure 2 is the top structural schematic diagram of the present invention;
[0032] Figure 3 is the present invention Figure 2 The enlarged structural view of part A in;
[0033] Figure 4 is the present invention Figure 2 The enlarged structural view of part B in;
[0034] Figure 5 is the enlarged view of the structure at position C in the present invention; Figure 2
[0035] Figure 6 is the installation position diagram of the plate card and the door lock structure in the present invention;
[0036] Figure 7 is the present invention Figure 6 structural disassembly diagram;
[0037] Figure 8 is the schematic plan view of the locking state of the door lock structure in the present invention;
[0038] Figure 9 is the schematic plan view of the separated state of the door lock structure in the present invention.
[0039] In the attached drawings, the list of components represented by each reference numeral is as follows:
[0040] 1. Wall structure;
[0041] 2. Rock slab; 201. First filling layer; 202. Second filling layer; 203. First accommodating groove;
[0042] 3. Profile skeleton; 301. Connecting card slot; 302. Side positioning clamping plate; 303. Positioning strip; 304. Second accommodating groove;
[0043] 4. Plate card; 401. First card strip; 402. Card plate; 403. Elastic piece; 404. Positioning card strip;
[0044] 5. Floor spring;
[0045] 6. Door lock structure; 601. Fixed card strip; 602. Second card strip; 603. Wrench groove; 604. Positioning card slot;
[0046] 7. Screw;
[0047] 8. Bottom sealing plate;
[0048] 9. Top sealing plate. Detailed implementation manners
[0049] In order to make the purpose and advantages of the present invention clearer, the present invention will be specifically described below in conjunction with embodiments. It should be understood that the following text is only used to describe one or several specific implementation manners of the present invention, and does not strictly limit the scope of protection specifically claimed by the present invention.
[0050] As Figure 1 As shown in the figure, a prefabricated sanitary partition wall includes a rock slab 2 and a profile skeleton 3 that are assembled and inserted, as well as a frame structure assembled by a plurality of rock slabs 2 and profile skeletons 3. The frame structure includes at least four plate-like structures and at least three plate-like structures and a wall structure 1.
[0051] Among them, the rock slab 2 and the profile skeleton 3 on one side form a plate-like structure, and the combined structure of the rock slab 2 and the profile skeleton 3 is hereinafter referred to as a plate-like structure. A top sealing plate 9 for positioning installation and top sealing is provided at the top of the frame structure, and a bottom sealing plate 8 for sealing the bottom is fixedly connected to the bottom of the plate-like structure.
[0052] Further referring to Figure 4 , a plate-like structure is hinged to an adjacent plate-like structure. A top and bottom shaft 5 is provided at the connection for hinging, and there are no less than two top and bottom shafts 5, and the top and bottom shafts 5 are fixedly connected to the plate-like structures on both sides respectively.
[0053] Among them, in combination with Figure 1 , and referring in detail to Figures 6 - 9 , a plate-like structure on one side is movably clamped with an adjacent plate-like structure on the other side through a door lock structure 6 provided.
[0054] A fixed card strip 601 is inserted through the door lock structure 6. A second card strip 602 is provided on one side of the fixed card strip 601 for insertion on one side of the profile skeleton 3. Through the insertion of the second card strip 602 and the profile skeleton 3, the door lock structure 6 is inserted and installed on one side of the profile skeleton 3.
[0055] Furthermore, corresponding accommodation grooves two 304 and accommodation grooves one 203 are provided on one side of the profile skeleton 3 and the rock slab 2 for the movable clamping of the door lock structure 6. Wrench grooves 603 are provided on both sides of one side surface of the door lock structure 6, and a vertical positioning card slot 604 is provided on one side surface inside the door lock structure 6.
[0056] Even further, a plate member 4 is clamped on the side surface of the profile skeleton 3 on the other side of the plate-like structure. A clamping plate 402 is provided on one side of the plate member 4 adjacent to the door lock structure 6. A clamping plate 402 is elastically hinged on one side of the clamping plate 402 adjacent to the positioning card slot 604, and a positioning card strip 404 for movably clamping inside the positioning card slot 604 is provided at the end of the clamping plate 402.
[0057] In combination with Figure 2 As shown, a "convex"-shaped connection card slot 301 is provided on one side of the profile skeleton 3 for clamping a screw 7, a second card strip 602 and a first card strip 401 inside the connection card slot 301.
[0058] Referring to Figure 3, when the screw 7 is connected to the connecting card slot 301, the screw 7 is used to fixedly install the profile skeleton 3 on the side of the wall structure 1 and the side of the plate-shaped structure of the spliced rock slab 2. The specific installation method is as follows:
[0059] When connecting the profile skeleton 3 to the wall structure 1, it should be ensured that the length of the profile skeleton 3 does not exceed the height of the wall structure 1. First, fix two screws 7 on the wall, and ensure that the two screws 7 are located at both ends of the profile skeleton 3. Then, tilt the profile skeleton 3, slide the top of the connecting card slot 301 to snap onto the top screw 7, and continue to slide the connecting card slot 301, and snap the bottom screw 7 into the inside of the connecting card slot 301 at this time.
[0060] Reference Figure 5 , when the first clamping strip 401 is connected to the connecting card slot 301, it is located at the two plate-shaped structures and is at the same position as the set door lock structure 6. And the first clamping strip 401 is fixed on the outside of the "L" shape, used to snap the plate clamping member 4 onto one side of the profile skeleton 3. Through the clamping connection between the first clamping strip 401 and the connecting card slot 301, it is used to fix and position the plate clamping member 4.
[0061] Reference Figure 6 And Figure 7 , when the fixing clamping strip 601 is connected to the connecting card slot 301, the second clamping strip 602 is used to snap the fixing clamping strip 601 onto one side of one profile skeleton 3, and the fixing clamping strip 601 is located between the plate clamping member 4 of the adjacent plate-shaped structure and the profile skeleton 3, that is, the fixing clamping strip 601 is at the same position as the plate clamping member 4 and is adjacent to the plate clamping member 4.
[0062] In order to achieve the stability of the connection and installation between the profile skeleton 3 and the rock slab 2 and reduce the occurrence of mildew inside it, therefore:
[0063] Reference Figures 3 - 5 , two side positioning clamping plates 302 in the shape of "U" are provided on the other side of the profile skeleton 3, and a positioning strip 303 is provided in the middle of the two side positioning clamping plates 302.
[0064] A first filling layer 201 is clamped at the connection between the outside of the rock slab 2 and the side positioning clamping plate 302, a second filling layer 202 is embedded inside the two rock slabs 2, and the positioning strip 303 is press-fitted into the inside of one side of the second filling layer 202.
[0065] On both sides of the positioning bar 303 and on the inner sides of the side positioning clamping plates 302 on both sides, there are wavy anti-slip surfaces, which are used to increase the friction between the side positioning clamping plates 302 and the first filling layer 201, and between the positioning bar 303 and the second filling layer 202, to increase the stability of the structural installation, and through the installation of the first filling layer 201 and the second filling layer 202, it is used to prevent mildew from occurring inside. Among them, the first filling layer 201 adopts a mildew-proof pad, and the first filling layer 201 can also be mildew-proof glass glue, and the second filling layer 202 adopts a mildew-proof filler.
[0066] By setting the rock slab 2 and through the first filling layer 201 and the positioning bar 303 clamped inside it, the stability of the structural installation can be increased, and through the installation of the first filling layer 201 and the second filling layer 202, it is used to prevent mildew from occurring inside, and the structure of the rock slab 2 can also prevent the phenomenon of wet expansion.
[0067] According to the above structure, the working principle is as follows:
[0068] It needs to be combined with Figures 7 - 9 , the door lock structure 6 is hinged inside the first accommodating groove 203 and the second accommodating groove 304 through the fixed clamping strip 601, and the wrench grooves 603 on both sides of the door lock structure 6 are respectively hinged and alternately protrude from the surface of the second filling layer 202, and the door lock structure 6 is fan-shaped.
[0069] First of all, the positioning card slot 604 located on the inner side is movably clamped with the adjacent clamping plate 402. By using the inner side surface of the door lock structure 6 to squeeze the positioning clamping strip 404, the elastic piece 403 arranged between the clamping plate 402 and the plate member 4 deforms. The positioning clamping strip 404 slides on the inner side of the door lock structure 6 and slides and is clamped inside the positioning card slot 604 to realize the clamping between the plate member 4 and the door lock structure 6. And at this time, the wrench groove 603 located on the inner side protrudes from the surface of the second filling layer 202, and the outer side surface of the door lock structure 6 is parallel to the surface of the second filling layer 202 on the outer side. At this time, the plate-shaped structure in the hinged state is in the locked state. And after a person enters the inside of the plate-shaped structure, by dragging the wrench groove 603 on the inner side, the inner side surface of the door lock structure 6 inside is used to squeeze the positioning clamping strip 404, causing the elastic piece 403 to deform.
[0070] When a person needs to open the plate-like structure in a locked state, by pushing the wrench slot 603 on the inner side, at this time, the clamping plate 402 returns to its original state as the door lock structure 6 moves. And at this time, the positioning latch 404 is pulled by the door lock structure 6, so that it disengages from the inside of the positioning card slot 604. When the positioning latch 404 is located outside the door lock structure 6 and is slidably connected thereto, the positioning latch 404 is elastically flipped by the elastic piece 403 to push the door lock structure 6 to hinge around the fixed latch 601. At this time, the inner side surface of the door lock structure 6 is parallel to the surface of the inner filling layer 202, and the wrench slot 603 on the outer side of the door lock structure 6 protrudes from the outer surface of the filling layer 202, which is convenient for a person to drag through the wrench slot 603 on the outer side before entering, so as to facilitate opening the plate-like structure.
[0071] Among them, when the positioning card slot 604 and the positioning latch 404 are clamped, the wrench slot 603 on the outer side is hidden inside the plate-like structure, that is, the first accommodating groove 203 and the second accommodating groove 304, which can be used to prevent someone on the outside from pulling open the plate-like structure through the wrench slot 603. When there is no one inside the plate-like structure, the wrench slot 603 on the outer side can be made to protrude by the extrusion of the inner side surface of the door lock structure 6 by the clamping plate 402. In order to realize the clamping of the positioning latch 404 and the positioning card slot 604, the simplification of the door lock structure 6 is realized, and it is convenient to use during the use process, and it can prevent it from being damaged and improve the service life.
[0072] The above are only the preferred embodiments of the present invention. It should be noted that for those of ordinary skill in the art, without departing from the principle of the present invention, several improvements and retouches can be made, and these improvements and retouches should also be regarded as the protection scope of the present invention. The structures, devices and operation methods not specifically described and explained in the present invention, unless otherwise specified and limited, are implemented according to the conventional means in the art.
Claims
1. An assembled sanitary partition wall, characterized in that, Including: The assembled and inserted rock slab (2) and profile skeleton (3), and A frame structure assembled by multiple rock slabs (2) and profile skeletons (3); The rock slab (2) and profile skeleton (3) on one side form a plate structure, the plate structure is hinged to an adjacent plate structure, and the plate structure on one side is movably clamped to the adjacent plate structure on the other side through a provided door lock structure (6); Wherein, a fixed clamping strip (601) is inserted through the door lock structure (6), a second clamping strip (602) is provided on one side of the fixed clamping strip (601) for being inserted into one side of the profile skeleton (3), corresponding second accommodation grooves (304) and first accommodation grooves (203) are provided on one side of the profile skeleton (3) and the rock slab (2) for the movable clamping of the door lock structure (6), wrench grooves (603) are provided on both sides of one side surface of the door lock structure (6), and a vertical positioning clamping groove (604) is provided on one inner side surface of the door lock structure (6); A plate member (4) is clamped to the side surface of the profile skeleton (3) on the other side of the plate structure. A clamping plate (402) is provided on one side of the plate member (4) adjacent to the door lock structure (6), the clamping plate (402) is elastically hinged to one side adjacent to the positioning clamping groove (604), and a positioning clamping strip (404) for movably clamping inside the positioning clamping groove (604) is provided at the end of the clamping plate (402); The frame structure includes at least four plate structures and at least three plate structures and a wall structure (1); A "convex”-shaped connecting clamping groove (301) is provided on one side of the profile skeleton (3), and a screw (7), a second clamping strip (602) and a first clamping strip (401) are respectively clamped inside the connecting clamping groove (301); Wherein, the first clamping strip (401) is fixed to the outside of the "L” shape for clamping the plate member (4) to one side of the profile skeleton (3); The second clamping strip (602) is used for clamping the fixed clamping strip (601) to one side of the profile skeleton (3) on one side, and the fixed clamping strip (601) is located between the plate member (4) and the profile skeleton (3) of the adjacent plate structure; The screw (7) is used for fixedly installing the profile skeleton (3) on the side surface of the wall structure (1) and the side surface of the plate structure of the spliced rock slab (2).
2. The prefabricated sanitary partition wall according to claim 1, characterized in that: Two side positioning clamping plates (302) in the shape of "U” are provided on the other side of the profile skeleton (3), and a positioning strip (303) is provided in the middle of the two side positioning clamping plates (302); A first filling layer (201) is clamped at the connection between the outside of the rock slab (2) and the side positioning clamping plate (302), a second filling layer (202) is embedded inside the two rock slabs (2), and the positioning strip (303) is press-fitted and inserted into the inside of one side of the second filling layer (202); 3. The prefabricated sanitary partition wall according to claim 2, characterized in that: Wave-shaped anti-slip surfaces are provided on both sides of the positioning strip (303) and the inner sides of the two side positioning clamping plates (302).
4. The prefabricated sanitary partition wall according to claim 1, wherein: The plate fixture (4) is snap-connected to the end of one side of the plate-like structure for snap-connecting the end of the plate-like structure in the hinged state on the other side, and the side surface of the profile frame (3) is movably connected to the inner side of the plate fixture (4).
5. The prefabricated sanitary partition wall according to claim 2, wherein: The door lock structure (6) is hinged inside the first accommodation groove (203) and the second accommodation groove (304) through the fixed clamping strip (601), and the wrench grooves (603) on both sides of the door lock structure (6) are respectively hinged to alternately protrude from the surface of the second filling layer (202).
6. The prefabricated sanitary partition wall according to claim 2, wherein: The door lock structure (6) is fan-shaped; The positioning card slot (604) located on the inner side is movably snap-connected to the adjacent clamping plate (402). By using the inner side surface of the door lock structure (6) to squeeze the positioning clamping strip (404), the elastic piece (403) arranged between the clamping plate (402) and the plate fixture (4) is deformed. The positioning clamping strip (404) slides on the inner side of the door lock structure (6) and slides into the positioning card slot (604) to realize the snap connection between the plate fixture (4) and the door lock structure (6). At this time, the wrench groove (603) located on the inner side protrudes from the surface of the second filling layer (202), and the outer side surface of the door lock structure (6) is parallel to the surface of the second filling layer (202) on the outer side.
7. The prefabricated sanitary partition wall according to claim 6, wherein: When the positioning clamping strip (404) is located on the outer side of the door lock structure (6) and is slidably connected thereto, the elastic piece (403) elastically flips the positioning clamping strip (404) to push the door lock structure (6) to hinge around the fixed clamping strip (601). At this time, the inner side surface of the door lock structure (6) is parallel to the surface of the second filling layer (202) on the inner side, and the wrench groove (603) on the outer side of the door lock structure (6) protrudes from the outer surface of the second filling layer (202).
8. The prefabricated sanitary partition wall according to claim 1, characterized in that: When the two side plate-like structures are joined, a floor hinge (5) is arranged at their joint for hinging, and the number of the floor hinges (5) is not less than two. The floor hinges (5) are respectively fixedly connected to the two side plate-like structures.
Citation Information
Patent Citations
Rock board painting on ceramic tile
CN109972807A
Main body module of transformer substation assembly type guard room
CN210713946U